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1

Ellis, Chandla, Tirumala Raju Vineetha, Segu Sravana Keerthi, S. P. Kalpana, and R. Roshni Karen. "Internet of Things-based Smart Street System." Revista Gestão Inovação e Tecnologias 11, no. 4 (2021): 5577–94. http://dx.doi.org/10.47059/revistageintec.v11i4.2580.

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Enormous amount of electrical energy is consumed in urban areas by means of street lights. Currently, the street lights are turned on and off manually which will lead to wastage of electrical energy. Due to inadequate dimming and low efficiency of lights, current is being wasted. The main aim of this smart LED system is to create a street light which will behave according to its surrounding. This LED will turn on automatically during dark time and off during bright time with the help of LDR. It will remain dim when there is no one near the light and turns on bright when people pass by it. By doing this, huge amount of energy is being saved. Though solar energy is efficient, it can’t work during rainy season. Thus, piezoelectric sensor is a good replacement of it. It converts the pressure that applied on it to electrical energy. This sensor is fixed in the road which will convert the pressure applied to it by the vehicles to electrical energy which can be utilized by the LEDs. Finally, this system aims to present an overview of a profitable and green solution to the energy consumption problem imposed by street lighting.
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2

Rizky, Muharratul Mina, Depi, and Fitra Rahida. "Smart Park LED Strip Based by Internet of Things." Jurnal Inotera 9, no. 1 (2024): 33–38. http://dx.doi.org/10.31572/inotera.vol9.iss1.2024.id281.

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 The internet was a new thing that was interesting when it first appeared, because with the internet people were able to exchange news even over long distances. One application that can be carried out using the internet of things is garden lighting, especially in big cities, various methods have been used to control the lights automatically but they can only be turned on or off. The solution to this problem is to create an IoT-based Smart Garden LED Strip system. The aim of this research is to design a Smart Garden LED Strip device based on the Internet of Things. This device is designed to facilitate human performance because the LED lights have been programmed so that the LED lights can turn on and off automatically. This research method uses three parts, namely input, output and control. Where the MCU node functions as the controller of the entire circuit, while the RTC sensor functions as input. Researchers carried out tests 7 times to determine the performance of the tool that had been designed. In 7 tests of the Smart Garden LED Strip, the lights turned off at 06.00 in the morning, in 7 tests the lights managed to turn off on time, and at 19.00 at night the lights managed to turn on on time. The conclusion of this research, when the time is 19.00 WIB, the lights will automatically turn on, and the lights will turn off automatically at 06.00 WIB.
 
 
 
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3

Rusu, Ioan, and Alona Kolomiets. "Internet of Things and Artificial Intelligence." Digital Platform: Information Technologies in Sociocultural Sphere 1, no. 2 (2018): 51–62. https://doi.org/10.31866/2617-796x.2.2018.155662.

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The technological revolution of the last decades has led to the widespread use of digital technologies. More and more aspects of our life are carried out with their help. The purpose of the article is to highlight the concept of the Internet of things of its components and possibilities of application. An important task is to forecast the modern technologies development, depending on innovation in the field of artificial intelligence, machine learning, and the introduction of common standards in this area. Research methods are modern technologies for the introduction of the Internet of things into different spheres of human life, starting with the systems of "Smart Home" and ending with an analysis of the soil used in agriculture. The novelty of the study is to establish connections between artificial intelligence and Internet technology. Identify new competencies for occupations that will arise in the future and will be related to machine learning, cloud-based technology and Internet engineering. Conclusions. The modern technologies development, new solutions in the field of artificial intelligence will not only lead to a new era of people and machines coexistence, but will also give impetus to the emergence of new areas in training for IT industry professionals.
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Hemmati, Mahdi. "Analyzing the Effect of Social Internet of Things on Making the Internet Marketing Smart." Modern Applied Science 10, no. 9 (2016): 213. http://dx.doi.org/10.5539/mas.v10n9p213.

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The development of social internet of things in recent years led to widening the data and information scope. A wide scope of new services caused by this procedure. In this regard, a new pattern called the social internet of things is created by integrating the social network and internet of things (IOT) which shows the network communication of things. IOS can put a step toward the marketing world. In this paper, the effect of IoT on internet marketing and making it smart are taken into consideration by considering marketing in human social network.
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Alfian, Ady, Lutfi Fauzi, and Heri Firmansyah. "PROTOTIPE SISTEM INFORMASI PEMESANAN VALET PARKING BERBASIS INTERNET OF THINGS." Autocracy: Jurnal Otomasi, Kendali, dan Aplikasi Industri 7, no. 2 (2021): 72–79. http://dx.doi.org/10.21009/autocracy.072.5.

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This final project aims to create a prototype of information system for parking valet reservation based on Internet of Things, which functions to monitor and reserve a parking space remotely in order to make it easier for vehicle users to get a parking space. Making this prototype begins with collecting needs, build prototyping, evaluation, prototyping, encodes the system and evaluates the system. This project Using codular android application as a monitoring and parking space reservation media, MCU node as a control center and data receiver, red LED indicates the parking slot is occupied, LCD to display parking customer profile data, sensor line proximity to detect vehicles and as a parking fee calculation trigger, firebase realtime database as a temporary storage medium. Based on the results of testing this project that the researchers have done, it has been successfully built and has been tested to function properly. The application can send vehicle profile data, display parking availability and display parking fee calculations. Nodes MCU can retrieve data from the database to be implemented in turning on the led and displaying parking customer profile data on the LCD.
 Penelitian ini bertujuan untuk membuat prototipe sistem informasi pemesanan valet parking berbasis Internet of Things, yang berfungsi untuk memonitoring dan memesan tempat parkir dari jarak jauh dalam rangka mempermudah pengguna kendaraan mendapatkan tempat parkir. Pembuatan prototipe ini di awali dengan melakukan pengumpulan kebutuhan, membangun prototyping, evaluasi prototyping, mengkodekan sistem dan mengevaluasi sistem. Alat ini menggunakan aplikasi android kodular sebagai media monitoring dan pemesanan tempat parkir, Node MCU sebagai pusat kendali dan penerima data , lampu LED merah menandakan slot parkir sudah di tempati, LCD untuk menampilkan data profil pemesan parkir, sensor line proximity untuk mendeteksi kendaraan dan sebagai pemicu penghitungan biaya parkir, firebase database realtime sebagai media penyimpanan sementara. Berdasarkan hasil pengujian alat ini yang telah peneliti lakukan sudah berhasil dibuat dan sudah diuji dapat berfungsi dengan baik. Aplikasi dapat mengirim data profil kendaraan, menampilkan ketersediaan parkir dan menampilkan penghitungan biaya parkir. Node MCU dapat mengambil data dari database untuk di implementasikan dalam menyalakan led dan menampilkan data profil pemesan parkir pada LCD.
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Setiawan Mangkunegara, Iis, Arif Setia Sandi Ariyanto, and Deny Nugroho Triwibowo. "Implementasi Arduino Iot Cloud: Potensiometer Sebagai Pengatur Intensitas Cahaya LED." JSAI (Journal Scientific and Applied Informatics) 7, no. 1 (2024): 65–72. http://dx.doi.org/10.36085/jsai.v7i1.6083.

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Perkembangan Internet of Things pada era teknologi modern ini memiliki banyak peranan dalam membantu dan memudahkan pekerjaan pada setiap sektor industri. Salah satu perangkat elektronik berbasis sumber terbuka seperti Arduino juga mengembangkan wadah yang diciptakan khusus untuk proyek Internet of Things yang disebut dengan Arduino IoT Cloud. Dalam pembahasan ini penulis melakukan implementasi penggunaan Arduino IoT Cloud dengan ujicoba menggunakan potensiometer untuk mengatur intensitas atau kecerahan cahaya pada LED melalui modul wifi NodeMCU Berbasis ESP8266. Hasil dari implementasi ini menunjukan bahwa Arduino IoT Cloud dapat dioperasikan untuk menerima data analog pada potensiometer serta memiliki performa yang stabil dalam menerima maupun membaca data dari potensiometer. Harapannya, hasil ini bisa menjadi salah satu acuan untuk pengembangan selanjutnya dari teknologi Internet of Things dengan memanfaatkan Arduino IoT Cloud dan potensiometer
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Adidrana, Demi, Arif Rahman Hakim, Hertanto Suryoprayogo, and Ilham Roni Yansyah. "Perancangan Sistem Smart Lamp berbasis Internet of Things Menggunakan Ubidots." Journal of Informatics and Communication Technology (JICT) 5, no. 1 (2023): 130–38. http://dx.doi.org/10.52661/j_ict.v5i1.193.

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Internet Of Things (IOT) merupakan konsep dimana “things” atau objek yang dapat berupa perangkat atau sensor yang heterogen, yang semuanya terkoneksi satu sama lain dan memiliki kemampuan untuk mengumpulkan dan berbagi data. Sebagai evolusi baru internet sehingga hadirnya konsep Internet Of Things (IOT) dimana dapat menghubungkan “Things” atau “Objek” melalui internet dan didukung dengan pertumbuhan penggunaan smartphone yang terus meningkat, menyebabkan semakin banyaknya orang yang terhubung ke internet walaupun dengan mobilitas yang tinggi. Konsep smarthome adalah salah satu penerapan Internet of Things yang populer, ini terjadi karena fungsi dari Internet of Things dapat dirasakan langsung oleh masyarakat umum. Home automation yang merupakan topik didalamnya merupakan salah satu teknik pengendalian peralatan listrik di rumah secara nirkabel atau otomatis. Pada penelitian sebelumnya menunjukkan bahwa pemanfaatan Internet of Things khususnya pada penggunaan smart home dapat mengurangi konsumsi energi, sehingga pada penelitian ini dibuat perangkat smart lamp dimana perangkat tersebut dapat menentukan kondisi gelap atau terang menggunakan sensor LDR yang terhubung ke mikrokontroler ESP32 dan pada kondisi yang dibaca akan memberikan perintah untuk menyalakan atau mematikan LED. Perangkat yang dibuat juga dapat terkoneksi melalui platform Ubidots untuk penyimpanan data dan melakukan pengontrolan LED manual secara jarak jauh melalui widget switch yang disediakan Ubidots.
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8

Sadi, Sumardi Sadi, Ilham Pratama, and Sansah Mal Ardi Kalizar. "Perancangan Sistem Smart Home Berbasis Internet Of Things." Jurnal Teknik Elektro 7, no. 1 (2023): 18. http://dx.doi.org/10.31000/jte.v7i1.9787.

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Pemanfaatan smarthome berbasis internet banyak digunakan sebagai sarana untuk memudahkan pengontrolan. Penelitian ini memanfaatan teknologi internet dan sebuah mikrokontroler sebagai kendali otomatis. Penelitian ini bertujuan untuk membangun perangkat lunak dan perangkat keras smarthome menggunakan aplikasi Blynk berbasis ESP32. Dengan metode eksperimen dan studi pustaka, penelitian ini telah berhasil merancang bangun smarthome menggunakan aplikasi Blynk berbasis ESP32. Komponen yang digunakan pada penelitian ini meliputi: mikrokontroler ESP32 sebagai wifi, Sensor Ultrasonic untuk Menggerakan Motor Servo, Sensor MQ2 sebagai pndeteksi adanya gas dan asap lalu Buzzer bunyi sestelah MQ2 menerima data, Sensor cahaya LDR untuk menyalakan lampu seara otomatis, dan smartphone yang digunakan sebagai pengontrol Lampu LED melalui aplikasi Blynk. Hasil penelitian ini sudah sesuai dengan tujuannya yaitu membangun perangkat lunak dengan sistem kontrol menggunakan Smartphone dan perangkat keras dengan mensimulasikan smarthome menggunakan LED maupun alat-alat elektronika lainnya. Untuk hasil rata-rata kesimpulan pengukuran keseluruhan komponen yaitu: Ultrasonic 4.76 & 4,74V, Sensor LDR 4.15V, Sensor MQ2 3.69V, Motor Servo 3,58 V, Buzzer 3.18V, LED 1.97V., dan untuk Sensor MQ2 itu rata-rata delay waktu 2 detik per ½ cm untuk merespown adanya gas di suatu ruang.
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9

Prihatmoko, Dias. "PENERAPAN INTERNET OF THINGS ( IoT ) DALAM PEMBELAJARAN DI UNISNU JEPARA." Simetris : Jurnal Teknik Mesin, Elektro dan Ilmu Komputer 7, no. 2 (2016): 567. http://dx.doi.org/10.24176/simet.v7i2.769.

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Di era globalisasi saat ini, perkembangan ilmu pengetahuan dan teknologi sangat pesat, khususnya yaitu perkembangan internet. Oleh karena itu dunia pendidikan pun tidak lepas dari perkembangan internet. Untuk itu dalam pembelajaran perlu adanya media belajar yaitu internet. Dengan berkembangnya Internet of Things (IoT), maka internet pun bisa dimanfaatkan untuk keperluan lain yang mendukung pembelajaran, diantaranya yaitu dengan memanfaatkan internet tersebut untuk kegiatan pembelajaran teori maupun praktikum. Salah satu contohnya yaitu pemanfaatan internet untuk kegiatan pembelajaran mata kuliah mikrokontroller yang diterapkan di program studi Teknik Elektro UNISNU Jepara. Internet tersebut digunakan sebagai sarana untuk sistem kontrol otomatis dengan jarak jauh menggunakan mikrokontroller. Penerapan dari internet of things (IoT) di teknik elektro UNISNU Jepara adalah berupa pengendalian perangkat elektronik berupa lampu LED menggunakan mikrokontroller arduino uno dengan memanfaatkan internet. Penerapan berupa tugas sistem kontrol lampu yang dirancang menggunakan perangkat keras ( lampu led dan pin arduino ), serta menggunakan perangkat lunak berupa bahasa pemrograman PHP, pemrograman Batch, dan pemrograman Arduino. Hasil dari perancangan adalah sistem kontrol lampu LED yang dapat dikendalikan melalui internet. Sedangkan hasil dari pengamatan proses pembelajaran adalah tingkat ketertarikan mahasiswa sesudah pembelajaran sebesar 90% mahasiswa tertarik mengikuti proses pembelajaran dan 50% mahasiswa paham dengan apa yang disampaikan dosen pada saat pembelajaran. Kata kunci: internet of things, sistem control, mikrokontroller.
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Syah, Nur Ifan, and Sunardi Sunardi. "Human Movement Detection System Based on the Internet of Things." Buletin Ilmiah Sarjana Teknik Elektro 6, no. 2 (2024): 164–71. https://doi.org/10.12928/biste.v6i2.10829.

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This research refers to making an IoT-based movement system tool. This system is used to calculate the number of human movements entering a room and also people leaving the room. In this study, a Passive Infrared Receiver (PIR) sensor is used to detect the movement of people when entering a room. The sensor will trigger a calculation of the number of people passing through the device, equipped with NodeMCU ESP 8266 as a microcontroller, with NodeMCU ESP 8266 it is more efficient to connect to the WiFi module on the Internet of Things system without the need for other modules. The tool is also equipped with an LED light as a notification of movement, an indicator buzzer if the room is fully filled, and there is also a Liquid Crystal Display (LCD) which is used to display the number of human movements entering and leaving the room, as well as the people who are in the room. The sensitivity of the PIR sensor depends on the distance of the object to the sensor. The research is running well. Notifications from the LED light go according to their duties, if someone enters the room then LED 1 will light ON, and if someone leaves the room then LED 2 will light ON. The results of the application in detecting objects of people or visitors one by one are conditioned based on walking movements and based on a person's height posture from 150 cm to 170 cm the accuracy of the object is accurate, because the distance from the object to the The tool is not too far so the tool can easily detect its movement.
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Artono, Budi, and Fredy Susanto. "LED control system with cayenne framework for the Internet of Things (IoT)." JEECAE (Journal of Electrical, Electronics, Control, and Automotive Engineering) 2, no. 1 (2017): 95–100. http://dx.doi.org/10.32486/jeecae.v2i1.62.

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Internet (interconnected-networking) ialah rangkaian komputer yang terhubung secara global di dalam beberapa rangkaian dan menggunakan TCP/IP sebagai protokol pertukaran paket (packet switching communication protocol). Internet seperti benang-benang maya yang menghubungkan satu dengan yang lain, meneruskan data dan menyampaikan data dari satu titik ke titik lain. Internet tidak lagi hanya untuk menghubungkan antar manusia tapi juga menghubungkan antar benda apapun yang dapat terhubung. Cayenne merupakan salah satu platform IoT (Internet of Things) sekaligus sebagai server yang mampu menyimpan project serta mendukung berbagai jenis mikrokontroler, memiliki interface yang user-friendly dan mempunyai berbagai macam tipe koneksi dalam menghubungkan antara mikrokontroler dengan platform internet. Dalam penelitian ini dikembangkan skema untuk kontrol perangkat elektronik melalui internet dengan berbasis web dan mobile. Pengendalian perangkat elektronik berupa lampu LED menggunakan mikrokontroller arduino uno dengan memanfaatkan platform IoT Cayenne. Hasil dari perancangan adalah sistem kontrol lampu LED yang dapat dikendalikan melalui platform IoT Cayenne. Desain arsitektur dan desain skenario diusulkan sebagai pedoman bagi penelitian selanjutnya.
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Limanta, Geraldi Merkusi, Resmana Lim, and Handry Khoswanto. "Pembuatan Sistem Home Automation Berbasiskan Internet of Things." Jurnal Teknik Elektro 11, no. 2 (2018): 60–65. http://dx.doi.org/10.9744/jte.11.2.60-65.

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Perancangan sistem home automation ini dilakukan untuk membuat sebuah sistem yang dapat dikendalikan secara otomatis maupun manual. Sistem yang dibuat ini mengendalikan lampu LED, horizontal blind, dan AC. Pembuatan sistem smart home ini menggunakan microcontroller Raspberry Pi 3 model B. Proses pengiriman data dan kontrol menggunakan protokol internet. Sistem ini menggunakan ubidots cloud. Ubidots cloud bertugas untuk menyimpan data dan sekaligus sebagai panel kontrol untuk melakukan kendali sistem smart home. Sistem yang dibuat selain dapat dikendalikan dari jarak jauh juga dapat dikendalikan secara langsung di tempat. Pengendalian secara langsung di tempat dilakukan dengan menggunakan tombol. Teknik pengendalian lampu menggunakan PWM, pengaturan buka tutup dari blind menggunakan motor stepper, dan kontrol AC menggunakan LED Infrared. Hasilnya, proses otomatis dan manual dapat berjalan dengan baik. Proses kontrol menggunakan cloud ubidots juga berhasil. Proses pengambilan data dari cloud ubidots membutuhkan waktu kurang dari 1 detik. Sedangkan proses pengiriman data membutuhkan waktu paling lama 5 detik.
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Joas, Kirene Wardaini, Suryo Adi Wibowo, and Yosep Agus Pranoto. "Perancangan Sistem Smart Church Berbasis Internet Of Things(IoT)." JATI (Jurnal Mahasiswa Teknik Informatika) 6, no. 1 (2022): 221–28. http://dx.doi.org/10.36040/jati.v6i1.4561.

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Pada masa pandemi terpaksa jemaat harus beribadah dari rumah karena pemerintah Indonesia menerapkan kebijakan protokol Kesehatan oleh karena itu tata cara ibadah cenderung bebasis online. Demi mencegah menularnya virus covid salah satunya adalah periksaan suhu tubuh serta menjaga jarak.
 Berdasarkan hasil pengujian pada sensor suhu mlx90614 dengan nilai rata-rata diperoleh dari jumlah eror di bagi banyaknya data , kemudian hasil dari 10 kali percobaan untuk sensor suhu tersebut cukup akurat dengan rata – rata tingkat error sebesar 3,6%. Pengujian pada alat pada kursi , yang dimana ESP akan menerima koneksi dari server berupa status booking dan di tampilkan ke LCD serta warna lampu LED sesuai dengan status yang diterima.
 Berdasarakan hasil pengujian RFID yang mendeteksi UID dari kartu member jemaat dan menampilkan UID tersebut ke lcd, lalu data di kirim ke server untuk dicek status pembookingan. lalu server mengirim respon ke Arduino dan respon di tampilkan di lcd . Pada menu reservation sudah tersedia link google meet.
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Iskandar, Rachmat, and Titi Noviyanti. "Prototipe Smart PJU Mobil Berbasis Internet of Things (IoT)." Journal of Informatics and Electronics Engineering 3, no. 2 (2023): 44. https://doi.org/10.70428/jiee.v3i2.768.

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Dengan seiring pertumbuhan dan bertambahnya jumlah penduduk, maka permintaan terhadap energi listrik semakin hari semakin meningkat. Salah satu bentuk penghematan pemanfaatan energi listrik adalah dengan mengefesiensikan penggunaan energi listrik dalam penggunaan smart PJU yang merupakan penerangan lampu hemat energi sebagai salah satu cara suatu institusi pemerintah untuk bertindak sebagai pionir terkait dengan aksi yang ramah terhadap lingkungan. Disisi lain, belum banyaknya diterapkan sistem ini dengan marakanya berbagai aksi kejahatan pada malam hari membuat pengguna jalan menjadi sangat resah karna sistem lampu jalanan yang masih manual. Solusi untuk mengatasi permasalahan tersebut, yaitu dengan pembuatan prototipe smart PJU mobil dengan berbasis Internet Of Things (IoT) menggunakan metode UCD (User Centered Design) yang setiap prosesnya untuk mendapatkan hasil sesuai dengan kebutuhan pengguna, dimana sensor cahaya mendeteksi jika pada malam hari cahaya LED meredup karna sensor tidak mendeteksi benda didepannya dan ketika sensor mendeteksi dengan delay selama 1 detik ada benda didepannya maka cahaya LED menyala terang, namun pada siang hari LED mati walaupun ada dan tidak adanya benda didepannya. Penggunaan alat ini dapat memonitoring jarak jauh secara berkala atau real time yang datanya dikirim ke thingspeak selama 0,5 detik. Kemudian dari data thingspeak tersebut bisa dibuka pada aplikasi app inventor yang sudah dikonfigurasikan sebelumnya serta aplikasi ini dapat dibuka pada smartphone. Alat yang digunakan pada prototipe ini terdapat sensor LDR LM393 sebagai pendeteksi cahaya, sensor IR FC-51 sebagai pendeteksi benda, LED 10MM sebagai aktuator yang menghasilkan cahaya dan Wemos D1 R1 sebagai mikrokontroler yang sudah berbasis WiFi ESP8266. Dengan adanya alat tersebut akan memberikan solusi bagi institusi pemerintah dalam penghematan energi listrik di jalanan dan memberikan kenyamanan bagi pengguna jalan pada saat malam hari.
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Aydos, Murat, Yılmaz Vural, and Adem Tekerek. "Assessing risks and threats with layered approach to Internet of Things security." Measurement and Control 52, no. 5-6 (2019): 338–53. http://dx.doi.org/10.1177/0020294019837991.

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Internet of Things is the next-generation Internet network created by intelligent objects with software and sensors, employed in a wide range of fields such as automotive, construction, health, textile, education and transportation. With the advent of Industry 4.0, Internet of Things has been started to be used and it has led to the emergence of innovative business models. The processing and production capabilities of Internet of Things objects in hidden and critical data provide great advantages for the next generation of Internet. However, the integrated features of Internet of Things objects cause vulnerabilities in terms of security, making them the target of cyber threats. In this study, a security model which offers an integrated risk-based Internet of Things security approach for the Internet of Things vulnerabilities while providing detailed information about Internet of Things and the types of attacks targeting Internet of Things is proposed. In addition, in this study, the vulnerabilities of Internet of Things were explained by classifying attack types threatening the physical layer, network layer, data processing layer and application layer. Moreover, the risk-based security model has been proposed by examining the vulnerabilities and threats of smart objects that generate the Internet of Things. The proposed Internet of Things model is a holistic security model that separately evaluates the Internet of Things layers against vulnerabilities and threats based on the risk-level approach.
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Ammar, Dion Ray RD. Kusumanto Pola Risma. "Smart Switch to Videotron Bersis IoT (Internet of Things)." TEKNIKA 16, no. 1 (2024): 25–29. https://doi.org/10.5281/zenodo.13343366.

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Videotron adalah media yang dapat menampilkan video atau teks dengan menggunakan teknologi Light Emiting Diode (LED). Sistem videotron sendiri masih banyak dihidupkan dan dimatikan secara manual. Dimana videotron yang terdapat di Politeknik Negeri Sriwijaya juga masih dihidupkan dan dimatikan secara manual. Sistem Perancangan ini bertujuan untuk mengembangkan videotron yang ada di Politeknik Negeri Sriwijaya agar bisa dihidupkan dan dimatikan secara otomatis (R,S,T) berbasis Internet Of Things (IoT). Sistem smart switch ini menggunakan Nodemcu Esp8266 Sebagai Mikrokontroler, Kemudian Modul Relay sebagai output untuk ON maupun OFF pada sistem. dan Lcd berfungsi untuk menampilkan kondisi berhasil atau tidaknya. Hasil dari penelitian ini dapat menghidupkan / mematikan Sistem videotron dari jarak jauh, Pengguna tidak perlu lagi repot untuk menghidupkan dan mematikan Videotron secara Manual.
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Nuri Afriani, Eka, Wisnu Djatmiko, and Jusuf Bintoro. "RANCANG BANGUN SISTEM PENGUKUR SUHU TUBUH MANUSIA JARAK JAUH BERBASIS INTERNET OF THINGS (IOT)." JURNAL PENDIDIKAN VOKASIONAL TEKNIK ELEKTRONIKA (JVoTE) 6, no. 2 (2024): 69–77. https://doi.org/10.21009/jvote.v6i2.49347.

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Tujuan dari peneliti ini adalah merancang sistem pengukur suhu tubuh jarak jauh berbasis Internet Of Things (IoT) di rumah untuk meningkatkan keamanan penyebaran COVID-19. Sistem pengukur suhu tubuh jarak jauh berbasis Internet Of Things (IoT) telah selesai dibuat dan diuji. Alat sudah dibandingkan dengan Thermogun digital yaitu Infrared Thermometer SK-T008 dengan tingkat kesalahan rata-rata dalam persen (error percentage) sebesar 0,438%. LCD 16x2 menampilkan hasil nilai suhu tubuh dalam satuan derajat celcius dan jika nilai suhu tubuh lebih dari 37,5 derajat celcius maka Buzzer dan LED merah akan aktif. Jika suhu tubuh tamu di bawah 35 derajat Celcius maka LED biru akan aktif.
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Arta, I. Kadek Cahyadi, Andrian Febriyanto, Ida Bagus Made Harisanjaya Adi Nugraha, I. Gede Suputra Widharma, and Ida Bagus Irawan Purnama. "Animal Tracking Berbasis Internet of Things." Majalah Ilmiah Teknologi Elektro 21, no. 1 (2022): 7. http://dx.doi.org/10.24843/mite.2022.v21i01.p02.

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Animal husbandry is an activity of breeding and rearing carried out with a cage or a loose system. Loose livestock systems are commonly found in the Nusa Tenggara region, and some areas in Bali. This type of farm is difficult to monitor so it is vulnerable to theft. In addition to the possibility of theft, this livestock grazing system also has many other risks, one of which is the loss of cows either because they are lost or trapped in some places. Therefore, it is necessary to develop a tracking device that is able to monitor the presence of these livestock. This research aims to implement internet of things (IoT) for monitoring livestock or pets using GPS, NodeMCU ESP 8266, Firebase and Kodular. Data in the form of latitude and longitude values obtained by the GPS module will be sent to Firebase via a WiFi network. That data is then displayed in the Kodular application in latitude, longitude coordinates, and markers on maps. In addition, this tracking device that can be worn around the neck of the animal is equipped with an LED light that aims to monitor the position of livestock at night so that the position of them can be seen when it is dark.
 Keywords — Animal Tracking, Firebase, GPS, IoT, Kodular
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Zheng, Rong Mao, and Yue Hua Xu. "Smart Part with Internet of Things Technology." Applied Mechanics and Materials 220-223 (November 2012): 3029–33. http://dx.doi.org/10.4028/www.scientific.net/amm.220-223.3029.

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With China's rapid economic development, electricity as one of the major energy demand gradually increased. Lots of energy were waste because of wide spread chaotic energy management. In order to solved this problem, in this paper a general schematic of intelligent node was proposed. Smart LED light and wisdom lamp socket were designed, which was been used in indoor public lighting control. A topology diagram was given with smart parts of public lighting, which was used to transformation a traditional public lighting circuit structure. Practice shows the transformed public lighting which control more flexible and smart than the old one, and reduce the power loss save 15.9% electricity costs. Equipment maintenance costs significantly reduce, the rate of fault found timely increased substantially.
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Yang, Ze Ming, Xiao Hua Zhang, and Chao Wang. "Solar LED Intelligent Lighting Systems Based on Internet of Things and New Energy Storage System." Applied Mechanics and Materials 687-691 (November 2014): 3281–84. http://dx.doi.org/10.4028/www.scientific.net/amm.687-691.3281.

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Recently, solar LED lighting systems are widely used because of their energy-saving and environment friendly characteristics. But there are also some key problems in current solar LED lighting systems, such as follows: First, the lifetime of lead-acid battery is too short so that the whole system lose efficacy soon; Second, current solar LED lighting systems usually are isolated systems, so its controllability is worse. This paper propose a new solar LED intelligent lighting systems based on Internet of Things and Supercapacitor ,which can tackle these two problems better, so the solar LED intelligent lighting systems will advance applications of solar LED lighting systems.
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Satriyo, Satriyo, Agus Riyanto, and Agus Salim. "Rancang Bangun Modul Praktikum Internet of Things Untuk Program Studi Teknik Elektronika." Jurnal ELIT 3, no. 2 (2022): 32–39. http://dx.doi.org/10.31573/elit.v3i2.385.

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Practical learning in the laboratory must be supported by the equipment and materials, without equipment the learning process will not run well. Internet of Things practice requires a practical module so that students can implement the Internet of Things in various cases
 This study,aims to built the Internet of Things module was built. The module uses NodeMCU as a controller, with input / output devices: DC motor, LED, ultrasonic sensor, pushbuton, temperature sensor and humidity sensor and fingerprint sensor. , device control, remote sensing and data acquisition through the blynk application and website.
 Keywords: Internet of things, NodeMCU, remote sensing
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Hadipour, Morteza, Javad Farrokhi Derakhshandeh, Mohsen Aghazadeh Shiran, and Reza Rezaei. "Automatic washing system of LED street lighting via Internet of Things." Internet of Things 1-2 (September 2018): 74–80. http://dx.doi.org/10.1016/j.iot.2018.08.006.

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Rony Setiawan. "Sistem Pengelolaan Ruang Parkir Berbasis Internet Of Things (IoT)." Jurnal Rekayasa Sistem Informasi dan Teknologi 2, no. 1 (2024): 595–607. http://dx.doi.org/10.70248/jrsit.v2i1.1215.

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Penelitian ini bertujuan untuk merancang dan mengimplementasikan sistem pengelolaan ruang parkir berbasis Internet of Things (IoT) yang dapat memonitor dan mengontrol penggunaan ruang parkir secara real-time. Sistem ini menggunakan sensor load cell untuk mendeteksi ketersediaan ruang parkir dan mengirimkan data ke server pusat melalui jaringan internet. Informasi ketersediaan ruang parkir kemudian dapat diakses oleh pengguna melalui aplikasi mobile. Dengan sistem ini, diharapkan dapat mengurangi waktu yang dibutuhkan pengendara untuk mencari ruang parkir dan meningkatkan efisiensi pengelolaan ruang parkir. Penelitian ini menggunakan metode penelitian prototipe, dengan tahap-tahap meliputi pengembangan sistem, pengembangan hardware dan software, serta pengujian sistem. Perangkat keras yang digunakan mencakup ESP-WROOM-32 sebagai mikrokontroller, sensor Load Cell untuk pendeteksi objek, Liquid Crystal Display (LCD) sebagai informasi ruang parkir, dan LED sebagai indikator setiap ruang parkir. Perangkat lunak dikembangkan menggunakan Arduino IDE untuk pemrograman mikrokontroller dan XAMPP sebagai server web.
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Kołaczek, Grzegorz. "Internet of Things (IoT) Technologies in Cybersecurity: Challenges and Opportunities." Applied Sciences 15, no. 6 (2025): 2935. https://doi.org/10.3390/app15062935.

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The continuous development and increasing availability of Internet of Things (IoT) solutions have led to an era of connectivity in which everyday objects—from household appliances to industrial machines—are connected via the Internet [...]
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Wang, Xiao-Xue, Shuang Zhang, Yuan Liu, Jiang-Nan Dai, Hua-Yao Li, and Xin Guo. "Light-excited chemiresistive sensors integrated on LED microchips." Journal of Materials Chemistry A 9, no. 30 (2021): 16545–53. http://dx.doi.org/10.1039/d1ta05070b.

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With the rapid development of the internet of things, light-excited gas sensors have aroused great attention to meet the increasing demand for room-temperature devices with high portability and low power consumption.
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Yıldırım, Melike Ayşenur, and Tarek Najjar. "Emerging Technologies for Internet of Things Refrigerator." International Journal of Engineering and Advanced Technology 11, no. 3 (2022): 68–75. http://dx.doi.org/10.35940/ijeat.c3377.0211322.

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Smart home technologies have accelerated with the internet of things and continue to develop by combining new ideas. Almost all electronic devices used in homes have been affected by this change. Smart refrigerator systems aim to prevent food waste and health problems as they continue to develop day by day. Researchers are working on smart refrigerators and generating new ideas. Users interact with internet-refrigerators using cameras, sensors and object detection, and artificial intelligence applications developed for these devices. Today, using cloud computing technology, robotic, artificial intelligence, and deep learning algorithms, smart refrigerator users can be informed about the expiry date and the amount of food in the refrigerator with warning messages and access the data loaded in the sensors. Recent advances in smart refrigerators have led to new developments using computer vision, image processing, and voice recognition algorithms. This article examines the methods used by researchers in their recent studies of smart refrigerators.
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Melike, Ayşenur Yıldırım, and Najjar Tarek. "Emerging Technologies for Internet of Things Refrigerator." International Journal of Engineering and Advanced Technology (IJEAT) 11, no. 3 (2022): 68–75. https://doi.org/10.35940/ijeat.C3377.0211322.

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<strong>Abstract: </strong>Smart home technologies have accelerated with the internet of things and continue to develop by combining new ideas. Almost all electronic devices used in homes have been affected by this change. Smart refrigerator systems aim to prevent food waste and health problems as they continue to develop day by day. Researchers are working on smart refrigerators and generating new ideas. Users interact with internet-refrigerators using cameras, sensors and object detection, and artificial intelligence applications developed for these devices. Today, using cloud computing technology, robotic, artificial intelligence, and deep learning algorithms, smart refrigerator users can be informed about the expiry date and the amount of food in the refrigerator with warning messages and access the data loaded in the sensors. Recent advances in smart refrigerators have led to new developments using computer vision, image processing, and voice recognition algorithms. This article examines the methods used by researchers in their recent studies of smart refrigerators.
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Gunawan, Heri, Ahir Yugo Nugroho, Ria Eka Sari, and Adnan Buyung. "Workshop Inovatif Pengembangan Pembuatan Running Text Berbasis Internet of Things (IoT)." Jurnal Pengabdian Masyarakat Bangsa 1, no. 11 (2024): 2894–98. http://dx.doi.org/10.59837/jpmba.v1i11.615.

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Running Message atau Running Text adalah teknik elektronik menampilkan teks bergerak atau berjalan yang terdiri dari susunan LED (light emitting diodes) kemudian dihubungkan dalam matriks dengan kombinasi LED antara baris dan kolom. Running Announcement merupakan salah satu bentuk penyampaian informasi kepada masyarakat melalui lampu LED. Penulis sebagai anggota tim presentasi menggunakan software khususnya software instalasi Arduino 1.8.0, serta hardware yaitu seperangkat elektronik yang digunakan untuk membuat running Text sebagai sarana penyampaian informasi. Praktek langsung persiapan perangkat lunak (instalasi), perakitan peralatan dan pemrograman hingga pesan ditampilkan. Hasil ujicoba sebelum dilakukan workshop dalam membangun running text di papan LED dot matrix berbasis IoT yang diikuti sekitar 15 guru ditambah beberapa siswa yang berpartisipasi diketahui tingkat pengetahuan mereka akan pemrograman dan instalasi perangkat tergolong rendah, tetapi setelah mengikuti pelatihan persentase ini meningkat hingga 70%. Pemahaman tersebut dicapai dengan melakukan serangkaian pengujian yaitu menginstal perangkat lunak, merakit perangkat, menulis program dan terakhir mengunggahnya ke mikrokontroler. Pelatihan yang dilakukan oleh tim Universitas Potensi Utama juga merupakan ungkapan Kebijaksanaan Pembicara, yaitu Pengabdian Kepada Masyarakat.
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Dadi, Dadi, Supriyati Supriyati, Andini Ayuning Putri, and Nur Hidayat Bagus Pratama. "ALAT PENGAMAN KENDARAAN BERMOTOR BERBASIS INTERNET OF THINGS." Orbith: Majalah Ilmiah Pengembangan Rekayasa dan Sosial 19, no. 3 (2023): 231–43. https://doi.org/10.32497/orbith.v19i3.5255.

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Alat Pengaman Kendaraan Bermotor Berbasis Internet of Things merupakan inovasi keamanan kendaraan bermotor yang dapat dipantau dan dikendalikan melalui gawai sehingga dapat mengurangi dan mencegah tindak pencurian kendaraan bermotor. Alat ini telah berhasil didesain dan dirancang menggunakan ESP 32 sebagai pengendali utamanya. Kontak wireless relay digunakan sebagai pengganti kunci konvesional. Komponen penting lain yang digunakan adalah ESP CAM yang digunakan untuk mengambil tangkapan wajah pengendara. Selain itu beberapa sensor digunakan seperti sensor GPS untuk melacak lokasi kendaraan, sensor vibration yang digunakan untuk mendeteksi guncangan pada kendaraan dan sensor PIR yang diigunakan untuk mendeteksi pergerakan disekitar kendaraan. Buzzer merupakan indikator apabila terjadi tindak pencurian. Untuk memantau alat pengaman ini dapat dilakukan menggunakan aplikasi Telegram.Kata kunci : Buzzer, ESP 32, ESP CAM, LED, Modul Sensor GPS, Modul Sensor PIR, Modul Sensor Vibration, Telegram, Wireless Relay.Motor Vehicle Safety Equipment Based on the Internet of Things is a motor vehicle safety innovation that can be controlled and monitored through a device so that it can reduce and prevent motor vehicle theft. ESP 32 was used as the primary controller in the successful design of this tool. Instead of conventional keys, wireless relay contacts are used. The ESP CAM, which is used to capture the rider's face, is another important component. Additionally, a number of sensors are used, including a GPS sensor to track the location of the vehicle, a vibration sensor to detect shocks outside, and a PIR sensor to detect movement around the vehicle. Buzzers are indicators of theft. To control this security tool can be done using the Telegram application.Keywords : Buzzer, ESP 32, ESP CAM, GPS Sensor Module, LED, PIR Sensor Module, Telegram, Vibration Sensor Module, Wireless Relay.
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Bowen, Judy, and Jessica Turner. "Interactive System Modelling for the Internet of Things." Proceedings of the ACM on Human-Computer Interaction 7, EICS (2023): 1–19. http://dx.doi.org/10.1145/3593233.

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The rapid growth in the number of Internet of Things (IoT) systems and their increasing use in safety-critical domains has led to the need for an evolution of development methods. Model-Driven Development (MDD) approaches have been used in software engineering to reduce development time and minimise errors in implemented systems. This paper introduces a novel Model-Driven Development (MDD) approach for Internet of Things (IoT) systems which considers interactivity from the perspective of both users and IoT components. A real-world example is presented to explain the motivation for the work and demonstrate the benefits and use of lightweight interactive system models adapted for the design and development of IoT systems.
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Risky Pratama. "Rancang Bangun Alat Pendeteksi Kesegaran Ikan Berbasis Internet Of Things (IoT)." Jupiter: Publikasi Ilmu Keteknikan Industri, Teknik Elektro dan Informatika 2, no. 3 (2024): 117–31. http://dx.doi.org/10.61132/jupiter.v2i3.308.

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Design and Development of an Internet of Things (IoT)-Based Fish Freshness Detection Device. Guided by Mrs. Henna Nurdiansari, S.T., M.T., M.Sc. and Mrs. Monika Retno Gunarti, S.Si.T., M.Pd. Indonesia has a great potential in fish production, reaching 12 million tons annually, accompanied by an increase in fish consumption. However, significant challenges arise regarding food safety, especially concerning the sale of non-fresh fish and the presence of formalin. As an innovative solution, a fish freshness and formalin detector based on IoT was developed. This device utilizes the TCS3200 sensor to detect color intensity and the HCHO sensor to detect formalin. This research employed the Research and Development (R&amp;D) method to produce an effective detection device. When the LED is green without a buzzer sound and the LCD displays "Fresh Fish" or "Formalin Free," the fish can be confirmed to be fresh and free of formalin. However, if the LED is red, the buzzer turns on, and the LCD displays "Non-Fresh Fish" or "Fish with Formalin," the fish is considered to be below standard or contains formalin. The device categorizes fish condition into three groups: green (fresh), yellow (less fresh), and red (not fresh), reflecting the fluctuating freshness level. When the HCHO sensor reads a value above 0.5 ppm, the fish is considered to contain formalin, while below 0.5 ppm is considered safe and free from formalin. Therefore, this device can be an effective solution in detecting fish freshness and formalin content, ensuring food safety for consumers.
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K., Thamizhmaran. "Network Privacy Reflection using Internet of Things." Recent Trends in Control and Converter 3, no. 3 (2021): 1–11. https://doi.org/10.5281/zenodo.4477853.

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<em>The current IP and other networks such as Power Smart Grids are fast developing, thus ensuing in diverse connectivity methodologies. This has led to the emergence of &quot;the Internet of Things&rdquo; (IoT) methodology whose goal is to transform the current IP and related networks to Device-to-Device (D-2-D) basis. It will seamlessly interconnect the globe via intelligent devices and sensors of varying types, this resulting in voluminous generation and exchange of data in excess of 20 billion Internet-connected objects and sensors (things) by 2022. The resultant structure will benefit mankind by helping us make tough decisions as well as be provisioned of beneficial services. In this paper, we overview both IoT enabled network architecture as well as security for associated objects and devices. We commence with a description of a generalized IoT enabled network&#39;s security architecture as well as how the various elements constituting them interact. We then describe an approach that allows the protection of both constrained and unconstrained IoT devices through robust encryption as well as authentication so that both can equally leverage from the same security framework, but still maintaining low computational loads, by avoiding excessive computational operations</em>
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Badriah Nursakinah. "Implementation of IoT (Internet of Thing) In The Design of a Smart Robot Prototype For Automatic Waste Disposal Based on Arduino At Mega." International Journal of Integrative Sciences 3, no. 2 (2024): 209–22. http://dx.doi.org/10.55927/ijis.v3i2.8203.

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The background of this research is to design a prototype for an automatic waste disposal robot based on Arduino AT Mega which is integrated with IoT (Internet of Things). Where the Internet of Things can generally be interpreted as objects around us that can communicate with each other via the internet network. Internet Of Thing has the concept of expanding the benefits of being connected to a continuous internet connection. The aim of this research is to design a prototype for an automatic waste disposer that was developed by integrating with IoT technology. The input process is carried out as an integration process between the Arduino and the HC-SR04 sensor and the Infrared Line Tracking sensor. So that the Arduino and HCSR 04 and Line Tracking sensors can work optimally, the main thing to do is carry out the configuration process using a beardboard and jumper cables as well as LED lights to ensure whether the sensors and other supporting tools are integrated with the Arduino. Where in the integration process between the Arduino buit and the ESP8266 so that the movement of the prototype can be easily monitored only via a smartphone or laptop even remotely
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LI, Wei, Da-Wu GU, Chen ZHAO, Zhi-Qiang LIU, and Ya LIU. "Security Analysis of the LED Lightweight Cipher in the Internet of Things." Chinese Journal of Computers 35, no. 3 (2012): 434–45. http://dx.doi.org/10.3724/sp.j.1016.2012.00434.

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Surahman, Ade, Bobi Aditama, Muhammad Bakri, and Rasna Rasna. "Sistem Pakan Ayam Otomatis Berbasis Internet Of Things." Jurnal Teknologi dan Sistem Tertanam 2, no. 1 (2021): 13. http://dx.doi.org/10.33365/jtst.v2i1.1025.

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Salah satu peternakan yang berkembang di Indonesia adalah peternakan ayam pedaging (broiler). Bagi usaha peternakan ayam pedaging, diperlukan pemeliharaan yang lebih baik dan kontinyu untuk menghasilkan ayam pedaging dengan kualitas yang baik. Banyak para peternak ayam pedaging masih menggunakan cara yang manual dalam memberi pakan ayam. Cara tersebut kurang efektif dan kurang efisien, selain itu juga membutuhkan banyak sumber daya manusia. Tugas akhir ini bertujuan untuk membangun sebuah Sistem Pakan Ayam Berbasis Internet of Things berbentuk prototype yang memanfaatkan internet sebagai media untuk pengendalian alat elektronik secara jarak jauh menggunakan mikrokontroler NodeMCU ESP8266, Servo MG995, dan LED indikator yang berkomunikasi dengan server MQTT ke Smartphone. Setelah dilakukan pengujian kerja sistem, hasil yang didapatkan menunjukkan bahwa sistem telah dapat bekerja dengan memberikan pakan secara otomatis. Informasi saat terhubung ke server, saat pemberian pakan, katup pakan terbuka dan tertutup dapat ditampilkan pada panel aplikasi.
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Bourgeois, Jacky, and Gerd Kortuem. "Towards Responsible Design with Internet of Things Data." Proceedings of the Design Society: International Conference on Engineering Design 1, no. 1 (2019): 3421–30. http://dx.doi.org/10.1017/dsi.2019.349.

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AbstractRecent advances in sensing and networking technologies, namely the Internet of Things (IoT), have become key enablers of data-intensive design processes. However, the recent introduction of the General Data Protection Regulation (GDPR) in Europe has raised concerns that the GDPR might hamper data- intensive design processes. In this paper, we map the challenges of enabling ethical and compliant design of product-service systems with personal IoT data. Specifically, we present a 4-year project led by EON, an international energy provider, to design innovative home energy systems that leverage emerging technologies such as solar panels, electric vehicles and home batteries. We present our 6-stage approach to design, centred on IoT data. We highlight the barriers of responsible design with data and identify three novel trust principles for compliant use of personal IoT data in design (private-by-default, analytics transparency and Accountable analytics).
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Sari, Indah Purnama, Dicky Apdilah, and Surya Guntur. "Sistem Smart Class Berbasis Internet of Things (IoT)." sudo Jurnal Teknik Informatika 4, no. 1 (2025): 33–39. https://doi.org/10.56211/sudo.v4i1.778.

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Penelitian ini bertujuan untuk merancang dan mengimplementasikan Sistem Smart Class berbasis Internet of Things (IoT) yang dapat meningkatkan efisiensi absensi dan keamanan lingkungan belajar di kelas. Sistem ini mengintegrasikan teknologi pengenalan wajah dan deteksi gerakan untuk absensi otomatis, serta menggunakan sensor asap MQ-2, Flame sensor, ESP32-Cam, dan sensor PIR untuk monitoring dan kontrol kondisi lingkungan. Metode penelitian mencakup desain dan pengujian perangkat keras serta integrasi sistem dengan aplikasi Blynk.cloud dan Telegram BotFather untuk pemantauan real-time. Hasil penelitian menunjukkan bahwa sistem mampu mengautomasi proses absensi dengan akurat dan memberikan peringatan dini terhadap adanya api atau asap melalui indikator yang terhubung seperti kipas, LED, dan buzzer. Pengujian juga menunjukkan bahwa sistem efektif dalam mendeteksi dan merespons kondisi berbahaya, meningkatkan keamanan dan kenyamanan di ruang kelas. Penelitian ini diharapkan menjadi dasar untuk pengembangan lebih lanjut dan penerapan sistem Smart Class yang lebih canggih di lingkungan pendidikan.
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Akshat Gupta. "Internet of things IOT Security Challenges And Solutions." Journal of Advances and Scholarly Researches in Allied Education 21, no. 5 (2024): 80–88. https://doi.org/10.29070/5hq64872.

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The fast expansion of the Internet of Things (IoT) has led to the transformation of several sectors via the connectivity of devices and the ease of real-time data collecting. However, important security vulnerabilities have emerged as a consequence of the expansion of Internet of Things systems, putting their availability, confidentiality, and integrity at risk. A comprehensive overview of the primary security issues related to the Internet of Things (IoT) is the goal of this write-up. Faults in software integrity, network connection, data encryption, and device authentication are among these issues. This essay delves into the peculiar threats posed by resource-constrained Internet of Things devices and the prospect of widespread cyberattacks. Modern, state-of-the-art methods for avoiding these threats are also included in the research. Some examples of these frameworks include blockchain-based cryptographic protocols, intrusion detection systems, robust access control methods, and lightweight cryptographic protocols. By reviewing the current state of affairs and looking ahead to future developments, this paper aims to provide academics and practitioners with the knowledge they need to enhance the security of the Internet of Things (IoT) and make it possible to safely implement IoT technologies in many different industries.
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Umar, Nuraeni, Sahbuddin A. K., Lidemar Halide, Maudy Imayanthi Rusjdi, and Ismah Afifah Ijsam. "SENSOR MQ-2 DETEKSI ASAP ROKOK BERBASIS INTERNET OF THINGS." Jurnal Teknologi Elekterika 20, no. 2 (2023): 119. http://dx.doi.org/10.31963/elekterika.v20i2.4637.

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Cigarette smoke contains toxic chemicals such as carbon monoxide (CO), nicotine and tar. The dangerous/poisonous ingredients in cigarettes cause health problems for those who smoke (active smokers) or those who don't smoke (passive smokers). To avoid the accumulation of cigarette smoke in the room, this research was created and carried out to detect cigarette smoke and reduce the levels of cigarette smoke in the room. Fan. will emit cigarette smoke into the room. The results of the detection of cigarette smoke levels will be sent to Labtop. This system was built using an MQ-2 sensor, ESP8266 microcontroller. The implementation of the cigarette smoke detection system is installed in 3 different rooms/places and is accessed by Internet of Things (IoT) network users. The research results show that every room where this system is installed will send data from cigarette smoke detection results to the lab. The MQ-2 sensor detects cigarette smoke, the data is sent to the internet network via the ESP8266, the data will be displayed on the laptop. From the sample test the tool responded well. This system will activate the fan at certain levels of cigarette smoke to reduce the level of cigarette smoke in the room. When the level is 0 ppm with the Green LED indicator on, the fan is not working or OFF. When the level shows 7 ppm the LED indicator lights up yellow and the fan will turn ON. For the red LED, the cigarette smoke level displayed is 32 ppm with the fan ON. These results prove that the system is functioning properly, detecting and controlling the operation of the fan to remove cigarette smoke from the room and transmit data to the internet network.
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Hamidi, Hodjat, and Maryam Jahanshahifard. "The Role of the Internet of Things in the Improvement and Expansion of Business." Journal of Organizational and End User Computing 30, no. 3 (2018): 24–44. http://dx.doi.org/10.4018/joeuc.2018070102.

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The Internet of Things (IOT) has been examined in several perspectives based on the goals and visions of the present report. First, in this report based on previous studies, the general framework of business models in the Internet of Things has been analyzed, and then the suggested framework is presented. In the following, the business models of the Internet of Things and the impact of Internet of Things on the existing business models are studied. Thus, first of all, recognizing the elements of business models related to the Internet of Things is essential which has been addressed in the report. The results of different studies led to recognition of almost all business models in this field and to stating the most important components of the business models affected by the Internet of Things. The authors are still in the beginning of the process of Internet of Things. Most of the companies are willing to offer and sell the connected products and in near future, the majority of organizations will adopt more complex and ecosystem models. The purpose of this report is to offers social and business ideas to innovators so they can improve business models using the Internet of Things. This report examines the business models and proposed existing frameworks along with the economic energy of Internet of Things according to the successful projects in this scope, and offers the general logic for services or products that can be used as the basis of specific elements and patterns of business models of IOT.
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Genge, Béla, and Călin Enăchescu. "Non-Intrusive Historical Assessment of Internet-Facing Services in the Internet of Things." MACRo 2015 1, no. 1 (2015): 25–36. http://dx.doi.org/10.1515/macro-2015-0003.

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AbstractThe expansion of Internet has led to a variety of directly accessible devices and services. Nowadays, companies tend to increase the number of Internetfacing services in order to ensure higher visibility, and accessibility towards end-users. Nonetheless, this profound expansion towards an “Internet of Things” brings new opportunities to malicious actors. As a result, novel cyber-physical attacks bring new challenges to systems administrators in order to accommodate traditional user requests with security prerequisites. Therefore, in this paper we propose a novel approach for historical Internet connectivity assessment of services. The technique uses the output of the popular Shodan search engine to infer the lifetime of different Internet-facing services. Experimental results conducted on IP address blocks attributed to six different institutions distributed across four sectors (university, telecommunications, banking, and power) show different possible service lifetime patterns.
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42

Nuri Afriani, Eka, Wisnu Djatmiko, and Jusuf Bintoro. "Rancang Bangun Sistem Pengukur Suhu Tubuh Manusia Jarak Jauh Berbasis Internet Of Things (IOT)." JURNAL PENDIDIKAN VOKASIONAL TEKNIK ELEKTRONIKA (JVoTE) 5, no. 2 (2022): 65–72. https://doi.org/10.21009/jvote.v5i2.39450.

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The purpose of this researcher is to design a remotely-based body temperature gauge system (IOT) at home to improve the security of the spread of Covid-19. The remote body temperature system based on the Internet of Things (IOT) is late finished and has been tested. Tools are compared with digital thermogun namely Infrared Thermometer SK-T008 with an average error rate in percent (error percentage) of 0.438%. LCD 16x2 displays the results of the body temperature value in the Celsius unit and if the body temperature value is more than 37.5 degrees Celsius Then the Buzzer and red LED will be active. If the body temperature is below 35 degrees Celsius, the blue LED will be active.
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43

Galal, Mariam, Wai Pang Ng, Richard Binns, and Ahmed Abd El Aziz. "Experimental Characterization of RGB LED Transceiver in Low-Complexity LED-to-LED Link." Sensors 20, no. 20 (2020): 5754. http://dx.doi.org/10.3390/s20205754.

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This paper proposes a low-complexity and energy-efficient light emitting diode (LED)-to-LED communication system for Internet of Things (IoT) devices with data rates up to 200 kbps over an error-free transmission distance up to 7 cm. The system is based on off-the-shelf red-green-blue (RGB) LEDs, of which the red sub-LED is employed as photodetector in photovoltaic mode while the green sub-LED is the transmitter. The LED photodetector is characterized in the terms of its noise characteristics and its response to the light intensity. The system performance is then analysed in terms of bandwidth, bit error rate (BER) and the signal to noise ratio (SNR). A matched filter is proposed, which optimises the performance and increases the error-free distance.
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44

Sumarno Wijaya, Ahmad Fatoni Dwi Putra, Yuan Sa'adati, et al. "Internet of Things-Based Automatic Trash Can Prototype Using Arduino Mega 2560." Indonesian Journal of Modern Science and Technology 1, no. 2 (2025): 43–49. https://doi.org/10.64021/ijmst.1.2.43-49.2025.

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The development of Internet of Things (IoT) technology encourages the creation of various smart device innovations that can be applied in everyday life, one of which is an automatic waste management system. This research aims to design and implement an IoT-based automatic trash can prototype using an Arduino Mega 2560 microcontroller that is able to detect the presence of people who will throw away garbage, open and close the lid of the tub automatically, and provide notification if the trash can is full. This research uses an experimental method by combining ultrasonic sensors, servo motors, and LED indicators as the main components. The test results show that the device works well and in accordance with the researcher's expectations. Ultrasonic sensor 1 can detect the presence of objects in front of the trash can and trigger the servo motor to open and close the lid automatically. Ultrasonic sensors 2 and 3 are also able to detect the height of the garbage and activate the servo motor while the indicator LEDs also function as designed: LED 1 blinks when someone approaches to take out the trash, while LED 2 and LED 3 light up when the sensors detect that the trash has reached a certain height limit. In addition, the system is energy efficient as it only activates when an object is detected, making it suitable for households and educational institutions.
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45

Qin, Song, Lu Qu, Dong Wei, Bao Cai Zhang, and Nan Wan Qiu. "Research and Practice of New Gas Sensors Based Materials on Internet of Things." Advanced Materials Research 301-303 (July 2011): 497–502. http://dx.doi.org/10.4028/www.scientific.net/amr.301-303.497.

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The development of Internet of Things has led to a sharp rise in demand for sensors. Users require that sensors can collect information from the Internet of Things in a timely and accurate way. In response to the present situation that there are only a few varieties of gas components-based materials in the application of Internet of Things. According to the new viewpoint that energy gap Eg&gt; 2ev materials are likely to be used to develop thin film gas sensors, we have succeeded in preparing quality thin film gas sensors Fe2O3/2%CeO2and TiO2/2%CeO2by using the method of powder sputtering. Based on the concept of metal oxide Eg chemical bonds, we have successfully prepared ZnSnO3and other composite gas sensor-based materials. All these are significant in guiding the development of new gas sensor-based materials for Internet of Things sensors. This paper focuses on what we have done and how we have down in new gas sensors based materials research and practice of Internet of Things
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46

Roffi, Teuku Muhammad, and Charisma Aulia Jamhari. "Internet of things based automated monitoring for indoor aeroponic system." International Journal of Electrical and Computer Engineering (IJECE) 13, no. 1 (2023): 270. http://dx.doi.org/10.11591/ijece.v13i1.pp270-277.

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On the ever-rising urgency of global food security, efforts are required to develop a robust farming technique. This includes the capability of farming in non-agricultural land or indoor spaces. Farming in the air medium, i.e., aeroponic, has persistently stepped in as a viable solution. Aeroponic farming allows efficient water usage while preventing soil related diseases and pests. With the assistance of light emitting diodes (LEDs) and precise electronic monitoring and control, aeroponic may become the suitable farming technique of the future. This work presents an aeroponic system capable of automated monitoring and control of farming parameters. The system achieved both robustness in indoor farming and remote access by employing LED as an artificial lighting system and the internet-of-things (IoT) connectivity, respectively. The test result demonstrated that the system successfully maintained the root chamber temperature below 30 °C with a typical average temperature of 28.8 °C. The system managed a humidity level which prevented plants from drying out. It was also evident that the LED assistance significantly improved the growth quality of &lt;em&gt;Ipomea reptans&lt;/em&gt;. The system, data, and analysis presented in this work is expected to facilitate further development of a robust food production system in overcoming the global food crisis.
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Teuku, Muhammad Roffi, and Aulia Jamhari Charisma. "Internet of things based automated monitoring for indoor aeroponic system." International Journal of Electrical and Computer Engineering (IJECE) 13, no. 1 (2023): 270–77. https://doi.org/10.11591/ijece.v13i1.pp270-277.

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On the ever-rising urgency of global food security, efforts are required to develop a robust farming technique. This includes the capability of farming in non-agricultural land or indoor spaces. Farming in the air medium, i.e., aeroponic, has persistently stepped in as a viable solution. Aeroponic farming allows efficient water usage while preventing soil related diseases and pests. With the assistance of light emitting diodes (LEDs) and precise electronic monitoring and control, aeroponic may become the suitable farming technique of the future. This work presents an aeroponic system capable of automated monitoring and control of farming parameters. The system achieved both robustness in indoor farming and remote access by employing LED as an artificial lighting system and the internet-of-things (IoT) connectivity, respectively. The test result demonstrated that the system successfully maintained the root chamber temperature below 30 &deg;C with a typical average temperature of 28.8 &deg;C. The system managed a humidity level which prevented plants from drying out. It was also evident that the LED assistance significantly improved the growth quality of Ipomea reptans. The system, data, and analysis presented in this work is expected to facilitate further development of a robust food production system in overcoming the global food crisis.
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48

Goel, Dr Amit Kumar, Anmol Kushwaha, Vartika Srivastava, et al. "Detecting Vehicles at Hair Pin Curves using Internet of Things (IOT)." International Journal of Electrical and Electronics Research 10, no. 4 (2022): 895–98. http://dx.doi.org/10.37391/ijeer.100424.

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With increase in the number of vehicles especially personal vehicles there is an increase in accidents due to which, every year almost 1.30 million people die due to accidents involving vehicles. There is no effective way to prevent accidents and know the location where the accidents happen to get help easily, especially in hilly areas. In Hilly areas, there are no straight roads for vehicles and sometimes we encounter so many curves, some of which are dangerous that we have no idea if there are any other vehicles coming or not if not maneuvered properly can cause an accident. Our proposed system uses a microcontroller named raspberry pi and different IOT sensors like ultrasonic sensors and devices like LED and LCD which is an effective, and cost- effective solution to prevent the accidents at hair pin curves.
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Atiqur, Rahman. "Radio frequency identification based smart parking system using Internet of Things." IAES International Journal of Robotics and Automation (IJRA) 10, no. 1 (2021): 41. http://dx.doi.org/10.11591/ijra.v10i1.pp41-50.

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&lt;span&gt;The ideas of shrewd urban communities have consistently been a fantasy. There have been headways produced using the recent years to make a shrewd city dream to reality with the advancement of innovation, smart gadgets are getting increasingly normal in regular daily existence. In this paper a radio frequency identification (RFID) based smart parking system using Internet of Things (IoT) innovation is actualized. The ultrasonic sensors are set before the parking spots and speaker is utilized for sign. On the off chance that the parking space is vacant, at that point light emitting diode (LED) will squint and the parking opening is full LED will be OFF. At the point when vehicle is left the RFID will peruse the data and cut the particular sum and by utilizing IoT location will be sent through short message service (SMS) to proprietor using global system for mobile communications (GSM) and global positioning system (GPS) advancements.&lt;/span&gt;
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50

Rahman, Atiqur. "Radio frequency identification based smart parking system using Internet of Things." IAES International Journal of Robotics and Automation (IJRA) 10, no. 1 (2021): 41–50. https://doi.org/10.11591/ijra.v10i1.pp41-50.

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The ideas of shrewd urban communities have consistently been a fantasy. There have been headways produced using the recent years to make a shrewd city dream to reality with the advancement of innovation, smart gadgets are getting increasingly normal in regular daily existence. In this paper a radio frequency identification (RFID) based smart parking system using Internet of Things (IoT) innovation is actualized. The ultrasonic sensors are set before the parking spots and speaker is utilized for sign. On the off chance that the parking space is vacant, at that point light emitting diode (LED) will squint and the parking opening is full LED will be OFF. At the point when vehicle is left the RFID will peruse the data and cut the particular sum and by utilizing IoT location will be sent through short message service (SMS) to proprietor using global system for mobile communications (GSM) and global positioning system (GPS) advancements.
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