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1

Madhurima, Santra. "Smart Wireless water level Monitoring & Pump controlling System." International Journal of Advances In Scientific Research and Engineering (IJASRE) 3, no. 4 (2017): 186–96. https://doi.org/10.5281/zenodo.583852.

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<em>In this </em><em>Smart Wireless water level Monitoring &amp; Pump controlling System,</em><em>We are going to measure the water level by using ultrasonic sensors. Basic principal </em><em>of ultrasonic distance measurement </em><em>is based on ECHO. When sound waves are transmitted in environment then they return back to the origin as ECHO after striking on any obstacle. So we have to only calculate its traveling time of both sounds means outgoing time and returning time to origin after striking on any obstacle. And after some calculation we can get a result that is the distance. This conc
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2

Ghadigaonkar, Rajas, Vedant Barai, and Prof Amit Kukreja. "Smart Automated Irrigation System using Wireless Technology." International Journal for Research in Applied Science and Engineering Technology 12, no. 4 (2024): 4629–34. http://dx.doi.org/10.22214/ijraset.2024.61033.

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Abstract: The need for agricultural output has surged due to the exponential rise of the world population, resulting in a strain on water supplies and a need for more effective irrigation systems. The goal of this project is to optimize water utilization in agricultural settings by presenting an automated and intelligent irrigation system. Based on current soil moisture levels, the system monitors and regulates irrigation using soil moisture sensors, an Arduino Nano, and a Raspberry Pi 3B+. By converting analog signals from the soil moisture sensor into digital data, the Arduino Nano serves as
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3

Ghumatkar, Rutuja S., Megha K. Hulbatte, Mohini M. Gaikwad, and Mrs R. B. Gurav. "IoT Based Temperature and Soil Monitoring System with Motor Pump Control." International Journal for Research in Applied Science and Engineering Technology 10, no. 4 (2022): 1165–68. http://dx.doi.org/10.22214/ijraset.2022.41352.

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Abstract: To serve the humanity nowadays technology is playing an exquisite role and a man’s basic and first need is food indeed. It will be said that about over 85% of individuals of India are directly, indirectly relied on agriculture. Proper irrigation by pump can not be maintained because of frequent power outages, unavailability of grid lines in remote areas and scarcity/cost of fuel to run pumps. to create the sustainable irrigation system and field monitoring system for convalescing crops growth also as best production, this IOT based Automatic irrigation system is proposed. during this
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4

Bhange, Priti, Dolly Gulhane, Payal Chavhan, et al. "Implementation of Solar Powered Autonomous Fire Fighting Robot." Journal of Optical Communication Electronics 9, no. 1 (2023): 29–36. http://dx.doi.org/10.46610/jooce.2023.v09i01.005.

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The creation of a remote-controlled fire robot is the primary objective of this project. The water tank and wireless pump on this robot both spray water. A Peripheral Interface Controller (PIC) microcontroller performs the functionality offered. The transmitter button sends instructions to the receiver, telling it to move the robot in front, back, left, and right. To run the DC motor through the motor controller Integrated Circuit (IC) for the necessary duty, the decoder decodes the data before sending it to another microcontroller. The remote control has a decent range of up to 100 metres wit
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Sani, Muhammad Ikhsan, Simon Siregar, Aris Pujud Kurniawan, and M. Abid Irwan. "FIToplankton: Wireless Controlled Remotely-operated Underwater Vehicle (ROV) for Shallow Water Exploratio." International Journal of Electrical and Computer Engineering (IJECE) 8, no. 5 (2018): 3325. http://dx.doi.org/10.11591/ijece.v8i5.pp3325-3332.

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Remotely Operated Vehicle (ROV) for underwater exploration is typically controlled using umbilical cable connected to ground control station. Unfortunately, while it’s used for power distribution and data transmission, it also obstruct the movement of ROV especially for shallow water (&amp;lt;50 cm). This paper proposed an alternative method for controlling ROV using wireless remote control system. This work also aims to explore the possibility of using RF wireless technology between 420-450 MHz as underwater communication system. Furthermore, the control system was used to manage actuators i.
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Muhammad, Ikhsan Sani, Siregar Simon, Pujud Kurniawan Aris, and Abid Irwan M. "FIToplankton: Wireless Controlled Remotely-operated Underwater Vehicle (ROV) for Shallow Water Exploration." International Journal of Electrical and Computer Engineering (IJECE) 8, no. 5 (2018): 3325–32. https://doi.org/10.11591/ijece.v8i5.pp3325-3332.

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Remotely Operated Vehicle (ROV) for underwater exploration is typically controlled using umbilical cable connected to ground control station. Unfortunately, while it&rsquo;s used for power distribution and data transmission, it also obstruct the movement of ROV especially for shallow water (&lt;50 cm). This paper proposed an alternative method for controlling ROV using wireless remote control system. This work also aims to explore the possibility of using RF wireless technology between 420-450 MHz as underwater communication system. Furthermore, the control system was used to manage actuators
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7

N. Mohana Priya. "IoT and Machine Learning based Precision Agriculture through the Integration of Wireless Sensor Networks." Journal of Electrical Systems 20, no. 4s (2024): 2292–99. http://dx.doi.org/10.52783/jes.2399.

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In this study, the integration of IoT technology and machine learning (ML) algorithms with precision agriculture are studied, with an emphasis on optimizing irrigation management through wireless sensor networks. Data are collected in real time from various sensors that measure temperature, humidity, moisture in the soil and water levels. Such data is used to predict the demands for water and control pump operations based on them. They employed different machine learning (ML) models, including Support Vector Machine (SVM), Decision Trees (DT), Random Forest (RF) and Naive Bayes (NB). The accur
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Muhamad Akhsan Firmansyah, Nanang, Fayiszah Khoirunisa Anwar, Alviola Alamsyah, and Ayu Jati Puspitasari. "Precision farming for coffee: Real-Time monitoring and control systems." Journal of Physics: Conference Series 2945, no. 1 (2025): 012035. https://doi.org/10.1088/1742-6596/2945/1/012035.

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Abstract Coffee is one of vital Indonesia’s commodity. Greenhouse coffee growing ensures consistent production through controlled conditions like temperature, humidity, and soil moisture. Wireless Sensor Networks and IoT-based systems in smart greenhouses enable real-time plant monitoring, remote management, and automatic control, crucial for efficiency. In this study, the sensors used include DHT22 for air temperature and humidity, YL-69 for soil humidity, and BH1750 for light intensity. The ESP32 is connected to a local internet network, transmitting data to a database. Hardware collects dat
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9

Ihsan, A. Taha, and M. Marhoon Hamzah. "Implementation of Controlled Robot for Fire Detection and Extinguish to Closed Areas Based on Arduino." TELKOMNIKA Telecommunication, Computing, Electronics and Control 16, no. 2 (2018): 654–64. https://doi.org/10.12928/TELKOMNIKA.v16i2.8197.

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The wireless control systems are taking a special importance in the recent years, where the wireless control system provide several advantages; including the disposal of the using wire and periodic maintenance of data transmission wires, in the science of robot wireless control unit is the main part of the fire treatment and extinguish robot system. The lives of firefighters exposed to the risk of death and Rima, therefore the use of remote control systems more secure is necessary. In this, paper a fire-extinguish robot used for extinguishing the fire in general and in treatment fires in the c
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10

Muhammad Razif, Muhammad Rusydi, Preetharan Ravindran, Ili Najaa Aimi Mohd Nordin, and Nor Saradatul Akmar Zulkifli. "Automatic Irrigation System using Wireless Control." ELEKTRIKA- Journal of Electrical Engineering 18, no. 3-2 (2019): 42–46. http://dx.doi.org/10.11113/elektrika.v18n3-2.199.

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Traditional methods of irrigation and fertilizing is very time consuming for farmers. Over-irrigation as well as leaching of fertilizers below the root zone, erosion, and transport of soil and chemical particles to the drainage ditches can increase energy and water consumption in farming. A single systems combining irrigation and fertilizing will greatly reduce the cost and time needed in farming. There are two types of fertilizers available for home gardener – granular and water-soluble fertilizers. Generally, granular fertilizers release nutrient gradually but can last longer than water-solu
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Azhari, Dervin Simanjuntak, Lukman Hakim, and Sabar. "Design and control system of temperature and water level in hydroponic plants." Journal of Physics: Conference Series 2193, no. 1 (2022): 012018. http://dx.doi.org/10.1088/1742-6596/2193/1/012018.

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Abstract Agricultural cultivation technology with a hydroponic system is expected to be an alternative for people who have limited land or yards. However, manual control cannot be done at any time due to business and other work, so a controller is needed to monitor and control the temperature and water level in hydroponic plants to avoid the death of plant. The purpose of this research is to create a temperature and water level control system for hydroponic plants. The control process uses a NodeMCU esp8266 microcontroller. The process of data communication carried out by hardware and software
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Sudarmaji, Arief, Budi Gunawan, Fajar Nugraha, Nindya Arini, and Sri Mulyani. "Smart Soil Moisture Control Based on IoT ESP-32 for Horticulture Cultivation in Coastal Area." BIO Web of Conferences 96 (2024): 04001. http://dx.doi.org/10.1051/bioconf/20249604001.

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Optimal and effective use of water in coastal areas is an essential aspect of plant growth in horticulture and the maintenance of water availability. It is necessary to monitor soil moisture continuously as the basis for watering time. However, it is hard for farmers to be in the field frequently to monitor the land humidity, even using an instrument to measure it at the site. It is needed a monitoring technique that can control the land humidity remotely. This paper presents a design of wireless soil moisture measurement based on the Internet of Things. We applied capacitive soil moisture sen
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13

She, Yu, Jun Yang, and Gang Ya. "Design of Monitoring and Controlling System for Aquaculture Based on Wireless-Embedded Technology." Applied Mechanics and Materials 278-280 (January 2013): 719–22. http://dx.doi.org/10.4028/www.scientific.net/amm.278-280.719.

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A parameter monitoring and control system is designed in this paper. Hardware is composed of the on-site data acquisition model and remotely display and operating model, which communicated through wireless technology. It monitors the aquaculture parameters (including temperature, PH and dissolved oxygen (DO) concentration) on-line, and water pump or air blower are controlled depended on the value of the parameters. Software is designed respectively for each model, temperature compensation is used in the control system. Experiments show that monitoring and control system for aquaculture had exc
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14

Gong, He, He Long Yu, Gui Fen Chen, and Zhu Wen. "Design of Measurement and Control System of Facilities Vegetables Based on Internet of Things." Applied Mechanics and Materials 263-266 (December 2012): 2824–28. http://dx.doi.org/10.4028/www.scientific.net/amm.263-266.2824.

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According to the construction situation of intelligent greenhouse in Agriculture Internet of Things in China, designed a measurement and control system of facilities vegetables based on Internet of Things. This design used JN5148 module as the core and applied JenNet stack to set up a wireless network. The environment factors, including temperature and humidity, light intensity, CO2 concentration and so on can be monitored in real-time, at the same time, shutter and water pump were also remote controlled through the GPRS gateway. The test result shows that this system operates stable, measures
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15

Iyer, Dr Rajiv, Vinayak Kamble, Mayur Bhagat, Chandradhar Upadhyay, and Dhaval Therattil. "FIRE FIGHTING ROBOT." International Journal of Engineering Applied Sciences and Technology 7, no. 11 (2023): 114–16. http://dx.doi.org/10.33564/ijeast.2023.v07i11.020.

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— The Project is designed to develop a Low-Cost firefighting Robot using Bluetooth technology for remote operation. Bluetooth HC-05 module is used for this purpose. The robotic vehicle is loaded with water tanker and a pump which is controlled over wireless communication to sprinkle water. At the transmitting end using push Bluetooth app, commands are sent to the receiver to control the movement of the robot either to move forward, backward and left or right etc. At the receiving end four motors are interfaced to the micro controller where two of them are used for the movement of the vehicle.
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16

Rahman Al Nahian, Mohammad Shamiur, Arnab Piush Biswas, J. C. Tsou, and Hamidur Rahman. "IOT BASED SOIL MONITORING AND AUTOMATIC IRRIGATION SYSTEM IN THE RURAL AREA OF BANGLADESH." Acta Mechatronica 6, no. 3 (2021): 29–40. http://dx.doi.org/10.22306/am.v6i3.71.

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To serve the humanity nowadays technology is playing a wonderful role and a man’s basic and primary need is food indeed. It can be said that about more than 85% of people of Bangladesh are directly, indirectly depended on agriculture. Proper irrigation by water pump cannot be maintained due to frequent power outages, unavailability of grid lines in remote areas and scarcity/cost of fuel to run pumps. To make the sustainable irrigation system and field monitoring system for getting better crops growth as well as best production, this IOT based Automatic irrigation system is proposed. In this sy
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17

Orhpomma, Sounith. "Smart Farm Control System Using IoT." Souphanouvong University Journal Multidisciplinary Research and Development 9, no. 1 (2024): 374–85. http://dx.doi.org/10.69692/sujmrd0901373.

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This paper presents a way to do smart agriculture by using the advances in technology and information today, especially the Internet of Things (IoT) to help control the environment to change according to the needs of plants automatically. Which this research used the method of making a closed house or Greenhouse size 6m x 9m x 4m in number of 2 houses and using various types of sensor equipment. To detect parameters that affect the environment such as: Temperature sensor, Humidity sensor, Soil moisture sensor, pH sensor and Light sensor. To bring those values ​​forward to the microcontroller t
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18

K. C. Jayasankar, G. Anandhakumar, and A. Kalaimurugan. "Fuzzy Logic Controller-based Intelligent Irrigation System Using Solar Radiation Data." Journal of Environmental Nanotechnology 13, no. 2 (2024): 37–45. http://dx.doi.org/10.13074/jent.2024.06.242586.

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Solar radiation is a critical factor influencing agricultural productivity and water resource management. Irrigation systems play a pivotal role in maintaining crop health and yield, and optimizing their operation requires accurate solar radiation data. This abstract explores the significance of solar radiation data in enhancing the efficiency of irrigation systems. Irrigating agricultural fields using an intelligent information system plays a crucial role. This study introduces an irrigation control system employing closed-loop control to use the available water resources efficiently. Continu
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Puneet, Kalsi*1 Harpreet Singh2 &. Gurdas Singh3. "AUTOMATIC WATER LEVEL CONTROLLER BASED ON RADIO FREQUENCY FOR RESIDENTIAL APPLICATIONS." GLOBAL JOURNAL OF ENGINEERING SCIENCE AND RESEARCHES 7, no. 4 (2020): 59–66. https://doi.org/10.5281/zenodo.3776811.

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Water and energy are the two-essential explanation of worry in this day and age. With the increase in population, the demand of both energy and water are expanding. To lessen the wastage of these two fundamental assets and to spare time on automated water pump has been structured, including modest electronic devices like RF module, relay, sensor etc. In this paper we have discussed about design and implementation of water level control system which is wireless, automatic, cost effective and reliable. This is used keep on observing the tank water level to switch off the motor once it is switche
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Bima Purmasheka, Antonius Edy Kristiono, and Akhmad Kasan Gupron. "Rancang Bangun Sistem Monitoring dan Kontrol Otomatis Water Level pada Tangki Cascade di Mv Prima Andalan 1." Jurnal Teknik Mesin, Industri, Elektro dan Informatika 3, no. 3 (2024): 119–39. http://dx.doi.org/10.55606/jtmei.v3i3.4164.

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From this research, monitoring can be carried out using the XH-M203 water level which can run a wireless sensor to measure the water in the tank and then the results of these measurements will give a command to the pump to fill the tank. This tool is made to automatically control the height and automatically fill the tank. The design of this tool is based on the fact that some ships still use a manual system in the form of a float gauge to monitor water levels, so by designing this tool the monitoring and control process will be easier. System testing shows that the system is able to control w
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Ghosh, Chandril. "Application of Internet of Things for Smart Gardening System." International Journal for Research in Applied Science and Engineering Technology 13, no. 6 (2025): 1819–24. https://doi.org/10.22214/ijraset.2025.72531.

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In this paper we have presented an IOT based Smart Gardening system to control the moisture of soil. This technique actually measure the moisture of soil and if the moister level is below the user defined threshold value then the motor starts automatically and power on the water pump. If it reaches or crosses the threshold value it stops the motor. This is done with wireless moisture sensors that communicate with the smart gardening controls and also give the information about the water requirement for gardening. It uses ARDUINO-Mini as the microcontroller which is the core part of the system.
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Sharma, Brij Bhushan, and Nagesh Kumar. "IoT-Based Intelligent Irrigation System for Paddy Crop Using an Internet-Controlled Water Pump." International Journal of Agricultural and Environmental Information Systems 12, no. 1 (2021): 21–36. http://dx.doi.org/10.4018/ijaeis.20210101.oa2.

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IoT is a communal association of things or equipment that can interact with each other with the help of an internet connection. IoT services play an imperative responsibility in the industry of agriculture, which can feed 10 billion people worldwide by 2050. Irrigation systems are a backbone of agriculture that help to reduce wastage of water and decide the effective usage of water according to the specific crop and thereby increase the crop yield. In this paper, an irrigation system is developed to supervise the paddy crop field using sensors (soil moisture sensor, pH sensor, and flow sensor)
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Khan, Md Shahnuaz, Juwel Das, Md Ismail Haque, Md Eftekhar Alam, and Md Lokman Hossain. "Design and Implementation of a Homemade Remote Control and Obstacles Avoidable Fire Extinguisher Robot." International Journal of Research and Scientific Innovation X, no. X (2023): 255–63. http://dx.doi.org/10.51244/ijrsi.2023.101025.

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The aim of this project is to develop a fire extinguisher robot and its operation is controlled by using IR remote. This robot is loaded with the tanker and a pump and sprinkles water to fire. It is a micro controller based robot. The robot can automatically sense and overcome obstacles on its path. It has the ability to detect any flame. At the transmitting end using push buttons, commands are sent to the receiver to control the movement of the robot. We can use this robot to fight against fire and to minimize the losses. The robot is used to fight the fire where the humans cannot enter. This
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Villaruz, Earl Joseph S., Joelyn P. Ladroma, Jahnna Mae R. Eyana, Benjamin Mahinay, and Iris Mae C. Mendoza. "Automated Plant Irrigation System and Monitoring System." International Journal of Agriculture and Animal Production, no. 22 (March 30, 2022): 23–29. http://dx.doi.org/10.55529/ijaap.22.23.29.

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The objective of project is hinged on two essential features (the time and the amount of water pressure). The automated plant irrigation and monitoring system was created efficiently get things done for farmers. This capstone project used an Arduino Board. The features of the system are based on identified needs of Ladroma's Farmland, situated in Banagbanag, Montevista, and Davao De Oro. The system was configured to measure the following (temperature, humidity, water level, soil moisture and control the flow of water) either manually or automatically. Moreover, it can also sense soil moisture
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O. Amora, Epifelward Niño, Kennery V. Romero, and Rennan C. Amoguis. "Aquatech: A Smart Fish Farming Automation and Monitoring App." International Multidisciplinary Research Journal 2, no. 4 (2020): 131–38. http://dx.doi.org/10.54476/iimrj322.

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This study is sought to address the problem of the ‘manual’ monitoring system which renders “low” accuracy on monitoring the water value. The existing practice of manual testing uses a refractometer to check the salinity level device and pond thermometers for testing the water temperature of fish farm water environment. It needs extra effort and more workers to regularly monitor such as: opening and closing the gate valve to control the level of fresh and saltwater needed to become accurate ‘brackish’ water. On the contrary, this research wants to establish an IOT-Based project to attempt solv
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Pauzi, Gurum Ahmad, Okta Ferli Suryadi, Gregorius Nugroho Susanto, and Junaidi Junaidi. "Rancang Bangun Sistem Monitoring Kualitas Air Tambak Udang (Litopenaeus Vannamei) Menggunakan Wireless Sensor Sistem (WSS) yang Terintegrasi dengan PLC CPM1A." Journal of Energy, Material, and Instrumentation Technology 1, no. 3 (2020): 103–12. http://dx.doi.org/10.23960/jemit.v1i3.34.

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The research about pH, salinity, dissolved oxygen, and temperature monitoring system using Arduino Uno integrated with PLC CPM1A for water quality control of shrimp farm litopenaeus vannamei had done. The system used pH meter kit Dfrobot sensor, salinity sensor, DS18B20 waterproof sensor, and analog dissolved oxygen sensor which was controlled by Arduino UNO. In order to calibrate the sensor, pH meter kit Dfrobot sensor was calibrated by using a buffer solution, salinity sensor was calibrated by refractometer, DS18B20 waterproof sensor was calibrated by HTC-02 thermometer, and an analog dissol
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Kanimozhi A and R. Vadivel. "Optimized water management for precision agriculture using IoT-based smart irrigation system." World Journal of Advanced Research and Reviews 21, no. 3 (2024): 802–11. http://dx.doi.org/10.30574/wjarr.2024.21.3.0682.

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This project introduces a Smart Irrigation System aimed at enhancing water efficiency in agriculture through the integration of an Arduino Uno micro-controller and a variety of sensors. The system incorporates a soil moisture sensor, a DHT11 sensor for monitoring temperature and humidity, an LCD, a buzzer for alerts, and a relay module to control a pump motor. The main goal is to create an automated irrigation system that adjusts to environmental conditions, thereby optimizing water usage for plant growth. The soil moisture sensor continuously evaluates soil moisture levels, while the DHT11 se
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Kanimozhi, A., and Vadivel R. "Optimized water management for precision agriculture using IoT-based smart irrigation system." World Journal of Advanced Research and Reviews 21, no. 3 (2024): 802–11. https://doi.org/10.5281/zenodo.14060613.

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This project introduces a Smart Irrigation System aimed at enhancing water efficiency in agriculture through the integration of an Arduino Uno micro-controller and a variety of sensors. The system incorporates a soil moisture sensor, a DHT11 sensor for monitoring temperature and humidity, an LCD, a buzzer for alerts, and a relay module to control a pump motor. The main goal is to create an automated irrigation system that adjusts to environmental conditions, thereby optimizing water usage for plant growth. The soil moisture sensor continuously evaluates soil moisture levels, while the DHT11 se
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Windarsyah, Rudy Ansari, Ihdalhubbi Maulida, Ayu Ahadi Ningrum, and Muhammad Alfiyani. "MONITORING WATER QUALITY IN VEGETABLE HYDROPONICS USING ARDUINO MICROCONTROLLER." Jurnal Teknologi Informasi Universitas Lambung Mangkurat (JTIULM) 7, no. 1 (2022): 69–80. http://dx.doi.org/10.20527/jtiulm.v7i1.124.

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pH stands for the power of Hydrogen, which is an important factor in hydroponic systems. The hydrogen ion concentration determines the value of the acidity in the solution. If the pH value of the solution is below 7.0, then it is called acidic, and if the pH value is above 7.0, it is called alkaline. The pH value can change, so it is necessary to pay attention to the acidity of the water so that the roots absorb nutrients properly that farmers often find it difficult to take measurements. Mustard plants have a pH range of 5.5 – 6.5. Based on the pH range, it is necessary to have a tool to moni
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R, Kathiresan, Janani M, Naveen K M, Narashimabalaji E, and Rasiga R. "Solar Energy Based Smart Irrigation System using IoT." Journal of ISMAC 5, no. 2 (2023): 83–99. http://dx.doi.org/10.36548/jismac.2023.2.001.

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This paper proposes a solar-based smart irrigation system that utilizes Internet of Things (IoT) technology to automate irrigation in agriculture. Traditional irrigation systems can lead to over-watering or under-watering of crops, which can result in reduced crop yield and wastage of water resources. Additionally, they often require significant energy costs to operate and can waste significant amounts of water through evaporation, runoff, and inefficient distribution. These systems also offer limited monitoring and control capabilities, requiring farmers to physically inspect their fields to
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Reddy, V. Sreelatha, S. Harivardhagini, and G. Sreelakshmi. "IoT and Cloud Based Sustainable Smart Irrigation System." E3S Web of Conferences 472 (2024): 01026. http://dx.doi.org/10.1051/e3sconf/202447201026.

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This paper addresses the concerns in irrigation mechanisms and employs a Sensors and cloud-based platform to monitor and control an irrigation system. In order to monitor the soil’s moisture level in real time, moisture sensors are placed in the field. These sensors wirelessly provide data to the NodeMCU, which processes and relays the information. The NodeMCU gathers the sensor data and processes it, considering standard deviations and crop-specific parameters. Using this information, the system starts the water pump and opens the solenoid valves to begin the irrigation operation. The NodeMCU
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32

Ahamed, S. A. Althaf, R. Makendran, and P. Sinduri. "Agriculture Based Mobile Applications by Using Automated Irrigation Sensor." International Journal for Research in Applied Science and Engineering Technology 11, no. 9 (2023): 1274–77. http://dx.doi.org/10.22214/ijraset.2023.55819.

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Abstract: Wireless sensor networks (WSNs) are one of the most rapidly developing information technologies and promise to have a variety of applications in Next Generation Networks (NGNs). The major goal of this technical paper is to give recent advances and state-of art results covering both fundamental principles and use cases of WSNs in NGNs. This technical paper presents design techniques and guidelines, overview of existing and emerging standards for the subject area, modeling principles for WSNs. The mobile App wakes-up the smartphone, activating the device with user-defined parameters. T
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Chen, Shih-Lun, He-Sheng Chou, Chun-Hsiang Huang, et al. "An Intelligent Water Monitoring IoT System for Ecological Environment and Smart Cities." Sensors 23, no. 20 (2023): 8540. http://dx.doi.org/10.3390/s23208540.

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Global precipitation is becoming increasingly intense due to the extreme climate. Therefore, creating new technology to manage water resources is crucial. To create a sustainable urban and ecological environment, a water level and water quality control system implementing artificial intelligence is presented in this research. The proposed smart monitoring system consists of four sensors (two different liquid level sensors, a turbidity and pH sensor, and a water oxygen sensor), a control module (an MCU, a motor, a pump, and a drain), and a power and communication system (a solar panel, a batter
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D, Sharon. "IOT Based Integrated Environmental Monitoring System." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 02 (2025): 1–9. https://doi.org/10.55041/ijsrem41315.

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A weather monitoring system is a robust and cost-effective solution designed to monitor and record real-time environmental parameters using Arduino as the central controller. This system integrates various sensors, such as a DHT11 for temperature and humidity, an LDR for light intensity, and a soil moisture sensor, to gather precise data about environmental conditions. The data is processed by the Arduino and displayed locally on an LCD screen, ensuring ease of access for users. The system provides a versatile platform for monitoring key weather parameters in applications such as agriculture,
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L, Dhanush. "IOT Based Integrated Environmental Monitoring System." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 02 (2025): 1–9. https://doi.org/10.55041/ijsrem41333.

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A weather monitoring system is a robust and cost-effective solution designed to monitor and record real-time environmental parameters using Arduino as the central controller. This system integrates various sensors, such as a DHT11 for temperature and humidity, an LDR for light intensity, and a soil moisture sensor, to gather precise data about environmental conditions. The data is processed by the Arduino and displayed locally on an LCD screen, ensuring ease of access for users. The system provides a versatile platform for monitoring key weather parameters in applications such as agriculture,
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Maiskar, Sweety. "Controlling of agriculture motor with water level using GSM and Arduino Nano." International Journal for Research in Applied Science and Engineering Technology 10, no. 6 (2022): 3065–67. http://dx.doi.org/10.22214/ijraset.2022.44580.

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Abstract: This paper is aimed to design a Controlling field Motor using wireless technology GSM. In India agricultural field play a crucial role in economic development. That is the way to concentrate on that point. Farmers facing a variety of problems. Electric power supply not available in 24 hours. The farm aloof from his house, hence to on and off the motor automatically using our project, is about making this system efficient and dynamic. This automatic control is for controlling the motor from a far off place, look over its operating conditions; get feedback from the motor itself. So her
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Siddiqui, Mushran, Farhana Akther, Gazi M. E. Rahman, Mohammad Mamun Elahi, Raqibul Mostafa, and Khan A. Wahid. "Dimensioning of Wide-Area Alternate Wetting and Drying (AWD) System for IoT-Based Automation." Sensors 21, no. 18 (2021): 6040. http://dx.doi.org/10.3390/s21186040.

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Water, one of the most valuable resources, is underutilized in irrigated rice production. The yield of rice, a staple food across the world, is highly dependent on having proper irrigation systems. Alternate wetting and drying (AWD) is an effective irrigation method mainly used for irrigated rice production. However, unattended, manual, small-scale, and discrete implementations cannot achieve the maximum benefit of AWD. Automation of large-scale (over 1000 acres) implementation of AWD can be carried out using wide-area wireless sensor network (WSN). An automated AWD system requires three diffe
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Ndunagu, Juliana Ngozi, Kingsley Eghonghon Ukhurebor, Moses Akaaza, and Robert Birundu Onyancha. "Development of a Wireless Sensor Network and IoT-based Smart Irrigation System." Applied and Environmental Soil Science 2022 (June 23, 2022): 1–13. http://dx.doi.org/10.1155/2022/7678570.

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This study proposes a smart irrigation system (SIS) using the drip method, which was designed and implemented using wireless sensor networks and an open-source Internet of Things (IoT) cloud computing platform (“Thingspeak.com”) for data collection, storing, data analytics, and visualization. The methodology incorporates the integration of hardware and software components to make irrigation decisions based on web resources like the weather forecast from “weather.com” and sensor values from soil samples. The data collected are then analyzed at the edge server and updated every 15 minutes. Based
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Saifulloh, Muhammad, Banu Santoso, and Dony Ariyus. "Implementation of WSN and IoT to Monitor and Control Villa Electronic Equipment in Blankspot Areas." Journal of Computer Networks, Architecture and High Performance Computing 7, no. 1 (2025): 151–62. https://doi.org/10.47709/cnahpc.v7i1.5165.

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Maintaining a remote villa in a blank spot area presents challenges in ensuring optimal environmental conditions without the direct presence of the owner. This study aims to develop an Internet of Things (IoT)-based Wireless Sensor Network (WSN) system using the XBee S2C module with the Zigbee remote monitoring and control protocol. This system utilizes temperature, humidity, lighting, and water level sensors connected to electronic device controls such as lights, fans, and water pumps. Sensor Nodes are placed in the villa to collect data, while Coordinator Nodes are located in areas with inte
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Sahibu, Supriadi, Surahman, and Andani Ahmad. "Teknologi Irigasi Berbasis IoT: Integrasi Sensor Nirkabel (SN), Energi Surya dan Logika Fuzzy." JURNAL FASILKOM 15, no. 1 (2025): 9–16. https://doi.org/10.37859/jf.v15i1.8899.

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Agriculture is a vital sector in the global economy that faces various challenges, especially in the efficient use of water resources. Irrigation is an important aspect of agriculture, especially in rice fields, because optimal water supply directly affects plant productivity. However, in Pao Village, Malangke District, and North Luwu Regency, water availability is increasingly limited due to climate change, urbanization, and inefficient exploitation of resources. Most farmers in the area do not have irrigation networks so during the dry season their rice fields experience drought and are at r
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Timmaiah, P. Naga, K. Meenendranath Reddy, D. Umendra, S. Sneha Madhuri, and V. Srikanth. "An Implementation of Iot Based Electrical Device Surveillance and Control using Sensor System." Journal of Energy Engineering and Thermodynamics, no. 25 (September 30, 2022): 33–41. http://dx.doi.org/10.55529/jeet.25.33.41.

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IoT (Internet of Things) is expanding its market share and opening up new avenues for innovation with each improvement in Internet speed &amp; Bandwidth. According to data compiled by the Prevention Council while the Environmental Protection Association, the average mortality toll from fire is 10.5% and from petrol is 11%. This research endeavour addresses the issue of electrical appliance safety. IoT-based control system with gas, fire and temperature sensors; lcd(16x2) displays system status and sensor data. In this setup, loads are managed mechanically based on sensor readings. The Internet
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Ali, Methaq Abdulameer, Abbas Miry, and Tariq Salman. "Implementation of Intelligent Industrial Controller Based On Fuzzy Logic and PLC." Al-Qadisiyah Journal for Engineering Sciences 13, no. 1 (2020): 54–59. http://dx.doi.org/10.30772/qjes.v13i1.626.

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&#x0D; &#x0D; &#x0D; &#x0D; The Internet of Things (IoT) makes designing a smart management system is real and easy. The concept of smart management system guarantees a person to monitor, control and manage the system without any waste. Water is a key resource and its management is a major issue. The proposed method is IOT with the fuzzy controller based system for managing tank water level in Rumaila power plant from gas (in southern Iraq). The existing system, designed with two electric motor pumps, supplies a storage tank with untreated water from the river for later use in (reverse Osmosis
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Song, Mi-Hwa. "Internet of Things Sensors and Data Analytics Based Decision Support System for Smart Greenhouse." Journal of Computational and Theoretical Nanoscience 18, no. 5 (2021): 1399–404. http://dx.doi.org/10.1166/jctn.2021.9589.

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A decision support model and system is proposed based on Internet of Things (IoT) sensors and data analytic for smart greenhouse. The smart greenhouse system monitors multiple environmental factors around it, analyzes climatic and soil condition data, and automates the irrigation process. We also create dashboards and applications that can monitor the sensed data and help users make decisions. The proposed system architecture model studies a practical method that can operate in a microprocessor, IoT sensor and wireless network environment to control a greenhouse. The mobile application and ser
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Sumitha C, Dr. "Development of IOT Based Automated Fire Fighting Drone for Wild Fire Detection and Extinguishing." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 05 (2025): 1–9. https://doi.org/10.55041/ijsrem48550.

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Abstract - Wildfires are a growing environmental concern, causing widespread destruction to forests, wildlife, property, and human lives. Traditional firefighting methods often face challenges such as delayed response time, limited accessibility in remote areas, and risk to human safety. This project aims to develop an IoT-based automated drone system capable of detecting and extinguishing wildfires efficiently and autonomously. The proposed system integrates sensors such as temperature, gas (CO, CO₂), and flame detectors to continuously monitor environmental conditions. These sensors are conn
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Aminah, Siti, Tedy Rismawan, Suhardi Suhardi, and Dedi Triyanto. "Sistem Pemantauan dan Kendali Kelembapan Udara Pada Budi Daya Bunga Anggrek Berbasis Internet of Things." JURIKOM (Jurnal Riset Komputer) 9, no. 6 (2022): 2081. http://dx.doi.org/10.30865/jurikom.v9i6.5250.

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Orchid cultivation has been widely carried out by orchid agribusiness in Indonesia, even though there has been a lot of orchid cultivation but there are still obstacles in terms of supplies or maintenance. One of them is water sprinkling and fertilizing the orchid plants which are still done manually. Manual watering is watering done by orchid farmers so it requires a lot of effort and time and the amount of water that is sprinkled is not the same. If the water is poured too much or too little, it can cause rot or dryness of the plant roots so that the plants can die quickly. In the current te
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Dissanayake, H. C., C. S. De Silva, and K. Hapugoda. "Advancement of microcontroller-based fire suppression system for enhanced safety in sugar cane plantations." Journal of Agriculture and Value Addition 6, no. 2 (2023): 112–26. http://dx.doi.org/10.4038/java.v6i2.84.

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The occurrence of accidental fires in sugarcane plantations is a significant cause of pre-harvest loss in the sugar industry, particularly during arid seasons. This paper introduces the conceptualization and implementation of a microcontroller-based prototype system for mitigating accidental fires in sugar cane plantations. The proposed system encompasses two distinct subsystems: the field monitoring and the fire control unit. The Field monitoring system, deployed within the sugarcane field, assumes responsibility for fire detection via smoke detectors, infrared detectors, as well as carbon di
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Dhinakaran, Et al. "IoT-Based Environmental Control System for Fish Farms with Sensor Integration and Machine Learning Decision Support." International Journal on Recent and Innovation Trends in Computing and Communication 11, no. 10 (2023): 203–17. http://dx.doi.org/10.17762/ijritcc.v11i10.8482.

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In response to the burgeoning global demand for seafood and the challenges of managing fish farms, we introduce an innovative IoT-based environmental control system that integrates sensor technology and advanced machine learning decision support. Deploying a network of wireless sensors within the fish farm, we continuously collect real-time data on crucial environmental parameters, including water temperature, pH levels, humidity, and fish behavior. This data undergoes meticulous preprocessing to ensure its reliability, including imputation, outlier detection, feature engineering, and synchron
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Morais, Flávio, Pedro Carvalhaes-Dias, Luís Duarte, Eduardo Costa, Alexandre Ferreira, and José Siqueira Dias. "Fringing Field Capacitive Smart Sensor Based on PCB Technology for Measuring Water Content in Paper Pulp." Journal of Sensors 2020 (March 4, 2020): 1–13. http://dx.doi.org/10.1155/2020/3905804.

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We present a capacitive smart sensor based on printed circuit board (PCB) technology to measure the amount of water content in a paper pulp at the wet end of a paper machine. The developed sensor incorporates in the same PCB the signal processing circuits. It is a handheld portable device, and its output is sent to the reading equipment using a Bluetooth wireless connection, providing to the sensor’s operator ease of mobility around the wet end of a paper machine. The prototype was tested in a laboratory, using a wire mesh to emulate the end of a paper machine, and we were able to measure and
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Lin, Bor-Shyh, Chien-Wei Chen, Shao-Kui Zhou, Yuan-Hsi Tseng, Shih-Chung Wang, and Yao-Kuang Huang. "Evaluation of static ulcer on lower extremities using wireless wearable near-infrared spectroscopy device: Effect of deep venous thrombosis on TRiggered Angiography Non-Contrast-Enhanced sequence magnetic resonance imaging." Phlebology: The Journal of Venous Disease 35, no. 10 (2020): 814–23. http://dx.doi.org/10.1177/0268355520935739.

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Background Venous leg ulcers, or static leg ulcers, are chronic wounds associated with ambulatory venous hypertension of the lower extremities as a consequence of venous valve reflux, reduce venous capacitance, poor calf venous pump, heart failure, or in conjunction with venous obstruction. A static ulcer with venous thrombosis in a pelvic or thigh vein responds favorably to anticoagulation agents. However, anticoagulation is less effective and even harmful when ambulatory venous hypertension has another cause such as venous reflux, poorly heart function, and poor calf venous pump. Method TRig
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Tan, Jing Fang, Shaneel Chandra, and Amie Anastasi. "Development of Electrochemical Sensors for Dissolved Inorganic Nitrogen Detection at Release Sites into the Great Barrier Reef." ECS Meeting Abstracts MA2024-02, no. 64 (2024): 4330. https://doi.org/10.1149/ma2024-02644330mtgabs.

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The accumulation of dissolved inorganic nitrogen (DIN); nitrate, nitrite and ammonium species of anthropogenic origin within water bodies remains a key environmental challenge. It causes detrimental effects to aquatic ecosystems and human health. Regular monitoring of nutrient levels in vulnerable sites is therefore the first crucial step in managing water quality. Sensor technologies that work in real time, on-site, reliably and frequently with immediate data-transfer to end-users are necessary for effective monitoring. One ideal detection system is based on electrochemical sensors. To this e
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