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Journal articles on the topic 'Portable solar-powered street light'

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1

Ndam, Mbah Edmund, Candidus U. Eya, Agomuo Hyginus Chimeremeze, and Osita U. Omeje. "An Improved Solar-Powered Street Light." WSEAS TRANSACTIONS ON ELECTRONICS 16 (July 24, 2025): 125–33. https://doi.org/10.37394/232017.2025.16.12.

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This paper presents an improved solar-powered street light. It consists of a microcontroller, DC-DC power converter, a Light-emitting diode (LED), sensors, and other components coupled together. So, this system charges during the day when the Light-dependent resistor (LDR) attached to the solar panels detects sunlight and begins charging the battery. This voltage is, of course, high and is stepped down using a DC-DC power buck converter, which reduces the voltage to about 15 volts. The bucked-down voltage is used to charge the battery until the battery is full. The light switches ON at night w
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Savitha, A. C., Vighnesh, gowda H. D. Manoj, Sarika R. K. Amisha, Panith Vinay Krishna Y, and D. Vikas. "Vehicle Sensing Street Light Using Solar Energy." Journal of Scholastic Engineering Science and Management (JSESM), A Peer Reviewed Refereed Multidisciplinary Research Journal 3, no. 12 (2024): 17–21. https://doi.org/10.5281/zenodo.14130492.

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o protect the environment and also to save energy, solar street lights are introduced in urban and rural areas. This paper presents the design and implementation of a smart street lighting system powered by solar panels. The proposed system integrates photovoltaic technology to harness solar energy, providing a sustainable and cost-effective solution for urban and rural lighting needs. By incorporating sensors and IoT connectivity, the street-lights can adapt to varying environmental conditions and human activity, optimizing energy usage and enhancing public safety. The system is designed to a
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3

Dr., M. Parameswari, Kowsika A., Priyadharshini M., Priyanka S., and Udhaya Priya M. "DESIGN OF BATTERY SYSTEM FOR SOLAR POWERED STREET LIGHT." International Journal of Advanced Trends in Engineering and Technology (IJATET) 6, no. 1 (2021): 13–16. https://doi.org/10.5281/zenodo.4733016.

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This paper proposes energy efficient of automatic street lighting system based on PIR motion sensor. The main objective is to design energy efficient Smart Street light for energy conservation in existing streetlight. While, the controlling and managing of the system is based on the movement of vehicles and. The system was programmed to automatically turn off during the hours of daylight and only operate during the time when vehicles cross the motion sensor. The system consists of solar panel, battery, PIR sensor, LED light. Many times we see that street lights are remain switched ON even duri
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4

Zang, Li Lin, Shuo Li, and Da Jun Tian. "Energy Saving Analysis of Solar-Powered LED Street Lighting Systems." Advanced Materials Research 490-495 (March 2012): 2254–58. http://dx.doi.org/10.4028/www.scientific.net/amr.490-495.2254.

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The light emitting diode (LED) street lighting systems based on solar photovoltaic technology have been used for some time. In this paper, we present an analysis aiming at assessing the feasibility and economic performance of a solar-powered street lighting system for a 1km road. The present study introduces the architecture of a classical solar-powered LED street lighting system and estimates the total investment cost for a 1 km highway with 2 lanes. The cost comparison of solar-powered LED lighting and sodium lamps using grid was carried out. The calculations show that the energy saving effe
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Agus Setiawan, Sugeng Hadi Susilo, Elka Faizal, and Ratna Monasari. "Training and Installation of Solar Power Public Street Lighting for Karang Taruna at Bareng Village Klojen Malang Districs." International Journal of Community Engagement Payungi 2, no. 1 (2022): 1–6. http://dx.doi.org/10.58879/ijcep.v2i1.15.

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To improve security for residents in the area at ​​Bareng Village Klojen Malang Districts, one of the most important is lighting. The installation of public street lighting is still minimal, so it is far from meeting security and safety standards. In order to ensure the availability of safe and reliable street lighting, training on the assembly of solar-powered street lighting lamps (PJU) was carried out for members of the youth group RT10 RW 08 at Bareng Village Klojen Malang Districs. Prior to the assembly process for street lighting, a brief training was conducted on the assembly of solar-p
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6

Pujotomo, Isworo, and Retno Aita Diantari. "Smart Solar-Powered Street Light Monitoring and Control System." Advanced Science Letters 24, no. 12 (2018): 9675–77. http://dx.doi.org/10.1166/asl.2018.13111.

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7

Gharat, Suyash. "Solar Powered LED Street Lamps with Automatic On/Off System." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 05 (2025): 1–9. https://doi.org/10.55041/ijsrem46790.

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ABSTRACT The suggested solar-powered LED street light system offers a budget-friendly and environmentally friendly option for lighting, as it harnesses renewable solar energy to operate continuously, even in remote locations. It incorporates automatic on/off control using ldrs and microcontrollers, By utilizing solar panels, LEDs, batteries, and smart control, the system provides a flexible and environmentally friendly solution for various lighting needs in different locations and public spaces. Keywords: Solar Energy, LED Street Lighting, Renewable Energy, Light Dependent Resistor (LDR), Moti
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8

Xu, Xiang, Wei Wang, and Ping Ping Fan. "Finite Element Analysis of a Wind-Solar Hybrid Powered Street Light." Applied Mechanics and Materials 365-366 (August 2013): 201–5. http://dx.doi.org/10.4028/www.scientific.net/amm.365-366.201.

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A finite elementmodel of a 9-meter-high wind-solar hybrid powered street light was established;statics analysis, modal analysis and harmonic response analysis were performedusing ANSYS. Static analysis determined the maximum deformation and stress of astreet light under complex load, and checked its intensity and rigidity. Modalanalysis and harmonic response analysis obtained a vibration mode of a streetlight and its natural frequency of every order. The results of analysesprovided references for the optimization of street light structure.
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9

Nalawade, Prof Mukund. "Automatic Street Light Control and Management System Using Solar Energy." International Journal for Research in Applied Science and Engineering Technology 11, no. 11 (2023): 2468–73. http://dx.doi.org/10.22214/ijraset.2023.57042.

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Abstract: Electricity waste is a major issue in today's world. The excessive use of electricity by the street lights is one of the main factors in this situation. This undertaking depends on brilliant checking of the streetlamp which will help in lessening the energy utilization issue. In this section, we will make use of a microcontroller, LDR sensor, and IR sensor and solar powered battery pack to automatically turn on and off the street lights whenever they are needed to save power and extend their lifespan. It is suggested that this arrangement could save up to 50% of the energy that is cu
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10

Nerli, Kiran M. "Smart Solar-Powered Street Lighting with Automated Tracking System Using Arduino." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 02 (2025): 1–9. https://doi.org/10.55041/ijsrem41501.

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The need for more energy-efficient and sustainable urban lighting solutions calls for the development of smart solar-powered street lighting systems. Generally, conventional solar streetlights suffer from low efficiency in energy utilization because the lighting source is of fixed orientation, leading to decreased power generation. The proposed system is a Smart Solar-Powered Street Lighting System with Automated Tracking Mechanism for Arduino, aiming at maximizing solar energy absorption and thus improving energy efficiency.The system uses Light Dependent Resistors (LDRs) for detecting sunlig
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11

Hui, Tan Szi, Chan Jia Huei, Lokman Mohd Fadzil, and Mohamad Khairi Ishak. "Solar Powered LED Street Light with Movement Detection and Intensity Control." International Journal of Electrical and Electronics Engineering 11, no. 9 (2024): 233–39. http://dx.doi.org/10.14445/23488379/ijeee-v11i9p121.

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12

Ryu, Seonho, Jaemyung Ryu, and Hojong Choi. "Fisheye lens design for solar-powered mobile ultrasound devices." Technology and Health Care 30 (February 25, 2022): 243–50. http://dx.doi.org/10.3233/thc-228023.

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BACKGROUND: Compared to benchtop ultrasound machines, mobile ultrasound machines require portable batteries when acquiring information regarding human tissues during outdoor activities. OBJECTIVE: A novel fisheye lens type was designed to address the charging issue where it is difficult to constantly track the sun. This method does not require the use of a mechanical motor that constantly tracks the sun to charge the portable batteries. METHODS: To obtain an optical solar power system, the numerical aperture (NA) and field angle must be increased. Therefore, we use the fisheye lens with the la
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13

Cánovas-Saura, Antonio, Ramón Ruiz, Rodolfo López-Vicente, José Abad, Antonio Urbina, and Javier Padilla. "Portable Photovoltaic-Self-Powered Flexible Electrochromic Windows for Adaptive Envelopes." Electronic Materials 2, no. 2 (2021): 174–85. http://dx.doi.org/10.3390/electronicmat2020014.

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Variable transmission applications for light control or energy saving based on electrochromic materials have been successfully applied in the past in the building, sports, or automotive fields, although lower costs and ease of fabrication, installation, and maintenance are still needed for deeper market integration. In this study, all-printed large area (900 cm2 active area) flexible electrochromic devices were fabricated, and an autoregulating self-power supply was implemented through the use of organic solar cells. A new perspective was applied for automotive light transmission function, whe
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14

Shevade, Sahil D. "Autonomous Street Lighting System based on Solar Energy and LEDs." International Journal for Research in Applied Science and Engineering Technology 12, no. 11 (2024): 1743–49. http://dx.doi.org/10.22214/ijraset.2024.65488.

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This paper introduces a solar-powered autonomous street lighting system designed primarily for areas without access to the grid, such as rural roads and intersections. It utilizes solar panels as the primary energy source, with batteries serving as backup, and employs light-emitting diodes (LEDs) for illumination. The proposed system is optimized for efficiency by employing direct current (DC) power at all stages. To replace a 70W high-pressure sodium (HPS) lamp, an LED fixture design is discussed, considering human scotopic vision. Experimental outcomes for the LED driver and battery charger
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15

Azis, Sokheh Abdul, Tuti Sulastri, and Ainur Rofiq. "Peningkatan Kesadaran Energi Terbarukan Melalui Sosialisasi dan Pembuatan Lampu Solar Light Tenaga Surya di Desa Jayamulya, Kabupaten Bekasi." Welfare : Jurnal Pengabdian Masyarakat 2, no. 2 (2024): 303–8. https://doi.org/10.30762/welfare.v2i2.1279.

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This community service activity aims to increase awareness and understanding of the people of Jayamulya Village, Serang Baru District, Bekasi Regency, regarding the use of renewable energy through the installation of solar energy-based public street lighting (PJU). This village faces the problem of minimal street lighting, which has the potential to increase the risk of crime at night. This program aims to provide a sustainable solution by introducing modern technology solar lamps, which are equipped with 300 watt LED lights, 6V/13 watt polycrystalline solar panels, 15000 mAh lithium batteries
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16

Wina, Cut, Muhammad Muhammad, and Irwan Mahmudi. "Evaluation study of solar powered public street lighting as battery charging at Islamic Center based on PSIM." Journal Geuthee of Engineering and Energy (JOGE) 3, no. 2 (2024): 51–58. http://dx.doi.org/10.52626/joge.v3i2.41.

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Electrical energy is essential for the growth and advancement of technological knowledge that continues to increase. Solar cells are devices that convert solar energy through photovoltaic devices. Solar cell public street lighting (PJUBS) uses unlimited and free solar energy, is a feasible and cheap alternative to providing electric lighting. The Islamic center mosque is one of the places of worship for the majority of Muslims in the city of Lhokseumawe using public street lighting to support public security and safety. Installation of lamps for lighting is installed at several points, namely
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17

Gautham, M., J. Lakshmi Joshitha, and J. Vasanth. "Automatic Led Solar Powered Street Light Control based on Climatic Conditions and Vehicular Movement." International Journal of Business Intelligents 5, no. 1 (2016): 62–64. http://dx.doi.org/10.20894/ijbi.105.005.001.015.

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18

Brennan, Shane. "Visionary Infrastructure: Community Solar Streetlights in Highland Park." Journal of Visual Culture 16, no. 2 (2017): 167–89. http://dx.doi.org/10.1177/1470412916685743.

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This article develops the concept of ‘visionary infrastructure’, defined as infrastructure that provides visions of and begins to build more sustainable futures for local communities, through the case study of a solar-powered street lighting project in Highland Park, Michigan, near Detroit. After the local utility company repossessed most of the city’s streetlights, residents began building their own grassroots public lighting network. This infrastructure is visionary because it allows members of the largely African American community to determine precisely how their city is illuminated, and t
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19

Tounsi Fokui, Willy Stephen, and Danube Wandji. "Energy Management System for Solar-powered Streetlighting Systems." E3S Web of Conferences 354 (2022): 02003. http://dx.doi.org/10.1051/e3sconf/202235402003.

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Public lighting or street lighting systems are raised sources of light on the edge of the road or walkway, that is turned ON at night or during bad weather to lighten the streets and turned OFF in the morning. The major problem with streetlights is their excessive energy consumption as most of that energy is wasted because the streets are empty between about 11 pm to 5 am. This also leads to the rapid degration of the streetlights and increased cost of maintenance operations which constitute a financial burden to the municipality. This paper solves this problem by proposing an energy managemen
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20

Kadek, Heri Sanjaya, Rajani Ahmad, Maja Saputra Hendri, Ganjar Subagio Dalmasius, Arief Subekti Ridwan, and Fudholi Ahmad. "Eco-design of portable solar-powered telescopic lamp for off-grid areas in Indonesia." International Journal of Power Electronics and Drive Systems (IJPEDS) 12, no. 4 (2021): 2511–22. https://doi.org/10.11591/ijpeds.v12.i4.pp2511-2522.

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This study describes the development of eco-design of portable solar-powered telescopic lamp for off-grid area in Indonesia. Several design requirements for the lamp, namely, sustainability, portability, affordability, and reliability, are the objectives of the design process in this study. Sustainability is achieved through renewable energy and the application of eco-design principles. Portability means it is lightweight, compact and can be carried anywhere inside a tube. This solar-powered telescopic lamp was designed with a 3.7 V, 15.6 Ah battery power specification such that the battery po
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21

Poliyama, Rifaldi S., Frengki Eka Putra Surusa, and Riska Kurniyanto Abdullah. "Rancang Bangun Alat Sistem Monitor Lampu Jalan Umum Tenaga Surya Berbasis Teknologi Lo - Ra." Jambura Journal of Electrical and Electronics Engineering 3, no. 2 (2021): 34–40. http://dx.doi.org/10.37905/jjeee.v3i2.10202.

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Penerangan jalan umum dan permasalahan yang sering terjadi pada penerangan jalan umum menggunakan tenaga surya (solar sel) yaitu padam di saat jam kerja diakibatkan kerusakan yang tersimpan di battery. Jarak yang jauh menjadi masalah tersendiri jika harus dilakukan pengecekan secara berkala. Pengecekan terkait Tegangan, Arus, Sensor, dan waktu dari perangkat penerangan jalan akan lebih efisien jika dapat dilakukan secara jarak jauh. Dalam penelitian ini telah berhasil membuat sistem monitoring lampu jalan umum tenaga surya berbasis teknologi Lo-Ra. Dari penelitian tersebut dapat dimonitor data
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22

Vanitha Mahadevan. "Renewable Energy Based Smart Umbrella for Street Vendors." Journal of Information Systems Engineering and Management 10, no. 28s (2025): 271–80. https://doi.org/10.52783/jisem.v10i28s.4329.

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Street vending is a common type of unofficial business that helps urban areas by providing necessary goods and services. However, poor weather and restricted access to electricity to power their enterprises are two issues that street vendors frequently deal with. This paper suggests a proposal for a smart umbrella based on renewable energy intended especially for street vendors to address these problems. Using integrated photovoltaic panels, the renewable energy-based smart umbrella captures solar energy to produce clean, sustainable power. To maximize energy consumption and improve operationa
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23

Bello-Yusuf, S., and A. Bello. "Energy Sustainability Paradox: Exploring the Challenges and Opportunities of Solar LED Street Lights in Sokoto, Nigeria." Nigerian Journal of Environmental Sciences and Technology 4, no. 2 (2020): 260–71. http://dx.doi.org/10.36263/nijest.2020.02.0204.

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Sustainability, quest for greener environment and energy/cost savings are some of the driving forces for the global push in utilizing renewable energy resources for powering street lights especially those located in densely populated areas. Photo-voltaic and LED technologies are considered by many as a match made in heaven as they are essential if not mandatory for achieving these goals. For 11 years (between 2007 and 2018), there has been a significant effort by Sokoto State Government to light up streets in the central part of the city using these two technologies. Using a descriptive approa
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24

Sanjaya, Kadek Heri, Ahmad Rajani, Hendri Maja Saputra, Dalmasius Ganjar Subagio, Ridwan Arief Subekti, and Ahmad Fudholi. "Eco-design of portable solar-powered telescopic lamp for off-grid areas in Indonesia." International Journal of Power Electronics and Drive Systems (IJPEDS) 12, no. 4 (2021): 2511. http://dx.doi.org/10.11591/ijpeds.v12.i4.pp2511-2522.

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<p><span lang="EN-US">This study describes the development of eco-design of portable solar-powered telescopic lamp for off-grid area in Indonesia. Several design requirements for the lamp, namely, sustainability, portability, affordability, and reliability, are the objectives of the design process in this study. Sustainability is achieved through renewable energy and the application of eco-design principles. Portability means it is lightweight, compact and can be carried anywhere inside a tube. This solar-powered telescopic lamp was designed with a 3.7 V, 15.6 Ah battery power spec
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25

Balamurugan, Ranganathan, and Palani Kandasamy. "Effectiveness of portable solar-powered light-emitting diode insect trap: Experimental investigation in a groundnut field." Journal of Asia-Pacific Entomology 24, no. 4 (2021): 1024–32. http://dx.doi.org/10.1016/j.aspen.2021.09.013.

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26

Abigail N. Gonzales, Engr, and Dr Norma B. Muyot. "Portable Solar Powered Outdoor Charging Station With The Application Of Servo Motor In Sunlight Tracking System With Light Detection Relay Sensor." International Journal of Science, Technology & Management 3, no. 4 (2022): 950–58. http://dx.doi.org/10.46729/ijstm.v3i4.563.

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The use of renewable sources of power has been greatly encouraged since the turn of the century owing to the limited source of fossil fuels. The richest fuel source in the area of renewable energy is solar energy. This experimental-development study focused on the fabrication and testing of a portable solar powered charging station with servomotor and light sensor and testing its acceptability in terms of functionality, aesthetics, durability and safety. This also focused on the determination of the effectiveness of the solar tracking system in the output voltage and current of the prototype.
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27

Chandra Debnath, Sumon, Nilufa Yeasmin, Ayesha Siddika, et al. "Enhancing usable appliances for energy integration with solar power." Bangladesh Journal of Scientific and Industrial Research 58, no. 4 (2023): 191–200. http://dx.doi.org/10.3329/bjsir.v58i4.65689.

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Solar energy is one of the prospective sources of Bangladesh which can meet energy demand and provide a contribution to sustainable development goals. Besides the use of the solar system in electricity generation for households, some other sectors are also using photovoltaic in irrigation, street lighting, water pumping, etc. This article introduces the idea of some other applications of solar photovoltaic systems. Here, solar backpack, farm hat, and grass cutter are designed and fabricated to utilize solar energy for recharging storage systems as well as being operated directly in the dayligh
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28

Kabir, Shahriar Mahmud, Md Abdullah Al Oafi Himon, Ahmed Al Mansur, Sakib Abdul Ahad, and Md Hasan Rayhan Rabby. "An Electronic Economic Controller for automatically adjusting the intensity of Solar-Powered LED Street Lightning Systems in rural areas." GUB Journal of Science and Engineering 9, no. 1 (2024): 58–65. http://dx.doi.org/10.3329/gubjse.v9i1.74885.

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Using photovoltaic energy for street lighting systems is increasing rapidly in rural areas. An economic and smart controller design for automatic intensity control of LED-based street lights is the main challenge. In this work, an electronic-based controller is proposed for controlling the LED light intensity automatically, considering vehicle movement and atmospheric conditions. A HC-SR501 PIR sensor is used for detection of vehicle movements and to assist the controller in making decisions regarding the brightness of the LED. The proposed LED is operated at three different energy levels, suc
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29

Fadli, Ari, Daru Tri Nugroho, Arief Wisnu Wardhana, Gito Sugiyanto, Hari Prasetijo, and Widhiatmoko Herry Purnomo. "Utilization of Solar Street Lights as Lighting Facilities in Tourist Places." Mattawang: Jurnal Pengabdian Masyarakat 3, no. 1 (2022): 28–35. http://dx.doi.org/10.35877/454ri.mattawang801.

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Hutan Pinus Limpakuwuswhich is located on the southern slope of Mount Slamet is located at an altitude of about 750 meters above sea level (MDPL). The Limpakuwus Pine Forest has limited access to electricity from the PLN network, so there are still many locations at night or cloudy skies, so these locations have limited access, this causes the manager to use generators to turn on the lights in order to provide the electricity needed for electricity. provide information on the location in the Limakuwus Pine Forest tourist spot. The interview and survey method started this service activity, the
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Parvesh, Shan, and Joseph Jikhil. "Smart Road Technologies for Future Use." Smart Road Technologies for Future Use 5, no. 2 (2024): 8–17. https://doi.org/10.5281/zenodo.10930761.

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<em>Managing traffic safety and highway congestion within the available resources has become a serious concern for authorities today. Over the last few years use of the term &lsquo;smart&rsquo; has become a widespread practice at all levels. A shrewd street is a street outfitted with mechanical devices that interface with its environmental factors (individuals and nature) to improve transportation wellbeing and productivity. The use of Internet of Things (IOT) devices on a smart road will improve safety, efficiency, and meet government objectives. This can be implemented by using advanced tech
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Divyapriya, S., A. Amudha, and R. Vijayakumar. "Design of Solar Smart Street Light Powered Plug-in Electric Vehicle Charging Station by Using Internet of Things." Journal of The Institution of Engineers (India): Series B 102, no. 3 (2021): 477–86. http://dx.doi.org/10.1007/s40031-021-00548-y.

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Swapna, Prof God. "Design and Implementation on Industrial Automation with the help of Renewable Energy Sources." International Journal for Research in Applied Science and Engineering Technology 12, no. 4 (2024): 1101–4. http://dx.doi.org/10.22214/ijraset.2024.60000.

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Abstract: In the quest for a sustainable future, we’ve identified that traditional street lighting consumes more electricity than necessary. To address this, we’ve conceptualized an energy-efficient street lighting system. Our prototype leverages a Light Detecting Resistor (LDR) to optimize power usage, paving the way for an eco-friendly world. Fire alarms are crucial for timely fire detection, safeguarding lives and property. Our simplified circuit design enhances reliability, forming an integral part of a comprehensive security system that relies on sensor technology for prompt fire detectio
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Wedashwara, Wirarama, Made Sutha Yadnya, I. Wayan Sudiarta, I. Wayan Agus Arimbawa, and Tatang Mulyana. "Solar Powered Vibration Propagation Analysis System using nRF24l01 based WSN and FRBR." JOIV : International Journal on Informatics Visualization 7, no. 1 (2023): 15. http://dx.doi.org/10.30630/joiv.7.1.1592.

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Prevention of the effects caused by natural disasters such as earthquakes and landslides requires analysis of vibration propagation. In outdoor applications, internet sources such as WIFI are not always available, so it requires alternative data communications such as nRF24l01. The system also requires a portable power source such as solar power. This research aims to develop a vibration propagation analysis system based on the nRF24l01 wireless sensor network and solar power by implementing the fuzzy rule-based regression (FRBR) algorithm. The system consists of two piezoelectric and nrf24l01
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NM, Karmiathi, Kumara INS, Ariastina WG, and Gunarta IW. "Techno-economic Analysis of Solar-powered Lighting of Bali above Seawater Toll-road." TELKOMNIKA Telecommunication, Computing, Electronics and Control 16, no. 5 (2018): 2342–54. https://doi.org/10.12928/TELKOMNIKA.v16i5.7056.

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The objective of this studywas to obtain atechnical and economic analysis of solar-powered lighting (SPL) implementation at Bali above Seawater Toll-Road. The SPL was designed to operate 12Hours/day with average illumination &ge;15-lux. Those requirements can be met byan SPL unit that consists of 2-pieces 87-W LED lights mounted on 10-m double arms pole with 2.37-m arm length and 15&ordm; tilt angle. Each LED light was powered by a 260-Wp solar panel, 24V-180AH battery and 10-A solar charge controller. Every SPL unit should be installed on the toll-road median with 22.5-m pole-spacing and requ
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Yakubu, OYELAMI Adesina, and Olamiju Kehinde. "Assessment of Street Lighting on Urban Security System in Oyo State, Nigeria." International Journal of Research and Scientific Innovation XI, no. III (2024): 624–33. http://dx.doi.org/10.51244/ijrsi.2024.1103044.

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This research investigates the impact of a streetlight initiative on the urban security dynamics of Oyo State, Nigeria, employing a descriptive research design. The study encompasses drivers and road users across Oyo State’s three senatorial districts, with a sample size of 400 selected from specific Senate districts. The findings reveal a substantial correlation (92.2%) between crime and areas lacking functional street lighting, a perception consistent in both Oyo and Ogbomosho, highlighting shared identifications of crime-prone locations. The average mean of 3.39 underscores a significant co
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Peng, Manman, Chaoqun Li, and Junmin Li. "Design and testing of a high-performance solar LED streetlight." Journal of Physics: Conference Series 2758, no. 1 (2024): 012003. http://dx.doi.org/10.1088/1742-6596/2758/1/012003.

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Abstract This paper presents the development and validation of a high-performance solarpowered charging streetlight. Our controller incorporates various charging modes, including MPPT charging, constant current charging, and constant voltage charging, and the controller can automatically change the charging mode based on the battery level. The streetlight can achieve brightness adjustment through PWM adjustment. The controller turns off the streetlights once the battery voltage reaches the over-discharge protection voltage. However, turning off the streetlights inevitably results in a voltage
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Santoso, Asfari Hariz, Ahmad Hermawan, and Muhammad Azam Wian Panantuan. "Studi Perencanaan Penerangan Jalan Umum Panel Surya di Kelurahan Gading Kasri Kecamatan Klojen." ELPOSYS: Jurnal Sistem Kelistrikan 8, no. 1 (2021): 16–21. http://dx.doi.org/10.33795/elposys.v8i1.29.

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Malang City is a city that has an increasing need for electrical energy in the technological era, which today is very much needed in fulfilling daily life, both for household, social and industrial needs. One of them is the supply of electrical energy for Public Street Lighting (PJU). If you only rely on the supply of electrical energy from grid, this is a heavy burden that must be borne by the Malang City Regional Budget to pay the electric energy consumption bill for the PJU. This study aims to determine the comparison of the use of conventional PJU with solar powered PJU (PJUTS) in the area
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Fadlullah, Yanuar Agung, Nur Rizqi Priyambodo, Khakam Ma'ruf, Sahid Ramandhani, Bagus Putra Setiyawan, and Rizal Justian Setiawan. "Design System of Solar-Powered Safety Lamp Integrated Proximity Sensor as a Solution for Accident Prevention at Blind Spot Areas." Pakistan Journal of Engineering and Technology 7, no. 3 (2024): 129–37. http://dx.doi.org/10.51846/vol7iss3pp129-137.

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The curved contour of the road creates blind spots which increase the risk of traffic accidents. Throughout 2019, there were 107,500 accident cases recorded in Indonesia. Therefore, efforts are needed to provide road infrastructure that supports driving safety, such as traffic signs to reduce the risk of accidents in blind spot areas. This research aims to design a smart safety light warning system that is integrated with solar-based street lighting. The design uses a design-based research approach referring to several established standards including Indonesia National Standard (SNI) 7931: 200
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Chu, Deryn. "A High Performance Tubular Solid Oxide Fuel Cell for Unmanned Autonomous Systems." ECS Meeting Abstracts MA2023-01, no. 54 (2023): 124. http://dx.doi.org/10.1149/ma2023-0154124mtgabs.

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Small unmanned aerial systems (SUASs) have a great potential for numerous applications. The SUASs are light-weight, man-portable, and capable of delivering commercial products. Currently, small UASs are powered by lithium-ion batteries, however, flight endurance is limited and requires frequent charging battery due to low capacity and energy density. Numerous research and development efforts have focused on alternative power sources. These alternative power sources include technologies such as solar cells and hydrogen based polymer electrolyte membrane fuel cells. Additionally, polymer electro
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da Silva Sousa, Danielle, Vanderli Garcia Leal, Gustavo Trindade dos Reis, Sidnei Gonçalves da Silva, Arnaldo Alves Cardoso, and João Flávio da Silveira Petruci. "An Automated, Self-Powered, and Integrated Analytical Platform for On-Line and In Situ Air Quality Monitoring." Chemosensors 10, no. 11 (2022): 454. http://dx.doi.org/10.3390/chemosensors10110454.

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Air quality monitoring networks are challenging to implement due to the bulkiness and high prices of the standard instruments and the low accuracy of most of the described low-cost approaches. This paper presents a low-cost, automated, self-powered analytical platform to determine the hourly levels of O3 and NO2 in urban atmospheres. Atmospheric air was sampled at a constant airflow of 100 mL min−1 directly into vials containing 800 µL of indigotris sulfonate and the Griess–Saltzman reagent solutions for ozone and nitrogen dioxide, respectively. The analysis holder, containing a light-emitting
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Rajendran, Jegan, Nimi Wilson Sukumari, P. Subha Hency Jose, Manikandan Rajendran, and Manob Jyoti Saikia. "Development of Self-Powered Energy-Harvesting Electronic Module and Signal-Processing Framework for Wearable Healthcare Applications." Bioengineering 11, no. 12 (2024): 1252. https://doi.org/10.3390/bioengineering11121252.

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A battery-operated biomedical wearable device gradually assists in clinical tasks to monitor patients’ health states regarding early diagnosis and detection. This paper presents the development of a self-powered portable electronic module by integrating an onboard energy-harvesting facility for electrocardiogram (ECG) signal processing and personalized health monitoring. The developed electronic module provides a customizable approach to power the device using a lithium-ion battery, a series of silicon photodiode arrays, and a solar panel. The new architecture and techniques offered by the dev
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George, Thomas, and A. Immanuel Selvakumar. "Renewable energy usage for home energy management and its adverse impact due to the increasing trend of electric load addition in homes in the State of Kerala, India." International Journal of Applied Power Engineering (IJAPE) 14, no. 2 (2025): 459. https://doi.org/10.11591/ijape.v14.i2.pp459-466.

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Nowadays renewable energy generation techniques and their application for home energy management are becoming very common topics of discussion all across the globe. The increased user comfort, bill reduction, and government subsidy schemes make more consumers interested in installing these sustainable sources in their homes. Also, the utility company will be able to level its peak load and reduce its carbon footprint. Does installing renewable energy sources in homes with a conventional billing scheme help in reducing the carbon footprint of the utility company? Also, are there chances for an
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43

ASTUTI, TIARA WIDYA, AGUS SUSANTI, REVI PUSPITA, TRIYAN ARMANSYAH, and LAISA ISTIANA. "IMPLEMENTASI PROGRAM LAMPU JALAN BERTENAGA SURYA DAN DAMPAKNYA TERHADAP MASYARAKAT DI BANJAR NEGERI." COMMUNITY : Jurnal Pengabdian Kepada Masyarakat 4, no. 1 (2024): 98–104. http://dx.doi.org/10.51878/community.v4i1.3247.

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The implementation of the solar-powered street light program in Banjar Negeri has succeeded in improving the quality of life of the community. This research aims to evaluate the impact of the program on social, technical and economic aspects. The methods used are surveys, interviews and data analysis. The research results show that this program has had a significant positive impact, such as increasing security, comfort and social activities of the community at night. Apart from that, this program also contributes to environmental preservation and provides long-term economic benefits. The susta
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AIB, Ekejiuba. "Universal “Plug and Play” Real-Time Entire Automotive Exhaust Effluents, Industry Vents and Flue Gas Emissions Liquefiers: The Game Changer Approach-Phase Two Category." Petroleum & Petrochemical Engineering Journal 7, no. 2 (2023): 1–56. http://dx.doi.org/10.23880/ppej-16000349.

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The first in the series of Azuberths Game Changer publications “Synergy of the Conventional Crude Oil and the FT-GTL Processes for Sustainable Synfuels Production: The Game Changer Approach-Phase One Category” a.k.a. (DOI: 10.23880/ppej16000330) is targeted at reducing 80 per cent CO2 emissions from the internal combustion engines by upgrading from the conventional crude oil refinery products to the synthetic fuels products (ultra-low-carbon fuels). This paper will focus on the complete elimination of the remaining 20 per cent CO2 emissions (i.e. to achieve zero- CO2 emissions) in transportati
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45

Thomas, George, and Immanuel Selvakumar A. "Renewable energy usage for home energy management and its adverse impact due to the increasing trend of electric load addition in homes in the State of Kerala, India." International Journal of Applied Power Engineering (IJAPE) 14, no. 2 (2025). https://doi.org/10.11591/ijape.v14.i2.pp459-466.

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Nowadays renewable energy generation techniques and their application for home energy management are becoming very common topics of discussion all across the globe. The increased user comfort, bill reduction, and government subsidy schemes make more consumers interested in installing these sustainable sources in their homes. Also, the utility company will be able to level its peak load and reduce its carbon footprint. Does installing renewable energy sources in homes with a conventional billing scheme help in reducing the carbon footprint of the utility company? Also, are there chances for an
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Asan Nainar, Hariprasath, Layanya, Kathiravan, and Sowmya. "Solar Powered Street Light with Sensor and Auto Intensity Control." International Journal of Advanced Research in Science, Communication and Technology, April 24, 2024, 115–20. http://dx.doi.org/10.48175/ijarsct-17619.

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The goal of this work is to predict solar panel power output by utilizing machine learning techniques, such as neural networks and regression, and by examining variables such as panel orientation, temperature, and sun irradiation. Models with high forecast accuracy help with grid integration and solar energy management. The article also outlines an innovative LED street light system that runs on solar power and uses Internet of Things (IoT) technology for intelligent control. By adjusting brightness in response to motion detection and current conditions, the device improves both urban safety a
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Perdahci, Canan, and Hamdi Ozkan. "Design of Solar-Powered LED Road Lighting System." Light & Engineering, February 2019, 75–85. http://dx.doi.org/10.33383/2017-077.

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Turkey is rich in terms of renewable energy sources and, therefore, is now encouraging the use of sustainable clean lighting systems in road applications. High pressure sodium lamp is the most widely used type in main roads, but other types of lamps such as mercury vapour lamps or metal halide lamps can be utilized for street lighting. Since it enables energy and money saving, LED light technology has replaced high pressure sodium lamps nowadays. Once solar power system (PV) is integrated with LED lamp for street lighting, the amount of saving and local impact might be enriched. LEDs used as l
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Meethal, Sruthi Meledath, Sourava Chandra Pradhan, Jayadev Velore, et al. "Asymmetric Dual Species Copper (II/I) Electrolyte Dye-sensitized Solar Cells with 35.6% Efficiency under Indoor Light." Journal of Materials Chemistry A, 2023. http://dx.doi.org/10.1039/d3ta06046b.

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Indoor photovoltaics (IPV) using dye-sensitized solar cells (DSCs) is one among the most promising ambient energy harvesting technologies used to realize self-powered Internet of Things (IoT), consumer electronics and portable...
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Dela Pena, Alvin T., Clarissa F. Quezon, and Christian Q. Feliciano. "Automated Solar Powered Street Lighting System with Super Capacitors." Edelweiss Applied Science and Technology, January 19, 2020, 1–4. http://dx.doi.org/10.33805/2576-8484.172.

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The researchers came up to conduct a study in creating a street lighting system powered up by solar panels that sustains its own power as a stand-alone system off the grid line. By analyzing the collected data regarding the power consumption of the institution where in every 15% increase in the student s population, there is 20% increase in the electric bill consumption rate, that is why the researchers continue to expand their previous study, the charging station that gives an alternative source of electrical energy for mobile devices in the institution, to consider a free energy that can be
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Reddy, Kavitha Chenna, Kulshrestha Utkarsh Alok, Chandrashekar C, and Md Farhanulla Sharif. "Design and Simulation of Automatic Street Lighting System using Solar." International Journal of Engineering and Innovative Technology, August 15, 2021, 9–13. http://dx.doi.org/10.51456/ijeit.2021.v11i01.002.

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The project is designed for Solar powered pedestal street lights that uses solar power from PV cells. For controlling the charging of the battery a charge controller is been used, and an LDR is used to sense the light on day as well as the evening time. The intensity of street lights is required to be kept high during the peak hours. The street lights are switched on using a sensing device LDR LED lights at the dusk and then switched off automatically when the timer set in the timer relay module stops. Due to which there is low energy consumption and the system works long life so that they can
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