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Journal articles on the topic 'Solar battery charger'

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1

Jadhav, B. N., and N.A. Doshi. "Battery Balancing System for Electric Vehicle with Solar Panel." Recent Trends in Analog Design and Digital Devices 4, no. 1 (2021): 1–4. https://doi.org/10.5281/zenodo.5031699.

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We propose a battery balancing system for Electric Vehicle with solar panel. There are three modes of operation of the system viz Solar balancing, Storage balancing, and Charge balancing. The solar-balancing mode charges the battery module with the lowest state of charge (SOC) using the solar power during vehicle driving, the charge-balancing mode is operated when the vehicles parked and being charged by the conventional charger. At the point when the solar power is low, the storage-balancing mode will be chosen to accuse the battery module of the least SOC utilizing energy stored in the stora
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2

Yadasu, Shyam, Vinay Kumar Awaar, Vatsala Rani Jetti, and Mohsen Eskandari. "Sensor Fusion-Based Pulsed Controller for Low Power Solar-Charged Batteries with Experimental Tests: NiMH Battery as a Case Study." Batteries 10, no. 9 (2024): 335. http://dx.doi.org/10.3390/batteries10090335.

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Solar energy is considered the major source of clean and ubiquitous renewable energy available on various scales in electric grids. In addition, solar energy is harnessed in various electronic devices to charge the batteries and power electronic equipment. Due to its ubiquitous nature, the corresponding market for solar-charged small-scale batteries is growing fast. The most important part to make the technology feasible is a portable battery charger and the associated controllers to automate battery charging. The charger should consider the case of charging to be convenient for the user and m
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Rony, Zahidul Islam, MA Rony, M. Hasan, NA Nithe, and MN Uddin. "Analysis and Design of a Solar Home System." Saudi Journal of Engineering and Technology 8, no. 10 (2023): 255–66. http://dx.doi.org/10.36348/sjet.2023.v08i10.004.

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Solar panels-the vital element of this SSHS makes use of exhausted energy. Compared to all other energy solar energy is abundant and free that can be used to charge batteries used for any module or electrical kits which are obvious for daily usage. The Smart Charge Controller will be designed such, so that the solar battery does not get over charged thereby ensuring no reduction of durability of the battery. This kind of system requires sensors to sense whether the battery is fully charged or not. After fully charged, detection safety can be achieved by designing a logic system in the charger,
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Jurnal, Redaksi Tim. "IMPLEMENTASI LOGIKA FUZZY UNTUK SISTEM OTOMATISASI PENGATURAN PENGISIAN BATERE PEMBANGKIT LISTRIK TENAGA SURYA." Energi & Kelistrikan 9, no. 2 (2018): 111–19. http://dx.doi.org/10.33322/energi.v9i2.41.

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Solar power plants (PLTS) as power plants that use solar rays to generate electrical energy have a big role in reducing the burden of reducing CO2 emissions. Electrical energy generated by solar panels in the form of direct current (DC / direct current) low voltage. This electrical energy will be collected and stored in a battery (accumulator / battery) through a battery charging controller or so-called solar charge controller that serves as a controller charging process so that the voltage and current are filled to the battery does not exceed the ability batteries or overcharge. This research
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Dr.S.N.Dhurvey, Nidhi S. Shirbhate, Tanvi M. Jiwane, Saloni B. Badwaik, Achal K. Mokadam, and Krutika A.Bele. "Coin Based Mobile Charging System." international journal of engineering technology and management sciences 7, no. 3 (2023): 165–74. http://dx.doi.org/10.46647/ijetms.2023.v07i03.022.

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In the modern communication environment and day-to-day life, mobile phones now play a significant role. The mobile battery charger on coin insertion is described in this paper. When a normal charger is not available, the battery frequently runs out in the middle of a conversation, especially during inopportune times. Mobile battery chargers that use coins are created to address this issue. So this model, totally work and get charged by the solar power, which is to be mainly used at the metro stations by the people who want to connect with someone on urgent basis. After inserting a coin and plu
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Faizil Anuar, Putri Falyana Balqis, Nurfadzilah Ahmad, and Nur Alfarina Pirdaus. "Preliminary study of the dual power source system for 11kV manufacturing substation’s battery charger." IOP Conference Series: Earth and Environmental Science 1281, no. 1 (2023): 012027. http://dx.doi.org/10.1088/1755-1315/1281/1/012027.

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Abstract In the future, renewable energy sources will be a more sustainable solution. Solar energy can be used by the factory to charge a substation’s battery charger. The plan is to use solar energy to charge a battery charger in a factory. Solar energy is more efficient than coal, petroleum, and natural gas. This paper demonstrates the design or reconstruction of an existing circuit drawing to achieve the goal of this project. The design incorporates a changeover switch to perform the power supply changeover for solar energy in order to compare the efficiency of the battery charger using sol
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7

Hina N. Kadeval, V. K. Patel. "Design and Development of MPPT Solar Charge Controller for Efficiency Enhancement in Solar PV System." Journal of Electrical Systems 20, no. 3 (2024): 5462–68. http://dx.doi.org/10.52783/jes.6431.

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Maximum power point tracking charge controller simulation is done in in proteus 8 professional software and validate using development of hardware model of MPPT solar charge controller for battery. Solar panel does not generate enough voltage all time.Panel can generate 12V to 21V according to solar radiation and environmental condition. For charging of 12V battery minimum required voltage is 14.6V. So, the Maximum power point tracking controller will give extra voltage into usable current, so battery can charge in short period.Development of MPPT Solar Charge Controller is done using ardunion
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Hari, Mr S., Mr S. Dhanush, S. Hariprasath, S. Shriram, and N. Sridharan. "Interleaved Luo Converter fed-battery Charger Integrated with Solar Energy." International Journal of Research Publication and Reviews 6, no. 3 (2025): 5920–23. https://doi.org/10.55248/gengpi.6.0325.1275.

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9

Fernandes, Nicolas T. D., Anderson Rocha, Danilo Brandao, and Braz C. Filho. "Comparison of Advanced Charge Strategies for Modular Cascaded Battery Chargers." Energies 14, no. 12 (2021): 3361. http://dx.doi.org/10.3390/en14123361.

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Although the literature extensively covers the development of battery chargers control strategies, a comparison of these strategies remains a literary gap. The inherent conditions (i.e., State of Health and State of Charge) of each unit in the Battery Energy Storage Systems directly influence the charger control techniques for extending battery lifetime, which makes modular battery chargers an appealing topology for this analysis. This work groups charger control strategies presented in the literature into two: Adapted SoC strategies, directly linked to the field of overstress management, and
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Latifah, Wahyu, M. Nuzuluddin, and Intan Komala Dewi Patwari. "Rancang Bangun Kontrol Charger Station Dengan Panel Surya Berbasis Mikrokontroler." Jurnal PRINTER: Jurnal Pengembangan Rekayasa Informatika dan Komputer 2, no. 1 (2024): 1–14. https://doi.org/10.29408/jprinter.v2i1.23750.

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Charger station is one of the facilities needed by smartphone users, especially in public places such as tourist sites. Because there are still many battery charging places that use PLN electricity, so it is less effective when it is far from the reach of PLN electricity. Based on these problems, this research tries to provide a solution, namely developing a charger station at tourist sites through the use of solar panels and coin acceptors as a payment system for the charger facility, so that visitors can charge their smartphones easily and at a very affordable cost. The research method used
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11

Sri Utami, Agoeng H Rahardjo, and Teguh A Pamungkas. "PEMBUATAN DAN PENGUJIAN SOLAR CHARGER BATTERY UNTUK SMARTPHONES." Jurnal Teknik Energi 4, no. 1 (2020): 293–98. http://dx.doi.org/10.35313/energi.v4i1.1753.

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 Berbagai fungsi yang dapat didukung oleh perangkat mobile membuatnya lebih penting dan lebih sering digunakan . Hal ini membuat keberadaan smartphone ada di mana - mana. Kebutuhan pengisian baterai terus meningkat seiring dengan pemakaian listriknya. Inovasi baru yang menjadi perhatian adalah seperti pada pengisi baterai surya yang menggunakan energi dari radiasi matahari . Output baterai perlu diperhatikan untuk memastikan dapat mengisi ulang baterai smarphone. Solar charger battery akan berguna karena kita tidak perlu listrik dari pemasok . Solar charger battery y
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Abdul, Hakeem Hisham, Haroon Muhammad, and Mohammad Sameer Baig Mr. "Intelligent Microcontroller Solar 12V Battery Charger." Mediterranean Journal of Basic and Applied Sciences (MJBAS) 6, no. 4 (2022): 33–41. https://doi.org/10.46382/MJBAS.2022.6405.

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Our aim is to design a single axis solar tracker as well dual axis Intelligent microcontroller solar 12V Battery. The sun is tracked by the tracker and its position is changed in such a way that it maximizes the power output. The solar panel is moved by two geared DC motors so that sun’s light can remain aligned with the solar panel. The operation of experimental model of the device is based on a DC motor which is intelligently controlled by a dedicated drive until that moves a mini photovoltaic panel, the presence of the two simple but efficient light sensors receive signals by a microc
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13

Hisham, Abdul Hakeem, Muhammad Haroon, and Mr Mohammad Sameer Baig. "Intelligent Microcontroller Solar 12V Battery Charger." Mediterranean Journal of Basic and Applied Sciences 06, no. 04 (2022): 33–41. http://dx.doi.org/10.46382/mjbas.2022.6405.

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Our aim is to design a single axis solar tracker as well dual axis Intelligent microcontroller solar 12V Battery. The sun is tracked by the tracker and its position is changed in such a way that it maximizes the power output. The solar panel is moved by two geared DC motors so that sun’s light can remain aligned with the solar panel. The operation of experimental model of the device is based on a DC motor which is intelligently controlled by a dedicated drive until that moves a mini photovoltaic panel, the presence of the two simple but efficient light sensors receive signals by a microcontrol
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14

Jugge, Praveen, Vinay Kumar Awaar, Vyshnavi Ramineni, Saniya Mahawin, Minakshi Memoria, and D. Srinivas. "Development of Pulse Charger for Electric Vehicle Batteries." E3S Web of Conferences 430 (2023): 01001. http://dx.doi.org/10.1051/e3sconf/202343001001.

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The issue of slow charging and early battery life deterioration affects emerging new battery technologies. This study suggests a quick pulse charging technique that guards against battery deterioration and provides sustainable operation. The research primarily focuses on newly developed batteries charged from a solar source utilizing a pulsed approach. ANSYS or MATLAB/Simulink are used for the different simulations. The charger circuit comprises the Photovoltaic panel, transformer, a passive element like a capacitor, voltage regulator, and bridge rectifier. An optocoupler, an isolation circuit
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15

Muslimin, Selamat. "RANCANG BANGUN SISTEM PENGISIAN DAYA PADA MOBIL LISTRIK SOLAR CELL." Sigma-Mu 7, no. 2 (2017): 25–33. http://dx.doi.org/10.35313/sigmamu.v7i2.153.

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System design to solar cell electric car batteries can be done in a way to recharge a car battery when it is in use and after use, where the batteries are fully charged at a voltage of ± 55 Volts and discharged state at a voltage ± 47 Volt. Tools that are used to recharge are Solar Cell and Charger Accu 48 Volt DC. Solar Cell is an electronic device that can convert solar energywhich is inexhaustibleinto DC voltage. Accu Charger 48 Volt DC is a tool used as an alternative when the Solar Cell is not enough in recharging the batteries of car after being used. Accu 48 Volt DC Charger is a charger
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16

Sa’adu, L., Y. Yusuf, I. Abdullahi, and A. B. Isah. "Design, Construction and Evaluation of a Potable Dc-Dc Handset Charger." International Journal of Science for Global Sustainability 10, no. 1 (2024): 263–69. http://dx.doi.org/10.57233/ijsgs.v10i1.629.

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Buck converter is a direct current-direct current (DC-DC) power tool that can be used for changing value of DC voltage to another value lower than the original input supply. DC-DC Converters are commonly used in electronic systems, for instance telecommunication systems, Personal Computers, and also used as charge controller for battery. The DC-DC converter is able to replace voltage regulator due to its higher efficiency. This type of converter is commonly used when the supply voltage from the source is higher for an electronic system, for instance charging battery by solar panel, buck conver
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17

霍, 广文. "Rechargeable Protection Solar Battery Charger Design." Advances in Energy and Power Engineering 06, no. 02 (2018): 109–13. http://dx.doi.org/10.12677/aepe.2018.62012.

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18

Batrak, Larysa Mykolayivna, and Volodymyr Yakovich Romashko. "Regulatory Features of Solar Battery Charger." Microsystems, Electronics and Acoustics 24, no. 4 (2019): 25–31. http://dx.doi.org/10.20535/2523-4455.2019.24.4.185524.

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19

Jurnal, Redaksi Tim. "RANCANG BANGUN PEMROGRAMAN BERBASIS SISTEM CERDAS UNTUK PENGATURAN PENGISIAN BATERE PEMBANGKIT LISTRIK TENAGA SURYA." Energi & Kelistrikan 10, no. 1 (2019): 1–14. http://dx.doi.org/10.33322/energi.v10i1.316.

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Hydroelectric solar energy Photovoltaic/Solar in addition can be used to program the rural electricity, solar energy utilization opportunities such as street lighting lamps as well as for the survival of the industry and small and medium enterprises. At solar power plants is also still there needs to be some development in managementcharging, this needs to be done in order for the resulting damage to the quality of mecegah power, namely the irregular voltage too high and sometimes too low from the solar cells towards the battery. Solar power plant comprises a PV panel change sunlight into dire
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Zhu, Wei Guo, and Hai Lin Ruan. "Design and Research of Solar Photovoltaic Power Generation Controller Based on 89C51 Microcontroller." Advanced Materials Research 345 (September 2011): 66–69. http://dx.doi.org/10.4028/www.scientific.net/amr.345.66.

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Portable solar charger car is a new and convenient solar charging equipment attendant to complete on-board battery charging, the continuing drive to improve capacity of electric bicycles. In order to improve the performance of PV controller, solar photovoltaic controller of 89C51 is used. The solar controller has fundamental functions, dependable performance, good real-time data,simple low-power circuit,which can greatly increase the charging efficiency, and achieve very good battery management, also a progress toward real smart charge and discharge.
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Budhi Anto, Amir Hamzah, and Sukma Meyrandi. "Movable Solar Battery Charger Using Push-Pull Converter Based Switch-Mode Power Supply." International Journal of Electrical, Energy and Power System Engineering 8, no. 2 (2025): 248–66. https://doi.org/10.31258/ijeepse.8.2.248-266.

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This article describes the design and construction of a push-pull converter-based switch-mode power supply (SMPS) to recharge a sealed lead-acid (SLA) battery that receives power from a photovoltaic (PV) module. The PV module is mounted on a wheeled construction, hence named the movable solar battery charger (MSBC). The fishermen will utilize the SLA battery to power the electric lights for night fishing. Since it employs the SMPS circuit, the battery is charged using the floating method, which is implemented by maintaining a constant voltage of 14.1 volts at the battery terminals. The MSBC po
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Arshdeep, Singh, Sudha Letha Shimi, and Nikhil. "Design and Analysis of off-board PV-Grid Adjustable Charger for Electric Vehicle Battery." International Journal of Engineering and Advanced Technology (IJEAT) 9, no. 3 (2020): 1005–13. https://doi.org/10.35940/ijeat.C4743.029320.

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The electric vehicles (EVs) are emerging as general-purpose transportation, due to various shortcomings of traditional vehicles. The EVs will become ubiquitous only if its charging infrastructure is abundant and efficient. Typically, a module of Li-ion battery applied in EVs uses 4 – 6 cells. These modules are connected in series-parallel combination to obtain the threshold power output. The power for the charging battery is delivered by the PV – grid topology. The solar and grid circuit uses a boost converter to create a dc bus. As the system uses boost converter for both PV and g
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Garave., Priti Kiran. "Portable Electric Vehicle Charger." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 07 (2025): 1–9. https://doi.org/10.55041/ijsrem51318.

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This paper deals with design and development of a light electric vehicle (EV) charger. This EV charger operates in bulk charge as well as float charge mode with the battery deep discharge cutoff to enhance battery life. Its power converter is of 85W rating having operating voltages from 36V to 42V with 2A maximum current in bulk charge mode. Test results are presented for a 36V, 10Ah-20Ah battery, which is commercially used for electric cycle or equivalent EV application. The input voltage for this power converter is for universal input voltages (90VAC-265VAC/47Hz-63Hz). The AC-DC converter po
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Yau, Her-Terng, Chih-Jer Lin, and Qin-Cheng Liang. "PSO Based PI Controller Design for a Solar Charger System." Scientific World Journal 2013 (2013): 1–13. http://dx.doi.org/10.1155/2013/815280.

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Due to global energy crisis and severe environmental pollution, the photovoltaic (PV) system has become one of the most important renewable energy sources. Many previous studies on solar charger integrated system only focus on load charge control or switching Maximum Power Point Tracking (MPPT) and charge control modes. This study used two-stage system, which allows the overall portable solar energy charging system to implement MPPT and optimal charge control of Li-ion battery simultaneously. First, this study designs a DC/DC boost converter of solar power generation, which uses variable step
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Jiang, Yu Chuan, Fang Quan Yang, and Bao Gang Sun. "Study on Strategies for Designing Solar Battery Charger." Applied Mechanics and Materials 321-324 (June 2013): 431–34. http://dx.doi.org/10.4028/www.scientific.net/amm.321-324.431.

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So far, all known charge control algorithm have failed as they commonly falsely detect overcharge at random times in the charging and leave the battery partially charged. In traditional charging environments, the current is controlled to a desired value and the thresholds are calculated for this specific value. The goal of this paper is to propose adequate algorithms that would improve the battery charging. New solutions that address the specific problem for modular solar panels are developed in this paper.
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Szczepaniak, Marcin, Paweł Otręba, Piotr Otręba, and Tomasz Sikora. "Use of the Maximum Power Point Tracking Method in a Portable Lithium-Ion Solar Battery Charger." Energies 15, no. 1 (2021): 26. http://dx.doi.org/10.3390/en15010026.

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The use of solar panels in low-power applications is an increasingly developing topic. Various methods are currently used to obtain the highest possible solar panel power generation efficiency. The methods of determining the maximum power point (MPP) and its tracking are under constant development, resulting in the creation of new algorithms to accelerate the operational efficiency while maintaining good parameters. Typically, these methods are only used in high-power photovoltaic installations. Due to the problems resulting from the adjustment to MPP working conditions for low-power solar pan
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Arrohman, Donny Auliya, and Nafis Ainun Fikriyyah. "Implementation of Micro Usb Charger TP4056 and Battery Indicator LED in Portable Solar Charge." Journal of Natural Sciences and Mathematics Research 4, no. 1 (2018): 6–10. http://dx.doi.org/10.21580/jnsmr.2018.4.1.10956.

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Mobile is a communication tool that is needed in today's era of globalization. The source of the cellphone's power is the battery which if the power goes out and the battery runs out, it is necessary to charge the battery to turn it back on. In this study, a portable solar panel-based charger was designed as an alternative to charging batteries without using a power source. The method used is research and development where this research produces a product. The results obtained indicate that the highest intensity value at 11:00 WIB is 5986 cd, the highest current value before entering the curre
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Imaduddin, Ilmir Rizki, Muhammad Hasan Basri, Abdul Mujib, et al. "Design of 30 A PWM Type Solar Charge Controller Module for 100 Watt Lamp Load." Journal of Electrical Engineering and Computer (JEECOM) 6, no. 2 (2024): 570–82. http://dx.doi.org/10.33650/jeecom.v6i2.9659.

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The electrical energy produced by solar panels has been used as a renewable energy solution to support human life. In reality, this alternative energy has not been widely used due to the constraints of expensive initial investment, so it is necessary to design solar power generation components, one of which is a reliable, optimal, efficient and economical solar charge controller. The controller is made using the switching method. The switching process can occur by setting the duty cycle through the embedded controller in the solar charge controller circuit. Based on the test results, a duty cy
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K, Rakhi, Ilango Karuppasamy, and Manjula G Nair. "Hardware Implementation of Solar Photovoltaic System based Half Bridge Series Parallel Resonant Converter for Battery Charger." International Journal of Power Electronics and Drive Systems (IJPEDS) 8, no. 4 (2017): 1622. http://dx.doi.org/10.11591/ijpeds.v8.i4.pp1622-1630.

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The long established battery chargers are having many drawbacks such as prominent ripple charging current, less efficiency and bulky in size. To overcome these drawbacks of conventional battery charger, several charging circuits have been proposed and inevitability force to design a high-performance battery charger with small in size and improved efficiency. In this paper solar photovoltaic system based half-bridge series–parallel resonant converter (HBSPRC) charger is proposed for battery interface. The converter is designed to abolish low and high-frequency ripple currents and thus take full
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Noer, Zikri, Muhammad Fathurrahman, Annisa Novita Putri Siregar, Misuki Awanda, Muhammad Abduh Akram Agus, and Lolo Ferdinan Siahaan. "Solar-Based Smartphone Charging Stations with Voltage, Current, and Power Monitoring." Journal of Technomaterial Physics 5, no. 2 (2023): 111–17. http://dx.doi.org/10.32734/jotp.v5i2.13348.

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Renewable energy sources continue to be developed as alternative energy sources to reduce the use of fossil energy sources. One of them is a solar power plant that uses a light source from sunlight. For the public, electrical energy is useful to support work and communication activities such as using smartphones, but not many chargers are found in public places to charge smartphone batteries. It has designed and implemented a smartphone charging station to charge smartphone batteries using solar power. The smartphone battery charging on this smartphone charging station can display voltage, cur
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Putra, Akbar Satria, Hasti Afianti, and Richa Watiasih. "Comparative Analysis of Solar Charge Controller Performance Between MPPT and PWM on Solar Panels." JEECS (Journal of Electrical Engineering and Computer Sciences) 7, no. 1 (2023): 1197–202. http://dx.doi.org/10.54732/jeecs.v7i1.217.

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Solar power plants require other supporting equipment besides solar panels, including SCC (Solar ChargerController) for solar panel charger media to batteries. While the battery itself as a store of electrical energy generatedby solar panels. Therefore, other supporting equipment is very important in the application of solar power generationsystems.In the charger system or battery charging on solar panels, an SCC solar charger controller is needed as the chargermedia. In the solar charger controller there are two types between MPPT (Maximum Power Point Tracker) and PWM(Pulse Width Modulation).
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Alti, Rahmi Mudia, Fiqri Wijaya Kusuma, and R. Evi Sovia. "Desain Sistem Charger untuk Baterai berkapasitas 650 mAh Menggunakan Sel Surya." TELKA - Telekomunikasi Elektronika Komputasi dan Kontrol 6, no. 2 (2020): 138–46. http://dx.doi.org/10.15575/telka.v6n2.138-146.

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Alat charger untuk baterai berkapasitas 650 mAh menggunakan sel surya merupakan uji coba alat yang digunakan untuk charger baterai berkapasitas 650 mAh menggunakan energi matahari. Baterai 650 mAh ini digunakan pada drone. Alat charger menggunakan sel surya ini digunakan sebagai alternatif pengisian energi pada baterai. Alat ini dirancang dengan menggunakan resistor, kapasitor, dioda, saklar, baterai 650 mAh, LED, sel surya, IC lm317, dan trimpot. Perangkat berupa sistem analog yang menggunakan voltage drop dan memanfaatkan step up step down serta LED sebagai indikasi pengisian. Hasil uji fung
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Chen, Sirui. "Solar tracking cycle charger system based on IPSO-DE." Journal of Physics: Conference Series 2823, no. 1 (2024): 012009. http://dx.doi.org/10.1088/1742-6596/2823/1/012009.

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Abstract Aiming to address the problem of resource waste in the photovoltaic industry chain, a solar tracking cycle charger based on IPSO-DE has been designed. The device converts solar energy into electricity through solar photovoltaic panels and stores it in a storage battery. The light-sensitive sensor controls the orientation of the solar panel through a stepper motor according to the position of the Sun, and the single-chip microcomputer is used to control the cyclic charging and discharging of multiple storage batteries. In addition, the charging-discharging voltages at both ends of the
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Sharga, Miss Rashi. "Outline and Testing of Portable Solar Inverter." International Journal for Research in Applied Science and Engineering Technology 9, no. 10 (2021): 1699–704. http://dx.doi.org/10.22214/ijraset.2021.38677.

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Abstract: In this study we talk about ,a simulacrum of one phase inverter using solar energy, The main aim is use of solar energy for electricity to study about Portable inverter, to use solar energy for electricity . Inverter circuits consists of Ups , battery module and battery charger. The main work of Inverter is to convert D.C voltage to A.C voltage .Inverter circuit are divided into 3 parts Bjt switch ,control circuit which is use for generate pluses thorough micro controller ,filter part consists of capacitor, Resistor which is use to overcome of harmonics. The main purpose of this work
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Coker, J. Olakunle, and B. Abdulrahaman Ogunji. "Design and construction of an inverter using solar cell as a source of charger." Journal of Applied and Natural Science 5, no. 1 (2013): 30–36. http://dx.doi.org/10.31018/jans.v5i1.277.

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The present study is basically on electricity generation in which solar cell or module is used to power an inverter. This can also be called photovoltaic system, because it consists of solar modules, solar charge controller, 24V.d.c battery and an inverter. Solar modules serve as source of charger through solar charge controller to the battery and inverter are used in converting the direct current into an alternating current for the domestic appliance. This study is very useful in electricity generation especially in a developing country such as Nigeria where there is epileptic power supply. I
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Zurairah, Masdania, Muhammad Adam, and Partaonan Harahap. "Implementasi Alat Mentoring Suhu Dan Kelembaban Kandang Bebek Di Peternakan Tanjung Morawa Berbasis Mikrokontroler." Empowerment: Jurnal Pengabdian Masyarakat 1, no. 4 (2022): 622–29. http://dx.doi.org/10.55983/empjcs.v1i4.233.

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This new discovery arose because the dilator is backed by high work efficiency, as well as the effectiveness and efficiency of human labor in carrying out the manual (hand) process. Therefore, a thought emerged to make a special cage for ducks that can control temperature, humidity and feed automatically by using solar panels as an energy source. The method used is solar panels converting energy which is then stored in the battery by the solar charger controller. The battery then supports a load consisting of the main device, namely a 60WP solar panel, 12 7AH VRLA battery, 20A Solar Charger Co
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37

Seguel, Julio López, Samuel Zenteno, Crystopher Arancibia, et al. "An Enhanced Solar Battery Charger Using a DC-DC Single-Ended Primary-Inductor Converter and Fuzzy Logic-Based Control for Off-Grid Photovoltaic Applications." Processes 13, no. 1 (2025): 99. https://doi.org/10.3390/pr13010099.

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Battery charging systems are crucial for energy storage in off-grid photovoltaic (PV) installations. Since the power generated by a PV panel is conditioned by climatic conditions and load characteristics, a maximum power point tracking (MPPT) technique is required to maximize PV power and accelerate battery charging. On the other hand, a battery must be carefully charged, ensuring that its charging current and voltage limits are not exceeded, thereby preventing premature degradation. However, the voltage generated by the PV panel during MPPT operation fluctuates, which can harm the battery, pa
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38

Tiwari, Yash, Mohd Amaan, Vikas Kumar, Rini Gupta, and Shivam Porwal. "Wireless Phone Cover Charger Using Solar Energy." International Journal for Research in Applied Science and Engineering Technology 11, no. 3 (2023): 2328–31. http://dx.doi.org/10.22214/ijraset.2023.49903.

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Abstract: In this paper, completely different geometrics of a solar battery associated coil are realized by analyzing its practicality to get an optimum wireless phone cover charger. Wireless charging could be a terribly broader space of analysis and an amazing quantity of analysis is already been exhausted. However during this paper, we've got tried enquiring the choice approach for charging wirelessly that's charging through solar battery and coil by fixing it during a approach in order that it result for constant
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39

Kalyani, U. Chafle, M. Faruk B., S. Shrivas R., and N.S.Sawarkar. "COIN BASED MOBILE CHARGER ON SOLAR ENERGY." International Journal of Research - GRANTHAALAYAH 3, no. 1 (2017): 13–18. https://doi.org/10.5281/zenodo.884027.

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The mobile phones are play’s vital role in the present communication. The coin-based mobile battery charger developed in this paper for providing a unique service to the rural public where grid power is not available for partial/full daytime and a source of revenue for site providers. This can be quickly and easily installed outside any business premises. This type of charger will be very useful for the public people; many times the battery becomes flat in the middle of the conversation in particularly at inconvenient times when access to a standard charger isn’t possible. The power supply for
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40

Seguel, Julio López, and Seleme I. Seleme. "Robust Digital Control Strategy Based on Fuzzy Logic for a Solar Charger of VRLA Batteries." Energies 14, no. 4 (2021): 1001. http://dx.doi.org/10.3390/en14041001.

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This paper presents the design and implementation of a digital control strategy for a Buck converter, used as a solar charger of valve-regulated lead acid (VRLA) batteries. The control system consists of two fuzzy logic controllers (FLCs), which adjust the appropriate increment of the converter duty cycle based on battery state of charge according to a three-stage charging scheme. One FLC works as a maximum power point tracker (FLC-MPPT), while the other regulates the battery voltage (FLC-VR). This approach of using two different set of membership functions overcomes the limitations of the bat
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Chafle, Kalyani U., B. M. Faruk, R. S. Shrivas, and N. S. Sawarkar. "COIN BASED MOBILE CHARGER ON SOLAR ENERGY." International Journal of Research -GRANTHAALAYAH 3, no. 1 (2015): 13–18. http://dx.doi.org/10.29121/granthaalayah.v3.i1.2015.3046.

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The mobile phones are play’s vital role in the present communication. The coin-based mobile battery charger developed in this paper for providing a unique service to the rural public where grid power is not available for partial/full daytime and a source of revenue for site providers. This can be quickly and easily installed outside any business premises.This type of charger will be very useful for the public people; many times the battery becomes flat in the middle of the conversation in particularly at inconvenient times when access to a standard charger isn’t possible. The power supply for
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42

K Nadgaundi, Prof Swati, Prabhat Rammilan Yadav, Kapal Ashish Kumar Mohanrao, Prashant Rammilan Yadav, and Deepak Bhagwan Sushir. "EV CHARGING STATION USING SOLAR ENERGY." International Journal of Engineering Applied Sciences and Technology 7, no. 1 (2022): 287–89. http://dx.doi.org/10.33564/ijeast.2022.v07i01.042.

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—In India, the power zone is currently the biggest carbon emitter, and the transport area is the fastestgrowing carbon emitter. This paper introduces a model of solar-power-driven charging stations for electric vehicles to diminish issues encountered in India's solar energy usage processes and to deal with the growing power demand for electrical automobiles in the forthcoming future. This study applies the projected model to Mumbai City to verify its specialized and budgetary feasibleness. Our dependence on nonrenewable energy is intensely weakened for one combined use of solar radiation and E
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Satya Prakash Oruganti, Kameswara, Chockalingam Aravind Vaithilingam, Gowthamraj Rajendran, and Ramasamy A. "Design and Sizing of Mobile Solar Photovoltaic Power Plant to Support Rapid Charging for Electric Vehicles." Energies 12, no. 18 (2019): 3579. http://dx.doi.org/10.3390/en12183579.

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Existing DC fast-charging stations are experiencing power quality issues such as high harmonics in the line current, poor power factor in the input supply, and overloading of distribution transformers, due to the dynamic behavior of charging patterns when it is connected to the power grid. Most of the recent works involve the usage of renewable energy sources to mitigate the issues on the distribution grid. In order to design a mobile plug and play DC fast charging station, solar energy is the best and viable solution to carry out. In this paper, plug and play solar photovoltaic power plant to
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44

Suwenda, Fifiana Putri, Zainal Abidin, and Ulul Ilmi. "THE UTILIZATION OF SOLAR CELLS AND WATER TURBINES AS SOURCING VOLTAGE ON POWER MULTI-BASED HYDROPONIC." JEEMECS (Journal of Electrical Engineering, Mechatronic and Computer Science) 4, no. 1 (2021): 15–20. http://dx.doi.org/10.26905/jeemecs.v4i1.4413.

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The use of electric power is significant to supply water pumps which are usually obtained from PLN electricity. The utilization of electricity from new renewable energy such as solar panel electricity and water turbines has not been used too much to cultivate hydroponic plants. Therefore, combining electric power (hybrid) between solar cells and water turbines is needed to supply electricity on hydroponic technology in conserving electrical energy for the future. Based on these problems, this study conducted various tests to create a design that could be used for energy use in hydroponic plant
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45

Vidia Laksmi B, Nur, Muhammad Syahril Mubarok, Fithrotul Irda Amaliah, et al. "Design of Automatic Battery Charger Using Forward DC-DC Converter for Solar Home Energy." Vokasi Unesa Bulletin of Engineering, Technology and Applied Science 2, no. 1 (2025): 57–66. https://doi.org/10.26740/vubeta.v2i1.35817.

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The utilization of solar energy as a renewable and environmentally friendly energy source, which is inexhaustible, is an ideal solution to meet the growing demand for electricity. Solar Home Energy refers to a house powered by solar energy. The solar energy is subsequently stored in batteries using a battery charger. In this paper, a forward DC-DC converter is used as a battery charger to supply power to a self-sufficient house from solar energy, stored in a 96 V 45 Ah battery. A fuzzy logic controller is employed to regulate the output of the forward DC-DC converter, ensuring a constant charg
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46

Putri, Berliana Rahma, Indhana Sudiharto, and Farid Dwi Murdianto. "An Accurate Battery Charger SEPIC-Coupled Inductor Using Fuzzy Type 2." INTEK: Jurnal Penelitian 8, no. 1 (2021): 79. http://dx.doi.org/10.31963/intek.v8i1.2886.

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Recently, the needs of electrical energy have increased in line with the increasing population in Indonesia. Electrical in order to save the use of fossil energy, renewable is used, namely solar energy. Solar energy depends on the conditions of sunlight and the temperature of the solar panel. So, if the solar panel is directly connected to the battery, it will cause the battery be damaged. To overcome this, a controlled DC-DC converter is needed to stabilize the solar panel output before connecting to the battery. The DC-DC converter that used is a SEPIC coupled inductor converter, this conver
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47

Putri, Berliana Rahma, Indhana Sudiharto, and Farid Dwi Murdianto. "An Accurate Battery Charger SEPIC-Coupled Inductor Using Fuzzy Type 2." INTEK: Jurnal Penelitian 8, no. 1 (2021): 79. http://dx.doi.org/10.31963/intek.v8i1.2886.

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Recently, the needs of electrical energy have increased in line with the increasing population in Indonesia. Electrical in order to save the use of fossil energy, renewable is used, namely solar energy. Solar energy depends on the conditions of sunlight and the temperature of the solar panel. So, if the solar panel is directly connected to the battery, it will cause the battery be damaged. To overcome this, a controlled DC-DC converter is needed to stabilize the solar panel output before connecting to the battery. The DC-DC converter that used is a SEPIC coupled inductor converter, this conver
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48

Gladwin Antony, R., S. Hariharan, D. Hari Haran, and C. Clement Raj. "Design of Solar Charging Case for Mobile Phones." Journal of Physics: Conference Series 2040, no. 1 (2021): 012031. http://dx.doi.org/10.1088/1742-6596/2040/1/012031.

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Abstract Every day in this modern era, a new technology is introduced in a mobile phone, and one major concern that every mobile phone user has is its battery backup. Whatever the advancements in mobile phones, the chargers we use have remained consistent since the beginning. Our project’s goal is to create an integrated solar mobile charger that can be seamlessly incorporated into the protective case of the mobile phone. The proposed design traps solar energy and stores it in a rechargeable battery. This system has the ability to serve dual role, both as a protective case and act as power bac
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49

Rohana, Rohana, and Suwarno Suwarno. "Optimization Circuit Based Buck-Boost Converter for Charging the Solar Power Plant." Indonesian Journal of Electrical Engineering and Computer Science 6, no. 2 (2017): 254. http://dx.doi.org/10.11591/ijeecs.v6.i2.pp254-258.

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<p>This paper discusses the optimization circuit based buck-boost converter for charging a battery from solar panel modules. The combination of the circuit buck-bust converter and a step-up current can increase the percentage of battery chargers. The method used in the optimization of solar power plants by increasing the output current from the solar panel to be optimized for battery charging, so it does not requires time and the batteries are safe. This is because sunlight can be used when bright about 4-5 hours per day. By increasing the output current of the current produced solar mod
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50

Rkik, Iliass, Mohamed El khayat, Hafsa Hamidane, Abdelali Ed-Dahhak, Mohammed Guerbaoui, and Abdeslam Lachhab. "An intelligent lead-acid battery closed-loop charger using a combined fuzzy controller for PV applications." E3S Web of Conferences 297 (2021): 01033. http://dx.doi.org/10.1051/e3sconf/202129701033.

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This paper presents the modeling of an intelligent combined MPPT and Lead-Acid battery charger controller for standalone solar photovoltaic systems. It involves the control of a DC/DC buck converter through a control unit, which contains two cascaded fuzzy logic controllers (FLC), that adjusts the required duty cycle of the converter according to the state of charge and the three stage lead acid battery charging system. The first fuzzy logic controller (FLC1) consists of an MPPT controller to extract the maximum power produced by the PV array, while the second fuzzy controller (FLC2) is aimed
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