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Journal articles on the topic 'Automatic Battery Charging'

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1

Shubhangi, Joshi, Kole A.G., and Nalawade A. "Automatic Battery Charger." International Journal of Innovative Science and Research Technology 7, no. 6 (2022): 1039–42. https://doi.org/10.5281/zenodo.6820429.

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We've created an automated battery operating system based on battery status. When the battery is fully charged the status is displayed on the LCD and charging stops, and charging begins when the battery is not fully charged. This is beneficial as it prevents the battery from damaging and charging excessively. We have created an automatic charging system based on its battery status. When the battery is fully charged the status is displayed on the LCD and charging stops, and charging begins when the battery is not fully charged. This is beneficial as it prevents the battery from getting dama
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Jayen, Modi, Richard Pakhare Shalom, Athani Abhishek, Baig Rizwan, and Mhade Siddarth. "Automatic Electric Vehicle Charging Station." Automatic Electric Vehicle Charging Station 8, no. 12 (2024): 11. https://doi.org/10.5281/zenodo.10496227.

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Our Automatic Electric Vehicle Charging sta- tion is a autonomous power supply unit which works  without the need for human attendants. The system is designed to facilitate the existing power grid infrastructure. The system employs the Raspberry Pi as our primary controller board and hosts the User Interface on the LCD Display mounted on the Charger Housing. The Pi Board interfaces with our custom Pilot PCB to communicate with the Electric Vehicle Battery Management Systems to negotiate the charging speed, capacity of the car battery and perform safety checks. The user can choose AC level
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Pakhare, Shalom Richard, Rizwan Baig, Abhishek Athani, Siddarth Mhade, and Jayen Modi. "Automatic Electric Vehicle Charging Station." Scholars Journal of Engineering and Technology 12, no. 01 (2024): 1–18. http://dx.doi.org/10.36347/sjet.2024.v12i01.001.

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Our Automatic Electric Vehicle Charging station is a autonomous power supply unit which works without the need for human attendants. The system is designed to facilitate the existing power grid infrastructure. The system employs the Raspberry Pi as our primary controller board and hosts the User Interface on the LCD Display mounted on the Charger Housing. The Pi Board interfaces with our custom Pilot PCB to communicate with the Electric Vehicle Battery Management Systems to negotiate the charging speed, capacity of the car battery and perform safety checks. The user can choose AC level 1, 2 or
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4

Triwijaya, S., A. Pradipta, and T. Wati. "Automatic Design of Battery Charging System Power Supply from Photovoltaic Sources Base on Voltage." Journal of Physics: Conference Series 2117, no. 1 (2021): 012011. http://dx.doi.org/10.1088/1742-6596/2117/1/012011.

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Abstract Short charging times are desirable from a battery powered system. However, the short charging time must also be considered the reliability of the system. Where the short charging time does not cause damage to the control system and battery. The battery has an important role as a source of power supply when the sun is not bright. By minimizing battery charging time, the battery can be maximally utilized as a power store. So the minimum charging time is obtained, but with maximum storage power. We present battery charging control method and auto switch off on this system. The controller
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5

Oriaifo, A. P., and A. A. Muhammed. "Design and Fabrication of An Automatic Temperature Control Lithium-Ion Battery Charger." NIPES Journal of Science and Technology Research 4, no. 4 (2022): 152–63. https://doi.org/10.5281/zenodo.7415666.

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<em>This study presents the design and construction of an automatic lithium-ion battery charger that monitors the temperature of the lithium-ion battery during charging and sends a signal to the relay to cut off the power supply from the battery terminal if the battery temperature rises above 45&deg;C which is the maximum allowable temperature for charging most lithium-ion batteries. This charger also has an auto-cut-off circuit that cut off the power supply from the battery terminals upon fully charged with LED indicators to indicate when the battery is charging and fully charged. The system
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Djuanda, D. S. R., M. Ramdhani, and C. Ekaputri. "Automatic battery charging system on android smartphones." IOP Conference Series: Materials Science and Engineering 830 (May 19, 2020): 032027. http://dx.doi.org/10.1088/1757-899x/830/3/032027.

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pise, Sagar, S. B. Shinde, and S. S. Savkare. "Automatic Battery Charging in Solar Robotic Vehicle." International Journal of Electronics and Communication Engineering 4, no. 2 (2017): 1–4. http://dx.doi.org/10.14445/23488549/ijece-v4i2p101.

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8

Kristiyono, Roedy, Budi Nugroho, and Bambang Supriyanto. "AUTOMATIC CHARGING BATTERY LITHIUM UNTUK KENDARAAN LISTRIK." Teknika 7, no. 4 (2022): 236–42. http://dx.doi.org/10.52561/teknika.v7i4.195.

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Lithium dan senyawanya memiliki beberapa aplikasi industri termasuk kaca dan keramik tahan panas, pelumas gemuk lithium, aditif fluks untuk produksi besi, baja dan alumunium, baterai logam lithium dan baterai lithium-ion. Penelitian ini berusaha untuk membuat dan menggunakan sistem pengisian dan monitor pada baterai lithium untuk kendaraan listrik. Sistem dirancang sesedehana mungkin dan praktis. Peralatan yang demikian ini dimungkinkan mudah untuk dibawa kemana-mana secara portabel serta membutuhkan energi listrik yang relatif kecil pada proses pengisiannya. Sistem dibangun dengan dengan mode
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Li, JL, BZ Qu, XJ Liu, YL Yuan, and WJ Peng. "Research on battery charging automatic equalization system based on double closed loop controller." Journal of Physics: Conference Series 2476, no. 1 (2023): 012074. http://dx.doi.org/10.1088/1742-6596/2476/1/012074.

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Abstract In order to improve the equalization control efficiency of the battery charge equalization system, this paper applies the double closed-loop controller to the battery charge automatic equalization system. First, the overall block diagram of the hardware circuit of the charging system is designed, and the switching control of charging and discharging is completed by using TMS320F2812 chip. Secondly, the optimal charging current is calculated according to Mars law. Then, a double closed-loop controller is introduced to balance the battery charge, and the charge balance equation is const
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10

Xiao, Shichang, Jinshan Huang, Hongtao Hu, and Yuxin Gu. "Automatic Guided Vehicle Scheduling in Automated Container Terminals Based on a Hybrid Mode of Battery Swapping and Charging." Journal of Marine Science and Engineering 12, no. 2 (2024): 305. http://dx.doi.org/10.3390/jmse12020305.

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Automatic guided vehicles (AGVs) in the horizontal area play a crucial role in determining the operational efficiency of automated container terminals (ACTs). To improve the operational efficiency of an ACT, it is essential to decrease the impact of battery capacity limitations on AGV scheduling. To address this problem, this paper introduces battery swapping and opportunity charging modes into the AGV system and proposes a new AGV scheduling problem considering the hybrid mode. Firstly, this study describes the AGV scheduling problem of the automated container terminals considering both loadi
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11

Ramelan, Agus, M. Adli Rizqulloh, and Dadang Lukman Hakim. "Design and implementation of an automatic control for a laptop battery charger." MATEC Web of Conferences 197 (2018): 11022. http://dx.doi.org/10.1051/matecconf/201819711022.

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In the process of charging laptop's battery, there is no automatic settings are disconnected and connecting the laptop charger voltage according to the needs and desires of the user. In addition, the apathetic nature of the laptop users often also lead to battery charging voltage overload on the laptop battery. These conditions will have an impact on the voltage of the battery leakage which will eventually be more easily damaged. In addition, the electrical energy will continue to flow from adaptor to the laptop and the resulting dissipation of electrical energy within a certain period. From s
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K, Sharan Kumar. "Automatic EV Battery Management and control Systems using IOT." International Journal for Research in Applied Science and Engineering Technology 10, no. 7 (2022): 3691–94. http://dx.doi.org/10.22214/ijraset.2022.45802.

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Abstract: From the statistics, transportation sector contributes over the 50% of the oil consumption and one fourth of the CO2 emissions, which has been considered one of the major factors that leads to Greenhouse effect. By using the Electric vehicles (EVs), the pollution can be reduced and also the dependency on crude oil and also minimizing the transportation related pollutants emission, this regarded as the effective component in the sustainable transportation system and also becoming popular. Here, in this work the proposed design is to create and also handle the electric vehicles (EV) ch
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Sharma, Mr Shantanu, Mr Abhishek Pandey, Mr Siddhartha Kumar, Mr Divaker Tivari, Mr Abhishek Saini, and Er Jitender Kumar Vashishtha. "DESIGNING AND PROTOTYPING OF BATTERY MANAGEMENT SYSTEM." International Journal of Engineering Applied Sciences and Technology 09, no. 02 (2024): 107–10. http://dx.doi.org/10.33564/ijeast.2024.v09i02.009.

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the gadget is designed to continuously monitor the batteries' voltage, temperature, and current. If any issues are detected, it will immediately cut off the input or the output. These settings have the advantage of automatic shutdown in response to temperature fluctuations, charging based on predetermined input parameters, and ongoing battery state monitoring and display. This research paper discusses the development of a Battery Management System (BMS) as a capstone project. The BMS regularly checks and safeguards the device's battery. Parts of the system include the lithiumion battery, butto
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14

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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15

Ika Putri, Ratna, Surya Nata, and Bambang Priyadi. "Battery Charging Control Using Photovoltaic with Sepic Converter." International Journal of Frontier Technology and Engineering 1, no. 01 (2022): 33–41. http://dx.doi.org/10.33795/ijfte.v1i01.396.

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This article presents a battery charging design using photovoltaic with a septic converter. The use of batteries as energy storage is one way to ensure the availability of energy to the load and overcome the weaknesses of photovoltaic systems which depend on solar irradiation and temperature. when the solar irradiation is low, the battery can supply energy to the load. SEPIC converter is used to adjust the battery charging voltage requirements. The output voltage of the SEPIC converter is maintained constant by setting the duty cycle using a microcontroller. Based on the results of experimenta
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16

Maghfiroh, Hari, Joko Slamet Saputro, Berlian Shanaza Andiany, et al. "Smart Home System With Battery Backup and Internet of Things." Journal of Applied Engineering and Technological Science (JAETS) 5, no. 1 (2023): 42–57. http://dx.doi.org/10.37385/jaets.v5i1.1969.

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This research enhances Smart Home Systems by integrating an Automatic Transfer Switch (ATS) for seamless power source switching between the grid and a backup battery, ensuring uninterrupted operation during power disruptions. An Automatic Battery Charging (ABC) system optimizes battery charging based on its condition, improving energy storage and efficiency. The system provides on-site electrical equipment control and sensor data access via a Human Machine Interface (HMI). Remote monitoring and control through the Blynk app offer convenience. Additionally, an energy consumption estimation feat
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17

Xiao, Juan. "The Design of Marine 24 V DC Uninterruptible Power Supply." Applied Mechanics and Materials 536-537 (April 2014): 1537–41. http://dx.doi.org/10.4028/www.scientific.net/amm.536-537.1537.

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A marine DC uninterruptible power supply is designed. The UPS adopts PIC16C73 single-chip microcomputer to realize the battery management. Both AC power and battery power, the output voltage stability in 23 to 24 v.Via advanced battery management, two sections of charging, equalized charging and floating charging can automatic convert and the DCUPS has many functions of protection, such as over-voltage protection ,under voltage protection and short circuit protection.The actual use on the ship and other occasions showed that the DCUPS is convenient and practical,and is more simple, reliable an
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18

Chen, Chun Ming, Hung Wei Hsieh, Yu Lin Juan, Tsair Rong Chen, and Peng Lai Chen. "Automatic Battery Testing Platform for Series-Connected Lead Acid Batteries." Advanced Materials Research 1014 (July 2014): 220–23. http://dx.doi.org/10.4028/www.scientific.net/amr.1014.220.

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In this paper, an automatic testing platform was developed. A complete charging and discharging cycle for the series-connected lead-acid batteries is carried out by the testing platform to record the capacity, charging efficiency, and other relative data of the batteries. A microcontroller unit (MCU) is used to replace the common DAQ card for cost reduction. The voltage and current of the batteries are sampled by the MCU and saved by the software LabVIEW on the personal computer. The charging and discharging procedures are automatically switched by the software LabVIEW according to the state o
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19

Firdaus, Himma, Ihsan Supono, Qudsiyyatul Lailiyah, et al. "Performance Evaluation of High-Energy LiFePO4 Battery Pack for Electric Shuttle." IOP Conference Series: Earth and Environmental Science 1344, no. 1 (2024): 012024. http://dx.doi.org/10.1088/1755-1315/1344/1/012024.

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Abstract For tourism-based electric shuttles, high-energy batteries are crucial. A 200 Ah Lithium Iron Phosphate (LiFePO4) battery pack has been designed yet lacks performance evaluation. We conducted performance tests based on ISO 12405-4:2018. The battery comprises 24 cells connected in series, resulting in a 72 V output voltage. Under controlled conditions at 23°C, the test assessed charging and discharging at defined C-rates. The study assessed the resistance, capacity, and efficiency. We also monitored heat distribution in the battery system during test to detect abnormalities. The result
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20

Dewi, Rozlinda, Eko Suprapto, and Kanthi Wahyuni. "Optimasi Charger Controller Pembangkit Listrik Picohidro Kapasitas 250 Watt." Journal of Electrical Power Control and Automation (JEPCA) 7, no. 1 (2024): 4. http://dx.doi.org/10.33087/jepca.v7i1.111.

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PLTMH is one of the renewable energy power plants that is environmentally friendly. Indonesia has considerable hydropower potential that can be developed into Micro / Mini Hydro Power Plants of 19,385 MW spread throughout Indonesia [2]. PicoHidro Power Plant is part of PLTMH with an output power of &lt; 1 kW [1]. The advantages of this plant are generating electricity without being too influenced by seasons and day and night changes, power generation fluctuations are relatively small, the possibility of electricity generation is high, the impact on the environment is very small and the fast re
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21

Wardhana, Dimas Aditya Putra, Dedid Cahya Happyanto, Era Purwanto, Gilang Ekavigo Astafil Akbar, and Karisma Trinanda Putra. "AutoDock-IPS: An Automated Docking for Mobile Robot Based on Indoor Positioning System." Journal of Electrical Technology UMY 5, no. 1 (2021): 32–39. http://dx.doi.org/10.18196/jet.v5i1.12310.

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Mobile robots are proven to be reliable in supporting the human tasks by using a computerized system that minimizes human errors. However, recharging the battery in these robots is still performed manually by the user. Therefore, to extend their lifetime, an indoor automatic docking system ‘AutoDock-IPS’ is created for mobile robot to charge its battery automatically. The automatic docking system determines the location of the docks (i.e., charging stations) so that, prototype can immediately navigate to them. Experiments were carried out to validate the docking method by utilizing a compass m
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A.Mamatha, G.Sushma, prudhvika G.Sai, Agrawal Smita, and Solomon Raju Y.David. "Automatic Movable Solar Lamp for Continuous Charging." Journal of Advanced Research in Technology and Management Sciences (JARTMS) 02, no. 2 (2020): 6–10. https://doi.org/10.5281/zenodo.3892224.

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In today&rsquo;s climate of growing energy needs and increasing environmental concern, alternatives to the use of non-renewable and polluting fossil fuels have to be investigated. One such alternative is solar energy. Solar panels consists of photovoltaic cells, converts the solar energy into electrical energy and this electrical energy is stored into a battery. The system designed here is very useful for gardens, where huge trees exist. In such places availability of solar energy may be difficult due to the shadow of trees; therefore solar lamp posts may not function properly. To overcome thi
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Sheikh, Protik Parvez, Tarifuzzaman Riyad, Bezon Dey Tushar, Sadman Shahriar Alam, Abu Shufian, and Istiaq Mahmood Ruddra. "Thyristor-based Rechargeable Battery Charger." Journal of Engineering Research and Reports 26, no. 3 (2024): 104–12. http://dx.doi.org/10.9734/jerr/2024/v26i31097.

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In this project, our main objective is to design an automatic battery charger using Silicon-Controlled Rectifier (SCR) and simulate their operation. Batteries play a crucial role in safely storing electricity by converting electrical energy into chemical energy. The primary focus of our project is on thyristor-based rechargeable battery chargers, known for their high quality and competitive pricing. We delve into the design and simulation of automatic battery chargers employing SCR technology. This article encompasses the simulation, implementation, and partial construction of such a charger.
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Julius O. Paler. "DEVELOPMENT OF A PROGRAMMABLE LOGIC CONTROLLER (PLC)-BASED COIN OPERATED AUTOMATIC CHARGING STATION." Journal of Science, Engineering and Technology (JSET) 1, no. 1 (2013): 43–50. http://dx.doi.org/10.61569/pgrpxt50.

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Most people nowadays use chargeable devices such as smart phones, tablets, laptops, media players. When these gadgets ran out of battery there is always that need to be able to charge the device. An automatic charging station caters to all users of any chargeable gadget. The study used the experimental method and it was accomplished by fabricating the device including the wirings of components and programming the PLC. The device was evaluated on its functionality and efficiency. The device was highly functional and efficient as results showed an increase in battery life and equal charging time
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Tohari, M. lutfi Nur, and Hesti Istiqlaliyah. "Aplikasi Energi Alternatif Sinar Matahari Pada Mesin Pelontar Pakan Ikan Mandiri Berbasis Microcontroller." Jurnal Mesin Nusantara 5, no. 1 (2022): 22–29. http://dx.doi.org/10.29407/jmn.v5i1.17520.

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The sun is one source of renewable energy that is unlimited and always available, this energy can be converted into electrical energy by utilizing solar panels. Sunlight in Indonesia has great potential to be used as a solar power plant (PLTS), sunlight is an alternative energy with an average radiation of 4.5-4.8 kWh/m2. cell module, with 15% cell conversion efficiency. Automatic fish feeding methods have been developed a lot, but most of the automatic fish feed still uses electricity from PLN, which will be an obstacle in the event of a power outage from PLN. In this study, we tested a solar
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Liu, Xing Qiao, and Yan Chen. "Research on Intelligent Controller of Solar Lighting System." Applied Mechanics and Materials 220-223 (November 2012): 1138–41. http://dx.doi.org/10.4028/www.scientific.net/amm.220-223.1138.

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After discussing the charging and discharging characteristics of valve regulated lead acid(VRLA) battery, we described the working principle of UC3906. Then designed the controller of 12V battery charge circuit, 12V battery discharge protection circuit and lamp detection control circuit. This controller achieved automatic switch of lighting system, it could efficiently charge the battery and avoid over-charge or over-discharge. The result showed that this controller extend the life of the battery.
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Ngoua Ndong Avele, J. B., and V. S. Goryainov. "UAV Docking Station: Study on Building an Autonomous Takeoff and Landing Platform for Unmanned Aerial Vehicles." LETI Transactions on Electrical Engineering & Computer Science 16, no. 9 (2023): 38–48. http://dx.doi.org/10.32603/2071-8985-2023-16-9-38-48.

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Studies how to increase the efficiency of autonomous operation of drones using an intelligent docking station for unmanned aerial vehicles (UAVs), which improves charging and maintenance, reducing the need for human intervention in these processes. Known examples of designs for an automatic drone recharging system have been considered. The results present a system developed for automatic landing of drones on the platform and concepts for systems for automatically positioning the drone after landing and for wireless charging or replacing the drone battery.
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MILEA, Petru-Lucian, and Grigore ȚIPLEA. "Design and Implementation of an Automated Instrument for Battery Charging Experiments." Romanian Journal of Information Science and Technology 27, no. 3-4 (2024): 362–78. http://dx.doi.org/10.59277/romjist.2024.3-4.09.

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Accurate and long-term measurements are essential in battery charging research and development, to evaluate and compare different techniques and their effectiveness. In such approaches, a very good control of certain charging parameters is also necessary, during several hours or even days. Thus, it became necessary to obtain an automatic instrument that could ensure the precision and repeatability of the experiments, but also the flexibility regarding the type and size of the b attery. This article presents the design, implementation and preliminary experimentation of an instrument for automat
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Li, Shi Guang, Li Zhi Wang, Zheng Zhong Gao, Xiao Jing Zhang, and Li Na Zhao. "Charge and Discharge Protection Circuit of a Mobile Power Supply Improvement." Applied Mechanics and Materials 644-650 (September 2014): 3534–37. http://dx.doi.org/10.4028/www.scientific.net/amm.644-650.3534.

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There are many kinds of mobile power supply, in this paper, aiming at the existing mobile power cannot be automatically continued charging problem, an automatic charging and discharging circuit design, and put forward the improvement circuit corresponding to the common lithium battery over-voltage and over-current protection, battery monitoring problem. The widespread use of application of STC15W401AS, SX2105, DS2762 chip as the core device, with the corresponding peripheral circuit, provides a reference for the application of charge power supply protection circuit of lithium ion batteries bas
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Sylvester, Tirones. "Automatic 12-Volt Battery Charge Controller for Telecommunication Systems." International Journal of Inventive Engineering and Sciences (IJIES) 12, no. 5 (2025): 25–31. https://doi.org/10.35940/ijies.E1104.12050525.

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<strong>Abstract:</strong> Everyday electronic applications rely on electric energy to perform work. The growing use of electrical appliances has significantly increased electricity demand. In remote areas where electronic systems are deployed, DC power is essential, making batteries vital for energy storage. Rechargeable batteries are widely used as backup power sources in applications requiring continuous operation, but without appropriate chargers, they become ineffective. Telecommunication systems, crucial for transmitting and receiving information, depend on reliable power. A battery char
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Han, Dong Qi, and Jin Li. "Design of Cleaning Robot Autonomous Charging System." Advanced Materials Research 722 (July 2013): 497–502. http://dx.doi.org/10.4028/www.scientific.net/amr.722.497.

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A system of cleaning robots independent charge containing hardware system and software system is designed. The hardware circuit of charging station includes a power supply circuit, the battery constant current charging circuit of charging current which can be regulated by the hardware and software, position coding signal transmitting circuit. This paper also presents a new independent charging algorithm that the robot can search automatically charging station using the random walk model in unknown environment, so that the robot have the ability to find independently the charging station. The r
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Haseena, P. Y., Cletus Cliffin, and K. Sabeena. "Next-Generation EV Charging: A Hybrid Approach with Seamless Automated Fee Collection." Next-Generation EV Charging: A Hybrid Approach with Seamless Automated Fee Collection 8, no. 11 (2023): 6. https://doi.org/10.5281/zenodo.10149036.

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Electric vehicles are currently seen as a highly promising solution for sustainable transportation. However, a significant drawback is the extended time required for charging, which poses a substantial obstacle to their widespread adoption. The conventional method of fee collection for EV charging in public charging stations is time consuming and has a lot of errors and causes confusion. In this study, we introduce an innovative approach to address the previously mentioned challenges. We integrate a lithium-ion battery and a super-capacitor bank in a 60-40 ratio to tackle the initial problem.
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Kavaliauskas, Žydrūnas, Igor Šajev, Giedrius Blažiūnas, and Giedrius Gecevičius. "Investigation of the Automatic Monitoring System of a Solar Power Plant with Flexible PV Modules." Applied Sciences 14, no. 20 (2024): 9500. http://dx.doi.org/10.3390/app14209500.

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During this research, an automatic monitoring system was developed to monitor the working parameters in a solar power plant consisting of two flexible silicon modules. The first stage of the monitoring system relies on a microcontroller, which collects data from wattmeter modules made using a microcontroller. This tier also includes DC/DC converter and RS232-TCP converter modules for data transfer. The second stage, the industrial PLC, receives data from the first stage and transmits them to the PC, where the information is stored and the processes are visualized on the HMI screen. During this
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Sylvester, Tirones. "Automatic 12-Volt Battery Charge Controller for Telecommunication Systems." International Journal of Inventive Engineering and Sciences (IJIES) 12, no. 5 (2025): 25–31. https://doi.org/10.35940/ijies.E1104.12050525/.

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<strong>Abstract: </strong>Every day, electronic applications rely on electric energy to perform work. The growing use of electrical appliances has significantly increased electricity demand. In remote areas where electronic systems are deployed, DC power is essential, making batteries vital for energy storage. Rechargeable batteries are widely used as backup power sources in applications requiring continuous operation, but without appropriate chargers, they become ineffective. Telecommunication systems depend on reliable power, which is crucial for transmitting and receiving information. A ch
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S., Alexander. "Optimal Bidirectional Battery Charger." International Journal of Advance Research and Innovation 3, no. 1 (2015): 134–38. http://dx.doi.org/10.51976/ijari.311525.

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This paper presents a optimal bidirectional battery charger. The proposed charger acts as a current source, i.e., acts in constant current (CC ) mode with a controlled output current in case of deep discharge of a battery, and as a voltage source, i.e., acts in constant-voltage (CV) mode with a controlled output voltage for near-100% battery state of charge. The proposed circuit is universal from the battery voltage point of view, i.e., can charge a battery with any given voltage rating, and adaptive from the optimum charging current requirement viewpoint, i.e., can adapt to the optimum batter
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Wang, Zhen Po, Hai Bin Han, and Lu Zeng. "Research on Automatic Replacing Technology of Power Battery Pack." Advanced Materials Research 308-310 (August 2011): 217–23. http://dx.doi.org/10.4028/www.scientific.net/amr.308-310.217.

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The short driving range and long charging time are two big problems for electric vehicles. A concept of battery pack automatic replacement is put forward in this paper to solve these problems, and a deep research on the key techniques is contained. This paper introduced the way of positioning and locking in replacement process, including the concrete structure of both replacing equipment and battery pack. For reliability problems of the connectors, two schemes are designed. Elastic jacks and coil are adopted to guarantee the reliability and automatically centering. On this basis, battery fast
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Hrishikesh, Jagtap, G. Desai Shripad, and M. Holmukhe Rajesh. "Development and Performance Examination of Switch Mode Power Supply based Battery Charger for Electric Vehicle." Indian Journal of Science and Technology 15, no. 25 (2022): 1253–63. https://doi.org/10.17485/IJST/v15i25.2362.

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Abstract <strong>Objectives:</strong>&nbsp;The study&rsquo;s primary goal is to investigate a Switch Mode Power Supply (SMPS)-based battery charger for electric vehicles (EV) and compare the use of various charging techniques.&nbsp;<strong>Methods</strong>: This study provides ideas for the requirements of an SMPS-based battery charger; design and development of the charger; and operation of the charger with different charging techniques. Further, the development of the proposed charger, its testing and performance examination are carried out. This study also gives details about circuit compon
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38

Tirones, Sylvester, and Raj Kumar. "Automatic 12-Volt Battery Charge Controller for Telecommunication Systems." International Journal of Inventive Engineering and Sciences 12, no. 5 (2025): 25–31. https://doi.org/10.35940/ijies.e1104.12050525.

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Every day, electronic applications rely on electric energy to perform work. The growing use of electrical appliances has significantly increased electricity demand. In remote areas where electronic systems are deployed, DC power is essential, making batteries vital for energy storage. Rechargeable batteries are widely used as backup power sources in applications requiring continuous operation, but without appropriate chargers, they become ineffective. Telecommunication systems depend on reliable power, which is crucial for transmitting and receiving information. A charger matched to the batter
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39

Kavaliauskas, Žydrūnas, Igor Šajev, Giedrius Blažiūnas, and Giedrius Gecevičius. "Electronic Life Cycle Monitoring System for Various Types of Lead Acid Batteries." Applied Sciences 13, no. 8 (2023): 4746. http://dx.doi.org/10.3390/app13084746.

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With the development of renewable sources of electricity, more and more attention is paid to electricity storage systems and their research. In order to make the research process of various types of batteries automatic, an automatic system for monitoring of the working characteristics and parameters of batteries was created. System management is based on the ATmega328 series microcontrollers. The system control program code and computer application were created using programming languages C and Delphi. The developed system is able to support the automated process of battery testing and to info
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40

Baicu, Laurentiu Marius, Mihaela Andrei, and Bogdan Dumitrascu. "Microcontroller-Based Platform for Lithium-Ion Battery Charging and Experimental Evaluation of Charging Strategies." Technologies 13, no. 5 (2025): 178. https://doi.org/10.3390/technologies13050178.

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Efficient and safe charging of lithium-ion batteries is essential for maximizing their lifespan and performance. This paper presents the design and implementation of a microcontroller-based Li-ion battery charger that employs real-time monitoring, adaptive charging strategies, and built-in safety mechanisms. The system integrates a CC/CV charging approach with automatic current regulation, overcharge protection, and reverse polarity detection. A current sensor module ensures continuous monitoring, while an LCD interface provides real-time feedback on charging parameters. Experimental validatio
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41

Yahaya, Y. and Hassan, N. Y. "Design, Construction and Evaluation of 5A AC-DC Portable Lead Acid Battery Charger with an Inbuilt Automatic Shut OFF." International Journal of Science for Global Sustainability 6, no. 2 (2020): 8. http://dx.doi.org/10.57233/ijsgs.v6i2.116.

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Battery charger is a system that restores battery after being discharged. It is well known that battery can be destroyed for being discharged below its manufacturers specified discharge voltage limit, when left for some hours. A single switch fly back buck converter that enables battery charging from the alternating current (AC) supply is designed, and constructed. To prevent the battery from overcharging an automatic charge controller was added to the design. Size of the charger was minimised by designing it to operate at higher frequency. It has an input potential difference (PD) from 80 to
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42

Vladimir, Dj. Vukić, Dj. Prole Rajko, and Jevtić Darko. "A novel facility with thyristor rectifiers and direct current distribution board for a hydro power plant supply." Proceedings, Electrical Engineering Institute "Nikola Tesla" / Zbornik radova, Elektrotehnički institut "Nikola Tesla" 20, no. 1 (2010): 143–56. https://doi.org/10.5281/zenodo.6542775.

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Thyristor rectifiers from the series DRI-PT with analogue control electronics printed circuit board &quot;DIGISP 09&quot; and serial diodes towards the load represent an additional improvement of the existing rectifiers based on the programmable logic controller (PLC). Along with the concomitant direct current distribution board it represents the redundunt system for the direct current supply of consumers in a hydro power plant. New implemented functions are the output voltage compensations depending on the battery temperature and the battery cables voltage drop, active sharing of the load cur
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43

Mei, Yan. "Study on Sliding Mode Control in Bidirectional DC/DC Converter Based on State Space Averaging Method." Applied Mechanics and Materials 678 (October 2014): 399–405. http://dx.doi.org/10.4028/www.scientific.net/amm.678.399.

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Bidirectional DC/DC converter is used for the battery charging and discharging. The sliding mode controller based on state space averaging algorithm is used for controlling bidirectional DC/DC converter. Two kinds of working modes, buck mode and boost mode, have been analyzed and three kinds of working states which are consisted by two working modes have been deeply discussed, and the automatic switch logic diagram when battery charging and discharging through the bidirectional DC/DC converter has been presented. Situation of system based on S1, S2 conducting alternately has been studied, and
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44

Qu, An Dong, and Zi Hong Zhang. "The Design of Charger Based on 1T SCM." Applied Mechanics and Materials 347-350 (August 2013): 1553–56. http://dx.doi.org/10.4028/www.scientific.net/amm.347-350.1553.

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For the control characteristics of lithium batteries and nickel-metal hydride batteries, to design the hardware and software components of the PWM microcontroller battery charger, 2 battery charger can access, display temperature, automatic charging, sound and light alarm function. Voltage and current parameters self-tuning method to further improve the performance of adaptive charger, it can play a good dynamic response, fast charge and slow charge, the overshoot small, and has a the dynamic tracking quality and steady-state accuracy, and mobile phone lithium battery practical application, to
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45

Wang, Ying Hui, Yang He, and Xian Tao Liu. "Design and Development of Electric-Bus Battery Swap Control System Based on Quantum Platform." Applied Mechanics and Materials 241-244 (December 2012): 778–84. http://dx.doi.org/10.4028/www.scientific.net/amm.241-244.778.

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It takes a long time to replenish energy for electric-bus by charging, while battery swap is an effective way with fast energy supplement ability. The process of electric-bus battery swap is complex, how to realize automatic, efficient and reliable battery swap is an urgent problem to be solved. This paper analyzed the electric-bus battery swap system, and then constructed the control model of battery swap according to state machine theory, finally developed a battery swap control system based on Quantum Platform framework. The battery swap control system has been applied to many electric-bus
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46

Bahach, Ruslan. "Enhancing electromagnetic compatibility and energy efficiency of electric vehicle charging stations." Vehicle and electronics. Innovative technologies, no. 25 (May 7, 2024): 53–62. http://dx.doi.org/10.30977/veit.2024.25.0.6.

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Problem. The article proposes a single-link structure for an electric vehicle charging station utilizing an active four-square rectifier with power factor correction. A Matlab model of the proposed charging station is developed, taking into account parameters such as the power network, the switches of the active rectifier, its automatic control system, and an equivalent model of the battery compartment. Additionally, a mathematical model for calculating static and dynamic losses is created based on polynomial approximation of the energy dependencies of IGBT modules. The analysis investigates p
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47

K, SARAN. "Enhancing Fire Protection for Electric Vehicle Batteries." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 04 (2025): 1–9. https://doi.org/10.55041/ijsrem45631.

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Abstract - Electric vehicle battery packs need a complex Battery Management System (BMS) for vital parameter monitoring such as voltage, current and state of charge and temperature to ensure safety together with operational efficiency. This research explores the BMS safety mechanisms which include external battery aging notifications through smoke detection followed by alarm sounds and an optimal cooling system along with automatic charging to prevent battery degradation. Short-circuit protection devices in batteries decrease electrical failure risks which can prevent both fires and dead batte
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48

Tudor, E., A. Marinescu, R. Prejbeanu, et al. "Electric bus platform for urban mobility." IOP Conference Series: Earth and Environmental Science 960, no. 1 (2022): 012022. http://dx.doi.org/10.1088/1755-1315/960/1/012022.

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Abstract Today, the technology of automatic battery charging based on Wireless Power Transfer (WPT) for the electric mass transit industry involving electric trains, buses and trams, is being used more and more. The modern solution described in this paper proposes an innovative technology for mixed charging of electric buses, either by wireless charging for 2-3 minutes in selected stations, or by plug-in charging at the end of the bus line, which results in only minimal energy storage on board - practically enough to get to the next charging station. The reduction of the weight of the battery
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49

Rachmat, Rachmat, Nugraha S, Teddy Istanto, and Nilfred Patawaran. "Prototyping solar panel tracking for onion automatic fertigation control in merauke district." IOP Conference Series: Earth and Environmental Science 1454, no. 1 (2025): 012033. https://doi.org/10.1088/1755-1315/1454/1/012033.

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Abstract Controller technology is one of the technologies that can be used to assist shallot farmers in implementing more optimal fertigation. However, its application is often hindered by the distance of agricultural land from electricity sources, particularly in shallot farming areas in Merauke District, Papua, Indonesia. The condition of agricultural land far from electrical sources requires a greater resource investment to activate existing fertigation technology. The aim of this research is to provide an automatic fertigation system for shallot plants based on renewable energy that can op
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50

Rohan, Ali, Mohammed Rabah, Muhammad Talha, and Sung-Ho Kim. "Development of Intelligent Drone Battery Charging System Based on Wireless Power Transmission Using Hill Climbing Algorithm." Applied System Innovation 1, no. 4 (2018): 44. http://dx.doi.org/10.3390/asi1040044.

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In this work, an advanced drone battery charging system is developed. The system is composed of a drone charging station with multiple power transmitters and a receiver to charge the battery of a drone. A resonance inductive coupling-based wireless power transmission technique is used. With limits of wireless power transmission in inductive coupling, it is necessary that the coupling between a transmitter and receiver be strong for efficient power transmission; however, for a drone, it is normally hard to land it properly on a charging station or a charging device to get maximum coupling for e
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