IoT-Based Intelligent Energy Management for EV Charging Stations

被引:0
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作者
Dasi, Swathi [1 ]
Bondalapati, Swarupa Rani [2 ]
Subbaraju, Mummidi P. [3 ]
Nimma, Divya [4 ]
Jangir, Pradeep [5 ,6 ]
Reddy, R. Vijaya Kumar [7 ]
Zareena, N. [8 ]
机构
[1] Electronics and Communication Engineering Department, Prasad V. Potluri Siddhartha Institute of Technology, Andhra Pradesh, Vijayawada, India
[2] Electrical and Electronics Engineering Department, Velagapudi Ramakrishna Siddhartha Engineering College, Andhra Pradesh, Vijayawada, India
[3] Electrical and Electronics Engineering Department, Aditya University, Andhra Pradesh, Surampalem, India
[4] University of Southern Mississippi, United States
[5] Biosciences Department, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, Chennai, India
[6] associated with Applied Science Research Center, Applied Science Private University, Amman, Jordan.
[7] Computer Science and Engineering Department, Koneru Lakshmaiah Education Foundation, Andhra Pradesh, Vaddeswaram, India
[8] Computer Science and Engineering Department, R.V.R. & J. C. College of Engineering, Guntur, India
关键词
Air conditioning system - Battery storage - Charging station - Conditioning systems - Electric vehicle charging - Management systems - Smart energies - Smart energy management system - Solar PVs - Vanadium redox flow batteries;
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摘要
The electronics panels and controllers used in electric vehicle (EV) charging stations need to function securely and optimally in countries such as India, where the external temperature remains high for a significant part of the year. This study is the first to use a solar-battery storage integrated switchable glazing architecture to supply HVAC (heating, ventilation, and air conditioning) in the control rooms of electric vehicle charging stations throughout the day. The EV charging station has been equipped with a rooftop-mounted solar PV source as part of an initiative to promote renewable energy and sustainable forms of mobility. The utilization of a vanadium redox flow battery (VRFB) by the system ensures energy security through the provision of a durable solution for storing energy over an extended period of time. A smart scheduling system utilizing IoT technology was demonstrated to effectively meet the glazing load need of buildings in real-time, taking into account dynamic climatic conditions. This system incorporates solar PV, VRFB storage, and the neighborhood power grid. The efficiency of the suggested method was validated using four separate transitory scenarios: sunny, intermittently cloudy, prolongedly cloudy, and low solar radiation with frequent grid outages. Due to its versatility to be applied in various situations, the suggested method has the potential to greatly enhance capacity. © (2024), (International Association of Engineers). All rights reserved.
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页码:1853 / 1861
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