Simulation of hybrid electrical vehicle charging station in multimode operation

Yadnik Shubham, Tiwari Shruti
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Abstract

The use of electric vehicles is growing very rapidly, and more and more people are switching to electric vehicles as the problem of air pollution has become a concern in most parts of the world. In addition, the spike in fuel prices around the world has prompted people to opt for an alternative vehicle option other than conventional Internal Combustion Engine (ICE) vehicles. But as the number of electric vehicles increases, the need to install charging stations on a very large scale also increases. The main problem with conventional grid-based charging stations is that they increase the load on the main grid and affect the power quality of the local distribution network. This paper discusses the modeling and simulation of a hybrid electric vehicle charging station operating in multi-mode (i.e., grid-connected or Grid Power Connected Mode (GPCM) and solar-powered or Solar Power Connected Mode (SPCM). The Electric Vehicle (EV) charge controller automatically switches between GPCM and SPCM. With this hybrid electric vehicle charging station model, renewable energy can be integrated with the main grid to improve the efficiency and reliability of the electric vehicle charging station, so the Electric Vehicle Charging Station (EVCS) hybrid model can help to expand the electric vehicle charging network on a large scale. The simulation was performed using MATLAB 2016.
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混合动力汽车充电站多模式运行仿真
电动汽车的使用增长非常迅速,越来越多的人转向电动汽车,因为空气污染问题已经成为世界大部分地区关注的问题。此外,全球燃油价格的飙升促使人们选择替代汽车,而不是传统的内燃机(ICE)汽车。但随着电动汽车数量的增加,大规模安装充电站的需求也在增加。传统的并网充电站存在的主要问题是增加了主电网的负荷,影响了局部配电网的电能质量。本文讨论了混合动力汽车充电站在多模式下(即并网或并网模式(GPCM)和太阳能供电或并网模式(SPCM)下的建模与仿真。电动汽车(EV)充电控制器在GPCM和SPCM之间自动切换。该混合动力汽车充电站模型可以将可再生能源与主电网相结合,提高电动汽车充电站的效率和可靠性,因此电动汽车充电站(EVCS)混合动力模型有助于大规模扩展电动汽车充电网络。利用MATLAB 2016进行仿真。
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AUTOMATIC POWER IMPROVEMENT USING AURDUINO MICROCONTROLLER Enabling rural electrification through a grid-interactive microgrid system with photovoltaic-battery integration HYSTERETIC CONTROLLED SMART GRID SYSTEM WITH ENHANCED RESPONSE AN IMPLEMENTATION OF RENEWABLE ENERGY BASED MODELING AND CONTROL OF THREE PHASE HYBRID – MICROGRID SYSTEM Simulation of hybrid electrical vehicle charging station in multimode operation
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