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Electric Vehicle as an Energy Storage for Grid Connected Solar Power System

机译:电动汽车作为并网太阳能系统的储能设备

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In the past few years the growing demand for electricity and serious concern for the environment have given rise to the growth of sustainable sources like wind, solar, tidal, biomass etc. The technological advancement in power electronics has led to the extensive usage of solar power. Solar power output varies with the weather conditions and under shading conditions. With the increasing concerns of the impacts of the high penetration of Photovoltaic (PV) systems, a technical study about their effects on the power quality of the utility grid is required. This paper investigates the functioning of a grid-tied PV system along with maximum power point tracking (MPPT) algorithm. The effects of varying atmospheric conditions like solar irradiance and temperature are also taken into account. It is proposed in this work that an Electric Vehicle (EV) can be used as an energy storage to stabilize the power supplied to the grid from the photovoltaic resources. A coordinated control is necessary for the EV to obtain desired outcome. The modeling of the PV and EV system is carried out in PSCAD and the proposed idea is verified through simulation results utilizing real field data for solar irradiance and temperature.
机译:在过去的几年中,电力需求的增长和对环境的严重关注导致了可持续资源的增长,例如风能,太阳能,潮汐能,生物质能等。电力电子技术的进步导致了太阳能的广泛使用。 。太阳能输出随天气条件和遮阳条件而变化。随着对光伏(PV)系统高渗透率影响的关注日益增加,需要对它们对公用电网电能质量的影响进行技术研究。本文研究了并网光伏系统的功能以及最大功率点跟踪(MPPT)算法。还应考虑变化的大气条件(例如太阳辐射和温度)的影响。在这项工作中,建议将电动汽车(EV)用作能量存储,以稳定从光伏资源提供给电网的电力。为了使电动汽车获得理想的结果,必须进行协调控制。在PSCAD中对PV和EV系统进行建模,并通过利用太阳辐射和温度的实地数据的仿真结果验证了所提出的想法。

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