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Influence of Four Types Wind Turbine Power Plants as Distributed Generation to Charging Electrical Vehicle Batteries on Electrical Power System

机译:四种风力涡轮机发电厂对电力系统充电电气电池的分布式发电

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Main advantage of electric vehicles (EV) compared to vehicles using fossil fuels is that does not produce air pollution. One day the existence of conventional vehicles will be replaced by EV. EV gets electricity supply from batteries. When using EV, one day the electrical energy in the batteries will run out. To recharge batteries, important components such as the Electrical Vehicle Charger (EVC) are needed. EVC provides the impact of voltage drop on the electric power system bus during the charging process. This voltage drop caused by the power supply from generators cannot meet the needs of loads, including chargers and batteries. To maintain the voltage so it remains at its safe operating voltage, the same bus with EVC is interconnected with renewable energy sources. Renewable energy sources used in this study are four types of wind turbine power plants. Safe range of operating voltage in this research from 95% to 105%. This paper analyzes the change in voltage in the electric power system when the wind power plant fills EVC. The research methods section uses several scenarios. The aim is to determine the effect of each type of wind power plant on the bus voltage and EVC. Simulation results show that scenario 3 has the best results than the other scenarios. In scenario 3, voltage in bus 12 is 98,08%, voltage in bus 13 is 98,66%, and voltage in bus 14 is 98,42%. All three buses in safe limits of the operating voltage.
机译:电动汽车(EV)的主要优点与使用化石燃料的车辆相比,不产生空气污染。有一天,传统车辆的存在将被EV所取代。 EV获得电池供电。使用EV时,有一天电池中的电能将用完。为电池充电,需要重要的部件,例如电动车辆充电器(EVC)。 EVC在充电过程中提供电压下降对电力系统总线的影响。由发电机电源引起的该电压降不能满足负载的需求,包括充电器和电池。为了保持电压,使其保持在其安全工作电压,与EVC的相同总线与可再生能源相互连接。本研究中使用的可再生能源是四种类型的风力涡轮机发电厂。该研究的安全范围为95%至105%。本文分析了风电厂填充EVC时电力系统的电压变化。研究方法部分使用多种情况。目的是确定每种风力电厂对总线电压和EVC的影响。仿真结果表明,场景3具有比其他方案的最佳结果。在场景3中,总线12中的电压为98,08%,总线13中的电压为98,66%,并且总线14中的电压为98,42%。所有三个总线处于安全限制的工作电压。

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