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Impact of Electric Bus Charging on the Power Distribution System a Case Study IEEE 33 Bus Test System

机译:电动公交充电对配电系统的影响-以IEEE 33公交测试系统为例

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Electric buses (Ebus) have become increasingly used, especially in the metropolitan area, to reduce pollution from carbon monoxide and dust. However, the use of an Ebus requires charging from the power distribution system, which may affect the stability of the system. This paper is a study of the impact of electric bus charging on the power distribution system a case study IEEE 33 bus test system. The study also included Ebus charging integrated with distributed generation (DG) system to improve voltage level. The power flow was calculated using the Newton-Raphson method and the size and location of DG calculated by the voltage deviation index (VDI). The simulation results show the impact of Ebus charging on the system. The fast charging of 6 minutes at 300 kW power, system voltage dropped 0.8139 p.u., mean voltage 0.9014 p.u. The voltage improvement by installing DG on buses 18 and 33 at 1.0 MW and 1.4 MW respectively. The results show that the system voltage increased to 0.9533 p.u., the voltage means 0.9735 p.u. The Ebus charging causes the voltage drop on the power system, which affects the reliability of the system. It is a larger load than the charging of electric vehicles. The installation of DG into the system makes it possible to adjust the voltage level to the standard value.
机译:电动巴士(Ebus)越来越多地用于减少一氧化碳和粉尘的污染,尤其是在大都市地区。但是,使用Ebus需要从配电系统充电,这可能会影响系统的稳定性。本文以IEEE 33总线测试系统为例,研究电动总线充电对配电系统的影响。该研究还包括将Ebus充电与分布式发电(DG)系统集成在一起以提高电压水平。使用牛顿-拉夫森(Newton-Raphson)方法计算功率流,并通过电压偏差指数(VDI)计算DG的大小和位置。仿真结果显示了Ebus充电对系统的影响。在300 kW功率下快速充电6分钟,系统电压下降0.8139 p.u.,平均电压0.9014p.u。通过分别在1.0 MW和1.4 MW的母线18和33上安装DG来改善电压。结果表明,系统电压增加到0.9533 p.u.,电压意味着0.9735p.u。 Ebus充电会导致电源系统上的电压降,从而影响系统的可靠性。它比电动汽车的充电负荷更大。将DG安装到系统中可以将电压水平调整到标准值。

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