了解电动汽车充电对配电电压的影响

A. Dubey, S. Santoso, M. Cloud
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引用次数: 20

摘要

本文评价了配电线路参数对电动汽车负荷下一次回路和二次回路电压的影响。这里考虑的配电电路参数有;服务变压器相对于变电站的位置以及辅助服务中EV负载的位置。电压分析采用以住宅负荷为主的13.8 kV配电馈线进行。研究表明,电动汽车充电对二次电压的影响比对一次电压的影响更显著。即使在一次配电线路的远端,短路容量也足够高;因此,防止EV负载影响其一次电压。在离变电站较近和较远的一次业务中,4个240V/16A EV负载充电时,其一次电压的附加电压降分别为0.023%和0.13%。然而,由于两个位置(远/近)的次级业务线的短路容量明显较低,次级业务电压会出现大约4.5%的额外电压下降。研究还表明,在同一次要服务中,安装在远离服务变压器的负载节点上的单个电动汽车负载比安装在附近负载节点上的电动汽车(0.81%)的附加电压降相对较高(1.7%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding the effects of electric vehicle charging on the distribution voltages
This paper evaluates effects of the distribution circuit parameters on the primary and secondary circuit voltages due to EV loads. The distribution circuit parameters considered here are; location of the service transformer with respect to the substation and location of the EV loads within the secondary service. The voltage analysis is carried out using a 13.8 kV distribution feeder dominated by residential loads. The study reveals that EV charging affects the secondary voltage more significantly than the primary voltage. The short-circuit capacity even at the remote end of the primary distribution line is adequately high; hence, preventing EV loads from affecting its primary voltage. When four 240V/16A EV loads in a secondary service nearby and remote from the substation are charging, the additional voltage drops in their respective primary voltages are 0.023% and 0.13%. However, because the short-circuit capacity at the secondary service wire for both locations (remote/nearby) is significantly lower, additional voltage drops of approximately 4.5% occur in the secondary service voltages. The study also reveals that a single EV load installed on a distant load node from a service transformer leads to comparatively higher additional voltage drop (1.7%) than an EV on a nearby load node (0.81%) in the same secondary service.
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