充电站变压器设计中PEV充电对配电变压器老化的影响分析

C. Su, Chan-nan Lu, Kaiyuan Zheng, J. Teng, R. Leou, Kuo-Feng Huang
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引用次数: 6

摘要

随着插电式电动汽车(pev)的发展,对广泛分布的公共充电站的需求日益增长,这些充电站为电动汽车的充电提供电能。在充电站设计中,合理的配电变压器为电站提供可靠的电力是必不可少的。为保证充电站的经济可靠运行,提出了一种电动汽车充电站变压器的设计方法。根据ANSI/IEEE标准,建立了一套描述变压器绕组温度与充电站负荷分布关系的动态热能模型。基本负荷、pev需求、电能质量、环境温度、变压器额定值和连接都被考虑在内。然后利用这些模型分析pev充电对变压器损耗的影响,确定合适的变压器容量和连接方式。所提出的方法提供了对变压器效应的更好认识,并可用于评估配电变压器可能接受的pev水平。所建立的模型也可用于充电站配电系统设计中确定合适的变压器。通过对台湾某电动汽车充电站的现场测试,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of PEV charging impact on distribution transformer aging for charging station transformer design
As plug-in electric vehicles (PEVs) are expanding, there is a growing need for widely distributed publicly accessible charging stations that supply electric energy for the recharging of the PEVs. In the charging station design, the proper distribution transformers that delivery reliable power from utility to the station are essential and important. To ensure economic and reliable operation of the charging station, the paper proposes a methodology for the PEVs charging station transformer design. A set of dynamic thermal energy models that describe the relationship between the transformer winding temperature and charging station load profile is derived according to ANSI/IEEE standards. The base load, PEVs demand, power quality, ambient temperature, transformer rating and connection all are taken into account. The models are then used to analyze PEVs charging impact on transformer loss-of-life and determine the proper transformer capacity and connection. The proposed method provides a better knowledge of the transformer effects and can be used for evaluating the level of PEVs that might be accepted on a distribution transformer. The models developed can also be used for determining proper transformers in the design of charging station distribution systems. The field testing results of a practical charging station for PEVs pilot projects in Taiwan confirm the validity of the proposed method.
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