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Behavioral characterization of electric vehicle charging loads in a distribution power grid through modeling of battery chargers

机译:通过电池充电器建模对电动汽车充电负载在配电网中的行为进行表征

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摘要

Plug-in Electric Vehicle (PEV) is a new atypical load in power systems. In future, PEV load will play a significant role in the distribution grids. This integrated load into the power grid may overload the system components, increase power losses and may violate system constraints. Currently, the most common method of Electric Vehicle (EV) modeling is to consider the EV loads as constant power elements without considering the voltage dependency of EV charging system during state of charges (SOC). EV load demand cannot be considered as a constant power, as modeling as a constant power load will not provide accurate information about the behavior of charging system during charging process. As several research projects on smart grids are now looking into realistic models representing the realistic behavior of an EV loads, this paper proposes a methodology for modeling of EV charger integrated to an electricity grid in order to understand the impacts of EV charging load. A charging system was designed to capture the EV load behavior and extract the coefficients of the EV ZIP load model. A comparative study was carried out with different types of load models. The results indicate that the assumptions of load demand as a constant power to analysis the effect of PEVs on power grid would not be effective in real time application of PEVs.
机译:插电式电动车(PEV)是电力系统中的一种新的非典型负载。将来,PEV负载将在配电网中扮演重要角色。集成到电网中的负载可能会使系统组件过载,增加功率损耗并可能违反系统约束。当前,电动汽车(EV)建模的最常用方法是将EV负载视为恒定功率元素,而不考虑充电状态(SOC)期间EV充电系统的电压依赖性。 EV负载需求不能视为恒定功率,因为​​建模为恒定功率负载将无法提供有关充电过程中充电系统行为的准确信息。由于目前有关智能电网的几个研究项目正在研究代表EV负载实际行为的逼真的模型,因此本文提出了一种用于建模集成到电网中的EV充电器的方法,以了解EV充电负载的影响。设计了一个充电系统来捕获EV负载行为并提取EV ZIP负载模型的系数。对不同类型的负荷模型进行了比较研究。结果表明,将负载需求作为恒定功率来分析PEV对电网的影响这一假设在PEV的实时应用中不会有效。

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