Frequency Regulation Power Allocation Method for Electric Vehicles Coordinated with Thermal Power Units in AGC

Yi Zhao, Yang Du, Hengjie Li, Lingyu Guo, Zhongguang Yang, Yongjun Feng
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Abstract

In order to make better use of the excellent Frequency Regulation (FR) performance of Electric Vehicles (EVs), this paper focuses on the FR power allocation method for EVs coordinated with thermal power units in Automatic Generation Control (AGC). The real-time dispatchable power of large-scale EVs in the form of the aggregator is calculated based on the single EV dispatchable power calculation model. The obtained real-time dispatchable power is used to coordinate with thermal power units participating in the AGC performance assessment through the time-period partitioning control strategy. By piecewise linearizing the battery life loss model, the life loss and the dispatchable power of EVs are integrated to allocate the FR power for EVs in the aggregator. Through the analysis of case, EVs can participate in the AGC performance assessment coordinated with thermal power units well based on the time-period partitioning control strategy. The method proposed in this paper has the better ability in the life loss and solution speed compared with the traditional power allocation strategy to prove its effectiveness.
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AGC中电动汽车与火电机组协调的调频功率分配方法
为了更好地利用电动汽车优良的调频性能,本文重点研究了自动发电控制(AGC)中电动汽车与火电机组协调的调频功率分配方法。基于单个电动汽车可调度功率计算模型,以聚合器的形式计算大型电动汽车的实时可调度功率。通过时间段划分控制策略,将获取的实时可调度功率用于协调参与AGC性能评估的火电机组。通过分段线性化电池寿命损失模型,综合考虑电动汽车的寿命损失和可调度功率,对聚合器中的电动汽车进行FR功率分配。通过案例分析,基于时间段划分控制策略的电动汽车可以很好地参与与火电机组协同的AGC性能评估。与传统的功率分配策略相比,本文提出的方法在寿命损失和求解速度方面具有更好的能力,证明了其有效性。
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