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Grid Integration and Impact Analysis of High-Power Dynamic Wireless Charging System in Distribution Network

机译:配电网大功率动态无线充电系统的网格集成与影响分析

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Dynamic wireless charging for electric vehicles is an emerging technology to provide an alternative solution for onboard battery reduction and driving range extension. Because of their unique characteristic of very short charging times and relatively high power levels, high-power dynamic wireless charging systems (DWCSs) introduce significant challenges to grid integration. In this paper, a comprehensive study of the high-power DWCS on grid integration control and impact analysis into distribution networks is conducted. Due to the unique load profile of DWCSs with power pulsations and the inherent imbalanced situations of a distribution network, a control strategy based on direct power control is proposed for the grid interface of DWCS to enhance the load transient response and ensure the stable operation. Considering that the load profile of DWCSs closely relates to traffic volumes and the approaching vehicle speeds, a 24-h load profile is developed based on Annual Average Daily Traffic (AADT) data and a stochastic model to analyze the grid impact of high-power DWCSs in a distribution network. Case studies on a modified IEEE 13-bus distribution network are presented to validate the effectiveness of the proposed approach.
机译:电动汽车的动态无线充电是一种新兴技术,为板载电池减少和驱动范围扩展提供替代解决方案。由于它们具有非常短的充电时间和相对较高的功率水平的独特特征,因此高功率动态无线充电系统(DWCSS)对网格集成带来了重大挑战。本文采用了对电网集成控制和冲击分析转化网络的高功率DWC的综合研究。由于具有电源脉动的DWCS的独特负载轮廓和分配网络的固有不平衡情况,提出了一种基于直接功率控制的控制策略,用于DWC的网格接口,以增强负载瞬态响应并确保稳定运行。考虑到DWCS的负载曲线与交通量密切相关,即在接近的车速和接近的车辆速度相关,基于年平均每日流量(AADT)数据和随机模型来开发24-H负载型材,以分析高功率DWCS的电网影响在分销网络中。提出了关于修改的IEEE 13总线分配网络的案例研究以验证所提出的方法的有效性。

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