Predictive active power-flow control of two-way wireless power transfer system in V2G services

A. Mohamed, A. Berzoy, O. Mohammed
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引用次数: 7

Abstract

This paper presents a new methodology of active power flow control for a bidirectional inductive wireless power transfer (BIWPT) system in electric vehicle (EV) ancillary services based on the system analytical model. The controller exists on the vehicle side to consider the EV's owner's desire for providing energy to the other sources. The owner is able to choose between three different control modes; Charge, Discharge and Abstain (no interaction). The controller considers the EV's battery state-of-charge (SOC) which is provided by the battery management system (BMS). The control parameters are predicted based on a simple and an accurate analytical model for the BIWPT system. The misalignment effect on the controller performance is considered by adaptively estimating the wireless pads mutual inductance. The proposed controller is implemented and tested by means of simulations and experiments for stationary and quasi-dynamic wireless power transfer situations.
V2G业务中双向无线电力传输系统的预测有源潮流控制
提出了一种基于系统分析模型的电动汽车辅助服务双向感应无线电力传输系统有功潮流控制新方法。控制器存在于车辆一侧,以考虑电动汽车所有者为其他来源提供能量的愿望。车主可以选择三种不同的控制模式;充电,放电和弃权(无交互作用)。控制器考虑由电池管理系统(BMS)提供的电动汽车电池充电状态(SOC)。在此基础上,对BIWPT系统的控制参数进行了简单准确的预测。通过自适应估计无线垫互感,考虑了不对准对控制器性能的影响。通过对静态和准动态无线电力传输情况的仿真和实验,对所提出的控制器进行了实现和测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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