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A Three-Phase AC-AC Matrix Converter with Simplified Bidirectional Power Control for Inductive Power Transfer Systems

机译:用于感应功率传输系统的具有简化双向功率控制的三相AC-AC矩阵转换器

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摘要

The use of direct three-phase ac-ac matrix converter with bidirectional power control for inductive power transfer (IPT) systems is proposed. The converter enables direct power conversion between low-frequency three-phase AC mains and high-frequency IPT systems. A digital power controller is designed and developed to regulate the power transfer rate at the desired level in both directions. A simplified circuit for the bidirectional power controller is presented which can be implemented with a few number of logic components or using a Field Programmable Gate Array (FPGA). The controller enables soft-switching operations and benefits from the resonance frequency tracking capability to maintain the high-efficiency power transmission at any operating conditions. The converter achieves bidirectional power transfer which is specifically useful for establishing grid-to-vehicle (G2V) and vehicle-to-grid (V2G) connections through inductive electric vehicle (EV) charging/discharging systems. Also, the proposed converter can be employed in dynamic IPT systems as it can cope with variations of the system. The controller design methodology, simulation analysis, and the preliminary experimental results of the proposed matrix converter on a case study inductive battery charging system are presented in detail.
机译:提出将具有双向功率控制的直接三相ac-ac矩阵转换器用于感应功率传输(IPT)系统。该转换器可实现低频三相交流电源和高频IPT系统之间的直接功率转换。设计和开发了一种数字电源控制器,以在两个方向上将功率传输速率调节到所需水平。提出了一种用于双向功率控制器的简化电路,该电路可以用几个逻辑组件或使用现场可编程门阵列(FPGA)来实现。该控制器可实现软开关操作,并受益于谐振频率跟踪功能,可在任何工作条件下维持高效功率传输。该转换器实现了双向功率传输,这对于通过感应电动汽车(EV)充电/放电系统建立并网(G2V)和车对网(V2G)连接特别有用。而且,提出的转换器可以用于动态IPT系统中,因为它可以应对系统的变化。详细介绍了该案例研究的感应式电池充电系统的控制器设计方法,仿真分析和拟议的矩阵变换器的初步实验结果。

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