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Closed-Form Oriented Modeling and Analysis of Wireless Power Transfer System With Constant-Voltage Source and Load

机译:具有恒压源和负载的无线电力传输系统的闭式定向建模与分析

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摘要

In many practical applications of wireless power transfer, the battery, which can be modeled as a voltage source, is charged wirelessly from the voltage-source inverter via the transmitter and the receiver. Therefore, it is crucial to analyze such a wireless power transfer system. In this paper, the closed-form oriented modeling and analysis of the wireless power transfer system with the constant-voltage source and load are conducted. Two cases are studied: both the transmitter and the receiver are under resonance, and only the receiver is under resonance. In the latter case, the transmitter is set to be inductive for the implementation of zero voltage switching. The battery current, the output power, and the transfer efficiency of both cases are analyzed and compared in detail. The voltage gain, the power factor, and the output power of the latter case are studied to offer physical insights and design guidelines. An experimental prototype is implemented to verify the analysis. The experiments agree with the calculations.
机译:在无线电力传输的许多实际应用中,可以建模为电压源的电池通过发送器和接收器从电压源逆变器进行无线充电。因此,分析这样的无线电力传输系统至关重要。本文对具有恒压源和负载的无线电力传输系统进行了封闭形式的建模和分析。研究了两种情况:发射机和接收机都处于谐振状态,而只有接收机处于谐振状态。在后一种情况下,将发射器设置为感应式,以实现零电压开关。分析并比较了两种情况下的电池电流,输出功率和传输效率。研究后一种情况的电压增益,功率因数和输出功率,以提供物理见解和设计指南。实验原型被实施以验证分析。实验与计算结果吻合。

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