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Detecting Load Resistance and Mutual Inductance in Series-Parallel Compensated Wireless Power Transfer System Based on Input-Side Measurement

机译:基于输入侧测量的串联并联补偿无线功率传输系统中的负载电阻和互感检测

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In wireless power transfer (WPT) system, the variations in load resistance and mutual inductance influence the output voltage and output current, making the system deviate from its desirable operating condition; hence, it is essential to monitor load resistance and mutual inductance. Using input-side measurement to detect load resistance and mutual inductance has great advantages, because it does not need any direct measurements on the receiving side. Therefore, it can remove sensors on the receiving side and eliminate communication system feeding back the load measurements. This paper investigates load resistance and mutual inductance detection method in series-parallel compensated WPT system. By measuring input current and input voltage, the equation for calculating load resistance is deduced; when the operating frequency is lower than or equal to the receiving-side resonant frequency, the rigorous mathematical derivations prove that load resistance can be uniquely determined by using only one measurement of input current and input voltage. Furthermore, the analytical expressions for identifying load resistance and mutual inductance are deduced. Experiments are conducted to verify the proposed method.
机译:在无线功率传输(WPT)系统中,负载电阻和互感的变化会影响输出电压和输出电流,从而使系统偏离其理想的工作条件。因此,必须监控负载电阻和互感。使用输入侧测量来检测负载电阻和互感具有很大的优势,因为它不需要在接收侧进行任何直接测量。因此,它可以删除接收端的传感器并消除通讯系统反馈负载测量值的过程。本文研究了串并联补偿WPT系统中的负载电阻和互感检测方法。通过测量输入电流和输入电压,推导了计算负载电阻的公式。当工作频率低于或等于接收侧谐振频率时,严格的数学推导证明,仅使用输入电流和输入电压的一种测量就可以唯一确定负载电阻。此外,推导了用于识别负载电阻和互感的解析表达式。进行实验以验证所提出的方法。

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