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Coupling Extraction and Maximum Efficiency Tracking for Multiple Concurrent Transmitters in Dynamic Wireless Charging

机译:动态无线充电中多次并发发射机的耦​​合提取和最大效率跟踪

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We propose a fast maximum efficiency tracking, which instantly optimizes all. TX coils' currents using runtime-extracted mutual inductances, for simultaneously activated multiple TXs whose output levels are different each other. For fast control, we propose a theory to runtime extract all the mutual inductances between multiple TXs and an RX. Here, one prerequisite of extracting the values of mutual inductances is to acquire its relative ratios between the mutual inductances. It is proposed that the relative ratio can be obtained by reflected resistances and coil currents of each TX, which are ac quantities but can easily be measured using dc input property of LCC inverter. Using the ratio information in conjunction with RX dc output, the exact values of mutual inductances can be extracted. The aim of the proposed method is to enable fast (no iteration) maximum efficiency tracking for multiple TXs, which entails the optimization of the relative ratios among TX currents, as well as the RX load optimization. A 200-W RX moves at 10 km/h, and the controller can track the optimum target TX currents in response to time-varying magnetic couplings
机译:我们提出了一种快速的最大效率跟踪,该跟踪瞬间优化所有。 TX线圈的电流使用运行时提取的互感,同时激活多个TXS,其输出电平彼此不同。为了快速控制,我们向运行时提取了一个TXS和RX之间的所有互感的理论。这里,提取互感值的一个先决条件是在互感之间获取其相对比。提出,可以通过反射电阻和每个Tx的线圈电流来获得相对比,这是AC量,而是可以使用LCC逆变器的DC输入特性轻松测量。使用与RX DC输出结合使用的比率信息,可以提取相互电感的确切值。所提出的方法的目的是为多个TXS实现快速(无迭代)最大效率跟踪,这需要优化TX电流之间的相对比以及RX负载优化。 200 W RX以10km / h移动,控制器可以响应于时变磁耦合跟踪最佳目标TX电流

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