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Maximum Efficiency Point Tracking for Multiple-Transmitter Wireless Power Transfer

机译:多变送器无线电源传输的最大效率点跟踪

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We propose a maximum efficiency tracking for a multiple-transmitter system that optimizes both the current ratios of transmitter (Tx) coils and the effective Rx load. It is found that unlike the single-Tx case, the optimal load impedance of multiple-Tx system depends on the current ratios among Tx coils. Meanwhile, the Tx current ratios should be controlled to be the same with magnetic coupling ratios between each Tx and Rx. Hence, we propose a two-step tracking method that first optimizes the Tx current ratios and then optimizes the Rx load impedance. To match the Tx current ratio with the magnetic coupling ratio, it is analyzed that the reflected resistances at every Tx become identical to each other when the Tx coil current ratios are equal to the magnetic coupling ratios. It is also revealed that the reflected resistance at specific Tx is reduced (increased) when its Tx current is increased (reduced) relative to other Tx currents. The proposed feedback equalizes all reflected resistances based on this property. The second step of the proposed tracking is to optimize the Rx load while fixing the Tx current ratios by globally scaling up or down the strengths of whole Tx currents. Maximum of 478 W is delivered at 79% efficiency. The algorithm does not have a limit on the number of Txs except the small standby power consumption. The proposed theoretic analysis and control method enable the first-ever maximum efficiency tracking for multiple-Tx system, where the first step optimizes the relative Tx current ratios and the second step optimizes the load impedance.
机译:我们为多变送器系统提出了最大效率跟踪,该系统优化发射器(TX)线圈的电流比和有效RX负载。发现与单TX案例不同,多TX系统的最佳负载阻抗取决于TX线圈之间的电流比。同时,应控制Tx电流比率与每个Tx和Rx之间的磁耦合比相同。因此,我们提出了一种双步跟踪方法,其首先优化TX电流比,然后优化RX负载阻抗。为了与磁耦合比匹配Tx电流比,当Tx线圈电流比等于磁耦合比时,将每个Tx的反射电阻变得相同。还揭示了当其Tx电流相对于其他TX电流增加(减小)时,特定Tx的反射电阻减小(增加)。所提出的反馈基于此属性均衡所有反射电阻。所提出的跟踪的第二步是通过全局缩放或缩小整个TX电流的强度来优化RX负载,同时固定TX电流比。最多478瓦以79%的效率提供。除了小备用功耗之外,该算法对TX的数量没有限制。所提出的理论分析和控制方法使得能够对多TX系统的第一阶段最大效率跟踪,其中第一步优化相对TX电流比,第二步优化负载阻抗。

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