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Active Tuning of Wireless Power Transfer System for compensating coil misalignment and variable load conditions

机译:无线电力传输系统的主动调整,用于补偿线圈未对准和可变负载条件

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Wireless Power Transfer is an alternative technique for powering remote devices across small gaps where the use of cables is not suitable. Such technique requires inductive coupled coils in a tuned circuit in order to efficiently transfer power to a load. Thus, the power transferred to the load is very sensible to variations in the position between the transmitter and receiver coils as well as the variations in the load. This work presents a multi-variable dynamic method for tracking the maximum possible output power in a wireless power transfer system robust to misalignments and load variations. An electronic system, located in the transmitter, monitors the magnitude and phase of the input current of the inductive link while actuating in both the source frequency and a variable matching network executing the tracking algorithm. Experimental results showed that the power delivered to the load, controlled only by the transmitter, can be substantially increased in low values of magnetic coupling coefficient k. Also, the power the can be held approximately constant over a large range of magnetic coupling coefficients and load values. This are significant improvements on the results obtained by actuating only on the source frequency or only on the matching network. (C) 2020 Elsevier GmbH. All rights reserved.
机译:无线电源传输是一种用于在电缆使用不适合的小间隙上供电的远程设备的替代技术。这种技术需要在调谐电路中感应耦合线圈,以便有效地将电力转移到负载。因此,传递到负载的功率非常明智,可以对发射器和接收器线圈之间的位置的变化以及负载中的变化来变化。这项工作提出了一种多变量动态方法,用于跟踪无线电力传输系统中的最大可能输出功率的强大,以鲁棒到错位和负载变化。位于发射器中的电子系统,监视电感链路的输入电流的幅度和相位,同时在源频率和执行跟踪算法的可变匹配网络中致动。实验结果表明,磁耦合系数k的低值基本上增加了递送到负载的电力,其电源基本上增加。而且,在大范围的磁耦合系数和负载值范围内,可以保持电力近似恒定。这是通过仅在源频率上或仅在匹配网络上执行的结果而获得的显着改进。 (c)2020 Elsevier GmbH。版权所有。

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