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Power Delivery and Leakage Field Control Using an Adaptive Phased Array Wireless Power System

机译:使用自适应相控阵无线电源系统进行功率传输和泄漏现场控制

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Efficient wireless power transfer and precise control of power delivery and leakage field strength can be achieved using a phased array wireless power transfer system. This has particular importance for charging multiple devices simultaneously, or charging devices in environments where humans or foreign objects will be in close proximity. The phased array wireless power system consists of two or more phase-synchronized power amplifiers each driving a respective transmit coil. The system can maximize power delivery to an intended receiver in one location while simultaneously minimizing power delivery and leakage fields in other locations. These functions are possible by varying the amplitude and phase of each transmitter. This paper provides an analysis of a phased array wireless power transfer system using near-field magnetically coupled resonators, and derives parameters that can be used to automatically determine the optimal magnitude and phase of each transmitter to deliver power to one or more receivers. Experimental results verify the theoretical analysis and additional features of the full system are demonstrated.
机译:使用相控阵无线功率传输系统可以实现高效的无线功率传输以及对功率传输和泄漏场强度的精确控制。这对于同时为多个设备充电或在人类或异物非常靠近的环境中为设备充电特别重要。相控阵无线电力系统由两个或多个相位同步功率放大器组成,每个功率放大器驱动各自的发射线圈。该系统可以最大化向一个位置的预期接收器的功率传输,同时最小化其他位置的功率传输和泄漏场。通过改变每个发射机的幅度和相位,这些功能是可能的。本文对使用近场磁耦合谐振器的相控阵无线电力传输系统进行了分析,并得出了可用于自动确定每个发射机的最佳幅度和相位以向一个或多个接收机供电的参数。实验结果验证了理论分析,并演示了整个系统的其他功能。

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