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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Achieving Optimal Efficiency in Energy Transfer to a CMOS Fully Integrated Wireless Power Receiver
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Achieving Optimal Efficiency in Energy Transfer to a CMOS Fully Integrated Wireless Power Receiver

机译:实现向CMOS完全集成无线功率接收器的能量传输的最佳效率

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This paper presents the design and measurement of an inductive link for transferring energy to a fully integrated wireless power receiver. The power receiver design was focused on optimizing each factor that contributes to the link efficiency while its size was constrained to 1.5 mm × 1.5 mm in a conventional CMOS 180-nm process. On the power transmitter side, the primary inductor is printed on an FR4 board and its dimensions are selected so as to optimize its quality factor and the magnetic coupling factor. A strategy is proposed to experimentally determine the performance of the entire system. Using the proposed strategy, we measured a link efficiency of -25.4 dB at a frequency of 986 MHz, with a primary inductor of average diameter 22 mm and distance 15 mm from the receiver. Considering the characteristics of the receiver: monolithic implementation, chip area, link efficiency, and distance to the transmitter, the designed wireless power transfer system exhibits a better performance than state-of-the-art systems.
机译:本文介绍了用于将能量传输到完全集成的无线电力接收器的感应链路的设计和测量。功率接收器设计的重点是优化有助于链路效率的每个因素,而在常规CMOS 180 nm工艺中,其尺寸限制为1.5 mm×1.5 mm。在功率发送器侧,将初级电感器印刷在FR4板上,并选择其尺寸以优化其品质因数和磁耦合因数。提出了一种通过实验确定整个系统性能的策略。使用提出的策略,我们在986 MHz频率下测得的链路效率为-25.4 dB,初级电感的平均直径为22 mm,距接收器的距离为15 mm。考虑到接收器的特性:单片实现,芯片面积,链路效率以及与发射器的距离,设计的无线功率传输系统表现出比现有技术更好的性能。

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