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Magnetic resonant wireless power delivery for distributed sensor and wireless systems

机译:用于分布式传感器和无线系统的磁共振无线供电

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In this paper we report on a resonant wireless power delivery system using magnetoquasistatic fields. The system consists of a source coil impedance matched to a function generator using a resonant circuit and one or more repeater, or relay, resonant tanks that couple energy from source coil to loads distributed in the system. We experimentally map the power distribution for one and multiple loads as a function of distance from the source and repeater. We then use this information to construct a resonant wireless power delivery system using a distributed set of 4 repeaters and 6 loads, delivering 15 mW total over a distance of 6.4 ft. We also demonstrate that the distributed system is not strongly perturbed by weakly conducting obstructions, such as the human body, enabling non-line-of-sight wireless power of sensor and wireless networks.
机译:在本文中,我们报告了一种使用准静态磁场的谐振无线电力输送系统。该系统由与谐振器匹配的函数发生器匹配的源线圈阻抗和一个或多个中继器或中继谐振储能罐组成,这些储能罐将能量从源线圈耦合到系统中分布的负载。我们实验性地将一个和多个负载的功率分布映射为与源和中继器的距离的函数。然后,我们使用此信息构建一个谐振无线供电系统,该系统使用4个中继器和6个负载的分布式集,在6.4 ft的距离上总共提供15 mW的功率。我们还证明,分布式系统不会受到弱传导障碍的强烈干扰,例如人体,可以实现传感器和无线网络的非视距无线供电。

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