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Magnetic Resonant Coupling As a Potential Means for Wireless Power Transfer to Multiple Small Receivers

机译:磁共振耦合作为无线功率传输到多个小接收器的潜在手段

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摘要

Wireless power transfer via magnetic resonant coupling is experimentally demonstrated in a system with a large source coil and either one or two small receivers. Resonance between source and load coils is achieved with lumped capacitors terminating the coils. A circuit model is developed to describe the system with a single receiver, and extended to describe the system with two receivers. With parameter values chosen to obtain good fits, the circuit models yield transfer frequency responses that are in good agreement with experimental measurements over a range of frequencies that span the resonance. Resonant frequency splitting is observed experimentally and described theoretically for the multiple receiver system. In the single receiver system at resonance, more than 50% of the power that is supplied by the actual source is delivered to the load. In a multiple receiver system, a means for tracking frequency shifts and continuously retuning the lumped capacitances that terminate each receiver coil so as to maximize efficiency is a key issue for future work.
机译:在具有大源线圈和一个或两个小接收器的系统中,实验证明了通过磁共振耦合进行无线功率传输。源线圈和负载线圈之间的谐振通过集总电容器端接线圈来实现。开发了电路模型来描述具有单个接收器的系统,并扩展了电路模型来描述具有两个接收器的系统。通过选择参数值以获得良好的拟合度,电路模型可得出传输频率响应,该响应与跨越谐振的频率范围内的实验测量结果非常吻合。对于多接收器系统,实验观察到了共振频率分裂,并在理论上进行了描述。在共振的单个接收器系统中,实际电源提供的功率的50%以上会传递给负载。在多接收机系统中,跟踪频率偏移并连续地重新调整终止每个接收机线圈的集总电容以便最大化效率的装置是未来工作的关键问题。

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