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Positional characteristics of capacitive power transfer as a resonance coupling system

机译:作为谐振耦合系统的电容电力传输的位置特性

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Capacitive power transfer has many important merits including less heating, less effect from metal barriers and more material options. But its positional characteristics had not been studied quantitatively and generically enough. This study analyzed the capacitive power transfer with the same manner as magnetic resonance. The analysis on the equivalent circuit model showed the positional characteristics of the efficiency are determined by coupling coefficient as in magnetic resonance. The coupling coefficient simulation showed the effective range is as long as that of magnetic resonance along the distance and is longer along the one of misalignment directions.
机译:电容电力传输具有许多重要的优点,包括较少的加热,较少的金属屏障的效果和更多的材料选择。 但它的位置特性尚未定量且经过地研究。 该研究以与磁共振相同的方式分析了电容电力传输。 对等效电路模型的分析显示通过磁共振中的系数来确定效率的位置特性。 耦合系数模拟显示有效范围只要沿距离的磁共振的距离并且沿着未对准方向之一更长。

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