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Design of a Double-Sided LC Compensated Capacitive Power Transfer System With Capacitor Voltage Stress Optimization

机译:具有电容器电压应力优化的双面LC补偿电容电力传输系统的设计

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Capacitive power transfer (CPT) systems usually have high voltage stresses among coupler plates and compensation capacitors due to small coupling capacitances. High voltages across the coupler plates will incur the strong electric field emission, and it is thus difficult to select compensation capacitors with high voltage stresses. To solve this problem, this brief analyzes a double-sided LC compensated CPT system systematically and finds an operating frequency to realize the load-independent constant current (CC) output and input zero-phase angle (ZPA) simultaneously. Without reactive power in the circuit, a design method is proposed to determine the compensation parameters and operating frequency using the given voltage ratings of coupler plates and compensation capacitors. Thus, voltage stresses among these capacitors could be optimized under their predesigned voltage ratings. The sensitivities of input impedance, output current to variations of compensation parameters are also discussed to realize soft switching. Finally, a prototype of the CPT converter with two types of proposed parameters and symmetric parameters is built to verify the analysis.
机译:由于小的耦合电容,电容电力传输(CPT)系统通常具有高压应力和耦合板之间的高压应力。耦合板的高电压将产生强电场发射,因此难以选择具有高压应力的补偿电容器。为了解决这个问题,本简要介绍了系统地分析了双面LC补偿CPT系统,并找到了实现负载无关恒流(CC)输出并同时输入零相角(ZPA)的工作频率。在电路中没有无功功率,建议使用耦合器板和补偿电容器的给定电压额定值来确定补偿参数和工作频率。因此,可以在其预测的电压额定值下进行这些电容器之间的电压应力。还讨论了输入阻抗的敏感性,对补偿参数变化的输出电流来实现软切换。最后,建立了具有两种类型的参数和对称参数的CPT转换器的原型来验证分析。

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