用三谐振电路实现非接触式能量传递的负载电压稳定

H. Abe, H. Sakamoto, K. Harada
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引用次数: 5

摘要

本文研究了采用三谐振电路实现无反馈稳定负载电压的非接触式能量传递系统。该系统采用可拆卸变压器进行磁耦合,具有漏感。因此负载电压随负载电流的增大而大幅度降低。非接触式能量传递系统的反馈控制电路比接触式能量传递系统的反馈控制电路更为复杂。也就是说,期望一个无反馈系统的非接触能量传递系统来稳定负载电压。高效的非接触式能量传递系统需要谐振逆变器和负载匹配谐振电路等多种谐振电路。通过优化上述谐振电路的电容值,提出了一种使负载压降率最小的新方法。
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Load voltage stabilization of noncontact energy transfer using three resonant circuit
This paper is related to the noncontact energy transfer system which can stabilize the load voltage with no feedback control used three resonant circuits. This system which employs a detachable transformer for magnetic coupling has a leakage inductance. Therefore load voltage decreases greatly in proportion to load electric current. A feedback control circuit of the noncontact energy transfer system is more complicated than that of the contact energy transfer system. Namely, a noncontact energy transfer system with no-feedback system is expected for stabilization of the load voltage. A high efficiency noncontact energy transfer system requires several resonant circuits such as resonant inverter and resonant circuit for load matching. The authors found a novel method which minimizes the load voltage drop rate by using optimized capacitance value of above the resonant circuits.
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