电容性功率传输非谐振与谐振电路效率与功率的推导与比较

Shunya Kuroda, T. Imura
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引用次数: 7

摘要

电容式功率传输比电感式功率传输更安全,因为电容式功率传输不会产生涡流。本文通过推导考虑非谐振(N-N)、一次谐振(S-N)、二次谐振(N-S)、串-串(S-S)和串-并联(S-P)内阻的谐振条件、效率、功率和最优负载的方程,给出了高效、高功率传递的条件。此外,推导并比较了五种拓扑结构的效率和功耗值。因此,在输入电压为100V时,S-S可以以95%的效率传输95W的输出功率,S-S可以以95%的效率传输98W的输出功率。并且,S-S和S-P拓扑优于其他三种拓扑。并通过实验验证了所得结果的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Derivation and Comparison of Efficiency and Power in Non-resonant and Resonant Circuit of Capacitive Power Transfer
Capacitive Power Transfer (CPT) is safer than Inductive Power Transfer (IPT), because eddy current is not generated in CPT. In this study, conditions for transfer with high efficiency and high power were presented by deriving equation of the resonance conditions, efficiency, power, and optimal load considering internal resistance in non-resonance (N-N), primary resonance (S-N), secondary resonance (N-S), series-series (S-S) and series-parallel (S-P) without approximation. In addition, the value of efficiency and power are derived and compared in the five topologies. As a result, it is said that S-S can transfer 95W output power with 95% efficiency and S-S can transfer 98W output power with 95% efficiency when input voltage is 100V. And, S-S and S-P are superior to other three topologies. Furthermore, the validity of the results was shown by conducting experiments.
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