lc - s补偿电感输电系统参数变化敏感性分析

Qiang Bo, Yuwang Zhang, Yanjie Guo, Lifang Wang, Zhimeng Liu, Shufan Li
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引用次数: 4

摘要

本文主要研究了电动汽车用1kW/85kHz lc - s补偿电感功率传输(IPT)系统参数变化的灵敏度分析。IPT系统的阻抗角对补偿参数的变化非常敏感,将严重影响IPT系统的安全运行。此外,这些参数的变化也会影响输出功率和效率。本文建立了阻抗角、输出功率、效率和补偿电容之间的数学模型,并采用控制变量法推导和分析了这些指标对补偿电容参数变化的敏感性。然后,针对参数变化对IPT系统的影响,讨论了稳定阻抗角和输出功率的方法。最后,搭建了1 kW IPT系统,验证了灵敏度分析的有效性,所有开关在整个功率范围内均实现了ZVS,实现了系统的可靠运行,从电源到电池负载的效率达到了93.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity Analysis to Parameter Variations in LCC-S Compensated Inductive Power Transfer Systems
This paper focuses on the sensitivity analysis to parameter variations in a 1kW/85kHz LCC-S compensated inductive power transfer (IPT) system for electric vehicle (EV) applications. The impedance angle of the IPT system is sensitive to the compensation parameter variations, which will seriously affect the safe operation of the IPT system. Besides, the output power and efficiency will also be affected by those parameter variations. In this paper, mathematical models between impedance angle, output power, efficiency, and compensation capacitors are established, and the sensitivity of these indexes to compensation capacitor parameter variations is derived and analyzed by adopting the control variable method. Then, aiming at the effect of parameter variations on the IPT system, the methods of stabilizing the impedance angle and output power are discussed. Finally, a 1 kW IPT system was built to verify the validity of sensitivity analysis, all switches realize ZVS within the entire power range which can realize the reliable operation for the system, and 93.3% efficiency from de power source to battery load is achieved.
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