Sensitivity Analysis of Inductive Power Transfer Systems With Voltage-Fed Compensation Topologies

Sensitivity Analysis of Inductive Power Transfer Systems With Voltage-Fed Compensation Topologies
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具有电压馈电补偿拓扑的感应电能传输系统的灵敏度分析

DOI:
10.1109/tvt.2019.2903565
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发表时间:
2019-03
影响因子:
6.8
通讯作者:
Mi Chunting Chris
Mi Chunting Chris
中科院分区:
计算机科学2区
文献类型:
--
作者:
Lu Jianghua;Zhu Guorong;Wang Huai;Lu Fei;Jiang Jin;Mi Chunting Chris

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感应功率传输(IPT)系统的输出特性和传输效率受到(但不限于)参数变化的影响,例如可变负载、初级和次级线圈之间的未对准以及谐振频率失谐。本文首先分析了IPT系统中所有电压馈电补偿拓扑的谐振条件,以实现负载无关的零相角频率下的负载无关电压传输特性。在此基础上,系统地研究了S-SP、LCC-S、LCC-P和双侧LCC补偿IPT系统在考虑线圈和补偿网络损耗时,系统参数对系统关键性能因素的敏感性。定量的灵敏度分析和实验结果的比较,所有的IPT系统的电压传输比和效率。这些分析可以为选择优良的上级补偿网络提供指导,以最大限度地减少额外的转换器工作量,并简化闭环IPT系统的控制算法。
The output characteristics and the transfer efficiencies of inductive power transfer (IPT) systems are affected by (but not limited to) the variation of parameters such as, variable load, misalignment between the primary and secondary coils, and resonance frequency detuning. This paper first analyzes the resonant conditions of all voltage-fed compensation topologies in IPT systems to achieve the load-independent voltage transfer characteristic at load-independent zero phase angle frequency. With these conditions, the parameters sensitivity to the key performance factors of the S-SP, LCC-S, LCC-P, and double-sided LCC compensated IPT systems are systematically investigated when considering the losses in coils and compensation networks. Comparisons of the quantitative sensitivity analysis and experimental results for all IPT systems are made in terms of the voltage transfer ratio and efficiency. These analyses can provide guidance for the selection of superior compensation networks to minimize the additional converter effort and simplify the control algorithm of closed-loop IPT systems.
采用初级侧控制器的串联-串联和串联-并联补偿无线功率传输系统的恒定电流/电压充电操作
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DOI: 10.1136/bmj.1.3096.619
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