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Design of Inductive Power Transfer System With a Behavior of Voltage Source in Open-Loop Considering Wide Mutual Inductance Variation

机译:考虑宽相互电感变化的开环电压源行为的感应电力传输系统设计

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This article analyses the fundamental aspects of the principal resonant network topologies for inductive power transfer systems. From the analytical derivation, different features, such as the variation of the coupling factor or load changes, are studied. Based on this study, a resonant series-series topology is selected, which cancels the leakage inductance. Due to the specifications, the air gap distance and its tolerance (+/- 12%) produce a wide variation of the coupling factor of the inductive link. Therefore, through fast three-dimensional simulations by finite elements, the inductive link is designed so that this variation is minimized. This maintains the resonance and the designed system, in turn, behaves like a voltage source regardless of power, and thus, evades the implementation of a control stage. Adc-dc converter is constructed where the distance between the primary and secondary side vary from 35 to 45 mm, and the power ranges from 0 to 5 kW. The output voltage range goes from 38 to 55 V-DC. Experimental results for the dc-dc converter report an efficiency of over 94%.
机译:本文分析了归纳电力传输系统的主要谐振网络拓扑的基本方面。从分析推导,研究了不同的特征,例如耦合因子或负载变化的变化。基于这项研究,选择了共振系列级拓扑,取消了泄漏电感。由于规格,气隙距离及其公差(+/- 12%)产生了电感链路的耦合因子的宽变化。因此,通过有限元的快速三维模拟,设计感应链路使得该变化最小化。这保持了谐振和设计系统,又表现得像电压源,无论电源如何,因此,避免控制阶段的实现。构造ADC-DC转换器,其中初级和次级侧的距离在35至45mm之间变化,功率范围为0至5 kW。输出电压范围从38到55 V-DC。 DC-DC转换器的实验结果报告效率超过94%。

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