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首页> 外文期刊>Journal of Advanced Research >Frequency bifurcation in a series-series compensated fractional-order inductive power transfer system
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Frequency bifurcation in a series-series compensated fractional-order inductive power transfer system

机译:系列补偿分数级电源传输系统的频率分岔

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This paper reveals and analyzes the frequency bifurcation phenomena in the fractional-order inductive power transfer (FOIPT) system with series-series compensation topology. Using fractional calculus theory and electric circuit theory, the circuit model of the series-series compensated FOIPT system is first proposed, then taking the case of a single variable fractional order as an example, three frequency analytical solutions of frequency bifurcation equation are solved by using Taylor expansion method. By analyzing the three bifurcation frequencies solved, it can be found that the frequency bifurcation phenomenon can be effectively eliminated by controlling the fractional order, and the boundary of critical distance and critical load is reduced, thereby expanding the working range of the conventional inductive power transfer (IPT) system. Furthermore, the output power and transfer efficiency at the three bifurcation frequencies are analyzed, it can be observed that the output power and transfer efficiency at the high bifurcation frequency and low bifurcation frequency are close and basically keep constant against the variation of transfer distance, and the output power is obviously higher than that at the intrinsic frequency. In addition, the output power at the three bifurcation frequencies can be significantly improved by adjusting the fractional order. Finally, the experimental prototype of FOIPT is built, and the experimental results verify the validity of theoretical analysis.
机译:本文揭示并分析了具有串联级补偿拓扑的分数级电感电力传输(FOIPT)系统中的频率分岔现象。利用分数微积分理论和电路理论,首先提出了串联系列补偿Foipt系统的电路模型,然后采用单个可变分数顺序的情况作为示例,使用三种频率分配方程的三个频率分析解泰勒膨胀方法。通过分析求解的三个分叉频率,可以通过控制分数顺序来有效地消除频率分叉现象,并且减少了临界距离和临界负荷的边界,从而扩展了传统电感电力传输的工作范围(IPT)系统。此外,分析了三个分叉频率的输出功率和转移效率,可以观察到高分分叉频率和低分叉频率下的输出功率和转移效率是紧密的,并且基本上保持恒定的转移距离变化,以及输出功率明显高于内在频率。另外,通过调整分数顺序,可以显着改善三个分叉频率的输出功率。最后,建造了Foipt的实验原型,实验结果验证了理论分析的有效性。

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