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Robust optimization for a 6.78-MHz wireless power transfer system with Class E rectifier

机译:具有E类整流器的6.78 MHz无线电力传输系统的强大优化

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Class E rectifier is suitable for high-frequency rectification due to its soft-switching operation, which potentially improves the efficiency of wireless power transfer (WPT) systems working at MHz. In this paper, a robust optimization design is discussed for a 6.78-MHz WPT system using the Class E rectifier. In real WPT applications, the parameter variations are possible to be originated from the misalignment of coils, the change of load, and the varying equivalent resistance of rectifying diode under different power level. In this case, a robust optimization problem is formulated to find a solution of system design variables that is both optimal and insensitive to uncertainty of parameters. A genetic-based inner-outer algorithm is applied to solve this problem, where an explicit trade-off among efficiency and robustness is demonstrated in the optimization results. In the final experiments, the analytical results are proved to well match the experimental results. Compared with the WPT system using the conventional design, the proposed robust optimization can achieve an improved design with high efficiency, which is also robust against the variations of working conditions.
机译:E类整流器由于其软开关操作而适合于高频整流,这有可能提高工作在MHz的无线电力传输(WPT)系统的效率。本文讨论了使用E类整流器的6.78 MHz WPT系统的鲁棒优化设计。在实际的WPT应用中,参数变化可能源自线圈的未对准,负载的变化以及在不同功率水平下整流二极管等效电阻的变化。在这种情况下,提出了一个鲁棒的优化问题,以找到对参数不确定性既最佳又不敏感的系统设计变量的解决方案。应用基于遗传算法的内外算法解决该问题,在优化结果中证明了效率和鲁棒性之间的显着权衡。在最终实验中,分析结果被证明与实验结果完全吻合。与使用常规设计的WPT系统相比,所提出的鲁棒性优化可以高效地实现改进的设计,并且对于工作条件的变化也具有鲁棒性。

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