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Efficiency and Frequency Bifurcating Phenomenon Research ofSeries Resonance Converter Applied in a Contact-less Power Transmission System

机译:串联谐振变换器在非接触电力传输系统中的效率和分叉现象研究

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A contact-less power transmission system is applied widely in many fields, such as medical treatment, petroleum, mine, underwater equipments and military affairs, and have a very extensively future. The powder transmitting system based on the contact-less power transmission of the electromagnetic coupling technology and power electronics, which use the transformer whose primary and secondary side are both detachable and avoids the phenomenon of the exposed conductor and spark which appears in the power transmitting procedure transmits the power from the main side to single load or multiple-load. The transmission efficiency is one of the system research focuses. This paper particularly discusses the affection of the parallel compensate capacitor in the secondary side of series resonance converter to system efficiency by theoretical analysis and formulation deduction, and brings forward the optimum project of shunt compensate capacitor. Meanwhile this paper does study the Frequency Bifurcating Phenomenon with the changes of different shunt compensate capacitor, the experiment proves that the shunt compensate capacitor chosen in this method will greatly increase the system transmission efficiency.
机译:非接触式电力传输系统广泛应用于医疗,石油,矿山,水下设备和军事等许多领域,并且具有非常广阔的未来。基于电磁耦合技术和电力电子技术的非接触式电力传输的粉末传输系统,该系统使用的变压器的一次侧和二次侧都是可分离的,避免了在电力传输过程中出现裸露的导体和火花的现象将电源从主侧传输到单负载或多负载。传输效率是系统研究的重点之一。本文通过理论分析和公式推导,特别讨论了串联谐振变换器次级侧并联补偿电容器对系统效率的影响,提出了并联补偿电容器的优化方案。同时对不同分流补偿电容器的变化进行了分频现象的研究,实验证明该方法选择的分流补偿电容器将大大提高系统的传输效率。

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