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Capacitive Power Transfer System using a Cascaded Improved One-Pulse Switching Active Capacitor

机译:使用级联改进型单脉冲开关有源电容器的电容式功率传输系统

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Recently, contactless electric power distribution has become a very attractive method for providing electric power to mobile equipment such as mobile phones or electric vehicles. Inductive power transfer (IPT) with inductive coupling is currently the most popular way to realize contactless electric power distribution. Another way is capacitive power transfer (CPT) with capacitive coupling. In the past, several studies on CPT have effecively used series LC resonance to enhance the transfer power. However, LC resonance is sensitive to parameter changes, which may be caused by the contact conditions of the capacitive coupling.??The authors propose a new power converter suitable for a CPT system that uses a novel improved one-pulse switching active capacitor (I-OPSAC) to enhance power transfer. The proposed system improves the power transfer efficiency without LC resonance and is robust to parameter change. One of the major advantages of I-OPSAC is stable operation without any feedback loops including DC capacitor voltage control. The other major advantage is the easy-to-realize series connection. The paper reports the control scheme and detailed operational characteristics of a cascaded I-OPSAC (C-I-OPSAC), in addition to the simulation and experimental results. The results verified that a C-I-OPSAC enhances transfer power while maintaining stable operation without a feedback loop.
机译:近来,非接触式电力分配已经成为用于向诸如移动电话或电动车辆的移动设备提供电力的非常有吸引力的方法。具有感应耦合的感应功率传输(IPT)当前是实现非接触电能分配的最流行方法。另一种方法是采用电容耦合的电容式功率传输(CPT)。过去,关于CPT的一些研究有效地使用了串联LC谐振来提高传输功率。然而,LC谐振对可能由电容耦合的接触条件引起的参数变化敏感。作者提出了一种适用于CPT系统的新型功率转换器,它使用了新型改进的单脉冲开关有源电容器(I -OPSAC)以增强功率传输。所提出的系统在没有LC谐振的情况下提高了功率传输效率,并且对参数变化具有鲁棒性。 I-OPSAC的主要优点之一是运行稳定,无需任何反馈回路,包括直流电容器电压控制。另一个主要优点是易于实现的串联连接。除仿真和实验结果外,本文还报告了级联I-OPSAC(C-I-OPSAC)的控制方案和详细的操作特性。结果证明,C-I-OPSAC可以提高传输功率,同时保持稳定的运行而没有反馈环路。

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