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Autotuning Control System by Variation of Self-Inductance for Dynamic Wireless EV Charging With Small Air Gap

机译:自动控制控制系统通过自电感进行动态无线EV充电,气隙充电

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摘要

In this paper, an autotuning control system (ACS), which utilizes the variation of self-inductance of a transmitter (Tx) coil caused by a ferrite core of a receiver (Rx), is newly proposed for the dynamic wireless electric vehicle (EV) charging. A Tx module consists of only passive elements that include a Tx coil, a partially compensated capacitor in series with the Tx coil, and a parallel compensation capacitor. All Tx modules share an ac bus line that passes the output filter of an inverter in parallel without any active switches. The current of the coupled Tx coil increases automatically without any manipulations such as controlling the power switches, sensing, or communication when the Rx module is approaching. Not only the system efficiency is increased by the reduction of the conduction losses from the uncoupled Tx modules, but control also becomes simpler because sensors are not required for detecting EVs, and the constant output voltage characteristics can be obtained. Through experiments, it was found that the proposed ACS is suitable for applications such as a tram that runs along an orbit with a small air gap, such as a train. The results showed that the current of a coupled Tx coil increased 11.6 times larger than that of an uncoupled Tx coil, at which time the dc-dc efficiency achieved was 88.4% for an output power of 766W(10 Omega of load resistance) at the laboratory scale.
机译:在本文中,新提出了用于动态无线电动车(EV)新建由接收器(RX)的铁氧体核心引起的发射器(Tx)线圈的自电感的变化的自动调控系统(ACS)。 ) 收费。仅TX模块仅由包括Tx线圈的无源元件,与Tx线圈串联的部分补偿电容器,以及并行补偿电容器。所有TX模块共享交流总线线路,该线路通过任何活动开关并行传递逆变器的输出滤波器。耦合的TX线圈的电流自动增加,没有任何操纵,例如当RX模块接近时控制电源开关,感测或通信。不仅通过减小来自未耦合的TX模块的传导损耗来增加系统效率,但是控制也变得更简单,因为检测EV是不需要传感器,并且可以获得恒定输出电压特性。通过实验,发现所提出的ACS适用于沿着轨道沿着具有小气隙的轨道运行的电车等应用,例如火车。结果表明,耦合TX线圈的电流比未耦合的TX线圈的电流增加了11.6倍,此时所取得的DC-DC效率为88.4%,用于766W(载荷电阻10Ω的10 omega)的输出功率实验室规模。

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