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基于四线圈的动态无线输电的位置检测 被引量:2
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作者 杨金明 邓梓颖 +1 位作者 陈渊睿 孙杰杉 《广东电力》 2021年第4期43-52,共10页
在无线输电系统中,当接收线圈相对于发射导轨或线圈发生左右偏移时,二者之间互感下降,从而导致电动汽车获取的电能减少,系统效率下降。针对这个问题,提出一种车辆位置检测方法,将其应用于发射侧为分布式发射线圈的动态无线输电系统中,... 在无线输电系统中,当接收线圈相对于发射导轨或线圈发生左右偏移时,二者之间互感下降,从而导致电动汽车获取的电能减少,系统效率下降。针对这个问题,提出一种车辆位置检测方法,将其应用于发射侧为分布式发射线圈的动态无线输电系统中,为接收侧的驾驶员提供车辆相对于发射线圈的位置信息,协助驾驶员主动调整车辆位置,使接收线圈尽量与发射线圈对准,从而使得二者的互感达到最大,汽车能稳定拾取电能,系统运行效率也尽可能提高。所提方法采用4个感应线圈,通过检测感应线圈上的感应电压,计算接收线圈相对于发射线圈的横向偏移。通过仿真分析检测原理,验证了该方法的准确性,并通过实验证明其可行性。实验证明,该方法能够较准确地检测接收线圈偏移的方向和距离。 展开更多
关键词 电动汽车 动态无线输电 线圈偏移 位置检测 感应电压
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Analysis of transmitter-side control methods in wireless EV charging systems 被引量:2
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作者 LIU Fang CHEN KaiNan +1 位作者 ZHAO ZhengMing LI Kai 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第10期1492-1501,共10页
The wireless electric vehicle(EV) charging system is highly safe and flexible. To reduce the weight and cost of EVs, the wireless charging system, which simplifies the structure inside an EV and utilizes the transmitt... The wireless electric vehicle(EV) charging system is highly safe and flexible. To reduce the weight and cost of EVs, the wireless charging system, which simplifies the structure inside an EV and utilizes the transmitter-side control method, has become popular. This study investigates the transmitter-side control methods in a wireless EV charging system. First, a universal wireless charging system is introduced, and the function of its transfer power is derived. It is observed that the transfer power can be controlled by regulating either the phase-shift angle or the DC-link voltage. Further, the influence of the control variables is studied using numerical analysis. Additionally, the corresponding control methods, namely the phase-shift angle and the DC-link voltage control, are compared by calculation and simulation. It is found that:(1) the system efficiency is low with the phase-shift control method because of the converter switching loss;(2) the dynamic response is slow with the DC-link voltage control method because of the large inertia of the inductor and capacitor;(3) both the control methods have limitations in their adjustable power range. Therefore, a combined control method is proposed, with the advantages of high system efficiency, fast dynamic response, and wide adjustable power range. Finally, experiments are performed to verify the validity of the theoretical analysis and the effectiveness of the proposed method. This study provides a detailed and comprehensive analysis of the transmitter-side control methods in the wireless charging system, considering the sensitivity of parameters, converter losses, system efficiency,and dynamic performance, with the dead-time effect taken into consideration. Moreover, the proposed control method can be used to realize the optimal combination of the phase-shift angle and the DC-link voltage with good dynamic performance, and it is useful for the optimal operation of the wireless charging system. 展开更多
关键词 clean-energy vehicles EV charging system wireless power transfer (WPT) transmitter-side control phase-shift control DC-link voltage control combined control method
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