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Maximum Efficiency Operation in Wider Output Power Range of Wireless In-Wheel Motor with Wheel-side Supercapacitor

机译:具有轮侧超级电容器的无线车载电机的更广泛输出功率范围的最大效率操作

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Wireless power transfer (WPT) via magnetic resonant coupling has been widely studied for many applications. In the control of WPT systems with variable power load such as motor, achieving high efficiency and desired power corresponding to the load at any time is important. Some methods which increases efficiency by secondary side power converters has been proposed. In these research, however margin between possible transmission power which is determined by the primary and secondary side voltage and received power is necessary because WPT systems with variable power load is unstable. This paper proposes a method for maximum efficiency operation by dynamic voltage control of the primary and secondary side DC-link. Margin in the transmission power is unnecessary in the system configuration which has supercapacitor and DC/DC converter on the secondary-side because supercapacitor compensates power fluctuation. Simulations and experiments demonstrated feasibility of the proposed method and effectiveness of the controllers.
机译:通过磁共振耦合的无线电力传输(WPT)已广泛研究了许多应用。在控制具有可变功率负载的WPT系统,例如电动机,在任何时间实现与负载对应的高效率和期望的功率是重要的。提出了通过次级侧功率转换器提高效率的一些方法。然而,在这些研究中,由初级和次级侧电压和接收功率决定的可能传输功率之间的余量是必要的,因为具有可变功率负载的WPT系统是不稳定的。本文提出了一种通过初级和次级侧直流控制的动态电压控制最大效率操作的方法。在系统配置中不需要传输功率的裕度,其在二级侧具有超级电容器和DC / DC转换器,因为超级电容器补偿功率波动。仿真和实验表明了控制器的方法和有效性的可行性。

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