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Decoupling Circuit for Automated Guided Vehicles IPT Charging Systems With Dual Receivers

机译:用于自动引导车辆的解耦电路IPT充电系统用双接收器

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摘要

It is more efficient to employ inductive power transfer (IPT) systems to charge automated guided vehicles (AGVs) than traditional plug-in systems. In order to provide independent and different charging power for the driven system and the control system of AGVs simultaneously, this letter proposes a coaxial dual-receiver structure and a decoupling circuit, which utilizes a passive component connected with two receiving coils to cancel out the mutual inductance between each other. By using this decoupling method, the two receiving coils could be treated as independent receivers without precise placement or additional transformers. First, the decoupling model is analyzed in detail, and the value of the decoupling component is given without any restriction of the ratio of their current. Then, the structure of the dual receiver is designed. Finally, an IPT system with one transmitter and dual receivers is built to verify the feasibility of the proposed method. Experimental results show that when one of the loads varies from 20 to 80 Omega, the voltage fluctuation of the other load is as small as 1.36% with decoupling, whereas 54.46% of voltage fluctuation without decoupling. The results validate that the proposed method is suitable for the application requiring dual independent outputs in the same equipment.
机译:使用感应电力传输(IPT)系统比传统插件系统充电自动引导车辆(AGV)更有效。为了同时为驱动系统和AGVS的控制系统提供独立和不同的充电功率,该字母提出了一种同轴双接收器结构和解耦电路,其利用与两个接收线圈连接的无源分量来消除相互的彼此之间的电感。通过使用该去耦方法,两个接收线圈可以被视为无需精确放置或附加变压器的独立接收器。首先,详细分析去耦模型,并给出去耦组分的值而不限制其电流的比率。然后,设计了双接收器的结构。最后,构建了一个发射器和双接收器的IPT系统以验证所提出的方法的可行性。实验结果表明,当其中一个载荷从20到80ω变化时,另一个负载的电压波动与去耦时小于1.36%,而电压波动的54.46%而没有去耦。结果验证了所提出的方法适用于在同一设备中需要双独立输出的应用。

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