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Integrated control method for constant output voltage and maximum efficiency tracking of bilateral LCL compensation ICPT system

机译:双边LCL补偿ICPT系统恒定输出电压和最大效率跟踪的集成控制方法

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摘要

Inductive coupled power transfer (ICPT) systems are now more desired to provide constant output voltage with the highest efficiency, which will be affected by source (input voltage) and load (load resistance) conditions. To address this issue, an integrated control method is proposed in this study, which is realised by using the active impedance matching technology based on the buck -boost circuit on the load side and the robustH(infinity)control technology on the inverter side. This control scheme allows both two technologies to be applied simultaneously and independently operated. The bilateral inductor -capacitor -inductor ICPT compensation system is used here to test the proposed method, which is representative, and it is also applicable to other typical compensation topologies and has a certain universality. Finally, an experimental platform is established. Experimental results show that the system can achieve 24 V constant output voltage and 84.53% efficiency tracking under the condition of simultaneous 20% input voltage disturbance and 50% load change, which shows the effectiveness of the proposed integrated control method.
机译:现在更需要感应耦合电力传输(ICPT)系统,以提供具有最高效率的恒定输出电压,这将受到源(输入电压)和负载(负载电阻)条件的影响。为了解决这个问题,在本研究中提出了一种集成控制方法,该方法是通过使用基于负载侧的降压-Boost电路的主动阻抗匹配技术和逆变器侧的Robusth(Infinity)控制技术来实现。该控制方案允许同时和独立地应用两种技术。双边电感器-capacitor -1电压器ICPT补偿系统用于测试所提出的方法,该方法是代表性的,并且还适用于其他典型的补偿拓扑,并且具有一定的普遍性。最后,建立了一个实验平台。实验结果表明,该系统可以在同时20%输入电压干扰和50%负载变化的情况下实现24 V恒定输出电压和84.53%的效率跟踪,这表明了所提出的集成控制方法的有效性。

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