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Multi-frequency Phase-shifted Angle Control Strategy for a Two-phase MCR WPT system with Multiple Loads to Achieve Targeted Power Distribution and Stable Transmission Power

机译:多负载两相MCR WPT系统的多频相移角控制策略,可实现目标功率分配和稳定的发射功率

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Multi-load wireless power transfer (WPT) using electromagnetic induction principle has attracted increasing attention recently. However, there is much difficulty to achieve targeted power distribution to multiple loads and stable transmission power with misalignment between sending coils and receiving coils. To solve this problem, as a representative case, this paper employs a two-phase magnetically coupled resonant (MCR) WPT system with two receiving coils. The receiving coils are adjusted at two different frequencies to implement load identification. Meanwhile, by adjusting the resonant frequency of sending coils, the targeted power distribution to selective loads is achieved. Furthermore, the system combines two orthogonal sending coils excited by two equivalent ac sources with phase-shifted angle control to stabilize the transmission power. Finally, a prototype is built to test the transmission power of the system and the experimental results are in agree with the theoretical analysis.
机译:最近,使用电磁感应原理的多负载无线功率传输(WPT)引起了越来越多的关注。然而,在发送线圈和接收线圈之间未对准的情况下,要实现针对多个负载的目标功率分配和稳定的发射功率非常困难。为了解决这个问题,作为代表,本文采用了带有两个接收线圈的两相磁耦合谐振(MCR)WPT系统。以两个不同的频率调整接收线圈,以实现负载识别。同时,通过调整发送线圈的谐振频率,可以将目标功率分配给选择性负载。此外,该系统将两个由两个等效交流电源激励的正交发送线圈与相移角控制相结合,以稳定发射功率。最后,建立了测试系统传输功率的样机,实验结果与理论分析相吻合。

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