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An Adaptive Impedance Matching Network with Closed Loop Control Algorithm for Inductive Wireless Power Transfer

机译:具有闭环控制算法的自适应阻抗匹配网络用于感应无线电力传输

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For an inductive wireless power transfer (IWPT) system, maintaining a reasonable power transfer efficiency and a stable output power are two most challenging design issues, especially when coil distance varies. To solve these issues, this paper presents a novel adaptive impedance matching network (IMN) for IWPT system. In our adaptive IMN IWPT system, the IMN is automatically reconfigured to keep matching with the coils and to adjust the output power adapting to coil distance variation. A closed loop control algorithm is used to change the capacitors continually, which can compensate mismatches and adjust output power simultaneously. The proposed adaptive IMN IWPT system is working at 125 kHz for 2 W power delivered to load. Comparing with the series resonant IWPT system and fixed IMN IWPT system, the power transfer efficiency of our system increases up to 31.79% and 60% when the coupling coefficient varies in a large range from 0.05 to 0.8 for 2 W output power.
机译:对于感应无线功率传输(IWPT)系统,保持合理的功率传输效率和稳定的输出功率是两个最具挑战性的设计问题,尤其是当线圈距离变化时。为了解决这些问题,本文提出了一种用于IWPT系统的新型自适应阻抗匹配网络(IMN)。在我们的自适应IMN IWPT系统中,将自动重新配置IMN以保持与线圈的匹配,并调整输出功率以适应线圈距离的变化。闭环控制算法用于连续更换电容器,从而可以补偿失配并同时调节输出功率。拟议的自适应IMN IWPT系统以125 kHz的频率工作,可向负载提供2 W功率。与串联谐振IWPT系统和固定IMN IWPT系统相比,当2 W输出功率的耦合系数在0.05至0.8的较大范围内变化时,我们系统的功率传输效率分别提高了31.79%和60%。

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