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A Dynamically Adaptable Impedance-Matching System for Midrange Wireless Power Transfer with Misalignment

机译:动态调整的阻抗匹配系统,用于错位的中程无线功率传输

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To enable the geometrical freedom envisioned for wireless power transfer (WPT), fast dynamic adaptation to unpredictable changes in receiver position is needed. In this paper, we propose an adaptive impedance-searching system that achieves good impedance matching quickly. For fast and robust operation, the proposed method consists of three steps: system calibration, coarse search, and fine search. The proposed WPT system is characterized using distance variation and lateral and angular misalignment between coils. The measured results indicate that the proposed method significantly reduces searching time from a few minutes to approximately one second. Furthermore, the proposed system achieves impedance matching with good accuracy. The robust impedance-searching capability of the proposed system significantly improves power transfer efficiency. At 6.78 MHz, we achieve a maximum efficiency of 89.7% and a high efficiency of 80% up to a distance of 50 cm. When the center-to-center misalignment is 35 cm, the efficiency is improved from 48.4% to 74.1% with the proposed method. At a distance of 40 cm, the efficiency is higher than 74% for up to 60° of angular rotation. These results agree well with the simulated results obtained using a lumped-element circuit model.
机译:为了实现为无线电力传输(WPT)设想的几何自由,需要对接收器位置的不可预测的变化进行快速动态调整。在本文中,我们提出了一种自适应阻抗搜索系统,该系统可以快速实现良好的阻抗匹配。为了实现快速而稳定的操作,建议的方法包括三个步骤:系统校准,粗略搜索和精细搜索。所提出的WPT系统的特征是使用距离变化以及线圈之间的横向和角度失准。测量结果表明,所提出的方法将搜索时间从几分钟显着减少到大约一秒钟。此外,所提出的系统以良好的精度实现了阻抗匹配。所提出的系统的鲁棒的阻抗搜索能力显着提高了功率传输效率。在6.78 MHz下,在50 cm的距离内,我们实现了89.7%的最大效率和> 80%的高效率。当中心距为35 cm时,该方法的效率从48.4%提高到74.1%。在40 cm的距离上,对于高达60°的角度旋转,效率高于74%。这些结果与使用集总电路模型获得的仿真结果非常吻合。

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