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Self-tuning Wireless Power Transmission Scheme Based on On-line Scattering Parameters Measurement and Two-side Power Matching

机译:基于在线散射参数测量和两侧功率匹配的自整定无线电力传输方案

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摘要

Sub-resonances often happen in wireless power transmission (WPT) systems using coupled magnetic resonances (CMR) due to environmental changes, coil movements or component degradations, which is a serious challenge for high efficiency power transmission. Thus self-tuning is very significant to keep WPT systems following strongly magnetic resonant conditions in practice. Traditional coupled-mode ways is difficult to solve this problem. In this paper a two-port power wave model is presented, where power matching and the overall systemic power transmission efficiency are firstly defined by scattering (S) parameters. Then we propose a novel self-tuning scheme based on on-line S parameters measurements and two-side power matching. Experimental results testify the feasibility of the proposed method. These findings suggest that the proposed method is much potential to develop strongly self-adaptive WPT systems with CMR.
机译:由于环境变化,线圈运动或组件退化,在使用耦合磁共振(CMR)的无线电力传输(WPT)系统中经常会发生子谐振,这对高效功率传输是一个严峻的挑战。因此,自整定对于在实践中保持WPT系统遵循强磁谐振条件非常重要。传统的耦合模式方式很难解决这个问题。本文提出了一种两端口功率波模型,其中首先通过散射(S)参数定义功率匹配和整体系统功率传输效率。然后,我们提出了一种基于在线S参数测量和两侧功率匹配的新型自整定方案。实验结果证明了该方法的可行性。这些发现表明,所提出的方法具有开发具有CMR的强自适应WPT系统的巨大潜力。

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