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Reduction of phase shifting for range expansion in magnetic resonance coupling-based distance sensor with adjustable sensing range

机译:减少相位移以在基于感测距离可调的基于磁共振耦合的距离传感器中扩大范围

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The realization of wireless charging and self-localization as an integrated compact system using magnetic resonance coupling is useful as an application for mobile robots. However, the narrow sensing range, due to the fact that the sensing method is categorized as passive sensing, was a problem in the practical use. Thus, the method which enables control of the sensing range by virtually adjusting the quality factor of the antenna is proposed as a solution. However, the phase shifting error made it difficult to maintain the resonance status in case of high-Q. Thus, this paper introduced the redesigned configuration of the quality factor control circuit. The configuration enabled the dramatical increase of Q up to 30 times the original value, which is expected to extend the sensing range to two times and reduce the number of arrayed transmitter antenna to one fourth.
机译:使用磁共振耦合将无线充电和自定位实现为一个集成的紧凑型系统,可作为移动机器人的应用程序。然而,由于将感测方法归类为无源感测的事实,较窄的感测范围在实际使用中是一个问题。因此,作为解决方案,提出了一种通过虚拟地调整天线的品质因数来控制感测范围的方法。然而,在高Q的情况下,相移误差使得难以维持谐振状态。因此,本文介绍了质量因子控制电路的重新设计配置。该配置使Q急剧增加到原始值的30倍,这有望将检测范围扩大到两倍,并将发射天线阵列的数量减少到四分之一。

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