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Error Characteristics of Passive Position Sensing via Coupled Magnetic Resonances Assuming Simultaneous Realization With Wireless Charging

机译:假设通过无线充电同时实现的耦合磁共振的无源位置检测的误差特性

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摘要

Recently, wireless charging via coupled magnetic resonances has gained attention because it offers the possibility of efficient midrange wireless charging. However, recent studies have shown that the use of a position sensor is helpful in realizing efficient power transmission. In response, we have proposed a passive position sensing method that shares a common structure with a wireless charging system, enabling cost reduction, and space reduction because of integration of multiple functions into a single system and batteryless and cost-effective transponders because of passive sensing. The sensing method is useful for efficient wireless charging or even long-range navigation for mobile robots such as automated guided vehicles. However, the error characteristics of the sensor have not been previously studied. Therefore, the error characteristics of the position sensing were derived through error analysis in this paper. Moreover, the first actual experiment of 3-D position estimation was conducted to demonstrate the appropriateness of the position sensing method and to analyze the error characteristics.
机译:近来,由于耦合磁共振提供的无线充电提供了有效的中程无线充电的可能性,因此受到了关注。但是,最近的研究表明,使用位置传感器有助于实现有效的动力传输。作为回应,我们提出了一种被动位置感应方法,该方法与无线充电系统具有相同的结构,由于将多个功能集成到单个系统中以及由于被动感应而实现了无电池且具有成本效益的应答器,从而降低了成本并减少了空间。感测方法可用于有效的无线充电,甚至可用于自动机器人等移动机器人的远程导航。但是,传感器的误差特性以前没有被研究过。因此,本文通过误差分析推导了位置传感的误差特性。此外,进行了第一个3D位置估计的实际实验,以证明位置检测方法的适当性并分析误差特性。

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