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Living object detection system based on comb pattern capacitive sensor for wireless EV chargers

机译:基于梳状电容传感器的无线EV充电器生物体检测系统

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A living object detection (LOD) system based on a comb pattern capacitive sensor with simple and cost-effective characteristics is applied to wireless EV chargers for the first time in this paper. The proposed LOD system mounted on a transmitter (Tx) pad adopts an optimal comb shape as a sensing pattern to obtain uniform capacitance capability. Unlike general applications using a capacitive sensor, the proposed capacitive sensor, which is applied to wireless EV chargers, inherently contains significant capacitive coupling between the living object and the ground. This capacitive coupling should be carefully considered in order to accurately sense any minimal capacitance change caused by the presence of a living object. In this paper, a static circuit model of the proposed capacitive sensor with a living object considering the ground effect and an RC integrator to detect even a tiny voltage difference are established and verified by experiments. The results show that when a living object is present, the measured capacitance by the proposed sensing pattern was increased by up to 27.5% compared to when there is no living object.
机译:本文首次将基于梳状电容传感器且具有简单且具有成本效益的特性的生物体检测(LOD)系统应用于无线EV充电器。建议的安装在发射器(Tx)焊盘上的LOD系统采用最佳的梳状形状作为感应图案,以获得均匀的电容能力。与使用电容式传感器的一般应用不同,提议的电容式传感器(应用于无线EV充电器)固有地在活体和地面之间包含显着的电容耦合。应该仔细考虑这种电容耦合,以便准确地感测由于存在生物而引起的任何最小电容变化。在本文中,建立并提出了一种电容传感器的静态电路模型,该电容模型考虑了地效应,并具有一个RC积分器来检测微小的电压差,该电容对象具有接地效应,并通过实验进行了验证。结果表明,与没有生物的情况相比,当存在生物的情况下,通过建议的传感模式测得的电容增加了27.5%。

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