Analysis of Equivalent Circuit Model of Concrete WPT System

Zhousen Wu, Mengmeng Chen, Xiaoyu Duan, Qiong Wang, Lihui Yan, Cancan Rong
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引用次数: 1

Abstract

At present, embedded wireless sensors are widely used in the structural monitoring system of bridges, tunnels and buildings. However, wireless sensors are easily limited by the capacity and size of batteries. Wireless Power Transfer technology based on magnetic resonance provides a great solution for the application of wireless sensors. However, compared with air, concrete material has a high relative dielectric constant and conductivity, which will reduce the efficiency of Wireless Power Transfer system. This paper focuses on the analysis of the Wireless Power Transfer technology for charging the sensor embedded in concrete, analyzes the influence of various parameters in concrete on the sensor coil, and puts forward the equivalent circuit model of Wireless Power Transfer based on these analyses. The equivalent circuit model can be useful to the analysis of embedded wireless sensors and the calculation of various losses, which has certain significance for the building result monitoring system using embedded wireless sensors.
混凝土WPT系统等效电路模型分析
目前,嵌入式无线传感器广泛应用于桥梁、隧道和建筑物的结构监测系统中。然而,无线传感器很容易受到电池容量和尺寸的限制。基于磁共振的无线电力传输技术为无线传感器的应用提供了一个很好的解决方案。然而,与空气相比,混凝土材料具有较高的相对介电常数和电导率,这将降低无线电力传输系统的效率。本文重点分析了混凝土中嵌入传感器充电的无线电力传输技术,分析了混凝土中各种参数对传感器线圈的影响,并在此基础上提出了无线电力传输等效电路模型。该等效电路模型可用于嵌入式无线传感器的分析和各种损耗的计算,对采用嵌入式无线传感器的建筑效果监测系统具有一定的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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