利用倾斜线圈进行无线数据通信,提高无线电力传输效率

Hyun-Gyu Ryu, D. Har
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引用次数: 1

摘要

列车位置的准确检测是智能轨道交通系统成功运行的关键。为了获得轨道车辆的高精度位置信息,采用了GPS模块、车轮传感器、RFID标签等模块和子系统进行各种检测方法。在这些检测方法中,本文研究了基于放置在轨枕上的RFID标签的位置检测方法。每个标签的位置信息通过无线电力从读取器线圈传输到标签线圈,传输到安装在铁道车辆底部的读取器。通过无线电力传输,每个标签收集位置信息传输所需的能量。从读取器线圈到标签线圈的无线电力传输机制是磁感应,因此电力传输效率受到读取器线圈相对于标签线圈的相对位置和相对倾斜方向的很大影响。从这个角度来看,可以通过倾斜线圈来提高功率传输效率。两个倾斜线圈,其倾斜角度有利于读取器线圈的位置,这是稍微偏离轴向位置,和一个水平线圈组合。将这三种线圈的功率传输效率与传统的水平读取器线圈的功率传输效率进行了比较。由于读取器线圈的倾斜方向,即使在离轴位置也能获得显著的增益。通过仿真验证了倾斜线圈对效率的提高,并给出了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved efficiency of wireless power transfer by tilting coils for wireless data communication
Accurate detection of train position is critical for successful operation of intelligent railroad transportation system. In order to get high precision position information of railroad vehicles, modules and subsystems such as GPS module, wheel sensors, and RFID tags are used for various detection methods. Among the detection methods, position detection based on RFID tags placed onto the sleepers of the track is examined in this paper. Position information of each tag is transmitted to the reader installed at the bottom of railroad vehicle, following the wireless power transfer from the reader coil to the tag coil. By the wireless power transfer, the energy required for the position information transmission is harvested by each tag. The wireless power transfer mechanism from the reader coil to the tag coil is the magnetic induction, so power transfer efficiency is substantially affected by the relative location and relative tilting direction of the reader coil to the tag coil. From this viewpoint, improved power transfer efficiency can be achieved by tilting coils. Two tilting coils, with their tilting angles favorable to the reader coil position, which is slightly off the axial position, and a leveled coil are combined. The power transfer efficiency obtained from these three coils is compared with the one by the conventional leveled reader coil. Due to tilting directions of the reader coils, significant gain is obtained even at off-axis positions of them. Simulation to show the improved efficiency by tilting coils is executed and the results are shown.
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