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Ferrite Position Identification System Operating With Wireless Power Transfer for Intelligent Train Position Detection

机译:用于无线列车位置检测的铁氧体位置识别系统与无线电力传输一起运行

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摘要

Wireless power transfer (WPT) is being developed to supply electric power to electric trains, using a source coil in/on the railway track and a pick-up coil on the train. A number of benefits can be obtained by eliminating the catenary and pantograph currently used for railway electric power supply. However, the WPT employs coils, and the electromagnetic field generated by the WPT can interfere with conventional train detection methods, such as track circuits and RFID, installed on the tracks. Train position information is critical for railway operation, especially for high speed trains. This paper proposes a novel system which provides train position information using a source coil segment. It consists of onboard sensor coils, ferrite blocks designed using specific position information, and a detector. The proposed system can be implemented using the source coil and load coil of the WPT. Information about the train’s relative position is obtained by the detection of ferrite blocks distributed within the source coil segment. The train position information provided by the ferrite components is detected by onboard sensor coils and a detector. The proposed ferrite position identification (FPID) system provides accurate train position information and is not affected by WPT electromagnetic interference. The operating principles of the FPID system are presented in detail. The performance of the proposed FPID system was measured by simulations and experiments.
机译:正在开发无线电力传输(WPT),以使用铁路轨道内/轨道上的源线圈和火车上的拾波线圈为电动火车提供电力。通过消除当前用于铁路供电的悬链线和受电弓,可以获得许多好处。但是,WPT使用线圈,并且WPT产生的电磁场会干扰安装在轨道上的常规火车检测方法,例如轨道电路和RFID。火车位置信息对于铁路运营(尤其是高速火车)至关重要。本文提出了一种新颖的系统,该系统使用源线圈段提供列车位置信息。它由板载传感器线圈,使用特定位置信息设计的铁氧体块和检测器组成。可以使用WPT的源线圈和负载线圈来实现建议的系统。通过检测源线圈段中分布的铁氧体块,可以获得有关火车相对位置的信息。由铁氧体成分提供的列车位置信息由车载传感器线圈和检测器检测。拟议的铁氧体位置识别(FPID)系统可提供准确的列车位置信息,并且不受WPT电磁干扰的影响。详细介绍了FPID系统的工作原理。通过仿真和实验测量了所提出的FPID系统的性能。

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