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首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >Detector of Electrical Discontinuity of Rails in Double-Track Railway Lines: Electronic System and Measurement Methodology
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Detector of Electrical Discontinuity of Rails in Double-Track Railway Lines: Electronic System and Measurement Methodology

机译:双线铁路轨道电气不连续性检测器:电子系统和测量方法

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摘要

This paper describes the design, measurement methodology, and experimental validation of an electronic system for monitoring the electrical discontinuity in rails of double-track railway lines in order to detect the rail breakage. The electronic system is based on an emitter node and on the two receiver nodes. The three nodes, together with the four rails to be analyzed, constitute the electrical circuits, whose currents are measured in both the emission and reception nodes. These nodes can communicate through a data network between them, as well as with a remote center that controls and synchronizes the electronic systems along the railway line. The electronic subsystem associated with the emitter node transmits an encoded signal to the rails, modulated by an 800-Hz carrier. A set of eight currents are measured, one per rail at each end of the section defined between the emitter and the receiver, with a maximum length of 7 km. The evaluation of electrical discontinuities in each section is carried out by means of the relative imbalances that can appear between the eight measured currents, according to possible breakages. The method of measurement is characterized by a high immunity to noise. The results presented here are based on a railway line prototype, which implements the electrical propagation models and coupling between the four rails in the double track. This model allows the proposed electronic system and measurement methodology to be successfully verified.
机译:本文介绍了一种用于监视双线铁路线路中的电气不连续性以检测铁路破损的电子系统的设计,测量方法和实验验证。电子系统基于一个发射器节点和两个接收器节点。这三个节点与要分析的四个轨道一起构成了电路,其电流在发射和接收节点中均被测量。这些节点可以通过它们之间的数据网络以及与控制和同步铁路沿线电子系统的远程中心进行通信。与发射器节点关联的电子子系统将编码信号传输到由800 Hz载波调制的轨道。测量了一组八种电流,在发射器和接收器之间定义的部分的每一端,每根铁轨一个,最大长度为7 km。根据可能的破损,通过在八个被测电流之间可能出现的相对不平衡来评估每个部分中的电气不连续性。测量方法的特点是抗干扰能力强。此处给出的结果基于铁路原型,该原型实现了电传播模型以及双轨中的四个轨道之间的耦合。该模型可以成功验证提出的电子系统和测量方法。

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