Implementing optical speed measurement (OSMES) for communications based train control

E. Mortlock, G. Hubbs
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引用次数: 2

Abstract

New York City Transit is installing communications-based train control (CBTC) as part of its signal modernization program starting with the Canarsie Line. CBTC requires a higher accuracy of speed and distance measurement than conventional signal systems. An optical speed and position measurement system (OSMES) that is independent of the wheel-rail interface is being used on this project. An accelerated program to develop this system into a production device had to be undertaken as well as solving many application obstacles, including severe clearance and environmental restrictions. Implementing an unproven subsystem on an operating transit system with tight project budget and schedule constraints presents many challenges.
实现基于通信的列车控制的光学速度测量(OSMES)
纽约市交通局正在安装基于通信的列车控制系统(CBTC),作为其信号现代化计划的一部分,该计划始于加拿大线。与传统的信号系统相比,CBTC需要更高的速度和距离测量精度。该项目采用了一种独立于轮轨接口的光学速度和位置测量系统(OSMES)。为了将该系统开发成生产设备,必须加快进度,并解决许多应用障碍,包括严格的清理和环境限制。在项目预算紧张和进度限制的情况下,在运行中的运输系统上实现一个未经验证的子系统会带来许多挑战。
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