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THE CREATION OF CAB SIGNALING

机译:创建驾驶室信令

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Cab signaling enforces the separation between trains as well as enforcing trains to reduce speed as the train approaches signals displaying STOP. Cab signaling allow for and provides a safe way to eliminate the number of wayside automatic signals while the number of controlled speeds can be increased. Light Rail Transit (LRT) systems today are built completely with cab signaling and only fixed wayside signals are placed at interlockings for routing information. Experimental cab signaling systems began in the United States in the 1920s, kicked off by the Interstate Commerce Commission (ICC) ruling that required some form of Automatic Train Control (ATC) be installed on one passenger division by 1925. This paper will begin with examining the initial ATC designs (intermediate and continuous), the first experimental installations, the testing challenges and the overall enhancements that pioneered cab signaling systems in the US. The focus will include the teaming of the Pennsylvania Railroad with Union Switch and Signal (US&S) to develop, build and successfully test the continuous cab signaling system which later became the de facto standard. The early systems implemented used two (2) speeds, methods on adding a third speed and how the system became integrated with the existing automatic block signaling. How Pennsylvania Railroad (currently Amtrak) is still using the technology that started 100 years ago on the North East Corridor. It will also introduce how Light Rail systems operate on speed commands using cab codes.
机译:驾驶室信号强制执行列车的分离以及强制列车,以减少速度,因为列车接近显示停止的信号。驾驶室信令允许并提供安全的方法来消除路边自动信号的数量,而可以增加受控速度的数量。今天的轻轨传输(LRT)系统完全由驾驶室信令完全构建,并且仅在互锁器中放置固定的路边信号以进行路由信息。实验驾驶室信号系统始于20世纪20年代的美国,由州际商务委员会(ICC)裁决启动,要求在1925年之前安装某种形式的自动列车控制(ATC)。本文将开始审查初始ATC设计(中间和连续),第一个实验装置,测试挑战和整体增强功能,即美国开发的驾驶室信号系统。焦点将包括宾夕法尼亚铁路与联盟开关和信号(US&S)的组合,以开发,构建和成功测试连续的驾驶室信号系统,后来成为事实上的标准。利用二(2)速度的早期系统实现了二(2)速,方法添加第三速度以及系统如何与现有的自动块信令集成。宾夕法尼亚铁路(目前的Amtrak)如何仍然使用100年前在东北走廊开始的技术。它还将介绍使用驾驶室码在速度指令上运行的轻轨系统。

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