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SOLVING VARIOUS TRAIN APPROACH SPEEDS TO HIGHWAY CROSSINGS USING INNOVATIVE TECHNOLOGIES

机译:使用创新技术将各种训练方法的速度解决公路过境问题

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The use of using cleaner energy (zero emissions) transportation has become a key focus in the North America even within rail transportation. Within in North America the migration from Diesel to Electric Locomotives, utilizing overhead catenary systems with voltages in the 25kV range for passenger trains has become the standard. In addition, "Shared-Use Rail Corridors" have become more prevalent in North America (USA and Canada), the use of Constant Warning Time Devices (CWTD) based on a change of inductance in the rail are less reliable within Electrified railroads. With shared use track, it is understood that a difference exists between freight and passenger train speeds, resulting in the need for other methods to detect and determine the correct approach times become a priority. Implementing Computer-Based Train Control (CBTC) systems or Positive Train Control (PTC) technology can mitigate the problem if they communicate / request highway crossing activation. But in locations where PTC is not being installed or in Canada where it is not required, other methods need to be explored. This paper will review and analyze the following: 1. Review the existing systems being deployed; 2. Evaluate the deployed systems effectiveness; 3. Test and record data using various innovative technologies including: Axle counters determining speed of approaching train, acceleration (+/-); 4. Conclusion for the integrating new axle counter technologies and existing track circuits.
机译:即使在铁路运输中,使用清洁能源(零排放)运输也已成为北美的重点。在北美,使用架空接触网系统(载客列车电压在25kV范围内)从柴油机车过渡到电力机车已成为标准。另外,“共享使用的铁路走廊”在北美(美国和加拿大)变得越来越普遍,基于铁轨电感变化的恒定警告时间设备(CWTD)在电气化铁路中的可靠性较差。在共享使用轨道的情况下,可以理解的是,货运和旅客列车速度之间存在差异,导致需要其他方法来检测和确定正确的进场时间成为当务之急。如果实现基于计算机的列车控制(CBTC)系统或主动列车控制(PTC)技术的通信/请求激活高速公路交叉口,则可以缓解该问题。但是在没有安装PTC的地方或在加拿大不需要PTC的地方,需要探索其他方法。本文将审查和分析以下内容:1.审查正在部署的现有系统; 2.评估已部署系统的有效性; 3.使用各种创新技术测试和记录数据,这些技术包括:轴计数器,用于确定接近列车的速度,加速度(+/-); 4.总结新轴计数器技术和现有轨道电路的集成。

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