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A novel intelligent train condition monitoring system coupling laser beam into image processing algorithm

机译:一种新型的将光束耦合到图像处理算法中的智能列车状态监测系统

摘要

Wheels, brake pads and pantograph carbon strips of modern electric trains are three safety critical elements, which are always subject to wear and tear during normal running and daily operation. Inspection process of the wheel and brake pad wear is extremely labour intensive and time-consuming, due to their large quantity in each train. Moreover, before the manual inspection can be carried out from the underframe of the train, it is necessary to shunt the train concerned onto the maintenance pit. Thus additional time is required for shunting logistics due to the limited number of pits in depot. On the other hand, to check the wear on carbon strips, manual gauging is the common practice, which requires access to the train roof. Thus it needs a high-level platform and electrical isolation of the overhead power line prior to the examination. It is again no doubt to be a time-consuming process and causes degradation on the efficiency of the regular maintenance. Therefore, to enhance the productivity, an automatic and integrated Vehicle Monitoring System (VMS) utilising laser assisted image processing technology, which comprises three monitoring systems, namely wheel profile, brake pad and pantograph wear monitoring systems, is introduced in the Kowloon-Canton Railway Corporation (KCRC) Tai Wai Depot to automatically monitor the condition of wheels, brake pads and pantograph carbon strips of the Ma On Shan 4-car Electric Multiple Units (EMUs) and measure their respective wear pattern, when the train passes the train washing plant daily. The data obtained not only provides a useful database for condition monitoring 8 maintenance planning of wheels, brake pads and pantographs, it is also able to alarm any premature failure for necessary corrective actions.
机译:现代电动火车的车轮,刹车片和受电弓碳带是三个安全关键要素,在正常运行和日常运行中始终会受到磨损。车轮和刹车片磨损的检查过程非常费力且费时,因为它们在每列火车中的数量都很大。而且,在可以从火车的底架上进行手动检查之前,有必要将有关的火车分流到维修站上。因此,由于仓库中维修站的数量有限,因此需要额外的时间来调配物流。另一方面,要检查碳带的磨损,通常的做法是手动测量,这需要进入火车顶板。因此,在检查之前,需要高层平台和架空电力线的电气隔离。毫无疑问,这是一个耗时的过程,并且会导致常规维护效率下降。因此,为提高生产率,九广铁路引入了一种采用激光辅助图像处理技术的自动综合车辆监控系统(VMS),该系统包括三个监测系统,即车轮轮廓,制动片和受电弓磨损监测系统。 Corporation(KCRC)大围车厂在火车经过洗车场时自动监视马鞍山4车电动多轮车(EMU)的车轮,刹车片和受电弓碳带的状况,并测量其各自的磨损模式日常。获得的数据不仅为轮胎,刹车片和受电弓的状态监测8维护计划提供了有用的数据库,而且还能够为任何过早的故障发出警报,以采取必要的纠正措施。

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