Author :
Ackroyd, Paul ; Angelo, S. ; Stevens, Jonathan
Abstract :
Federal Track Safety Standards require daily measurements of car body and truck accelerations on trains operating at speeds above 125-mph. In compliance with this requirement, twelve high-speed Acela coaches, operating in the Northeast Corridor between Boston, MA, and Washington DC, have been equipped with remote monitoring systems. The systems provide continuous measurement of car body and truck motions, detect various acceleration events, tag them with GPS time and location information, and deliver the data to central processing stations through wireless communications channels. The central processing stations installed at the National Railroad Passenger Corporation (Amtrak) and ENSCO, Inc., headquarters provide e-mail and pager notifications to designated Amtrak officers and also make the data available to them over secure Intranet and Internet connections. The overall architecture has multiple levels of protection and redundancy in order to ensure high reliability and availability of the service. The systems have been in continuous operation for over a year and provided a multitude of valuable information. Examples of system-reported acceleration events include events caused by track irregularities and train handling. The paper also describes some of the real-life operational scenarios and situations that arise when autonomous remote monitoring systems are used, including wireless communications coverage issues, GPS location pitfalls, and maintenance issues.
Keywords :
Global Positioning System; acceleration measurement; computerised monitoring; maintenance engineering; railways; reliability; telemetry; Acela train set performance; Amtrak; ENSCO; Federal Track Safety Standards; GPS location pitfalls; GPS time and location information tagging; National Railroad Passenger Corporation; Northeast Corridor; acceleration. events detection; autonomous remote monitoring systems; car body accelerations measurement; central processing stations; continuous measurement; e-mail; high availability; high reliability; maintenance issues; pager notifications; protection; real-life operational scenarios; redundancy; remote monitoring systems; remote ride quality monitoring; secure Internet connections; secure Intranet connections; system-reported acceleration events; track irregularities; train handling; truck accelerations measurement; truck motions; wireless communications coverage issues; Acceleration; Event detection; Global Positioning System; Measurement standards; Railway safety; Remote monitoring; Time measurement; Vehicle safety; Velocity measurement; Wireless communication;