Skip to main content

Rail safety technology launched in Central Minnesota

New safety technology being installed along some rail lines across the US, including Central Minnesota, aims to prevent deadly train crashes caused by human error. The technology is designed to automatically stop or slow a train to prevent accidents such as a collision with another train or a derailment caused by excessive speed. The changes stem from federal legislation passed in 2008 after a commuter train collided head-on with a freight train in California, killing twenty-five people and injuring 135. An
January 7, 2013 Read time: 3 mins
New safety technology being installed along some rail lines across the US, including Central Minnesota, aims to prevent deadly train crashes caused by human error. The technology is designed to automatically stop or slow a train to prevent accidents such as a collision with another train or a derailment caused by excessive speed.

The changes stem from federal legislation passed in 2008 after a commuter train collided head-on with a freight train in California, killing twenty-five people and injuring 135. An investigation found the train driver was sending and receiving text messages shortly before the crash.

As a result, congress passed the Rail Safety Improvement Act, requiring positive train control technology to be implemented on all class I passenger lines and freight trains carrying certain hazardous materials by 2015.

Work has already begun to upgrade signals along Burlington Northern Santa Fe’s (BNSF) lines in Minnesota and will continue this year, according to Amy McBeth, a spokeswoman for the railway. BNSF has spent about US$300 million on positive train control upgrades on its entire rail system this year, she said.  “We are on track to meet that required deadline,” McBeth said, continuing “The travelling public probably won’t notice any difference after the technology is installed”.

2008 Amtrak also will install positive train control aboard its trains that run along BNSF rail lines, says Amtrak spokesman Marc Magliari.

6907 Metro Transit, which operates the Northstar commuter rail line between Big Lake and Minneapolis, expects to have its six locomotives and six cab cars outfitted with the equipment in 2014 after the wayside equipment is tested, spokesman John Siqveland said.

Positive train control uses GPS technology to determine a train’s location and speed. It warns train operators of potential problems, then overrides the driver and stops the train if the operator does not respond within a certain amount of time.

The system requires equipment installed along rail lines as well as aboard locomotives. It’s a complex endeavor expected to cost railroads more than US$13 billion to install and maintain over the next twenty years, according to the Association of American Railroads (AAR), which represents major US freight railroads and Amtrak.

According to the AAR, it is not clear whether railroads will meet the 2015 deadline. A report to Congress from the Federal Railroad Administration last August stated that due to significant technical and programmatic issues most railroads are not likely be able to fully implement positive train control by December 2015.

Holly Arthur, a spokeswoman for the AAR, said that, despite best efforts and financial investments, it is becoming clear that meeting the deadline is no longer realistic.  She said that each railroad’s positive train control system is very complex and must operate with other railroads’ systems. “The technology has never been used this way”, she said, “and must be designed, installed and tested before receiving federal certification.  This has never been done before.”

Related Content

  • November 12, 2015
    Driver aids make inroads on improving safety
    In-vehicle anti-collision systems continue to evolve and could eliminate some incidents altogether. John Kendall rounds up the current developments. A few weeks ago, I watched a driver reverse a car from a parking bay at right angles to the road, straight into a car driving along the road. The accident happened at walking pace, no-one was hurt and both cars had body panels that regain their shape after a low speed shunt.
  • June 9, 2015
    Ukraine turns to ITS to cope with traffic increases
    With increasing road fatalities the Ukrainian government is planning to introduce ITS technology in 2016-2017. Eugene Gerden finds out more. The government of Ukraine is considering a massive introduction of ITS in the national system of traffic during the period 2016-2017, according to a recent statement by the Ukrainian Ministry of Transport. According to the Ukrainian government, implementation of the project is an acute need, as in recent years the number of road accidents in Ukraine has significantly
  • December 14, 2012
    Car to car communications a step closer
    Vehicle manufacturers have targeted 2015 for the first cars to roll off European assembly lines fitted with operational V2X technology. They and their partners in the Car 2 Car Communications Consortium are confident of meeting the target, reports Jon Masters. Around three years from now vehicles should be appearing in showrooms boasting the capability of communicating with each other. Manufacturers will have started fitting the first proprietary car-to-car driver-aid safety devices and deployment of ‘vehic
  • March 27, 2014
    Dubai Traffic Police: Vitronic speed camera six times more efficient than radar
    As part of a program to better enforce tailgating offences which caused 22 deaths and 426 injuries in Dubai in 2013, Dubai Traffic Police has completed tests comparing Vitronic’s PoliScan speed enforcement systems to standard radar systems on one of the city`s main roads. According to officials the Lidar-based Vitronic systems were six times more efficient than conventional technologies. “The speed camera was successful in tracking motorists who won’t leave enough distance on the roads, which is the maj