Skip to main content

Rail operator deploys Siemens technology for newly opened light rail line

TriMet's new MAX Orange Line, a light rail project between Portland and Milwaukie in the US incorporates Siemens’ advanced rail technologies, including its S70 light rail vehicles, rail signalling and communication systems and the company's first Sitras SES energy storage unit in the US that uses regenerative braking to sustainably power the line. The 12 kilometre line is the region's sixth construction project of the development project Metropolitan Area Express (MAX) to expand the city's transport net
September 22, 2015 Read time: 2 mins
1272 TriMet's new MAX Orange Line, a light rail project between Portland and Milwaukie in the US incorporates 189 Siemens’ advanced rail technologies, including its S70 light rail vehicles, rail signalling and communication systems and the company's first Sitras SES energy storage unit in the US that uses regenerative braking to sustainably power the line.

The 12 kilometre line is the region's sixth construction project of the development project Metropolitan Area Express (MAX) to expand the city's transport network to cope with expected population growth in the Portland area. The line will improve transit in the corridor that extends from the terminus of the MAX Green and Yellow lines at Portland State University in Downtown Portland to Milwaukie and North Clackamas County.

The newly redesigned light rail vehicles were built based on input from TriMet and passengers and include better sight lines for the driver, more ergonomically designed main cabins and larger displays for train operators so they are better able to monitor the vehicle's status to improve safety and efficiency. Maintenance enhancements were made based on TriMet's feedback including rearrangement of systems to increase accessibility to key components on the vehicles and improved diagnostic systems.

The innovative regenerative rail energy storage technology allows for energy created during braking to be stored and then re-used in one of two forms, energy savings or voltage stabilisation during peak demand times. TriMet will utilise the system in voltage stabilisation mode, which enables the system to avoid disruptions that can occur in mass transit operations if power drops below a certain level. The Sitras SES ensures the system voltage always remains within the required range and voltage-related disruptions no longer occur.

Related Content

  • Open data gives new lease of life to public travel information screens
    March 4, 2014
    David Crawford finds resurgent interest in travel information screens for buildings. With city governments worldwide increasingly opening up and sharing their public transport data for general use, attention is focusing on the potential financial benefits – to transit operators and businesses more widely. Professor Stephen Goldsmith, who directs the US’ Harvard University’s Data-Smart City Solutions Project says: “Amid nationwide public-sector budget cuts, open data is providing a road map for improving tra
  • Improve and increase mass transit systems to minimise congestion
    January 24, 2012
    Rather looking to solve congestion by spreading the load, perhaps we need to look at concentrating it. Michael L. Sena writes. We humans were made to walk and run at embarrassingly slow speeds by comparison with other, more fleet-footed organisms. The sea is not our natural habitat and we were definitely not designed to fly unaided. Nevertheless, humankind has evolved a method of living during the past century that is dependent on transporting its members over very long distances during relatively short per
  • Syracuse models post-industrial revival for US cities
    August 13, 2015
    A connective corridor in Syracuse, New York State, could be a model for other post-industrial cities, as David Crawford discovers. The aim of the city of Syracuse’ 5.6km-long Connective Corridor in Onandaga County in upstate New York is to create a model ‘complete street’ for use in wider regeneration schemes. Key transport-sector components are traffic calming, high-quality transit with accessible passenger information, plus walkability and bike-friendliness.
  • Siemens EV charging ahead in Corby
    March 8, 2013
    Siemens is to provide the UK’s Electric Corby with its CP500A AC electric vehicle (EV) charging points at the first of ten locations in Corby, with a further eight locations being finalised. With the support of Corby Borough Council, the latest Siemens EV charging equipment will be installed over the coming weeks. According to Siemens, the network of Siemens EV charge points will help Corby strengthen its position as a leading edge location for ‘cleantech’ business investment, and bolster the wider Plugged