Skip to main content

Georgia gets SCOOT

Siemens has won a new SCOOT (Split Cycle Offset Optimisation Technique) project in the US State of Georgia, in an area to the north of Atlanta along State Route 9. In the first phase, SCOOT will control thirty-three intersections in the towns of Alpharetta, Roswell and Sandy Springs and it is expected that more intersections will be added to the system over the next few years. The project is being managed by Siemens USA with local dealer Temple.
May 9, 2013 Read time: 2 mins
189 Siemens has won a new SCOOT (Split Cycle Offset Optimisation Technique) project in the US State of Georgia, in an area to the north of Atlanta along State Route 9. In the first phase, SCOOT will control thirty-three intersections in the towns of Alpharetta, Roswell and Sandy Springs and it is expected that more intersections will be added to the system over the next few years.

The project is being managed by 121 Siemens USA with local dealer 580 Temple.

Following testing of a demonstration system by 754 Georgia Department of Transportation which highlighted the benefits of adaptive control and after comparison with a leading system, it was determined that SCOOT would be an excellent long term solution.

Further analysis by 831 Federal Highway Administration (FHWA), concluded that, of SCOOT’s many desirable features, the one of particular importance was the ability to run the system with ordinary traffic plans but to also have the capability to invoke SCOOT when desired.  

It was determined that with the Siemens configuration, the clients could continue to run standard traffic patterns using the Siemens TACTICS traffic management system.  However, when requested, the SCOOT system can activate a full adaptive system which can be turned on and off by the SCOOT system scheduler.

Roadside implementation has already begun and the full SCOOT implementation is expected to be completed by the end of the summer.

A tender has also been released to expand the system with an additional thirty-four intersections before the initial deployment has been completed.  The initial deployment will be for 33 intersections.

Related Content

  • Automating enforcement of environmental zones
    July 27, 2012
    Amsterdam City Council has chosen to move away from manual enforcement of its environmental zone, which is intended to keep highly polluting goods vehicles out of the city centre, and is installing an automated, ANPR-based system. The signs are not much to look at: white with a red circle and the all-important word Milieuzone ('Environmental zone'). But these signs mean that Amsterdam's city centre is strictly off-limits to polluting goods traffic. At the moment compliance is monitored by special wardens wh
  • Students develop GPS traffic monitoring system
    July 15, 2013
    A collaborative summer research project between students from the University of Delaware (UD) and Delaware Department of Transportation (DelDOT) is compiling traffic data using global position system technology to quantify the severity of congestion on roads leading to and from the Delaware beaches. The students use two UD vehicles equipped with GPS devices programmed to capture travel time from one point to another, mean travel speed and delay using longitude and latitude measurements taken while the vehic
  • Cubic’s holistic view of traffic management
    May 25, 2022
    How can cities and transit agencies ease congested roadways? Andy Taylor of Cubic Transportation Systems suggests it would help to take a more holistic view of the problem
  • TEXpress adds reversible managed lanes
    April 19, 2017
    Land availability restrictions and tidal traffic flows have led to the implementation of a novel managed lane configuration in Texas, as Colin Sowman finds out. Dealing with traffic congestion related to the ‘tidal flows’ caused by large numbers of commuters making their way into major business hubs in the morning and returning to the suburbs in the evening, has seen the widespread use of adaptive signal timing and even reversible lanes.