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

  • Glasgow’s new Operations Centre has a key role in city’s future
    June 6, 2014
    David Crawford investigates a control centre with a future. Destined to play a central role in keeping the city and its transport running smoothly during the 2014 Commonwealth Games in July, the new Glasgow Operations Centre in Scotland’s largest urban centre formally went live earlier this year. The aim was to dry run its far-reaching integration of previously distinct core systems and familiarise the public with the initial phase of what will be a long-term post-event legacy. The centre brings together, i
  • AtkinsRéalis gets Georgia DoT resilience deal
    June 18, 2024
    Weather events and emergency transportation planning are at the heart of new contract
  • Helsinki’s residents trial MaaS as alternative to private cars
    August 21, 2018
    Would you give up your own car? Helsinki implemented MaaS late last year and Colin Sowman discovers that the initial reaction has been positive What would it take for you to give up your own car? That is the question posed by Sampo Hietanen, the so-called ‘father’ of Mobility as a Service (MaaS) and CEO of MaaS Global. And he is about to discover if MaaS really will convince the people of Helsinki to do the unthinkable. MaaS Global introduced a fledgling version of its Whim app in the city in late 2016
  • The benefits of combining enforcement and traffic management
    February 27, 2013
    Jason Barnes considers how combining enforcement equipment with other traffic management technologies might benefit our future – if only the will were really in place to do so. During the ITS World Congress in Vienna in October last year, Navtech Radar and Vysion­ics ITS announced a strategic partnership that would combine the expertise of Navtech in millimetre-wave wide-area surveillance technology with Vysionics’ machine vision-based automatic number plate recognition (ANPR) and average speed measurement