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

  • EETS: still struggling to become reality
    December 4, 2013
    Erich Erker, Norbert Schindler, Peter Tschulik from Siemens Electronic Tolling examine the barriers to EETS deployment. Tolling in Europe was introduced to pay for the construction and operation of individual tunnels, bridges and highways and has evolved in major steps. The original manual tolling systems were highly disruptive to traffic flow and required the creation of large toll plazas, with multiple lanes and toll booths to ensure an acceptable throughput. With the introduction of Dedicated Short Range
  • Vehicle manufacturers and local authorities seek satnav solutions
    December 5, 2013
    The increasing capability of satellite navigation is helping vehicle manufacturers and local authorities as well as individual drivers and fleets. In comparison to the physical ITS infrastructure in towns and cities and on motorways and highways, satellite navigation (satnav) systems have come a long way in a short time. Many (if not the majority) individual drivers and fleets use or have access to a satnav and now the vehicle manufacturers and even local authorities are beginning to utilise satnav derived
  • Cooperative road infrastructures - progress and the future
    February 1, 2012
    Robert Bertini, deputy administrator of the USDOT's Research and Innovative Technology Administration, discusses the research and deployment paths of cooperative road infrastructures. High-level analysis by the US's National Highway Traffic Safety Administration (NHTSA) of the potential of Vehicle-to-Infrastructure/Infrastructure-to-Vehicle (V2I/I2V) and Vehicle-to-Vehicle (V2V) technologies indicates that V2V could in exclusivity address a large proportion of crashes involving unimpaired drivers. In fact,
  • Four firms selected to provide equipment for Connected Vehicle Safety Pilot Program
    April 23, 2012
    Kapsch, ITRI International, Cohda Wireless and Cisco Systems, and Savari Networks have been selected by the Intelligent Transportation Systems Joint Programme Office (ITS JPO) to provide roadside equipment as part of the Connected Vehicle Safety Pilot Programme. The contracts were awarded by the Federal Highway Administration (FHWA) which solicited quotations from suppliers to provide all the necessary equipment, materials, and services for the development and production of the devices. Each of the device