Skip to main content

TransCore wins Scats deployment contract

TransCore has been selected by Cobb County Department of Transportation, Atlanta, to expand its Scats (Sydney Coordinated Adaptive Traffic System) adaptive traffic signal control technology with an additional 75 intersections, nearly doubling its use of the technology and making it the second largest deployment in the United States. The first phase of 26 intersections in the town centre area are now in operation with the remaining intersections expected to be fully operational by October 2012.
April 27, 2012 Read time: 2 mins
139 Transcore has been selected by Cobb County Department of Transportation, Atlanta, to expand its Scats (Sydney Coordinated Adaptive Traffic System) adaptive traffic signal control technology with an additional 75 intersections, nearly doubling its use of the technology and making it the second largest deployment in the United States. The first phase of 26 intersections in the town centre area are now in operation with the remaining intersections expected to be fully operational by October 2012.

Cobb County, located in the northwest portion of metropolitan Atlanta, first installed adaptive signal control technology in 2006 along Cobb Parkway (US 41) and the Cumberland Galleria area surrounding the I-75/I-285 interchange. Now, in an effort to accelerate mobility in the Northwest Corridor, one of the most congested areas in the metropolitan region, the system’s use will be expanded along US 41, I-75 and I-575.

An intelligent transportation system with adaptive capabilities can respond to traffic patterns as they occur and reduce choke points in the county’s roadway network and subsequently reduce vehicle emissions, fuel consumption, and travel times. As Tim Fischer, TransCore’s vice president for the southeast region, explains, “What makes the Scats adaptive system appealing is that each corridor can be configured differently versus using the traditional time-based, or actuated signal controls. Other systems don’t have this level of configurability or flexibility.”

Scats, originally developed for Sydney Australia by the Roads and Transport Authority, operates in real-time to adjust signal timing in response to changes in traffic demand and provides immediate and historical traffic information for Cobb County traffic engineers. It is currently one of the most widely used adaptive traffic control systems around the world controlling more than 30,000 intersections globally and more than 1,000 intersections in the United States.

Related Content

  • Caltrans selects TransCore ITS for statewide traffic control system
    August 14, 2012
    The State of California Department of Transportation (Caltrans) has selected TransCore ITS to provide its TransSuite traffic control system for managing and centralised monitoring of existing traffic signals statewide. The TransSuite system will be the cornerstone of Caltrans’ strategy to proactively manage traffic through the monitoring of traffic signals and traffic conditions at state-operated intersections. As part of the project, TransCore ITS will develop an interface to the Caltrans controller firmwa
  • The search for travel management's Holy Grail
    October 10, 2018
    Combining accurate network estimates and forecasts with real-time information is the way to deal with traffic hot spots. Alan Dron looks at products which aim to achieve just that. Traffic management authorities have for years been trying to get ahead of the game. Instead of reacting to situations, they want to be able to head them off as they occur – or even before they happen. Finding that Holy Grail of successfully anticipating problems will save time, tension and tempers on city streets. Two new system
  • Real time active traffic management improves travel times
    July 17, 2012
    Traffic management centres (TMC) have traditionally served to provide surveillance and responses to traffic incidents and recurring and non-recurring changes in road networks. Typically, a TMC collected field data from the roadway and transit infrastructure and provided the integration necessary for operators to see what was happening and then coordinate a response. Standard operating procedures (SOPs) guided operators on how to respond to a given situation. It eventually became impractical for TMC operat
  • Making SMART Signal even smarter
    April 20, 2015
    According to researchers at the University of Minnesota, most traffic signals in the US are only retimed every two to five years (or longer), largely due to the expense associated with retiming efforts. However, over the past several years, University of Minnesota researchers have developed and refined its SMART Signal system to make it easier and less expensive to retime signals. The system, developed with funding from the Minnesota Department of Transportation (MnDOT), not only collects traffic and si