Skip to main content

Traffic signal upgrade for UK’s south-east

A contract to deliver a new central traffic signal control and management system for the UK’s south east has been placed by Highways England with Simulation Systems (SSL) to meet both the immediate and future requirements of Highways England for England’s motorway and major A-roads. Central to the contract will be Siemens Stratos cloud-hosted, fully integrated traffic control and management solution and hosted-SCOOT, the real time UTC and adaptive traffic control system already used to manage and co-ordinat
April 25, 2016 Read time: 2 mins

A contract to deliver a new central traffic signal control and management system for the UK’s south east has been placed by 8101 Highways England with Simulation Systems (SSL) to meet both the immediate and future requirements of Highways England for England’s motorway and major A-roads.

Central to the contract will be 189 Siemens Stratos cloud-hosted, fully integrated traffic control and management solution and hosted-SCOOT, the real time UTC and adaptive traffic control system already used to manage and co-ordinate traffic control for 76 UK authorities, including the control of many existing Highways England junctions.

The Siemens Stratos system will replace the existing UTC control system for the M25 and bring the control of sites in central southern England and the south east under the control of the new system, which additionally offers expansion capacity for the other regional areas.

The development roadmap will deliver a new traffic signals module to Highways England from April 2016, which, when linked to the latest generation of IP outstations, will offer the functionality previously provided by the two separate systems on a single platform. This provides Highways England with a single hosted solution for both real time control and monitoring which can be accessed through secure internet based connections, providing the flexibility to operate the system from many locations by many operators.

UTC

Related Content

  • June 17, 2016
    Less travel aggravation to blunt Aggieland fans’ motivation
    Returning travel times to normal within two hours of the end of a major football game was the challenge facing College Station, Adam Lyons explains how this was achieved. College Station, TX, also known as ‘Aggieland’, is located right in the middle of the Dallas/Fort Worth, San Antonio and Houston triangle making the city accessible to over 14 million Texans within less than a four-hour drive. One of the biggest draws to this area is Texas A&M University (TAMU) and the Aggie football games in the fall, mea
  • July 17, 2012
    Real time active traffic management improves travel times
    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
  • August 27, 2014
    Siemens awarded TfL maintenance contracts
    Siemens is to maintain traffic control equipment in the north and north-east London regions under two new traffic control maintenance services contracts awarded by Transport for London (TfL). The contracts represent two of the five contracts that will see London’s traffic signals upgraded to the latest energy-saving technology, as well as expanding the use of intelligent traffic signals and new crossings for pedestrians and cyclists. Worth in total around US$525 million for up to eight years, the five co
  • January 26, 2018
    Jenoptik uses sensor fusion to avoid monitoring confusion
    Jenoptik’s Uwe Urban looks at the advantages of ‘sensor fusion’ for the ITS sector. When considering the ideal sensing and monitoring system to enable the ITS sector to deliver improvements in mobility and road safety, for general policing security and border protection, we have to think beyond radar-base systems or laser scanners. What is needed today are solutions for detecting and tracking vehicles while recording evidence to deacide if any action is necessary. There is no sole sensor capable of