Skip to main content

Siemens to equip Hong Kong's longest road tunnel

Siemens is to supply all the traffic control and monitoring systems for the twin-bore Liantang tunnel, which will link Hong Kong to the new Liantang/Heung Yuen Wai border crossing with mainland China. The five kilometre long tunnel forms part of a four-lane freeway link, extending to around eleven kilometres in total, and is intended to provide a direct connection for cross-border freight and passenger vehicle traffic between the Northeast New Territories and the Eastern part of Shenzhen on the Chinese
July 8, 2016 Read time: 2 mins
189 Siemens is to supply all the traffic control and monitoring systems for the twin-bore Liantang tunnel, which will link Hong Kong to the new Liantang/Heung Yuen Wai border crossing with mainland China.

The five kilometre long tunnel forms part of a four-lane freeway link, extending to around eleven kilometres in total, and is intended to provide a direct connection for cross-border freight and passenger vehicle traffic between the Northeast New Territories and the Eastern part of Shenzhen on the Chinese mainland. The project will become the longest road tunnel in Hong Kong on completion in 2022.

Siemens will supply its technology for the International Tunnel Control Centre (ITCC), which will use Simatic WinCC open architecture for the operations control system. The ITCC will draw on real-time data to assess conditions in the tunnel and decide on actions to optimise traffic flow, taking safety aspects into account. Automated incident and congestion detection, emergency management for accidents, tunnel closure and contraflow management are just some of the main functions provided by the ITCC.

For more information on companies in this article

Related Content

  • Dynamic lane closures cuts time, cost and congestion on Motorway roadworks
    March 17, 2014
    A combination of technologies is leading to major congestion and cost reductions during roadworks on the UK’s motorway network. Innovative construction programme scheduling technology and the deployment of moveable barriers has achieved substantial savings of money and time on UK motorway roadworks managed by the Highways Agency (HA). This combination has set the scene for a new generation of road usage analysis tools. The HA’s objective was to reduce the congestion caused by lane closures during roa
  • Asking drivers what information they need: radical but effective
    March 19, 2014
    When Texas A&M Transportation Institute was asked to devise a temporary traveller information system for work zones, it started by asking drivers what they need. Robert Brydia explains the thinking, implementation and results. US Interstate 35 (I-35) runs roughly north–south originating in Laredo, Texas and ends 1,500 miles away in Duluth, Minnesota having passed through Oklahoma, Kansas, Missouri and Iowa. Within Texas the I-35 splits into I-35E and I-35W passing through Dallas and Fort Worth respectiv
  • Heart of Slough implements Siemens wireless traffic detection
    February 21, 2013
    As part of the Heart of Slough improvement project, new traffic intersections across seven key sites in and around Slough, UK have been equipped with a total of 162 Siemens WiMag wireless magnetometer sensors by Siemens to help improve the management of traffic using the A4 and travelling to and from the town centre. Complementing the company’s proven loop and radar detection solutions, the sensors provide the Heart of Slough project with an alternative traffic detection system that uses magnetic disturbanc
  • Elon Musk’s underground movement
    August 3, 2020
    The Boring Company is building tunnels under various US cities – but for what? Kristina Smith delves deep into a project which may (eventually) have real appeal for mass transit providers and transportation agencies