Skip to main content

Aimsun helps TfL retain detail in traffic modelling

Transport for London (TfL) has selected Transport Simulation Systems’ Aimsun modelling software following a lengthy evaluation. With London’s population predicted to reach 10million by 2030, the authority needed to increase its modelled area by a factor of 10 to more than 2,300km2 along with improved cyclist, pedestrian and air quality predictions. For a market assessment it divided its modelling requirements into three categories: tactical - for city wide policy evaluation, micro-simulation for modelli
September 25, 2015 Read time: 2 mins
1466 Transport for London (TfL) has selected 2195 Transport Simulation Systems’ Aimsun modelling software following a lengthy evaluation. With London’s population predicted to reach 10million by 2030, the authority needed to increase its modelled area by a factor of 10 to more than 2,300km2 along with improved cyclist, pedestrian and air quality predictions.

For a market assessment it divided its modelling requirements into three categories: tactical - for city wide policy evaluation, micro-simulation for modelling London’s 23 main traffic corridors, and optimisation of the junction/network with some 6,300 signalised junctions.  3D visualisation was also specified.

It evaluated three systems in each category by providing potential suppliers with data regarding a particular area and setting out up to 70 outcome requirements for each level. Interconnection between the proposed systems in the various layers was also evaluated.

TfL’s lead modelling specialist Vladimir Vorotovic said 70% of the score weighting related to the technical capability and service provision with the remainder being financial considerations.

Beyond predicting travel times, the new systems had to accommodate an expected tripling in the number of cyclists, enhanced emissions modelling (including 3D evaluation of building/canyons) and linking the outputs to the other layers. The aim of the cross linking is to retain the individual vehicle movements detail used in junction modelling at the corridor level (using Aimsun hybrid simulation) along with 3D visualisation - and to inform the tactical model.

According to Vorotovic, once implemented the system will enable changes made at individual junctions to be evaluated on a corridor level or even across the entire modelled area. It will also allow the effects of policy changes to be modelled at street level on individual junctions.

Related Content

  • May 20, 2019
    TfL to deploy 20 hydrogen buses in London
    Transport for London (TfL) is to deploy 20 hydrogen double decker buses in London next year in a bid to improve air quality in the UK capital.
  • September 18, 2014
    TfL upgrades London’s speed and red light safety cameras
    Transport for London (TfL) has begun work on a programme to overhaul the capital’s road safety camera network; replacing hundreds of old wet film cameras with modern and more efficient digital safety cameras in order to help further reduce casualties on London’s roads. According to TfL, safety cameras have proved successful in reducing road casualties in recent years. At locations where safety cameras operate in the capital, research shows that the number of people killed or seriously injured (KSI) fell
  • May 27, 2014
    Olympic challenges in Sochi
    Sporting events always create problems for traffic planners and none more so than the Winter Olympics. It is difficult to think of more diametrically opposite challenges for transport planners than the 2012 Olympics in London and this year’s Winter Olympics in Sochi: from a summer event in the heart of a megacity with well established transport infrastructure to winter games with unpredictable weather and events in remote and mountainous locations. The Winter Games are always a challenge and Sochi was no di
  • January 10, 2013
    EU research develops method for evaluating critical infrastructure
    The European Commission’s SeRoN research project has drawn to a close, having developed a sophisticated method of identifying and quantifying threats to critical infrastructure. In December 2008 the European Commission published the directive 2008/114/EC on the identification, designation and assessment of the need to improve ‘European critical infrastructure’. In line with the objectives formulated in this directive, the SeRoN (Security of Road Transport Networks) research project was established in Novemb