Skip to main content

Aimsun shows latest release of mobility software

The Aimsun team is here at Intertraffic to showcase the latest release of Aimsun Next mobility modelling software, which includes options for modelling air pollutants. This new emissions model measures CO2 and NOx emissions from configurable fleets of European vehicles and will be extended to North American fleets in the future It is available in microscopic and mesoscopic simulations. The latest version of Aimsun Next incorporates the average-speed London Emissions Model (LEM), developed by Transport for
March 21, 2018 Read time: 2 mins
Aimsum's Jamie Ferrer

The 16 Aimsun team is here at Intertraffic to showcase the latest release of Aimsun Next mobility modelling software, which includes options for modelling air pollutants. This new emissions model measures CO2 and NOx emissions from configurable fleets of European vehicles and will be extended to North American fleets in the future It is available in microscopic and mesoscopic simulations.

The latest version of Aimsun Next incorporates the average-speed London Emissions Model (LEM), developed by Transport for London (TfL). This model is matched to London driving conditions (central, inner and outer London) and is underpinned by Real-Driving Emissions (RDE) data.

It includes on-road and laboratory data of passenger cars (petrol, diesel and petrol-hybrid), taxis, buses, and rigid and articulated heavy goods vehicles (HGVs). The average-speed emission functions for the entire European fleet of old and new, including Euro 6 / VI, light and heavy-duty vehicles, have been developed using a micro-trip approach.

Unlike commonly applied average-speed models such as Copert, which forms the basis of the UK Emissions Factor Toolkit, the functions can be applied to short road links or sections and are reliable at low speeds.

Current developments include an Instantaneous Emissions Models (IEM) that relies on Aimsun Next micro trajectory simulations to take into account periods of acceleration, deceleration, cruising and idling.

The Aimsun team believes these advancements will make vehicle emission models more accessible to Aimsun software users and help to clean the air in our cities.

Stand 8.306

%$Linker: 2 External <?xml version="1.0" encoding="utf-16"?><dictionary /> 0 0 0 link-external www.aimsun.com Aimsum website link false http://www.aimsun.com/ false false%>

For more information on companies in this article

Related Content

  • ATRI releases roll stability system analysis
    August 14, 2012
    The American Transportation Research Institute (ATRI) has released the industry's first major comparative analysis of roll stability systems based on carrier operational data. The institute’s analysed crash rates, crash costs, and technology costs for roll stability control (RSC) and electronic stability control (ESC) systems compared to vehicles without any roll stability systems technology. The research, based on data from over 135,000 heavy trucks, indicated that installation of RSC technology may resul
  • Network of associations
    December 18, 2015
    Snowmageddon response sweeps award, New push for seamless European travel, Young professionals group launched at ITS UK and Green transport initatives
  • ITS Austria hosts Austrian technology at World Congress
    September 26, 2012
    Austria is hosting the ITS World Congress, so you might expect something special on the ITS Austria stand. Well you are not going to be disappointed! About 40 Austrian companies will be represented on Stand E10 to show their products and services. For example, together with the Vienna Transport Authority, Telereal will show its ‘multi-sensual’ sign system, a new type of info point for people with hearing, visual or physical impairments.
  • Cisco’s low-cost fibre optic solution for traffic monitoring
    March 21, 2018
    Cisco’s display focuses on a novel way of detecting traffic speeds, congestion and incidents without the use of loops. The company is using a fibre optic cable positioned alongside the road and down which it shines a light. Vibration created by passing vehicles create vibration which disrupts the passage of the light. Cisco has developed algorithms that can translate these disruptions to determine what type of vehicle is passing, in which direction, the lane it is using and the speed it is travelling. The