Skip to main content

Trafik Stockholm uses data gathered from Bluetooth and Wi-Fi to alleviate congestion

Trafik Stockholm (TS) has chosen Blip Track technology from Denmark-based Blip Systems to alleviate congestion on the city's road by providing live traffic information via real-time and historical travel flow data from road users’ Bluetooth and Wi-Fi devices. Travel times are continuously updated in line with the behaviour of road users so that by considering their route and the time they depart, they can help to reduce bottlenecks and keep traffic moving. The technology provides a birds-eye view of the
November 20, 2017 Read time: 3 mins

Trafik Stockholm (TS) has chosen Blip Track technology from Denmark-based Blip Systems to alleviate congestion on the city's road by providing live traffic information via real-time and historical travel flow data from road users’ Bluetooth and Wi-Fi devices. Travel times are continuously updated in line with the behaviour of road users so that by considering their route and the time they depart, they can help to reduce bottlenecks and keep traffic moving.

The technology provides a birds-eye view of the traffic network and statistical information on the travel times, average speed, dwell times, and movement patterns.

Additionally, the empirical data is used to detect driving time anomalies to pinpoint road sections and intersections where driving times deviate from the norm. These can include scenarios such as construction projects, incidents, roadwork, faulty traffic lights and other factors.

If driving times deviate from the typical driving time, the system automatically raises a flag. As the system logs and visualises all deviations, traffic engineers can create historical performance and reliability reports. Managers are provided with an overview of the current situation and tendencies over time, to allow for road improvements and development where needed.

Otto Astrand, traffic analyst at TS, said: “We use the data for measuring the development in traffic density, speed and congestion. South of Stockholm, where we first installed the solution, will be a roadwork zone for many years ahead, when building the Stockholm Bypass. It will not only affect the main highway (E4) running through the work zone, but also the surrounding roads. With BlipTrack we are able to measure the capacity and traffic flow in real-time in and around the area. This allows us to take proactive steps to initiate countermeasures, if traffic build-up should occur. It also helps us to understand various traffic-related matters, such as the impact of traffic control, weather-related patterns, congestion patterns at roadworks, accidents and events, and driving behaviours and patterns. With this information, we can evaluate and validate existing traffic models and make informed decisions about where to prioritise expansions and optimisations to help the daily commute.”

Astrand added that the analysed data is also used to display live traffic information on signs around the city. “We also use the data to display live travel times via Trafiken.nu, which is our traffic information hub, and on around 40 VMS [variable message signs] placed around the city. The travel times help road users to make informed decisions about their journey, both in real-time and for those planning their daily commute."

Related Content

  • Open communication platform to support cooperative infrastructure
    July 23, 2012
    Within the European Commission's CVIS project, work is going on to shrink the open vehicle communication platform to make it more market-ready and to remove barriers to the creation of appropriate applications by those external to the project. Here, ERTICO's Zeljko Jeftic and Paul Kompfner and Q-Free's Knut Evensen discuss progress. Development of the open communication platform which will support the various applications developed by the European Commission's (EC's) Cooperative Vehicle-Infrastructure Syste
  • SwRI uses AI on Tennessee integrated corridor
    April 22, 2021
    SwRI is developing machine learning algorithms to help coordinate traffic management
  • Ranked: the world's most congested cities
    January 22, 2025
    Inrix data suggests billions of hours are lost worldwide, hampering economies
  • Ford, MIT project measures pedestrian traffic, predict demand for electric shuttles
    July 28, 2016
    Ford Motor Company and the Massachusetts Institute of Technology are collaborating on a new research project that measures how pedestrians move in urban areas to improve certain public transportation services, such as ride-hailing and point-to-point shuttles services. The project will introduce a fleet of on-demand electric vehicle shuttles that operate on both city roads and campus walkways on the university’s campus. The vehicles use LiDAR sensors and cameras to measure pedestrian flow, which ultimate