Skip to main content

Guide on how to improve bike network connectivity with modest changes

The Mineta Transportation Institute has released a peer-reviewed research report, Low-Stress Bicycling and Network Connectivity. As part of its work, the research team created measures of low-stress bicycle route connectivity that can be used to evaluate and guide bicycle network planning. As a result, the team proposed a set of criteria by which road segments can be classified into four levels of traffic stress (LTS). The report includes a sample case study in which every street in San Jose, California, is
June 1, 2012 Read time: 3 mins
RSSThe 5277 Mineta Transportation Institute has released a peer-reviewed research report, Low-Stress Bicycling and Network Connectivity. As part of its work, the research team created measures of low-stress bicycle route connectivity that can be used to evaluate and guide bicycle network planning. As a result, the team proposed a set of criteria by which road segments can be classified into four levels of traffic stress (LTS). The report includes a sample case study in which every street in San Jose, California, is classified by LTS.

"For a bicycling network to attract the widest possible segment of the population, its most fundamental attribute should be low-stress connectivity," said Maaza C. Mekuria, one of the authors of the report. "In other words, we should be providing routes between people's origins and destinations that do not require cyclists to use links that exceed their tolerance for traffic stress, and that do not involve an undue number of detours. So we proposed and tested the practicality of a new way to define the bicycle network as the set of streets and paths that people consider acceptably safe for bicycling."

To fulfil a second goal, the researchers developed metrics for low-stress connectivity, or the ability of a network to connect travellers' origins to their destinations without subjecting them to unacceptably stressful links.

To make bicycling safer and more appealing, cities often make bicycle-related improvements to certain streets. However, those improvements do not necessarily represent the network of paths and streets that people deem safe enough to use. The LTS criteria can distinguish four levels of a street network's stressfulness, corresponding to identified user profiles, and they offer cities a way of mapping their bicycling networks according to which populations they serve rather than according to facility types. The research also highlights the importance of intersection approaches and street crossings in network connectivity.

The report includes several new analysis tools for visualizing connectivity, including stress maps, shortest-path trees, and maps highlighting barriers and islands. Illustrations and figures include examples of bike lanes, various stress maps, sample connectivity graphs, and more. Tables include levels of traffic stress for various configurations, distribution of centre-line miles by level of traffic stress, proposed improvements, and more.

The free 68-page report is available for download here.

Related Content

  • January 26, 2012
    New technology revolution in urban traffic control?
    Urban traffic control is a well-defined and practised art. Nevertheless, there are technologies here and on the horizon with the potential to revolutionise how we do things. By Gavin Jackman and Andrew Kirkham, TRL, and Jason Barnes. Distributed monitoring and control of urban traffic networks and flows is nothing new. PC-based Urban Traffic Control (UTC) is now well established and operating in many locations around the world. However, it is worth considering the effects of the huge growth in the use of sm
  • January 29, 2015
    Tolls to help fund improvements to the Brent Spence Bridge
    The International Bridge, Tunnel and Turnpike Association (IBTTA) has applauded Governors Beshear (Kentucky) and Kasich (Ohio) following their announcement that they plan to use tolls to pay for at least part of the US$2.63 billion Brent Spence Bridge replacement. Brent Spence Bridge is a double deck, cantilevered truss bridge that carries Interstates 71 and 75 across the Ohio River between Covington, Kentucky and Cincinnati, Ohio. Originally designed to carry 80,000 vehicles per day, approximately 172,0
  • October 29, 2014
    ITF Corporate Partnership Board projects highlight ways forward
    The findings of the first four projects launched by the ITF Corporate Partnership Board (CPB), the organisation's platform for engaging with the private sector, have been announced. CPB projects are designed to enrich policy discussion with a business perspective. They are launched in areas where CPB member companies identify an emerging issue in transport policy or an innovation challenge to the transport system. Led by ITF, work is carried out in collaborative fashion in working groups consisting of CP
  • June 18, 2024
    Crossing the line: managing traffic across jurisdictions
    The US will eventually have a fully-digitised transportation network, with traffic management devices talking to each other across massive distances. It’s really a question of pain points on the road to full deployment, explains Mark Talbot of Q-Free