Skip to main content

Carpooling - a simple solution for congestion

Cities plagued with terrible traffic problems may be overlooking a simple, low-cost solution: high-occupancy vehicle (HOV) policies that encourage carpooling can drastically reduce traffic, according to a new study co-authored by Massachusetts Institute of Technology and Harvard University researchers.
July 10, 2017 Read time: 2 mins

Cities plagued with terrible traffic problems may be overlooking a simple, low-cost solution: high-occupancy vehicle (HOV) policies that encourage carpooling can drastically reduce traffic, according to a new study co-authored by 2024 Massachusetts Institute of Technology and Harvard University researchers.

The research indicates that in Jakarta, Indonesia, after an HOV policy requiring three or more passengers in a car was discontinued on important city centre roads, travel delays became 46 per cent worse during the morning rush hour and 87 per cent worse during the evening rush hour.

At the same time, traffic suddenly became significantly worse on surrounding roads as well. Instead of siphoning more traffic onto the central roads, the policy change made congestion worse everywhere.

Jakarta installed its HOV regulations in 1992, in an effort to reduce its notoriously bad traffic problems, using a ‘three-in-one’ policy that required three passengers in each vehicle on some major roads, between 7 and 10 am and between 4.30 and 7 pm. It scrapped the policy in 2016, first for a week, then for a month and then permanently.

The researchers examined traffic-speed data from Jakarta from a week prior to the abolishing of its three-passenger policy, in late March 2016, to a month afterwards. Using data from Google Maps APIs for major roads in Jakarta, they measured travel delays, calculated from the time needed to travel one kilometre compared to the free-flow speed of the road.

After the HOV policy was abandoned, the research showed the average speed of Jakarta’s rush hour traffic declined from about 17 to 12 miles per hour in the mornings, and from about 13 to seven miles per hour in the evenings. By comparison, people usually walk at around three miles per hour.

“Eliminating high-occupancy vehicle restrictions led to substantially worse traffic,” says Ben Olken, a professor of economics at MIT and co-author of the paper detailing the study. “That’s not shocking, but the magnitudes are just enormous.”

 “HOV policies on central roads were making traffic everywhere better, both during the middle of the day and on these other roads during rush hour,” Olken observes. “That I think is a really striking result.”

The paper, Citywide effects of high-occupancy vehicle restrictions: Evidence from ‘three-in-one’ in Jakarta, is published in the journal Science.

Related Content

  • June 14, 2016
    US city opts for Trafficware’s traffic management, adaptive signal technology
    After a competitive bid, the City of Fremont, California, has selected Trafficware’s central traffic management ATMS.now technology and will also add SynchroGreen adaptive signal technology on a 2.2-mile stretch of Fremont Boulevard. The Fremont Boulevard corridor is a major arterial in the city that experiences drastic and highly directional traffic during morning and evening peak periods and more balanced traffic operations during the off peak periods, but also has swings in traffic volume due to near
  • June 2, 2014
    Strike action prompts commuters to try something different
    David Crawford highlights responses to transit disruption on both sides of the Atlantic. Shortly before workers at San Francisco Bay Area Rapid Transit (BART) began a lengthy round of pay and conditions-related strikes in summer 2013, impacting on the daily lives of 400,000 communities, online ridesharing group Avego publicised a new web address: bartstrike.com. By the start of the following week, Avego was encouraging stranded commuters to download its smartphone app by offering them the chance in a raffle
  • May 31, 2013
    Data goldmines offer rich pickings
    Astronomical is not too grand a term to describe the current rate of growth in transportation-related data. Massive amounts of traffic related information, such as speed, volume, incidents and weather are being generated every second by road operators and users alike. Big data’ derives its name from the sheer amount and complexity of available raw data. Its potential value is starting to emerge among the intelligent transportation systems community. A gold rush is taking place to capture this value, with da
  • May 26, 2016
    Viaduct deck renewal creates detour dilemma for MassDOT
    As the deck renewal of the I-91 viaduct in Springfield gets underway, David Crawford looks at the preparation and planning to ease the resulting traffic congestion. Accommodating the deck renewal of a 4km-long/four-lanes in each direction viaduct in the heart of Springfield (Massachusetts’ third largest city), has involved the state’s Department of Transportation (MassDOT) in a massive exercise in transport research and ITS-based area-wide preplanning and traffic management. Supporting a workzone of well ab