Skip to main content

Cost-effective alternatives to traditional loops

Traffic signal control is a mainstay of urban congestion management. Despite advances in vehicle detection sensors, inductive loops, which operate by using a magnetic field to detect the metal components in vehicles, are still the most common enabler for intelligent signalised junctions.
February 1, 2012 Read time: 4 mins
The M100 wireless vehicle detection system
RSSTraffic signal control is a mainstay of urban congestion management. Despite advances in vehicle detection sensors, inductive loops, which operate by using a magnetic field to detect the metal components in vehicles, are still the most common enabler for intelligent signalised junctions. However, their installation requires trenching and ducting between the loop and traffic signals which can be a costly process, often mounting into tens of thousands of dollars.

Although regarded as the most reliable solution to date, loops are prone to a number of failures resulting from loop tail breakages due to road degradation, water ingress and utilities and other works. This can not only dramatically reduce their effectiveness but actually contribute to congestion not just from the initial effect on the traffic signal control but as traffic management is then required to re-cut the loop. As a result, on-going maintenance and re-installation costs are significant.

In 2009, 2056 Darwen Borough Council in the UK, working with strategic partner 431 Capita Symonds, needed to upgrade three major junctions, all of them on main urban routes in densely populated areas. Each of the junctions was experiencing serious congestion problems and, with the infrastructure involved being over 20 years old, a complete overhaul was required. But tight budgets meant the initial plans were looking very expensive.

The new schemes included resurfacing, new signalling equipment and an upgrade to MOVA (Microprocessor Optimised Vehicle Actuation) to increase the capacity and efficiency of the network. The implementation of MOVA required important additions to the vehicle detection systems in place. It was this need that prompted the team at Capita Symonds to look beyond traditional technical solutions for a more cost-effective alternative.

Project:
Wireless vehicle detection

Cost:
$60,000 (for three junctions)
Benefits:
• $90,000 saving over inductive loop installation costs
• 37% savings for a typical signalled junction; 45% on a 10-year life cycle (assuming replacement of loops once and provision for a sensor failure during the cycle)
• Rapid installation and minimum traffic disruption

In addition to the disadvantages of cutting loops, the ducting involved in running the cabling would in this case have been very expensive as the volume of other underground utilities in the area meant that ducting would need to be dug by hand. Also, one of the sets of signals was at the end of a bridge and cutting loops on the bridge deck was not an option.

Cost-effective and reliable

Capita Symonds's solution for Darwen Borough Council was to deploy the M100 wireless vehicle detection system, a development by UK company 2057 Golden River, part of the 557 Clearview Traffic Group, in conjunction with US technology partners 119 Sensys Networks. Capita Symonds judged it would provide a more cost-effective and reliable solution that would ensure the smooth flow of traffic while helping keep costs down.

The M100 utilises magnetometer technology to detect the presence and movement of vehicles by placing fist size, flush-mounted magnetometer sensors in the road surface. The sensors wirelessly transmit real time data via secure radio technology to a nearby Access Point, which in turn feeds either locally-placed or remote traffic management controllers to ensure optimum traffic flow. The device interfaced with new signalling infrastructure supplied by 5984 Peek Traffic UK along with their Chameleon MOVA controllers.

Cost savings

According to Shoaib Mohammen, Associate with Capita Symonds, using the M100 system provided savings of about $30,000 per site: "Everything that we do is assessed in line with LTP2 (Local Transport Plan) targets and we are also charged with looking for best value for money.

The solution has not only released a significant sum which can be spent elsewhere but will also, in the longer term, reduce our call on our maintenance budgets because, unlike loops which suffer frequent joint failures, the magnetometer is guaranteed for 10 years.

The fact that we can monitor the battery life remotely is a major benefit. And, if we need to resurface the road, we can take the magnetometer out and reuse it.

"We will be looking at each new site on its merits but Capita Symonds will definitely include the magnetometer on the list of options in future. In those situations where we are faced with heavy expenses because of ducting or road closures, or in places where the traditional loops cannot be used, then this system has a lot to offer."

M100

The development of the M100 system was led by Golden River Group Product Manager, Graham Muspratt. "The magnetometer sensor uses three detection sensors to measure the X, Y and Z axes of the earth's magnetic field. When no vehicles are present the sensor will calibrate itself by measuring the values of the background magnetic field and establishing a reference value. The passage and presence of vehicles are detected by measuring deviations from the reference scale."RSS

Related Content

  • Tolls to help fund improvements to the Brent Spence Bridge
    January 29, 2015
    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
  • Traffic management turns to machine vision
    June 1, 2016
    Traffic engineers can use the latest advances in vision technology to streamline and enhance traffic management. The idea of using one camera to perform all functions at an intersection is attractive to authorities for many reasons and camera supplier Gridsmart says it can make this happen. Its Bell Camera offers a horizon to horizon view that includes the centre of the intersection where vehicles, bicycles and pedestrians cross paths and it can be used for traffic light actuation, traffic data collection a
  • Wireless technology aids city-wide traffic management
    October 10, 2012
    An extensive hybrid communications network in the County of Los Angeles is proving the capability and benefits of modern wireless technology for traffic management across wide areas. Wireless communications technology has found a welcoming test bed for use in traffic management systems, in the County of Los Angeles. The county has long running programmes synchronizing and monitoring traffic signals over large areas. In the process, combined with installation of advanced traffic management systems (ATMS), th
  • The Canadian way
    July 16, 2012
    Delcan has developed an ITS project evaluation methodology for Transport Canada. Victor Bruzon explains how it will assist in selecting and managing programmes. ITS projects offer a cost-effective solution for many transportation problems. Individual projects are often not evaluated and such evaluations can be restricted by limited data, the ability of ITS to affect only a portion of the transport network, and by evaluation methodologies that were developed with more traditional transport investments in min