Skip to main content

Bharath Electronics wins $12 million contract to renew Hyderabad’s traffic signalling infrastructure

The city of Hyderabad has announced an ambitious 12-month plan to install a new city-wide traffic signal system called the Hyderabad Traffic Integrated Management System (HTRIMS). The US $12 million contract, which was awarded to Bharath Electronics Limited (BEL) earlier this month, aims to upgrade traffic signals at 180 existing junctions across the busy city and bring a further 41 new junctions into the system.
September 3, 2012 Read time: 2 mins
The city of Hyderabad has announced an ambitious 12-month plan to install a new city-wide traffic signal system called the Hyderabad Traffic Integrated Management System (HTRIMS).

The US $12 million contract, which was awarded to 6501 Bharath Electronics Limited (BEL) earlier this month, aims to upgrade traffic signals at 180 existing junctions across the busy city and bring a further 41 new junctions into the system.

Hyderabad traffic police chief CV Anand says that nearly 50 junctions will have been brought into the new system by September 30 2013 and that HTRIMS will be the first project of its kind in India. The scheme will impose “stringent penalties” if conditions are not met added Anand.

“BEL will be penalised if it misses any deadline. The Service Level Agreement is linked with performance and payments to the company will be cut down if a signal fails to function for an hour during the whole year,” he explained.

To ensure uninterrupted power supply the new signalling system will be fed by three different supply sources: the normal commercial electricity grid, solar panels and an emergency battery backup network. The signalling system will also have features like full connectivity with a centralised command system, virtual loop cameras for adaptive traffic control and automatic signal timing adjustment.

“One of the main problems of the present signals is that they are not properly visible to the motorists,” says the police chief. “The new signals will be put up at prominent places. Even the brightness of the signals will be automatically adjusted by the system.”

According to BEL project manager D. Ravi Kumar, another challenge will be that the “traffic conditions in Hyderabad are different from Bangalore … so we are doing a comprehensive study of the system. We will try to install 50 signals by September 30 2013.”

The project can also be expanded by including more junctions or services, added Kumar. And, for the first time in India, the project is also being monitored by third party independent PMU (Professional Management Unit) provided by a team from the Administrative Staff College of India.

Related Content

  • Wavetronix radar-based traffic sensor cuts costs
    May 30, 2013
    While initial cost of radar based detection may be higher than that traditional loops, lower maintenance costs more than balance the books. Following successful field tests, the US city of Greenville, North Carolina, has recently agreed a new policy of phasing in Wavetronix traffic sensor technology’s radar-based SmartSensor Matrix system across its signalised traffic intersections. City traffic engineer Rik DiCesare expects the incremental implementation to deliver benefits to both the city’s taxpayers an
  • Cost Benefit: Utah traffic light scheme pays dividends
    March 15, 2019
    A traffic signal control scheme in Utah is being taken up by other US authorities. David Crawford finds out how the Beehive State is leading the way in DoT and driver savings Growing numbers of US state departments of transportation (DoTs) and their road users are gaining real financial benefits from an advanced approach to traffic signal monitoring recently developed in Utah. Central to the system is its use of automated traffic signal performance measures (ATSPM) technology, brought in to improve th
  • IBM, Honda, and PG&E enable smarter charging for EVs
    April 17, 2012
    IBM has teamed with American Honda Motor Company and Pacific Gas and Electric Company on a new pilot project that will allow communication between electric vehicles (EVs) and the power grid. This project will demonstrate and test an electric vehicle's ability to receive and respond to charge instructions based on the grid condition and the vehicle's battery state. With visibility into charging patterns, energy providers will have the ability to more effectively manage charging during peak hours and create c