Skip to main content

Siemens to provide V2I technology for Florida pilot connected vehicle pilot project

Siemens, as a member of the Tampa-Hillsborough Expressway Authority (THEA) team, has been chosen by the US Department of Transportation (USDOT) to provide vehicle-to-infrastructure (V2I) technology for a new connected vehicle pilot project. Siemens V2I technology will enable vehicles and pedestrians to communicate with traffic infrastructure like intersections and traffic lights in real-time to reduce congestion specifically during peak rush hour in downtown Tampa. The technology will also help improve s
March 24, 2016 Read time: 2 mins
189 Siemens, as a member of the Tampa-Hillsborough Expressway Authority (THEA) team, has been chosen by the 324 US Department of Transportation (USDOT) to provide vehicle-to-infrastructure (V2I) technology for a new connected vehicle pilot project.

Siemens V2I technology will enable vehicles and pedestrians to communicate with traffic infrastructure like intersections and traffic lights in real-time to reduce congestion specifically during peak rush hour in downtown Tampa. The technology will also help improve safety and reduce greenhouse gas emissions.

This is one of three projects funded by the USDOT to pilot next-generation technology in infrastructure and vehicles that can impact unimpaired vehicle crashes, which make up 80 percent of the crashes on the road.

Siemens is working in partnership with THEA to identify how to implement CV technologies including: Intelligent traffic signal systems to coordinate signals and pedestrian crossings that respond immediately to traffic conditions in real-time and  provide signal priority; Curve speed warnings to alert drivers if they are approaching a curve at a speed that may be too high for safe travel; Transit bus operator alerts when pedestrians may be in a crosswalk or when vehicles attempt to go around a bus in order to avoid potential conflicts; Automated calls or audio cues for impaired pedestrians to safely navigate crosswalks; Intersection Movement Assistance that warns drivers when it is unsafe to enter an intersection, for example when something may be blocking the driver’s view of opposing of crossing traffic, and forward collision warnings for hard braking in the traffic stream; Probe-enabled traffic monitoring to transmit real-time traffic data between vehicles.

The connected vehicle systems are able to communicate with both new and older vehicles through new in-vehicle technology, an on-board unit such as a satellite radio, or a smart phone application. This project will help the USDOT develop the technology, data and baselines to be fully compatible with crash avoidance systems of new cars beginning in the 2017 model year.

For more information on companies in this article

Related Content

  • The future looks bright for ITS
    June 4, 2015
    Professor Eric Sampson talks about the past successes of ITS, its potential for the future and the challenges the industry faces. If anybody should know when Intelligent Transport Systems started that person is Professor Eric Sampson, a visiting professor at both Newcastle and London City Universities. Having spent 40 years working for the UK’s Department of Transport and other public administrations, Professor Sampson now supports the European Commission on ITS systems and advises ERTICO ITS-Europe and ITS
  • Here to lead vehicle hazard warning pilot in Finland
    July 1, 2015
    Mapping and navigation specialist Here has been selected by Finnish traffic agencies Finnish Transport Agency (FTA) and Trafi, the Finnish Transport Safety Agency to lead a pilot project to enable vehicles to communicate safety hazards to others on the road. Here will also work with traffic information management service company Infotripla in implementing the project, which will be the first to implement a road hazard warning messaging system as described in the Intelligent Transportation Systems (ITS)
  • Rail operator deploys Siemens technology for newly opened light rail line
    September 22, 2015
    TriMet's new MAX Orange Line, a light rail project between Portland and Milwaukie in the US incorporates Siemens’ advanced rail technologies, including its S70 light rail vehicles, rail signalling and communication systems and the company's first Sitras SES energy storage unit in the US that uses regenerative braking to sustainably power the line. The 12 kilometre line is the region's sixth construction project of the development project Metropolitan Area Express (MAX) to expand the city's transport net
  • Volvo initiates cloud-based road warning system
    March 21, 2014
    Volvo Car Group (Volvo Cars), the Swedish Transport Administration (Trafikverket) and the Norwegian Public Roads Administration (Statens Vegvesen) are joining forces in a pilot project in which road friction information from individual cars is shared within a cloud-based system. The pilot uses 50 Volvo cars; when the test car detects an icy or slippery patch of road, the information is transmitted to Volvo Cars’ database via the mobile phone network. An instant warning is transmitted to other vehicles ap