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Signal Phase and Timing (SPAT) with an Intersection Collision Model (101-FH3) Small Business Innovation Research (SBIR) Phase 1

Project Information

Project ID: 
FHWA-PROJ-10-0016
Project Abstract: 

Harmonia has developed an index of Traffic EXperimental Analytical Simulation (TEXAS) documentation, documented global variables and subroutines in Simulated Processing (SIMPRO), and added newly developed subroutines into the TEXAS documentation database. Harmonia has developed the Enhanced Traffic EXperimental Analytical Simulation (eTEXAS), a Java Application Programming Interface for the TEXAS Model. We have set up SIMPRO for compilation using free and open source software and modified the TEXAS source code to accomplish the central step of reorganizing TEXAS as a simulation library for programmatic invocation by the Connected Vehicle program or other applications. We have also implemented Java interfaces to the simulation for portability for the Society of Automotive Engineers (SAE) J2735 messages, Variable Message Signs messages, Signal Controller Messaging System (SCMS) messages, and obtaining vehicle updates. In addition, we have developed a graphical user interface for Delta Time (DT) simulation and a simplified Java version of Bonneson's dilemma zone Control Systems (D-CS) algorithm for validation of eTEXAS. Harmonia has also created a project Web site to host the free and open source eTEXAS project, which includes source code, documentation materials, and developer community facilities.

Research HUB ID: 
7856
Project Status: 
Completed
Project Funding Amount (Contract Award Amount): 
$100,000
Start Date: 
Wednesday, March 10, 2010
End Date: 
Friday, September 10, 2010
Public Access Plan: 
No
FHWA AMRP Program: 
Small Business Innovation Research
Project Outputs: 

The tentative answer is that signal phase and timing (SPAT) can be simulated with an intersection collision model, and that the combined model might be useful for safety and operations research.

Contact Information

First Name: 
Deborah
Middle Initial: 
M
Last Name: 
Curtis
Phone Number: 
(202) 493-3267
Email Address: 
Team: 
Transportation Enabling Technologies Team
Office:
Office of Operations Research and Development
Office Code: 
HRDO-10

Deliverables