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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

The SBIR.gov award data files now contain the required fields to calculate award timeliness for individual awards or for an agency or branch. Additional information on calculating award timeliness is available on the Data Resource Page.

  1. Low Ground Clearance Vehicle Detection and Warning System

    SBC: ADVANCED TECHNOLOGY AND RESEARCH CORPORATION            Topic: 131FR1

    Highway-rail crossing, at which there is an unusually abrupt change in the level of the road's surface as it crosses the tracks, pose a risk of low ground clearance vehicles becoming stuck on the tracks. Advanced Technology and Research Corporation (ATR) proposes to develop an active detection and advance warning system. The system has three major functional componenets: measurement, decision, ...

    SBIR Phase I 2013 Department of Transportation
  2. Tracking of heavy vehicles for estimating heavy load distribution across the highway system and Weigh-In-Motion Calibration

    SBC: CLR ANALYTICS INC            Topic: 122FH4

    Weigh-In-Motion (WIM) has been employed as a major technology to collect heavy vehicles’ data on the freeways. Because WIM is one of the most costly and sophisticated data collection system, how to effectively utilize the valuable WIM data, monitor WIM stations' performance, and identify out of calibration stations are especially important. In this project, we propose an innovative and yet pract ...

    SBIR Phase I 2013 Department of Transportation
  3. Low Ground Clearance Vehicle Detection and Warning System

    SBC: Intelligent Automation, Inc.            Topic: 131FR1

    The problem of low ground clearance vehicles being stuck at tracks of highway-rail grade crossings (HRGC) poses a severe safety risk. Vehicles with long wheelbases and low ground clearance are more likely to be stuck on high-profile HRGCs. Currently there is no commercially available automated system that detects and computes the necessary critical dimensions of low ground clearance vehicles (LGCV ...

    SBIR Phase I 2013 Department of Transportation
  4. Transportation System Performance Measurement Using Existing Loop Infrastructure

    SBC: CLR ANALYTICS INC            Topic: 102FH2

    With continuing emphasis on transportation sustainability and fiscal stewardship, utilizing existing loop detector infrastructure to obtain more accurate, reliable and comprehensive traffic system performance measures is desired by many transportation agencies. In Phase I study, we found that the capability of the Inductive Loop Detector (ILD) signature technology to re-identify and classify vehic ...

    SBIR Phase II 2013 Department of Transportation
  5. Low Cost Bridge Structural Monitoring Technology / Turning Structural Monitoring Data into Decision Making Information

    SBC: Intelligent Automation, Inc.            Topic: 081FH6

    This is a supplemental Phase II proposal submitted to DOT for additional funding and performance period extension of the on-going DOT Phase II project (contract # DTRT57-10-C-10027). The overall objective of the Supplemental Phase II effort is to complete the development of the sensor system capable of continuously monitoring the integrity of bridge structures, conduct field operation validation ...

    SBIR Phase II 2013 Department of Transportation
  6. Smartphone Signal Alert Status

    SBC: Savari Inc.            Topic: 111FH1

    The primary objective for Phase I was to design and develop a proof of concept system demonstrating the basic functionality and feasibility to deploy technology in the field. During the six-month effort, a detailed Concept of Operations document was prepared that served as a foundation for the design and development of the SmartCross system. The core components of the system: (a) Smartphone applic ...

    SBIR Phase II 2013 Department of Transportation
  7. Communicating Towed unit (Trailer) Vehicle Identification Number(s) (VIN) to the Powered Unit

    SBC: Intelligent Automation, Inc.            Topic: 121FM1

    Usually the lifetime of a trailer is much longer than tractors; tractors must work with a variety types and ages of trailers over the course of their use. In many scenarios (e.g., roadside inspection, border crossing, smart parking, connected vehicle initiative, etc.), it is necessary to identify trailer(s)' VIN(s) and know their sequences attached to the powered unit. An automated trailer VIN id ...

    SBIR Phase II 2013 Department of Transportation
  8. Very High Speed Third Rail Insulator Cleaning

    SBC: MINI, LLC            Topic: 07FT4

    This Phase IIB proposal will accelerate the commercialization of the Phase II project that developed the Vohrtex insulator cleaner. The Phase II cleaner used self-spinning nozzles which require oversized offset jets to provide sufficient reaction force to make the nozzle spin. The oversized jets damage the surface finish of the insulators. This Phase IIB project will use small pneumatic, electric ...

    SBIR Phase II 2013 Department of Transportation
  9. Augmenting Inductive Loop Vehicle Sensor Data with SPAT and GrID (MAP) via Data Fusion

    SBC: Savari Inc.            Topic: 111FH2

    In this proposal, we have proposed a program for twenty months to build on the basic ideas and feasibility developed in Phase I of this SBIR in order to demonstrate the practical use of DSRC technologies with signal controller for adaptive timing with a goal towards commercialization. Specifically, we intend to further develop, build and integrate advanced signal control algorithms that make use o ...

    SBIR Phase II 2013 Department of Transportation
  10. An Advanced Algorithm for Radar Derived Bathymetry

    SBC: Arete Associates            Topic: 913N

    NOAA can reduce costs and improve efficiency by remotely monitoring harbors, navigation channels, and coastlines for bathymetric changes. This will aid NOAA in its mission to maintain waterways and assure maritime safety. This remote sensing can be accomplished by implementing a new radar derived bathymetry capability. Areté Associates proposes to demonstrate an advanced algorithm to derive ba ...

    SBIR Phase I 2013 Department of CommerceNational Oceanic and Atmospheric Administration
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