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Award Data
The Award database is continually updated throughout the year. As a result, data for FY22 is not expected to be complete until September, 2023.
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.
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Complex Event Detection in Video and Communications
SBC: SOAR TECHNOLOGY INC Topic: N10AT040We will demonstrate the feasibility of detecting tactically meaningful complex events in sensor input streams using an efficient pattern matching technology embodied in the Soar cognitive architecture. Our focus in Phase I will be on video streams, such as those that might be produced by unattended ground sensors or unmanned aerial systems. To reduce risk, we propose devoting a portion of our effo ...
STTR Phase I 2010 Department of DefenseNavy -
Control & Optimization of Multiple Illumination Characteristics (COMIC) of A Pulsed Fiber Array Laser System For Active Imaging Through Fog
SBC: MV Innovative Technologies LLC (DBA: Opt Topic: N18AT021Degraded weather conditions particularly, dense maritime fog, reduces the US Fleet EO/IR systems ability to maintain situational awareness and detect/identify and track targets of interest. It is the Navys goal to develop an active EO/IR imaging system that jointly optimizes illumination source properties and implements advanced image processing to improve performance and operational range of curr ...
STTR Phase I 2018 Department of DefenseNavy -
Cubic Boron Nitride Claddings for Friction Stir Tooling
SBC: Plasma Processes, LLC Topic: N18AT026Friction stir welding (FSW) is an attractive joining method where high strength low porosity welds can be attained. However, the high temperatures and forces required for welding high strength materials like steel require the use of exotic tools. Cubic boron nitride (cBN)-based tools offer attractive tool wear characteristics in steels, but are very costly. Conversely, refractory metal alloys are ...
STTR Phase I 2018 Department of DefenseNavy -
Data Analytics and Machine Learning Toolkit to Accelerate Materials Design and Processing Development
SBC: CFD RESEARCH CORPORATION Topic: N19AT020Navy has identified refractory high entropy alloy (RHEA) and metal additive manufacturing as two potential areas of interest. This includes designing new RHEA and optimizing metal additive manufacturing with specific material property requirements. Developing materials and processes via applying traditional experimentation and process optimization techniques is painfully slow due to the large numb ...
STTR Phase I 2019 Department of DefenseNavy -
Demonstration of a JP-8 Powered Compact ECU
SBC: MAINSTREAM ENGINEERING CORP Topic: OSD09T002Military shelters currently use electrically driven Environmental Control Units (ECUs) to provide cooling for the air inside the shelter. The ECU is vapor compression cycle powered by a diesel generator, operating on JP-8 fuel. Other than fueling jet engines, the largest drain on U.S. military fuel supplies in current operations comes from running generators at forward operating bases. In hot cli ...
STTR Phase I 2010 Department of DefenseNavy -
Development of a Computational Method for Prediction of After-Burning Effect
SBC: BUSA Engineering Consulting Topic: N10AT002This proposal is being submitted in response to the solicitation topic N10A-T002 (Development of a Computational Method for Prediction of After Burning Effect) by BUSA Engineering Consulting (Dr. Jianghui Chao) in collaboration with University of Florida (PI: Prof. S. Balachandar). The overall objective of the proposed effort is to contribute to national defense and security by advancing the state ...
STTR Phase I 2010 Department of DefenseNavy -
Development of Next-Generation Composite Flywheel Design for Shock and Vibration Tolerant, High Density Rotating Energy Storage
SBC: PowerTHRU Topic: N13AT022PowerTHRU Corporation proposes to meet or exceed the requirements of this STTR by utilizing its extensive experience in carbon fiber based high speed flywheel systems, to design and build a 100K RPM flywheel system. Unlike steel flywheel technologies that are limited by the speed in which they can safely rotate, PowerTHRU has already demonstrated that 50,000 RPM carbon fiber flywheels can be desig ...
STTR Phase I 2013 Department of DefenseNavy -
Development of Surface Reaction Mechanism for C-SiC-SiO2-Rubber Composite Oxidation in Extreme Oxidizing Condition
SBC: CFD RESEARCH CORPORATION Topic: N10AT005The purpose of this STTR is to develop comprehensive detailed kinetics for oxidation of C-SiC-SiO2-rubber in extreme oxidizing environment. This material is used as a coating on the outer surface of Navy weapon systems. In order to predict the fate of this material under extreme conditions and mitigate the degradation of the coating, a comprehensive oxidation mechanism is required. In Phase I, CFD ...
STTR Phase I 2010 Department of DefenseNavy -
GECCO: Gecko-gripper for EOD with Cavitation Cleaning Operation
SBC: VALOR ROBOTICS, LLC Topic: N19AT011The objective of the Phase I proposal is to investigate the application of controlled cavitation cleaning technology in conjunction with gecko-inspired mechanical adhesion and soft elastomeric applicators for use in non-intrusive EOD operations. This investigation requires the proof-of-concept testing and validation of a controlled cavitation cleaning mechanism, and a soft robotic gecko-inspired m ...
STTR Phase I 2019 Department of DefenseNavy -
High Efficiency Computation of High Reynolds Number Flows
SBC: Technosoft, Inc Topic: N13AT009Although advancements in CFD technology and high performance computing have proven to be effective and reasonably accurate in assessing the hydrodynamic performance of naval vessels, the effort required to develop associated analysis models remains a challenging and time consuming task. Decomposing and manipulating the design geometry for mesh construction, while capturing near-field and far-field ...
STTR Phase I 2013 Department of DefenseNavy