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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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Electro-Optic Transmissive Scanner
SBC: ULTIMARA INC Topic: N17AT001The goal of this program is to develop and construct a thin, light weight, low power, large aperture, electro-optic (EO) transmissive scanner that utilizes electro-optically active nanomaterial structures, suitable for UAVs platform. The nano-material beam-steering technology aperture system offers an ultra-thin Size, Weight, and Power (SWAP) to fit on UAV;s airframe and achieve ultrafast and wide ...
STTR Phase I 2017 Department of DefenseNavy -
Phase-Change Materials for Tunable Infrared Devices
SBC: Sensormetrix, INC Topic: N17AT020The proposed Phase I research seeks to develop innovative tunable IR filters based on phase change plasmonic composite materials. Concepts for a switchable device that is capable of providing dynamic narrowband spectral properties within the 3-12 micron wavelength range will be developed.
STTR Phase I 2017 Department of DefenseNavy -
Degraded Synthetic Training Using an Integrated Kinetic-Cyber Training Environment
SBC: Scalable Network Technologies, Inc. Topic: N17AT023Integration of kinetic training and cyber training will provide a unified platform for combined cyberspace/kinetic battlefield training for our warfighters. Such a training platform will support high-fidelity, multi-factor simulated engagements in which the trainee can be exposed to all domains that are simultaneously interacting with each other. Existing approaches do not accurately reflect the d ...
STTR Phase I 2017 Department of DefenseNavy -
Adaptive Optics for Nonlinear Atmospheric Propagation of Laser Pulses
SBC: TOYON RESEARCH CORPORATION Topic: N17AT024Ultra-short pulse lasers have advantages over continuous-wave lasers for directed-energy applications due to the high peak powers that can be reached. Directed-energy weapons are profoundly limited by the aberrations caused by atmospheric turbulence and current adaptive optics can correct for these aberrations only when the propagation medium is reciprocal. Unfortunately, nonlinear effects in the ...
STTR Phase I 2017 Department of DefenseNavy -
Spatiotemporal Shaping for Parallel Additive Manufacturing
SBC: POLARONYX INC Topic: N17AT030This Navy STTR Phase I proposal presents an parallel AM tool to eliminate conventional scanning strategy. A 2D MEMS array is used to shape both in time domain and spatial domain to obtain the desired pattern for layer by layer process. Modeling is used to study in-process melting evolution versus powder and beam properties. It provides quantitative characterization of the AM system to guide the de ...
STTR Phase I 2017 Department of DefenseNavy -
Video and Audio Data Extraction for Retrieval, Ranking, and Recapitulation
SBC: ONAI INC. Topic: N17AT021We propose a multi-part system to process, understand, and summarize video streams. Our approach involves processing video and audio jointly; uses the latest advances in captioning and automatic speech-recognition to construct text narratives for the video; and uses NLP techniques to summarize and produce a reliable relevance ranking of these videos. We address all six technical challenges identif ...
STTR Phase I 2017 Department of DefenseNavy -
Graphical Speech Recognition Tool
SBC: BCL Technologies Topic: N17AT010BCL proposes developing a Graphical Speech Recognition Tool (GSRT) that will allow Navy Training Operators and Developers to customize Automatic Speech Recognition (ASR) Systems to their scenarios within minutes and without the need for external support. In addition, the GSRT System will have a Train the Speaker module that will allow users to familiarize themselves with the ASR System so that the ...
STTR Phase I 2017 Department of DefenseNavy -
Prediction of Rotor Loads from Fuselage Sensors for Improved Structural Modeling and Fatigue Life Calculation
SBC: ATA ENGINEERING, INC. Topic: N17AT009ATA Engineering and researchers at the Georgia Institute of Technology will develop a framework for the accurate reconstruction of rotor loads from a suite of fixed-frame fuselage sensors that are utilized to augment physics-based simulations. The loads reconstruction framework will consist of two modules: the physics module, which provides first-principles predictions from simulations, and the se ...
STTR Phase I 2017 Department of DefenseNavy -
Multi-Phase Flame Propagation Modeling for Present and Future Combustors and Augmentors
SBC: Metacomp Technologies, Inc. Topic: N17AT002The proposed project will develop advanced modeling capabilities for high-fidelity liquid-fuel spray calculations. State-of-the-art multiphase combustion models will be implemented in a volume-filtered Eulerian-Lagrangian framework that can easily be ported into existing CFD codes. Unlike traditional methods, the proposed strategy will ensure convergence under mesh refinement of the interphase exc ...
STTR Phase I 2017 Department of DefenseNavy -
Body-worn Wireless Physiological Monitoring Network
SBC: Cognionics, Inc. Topic: N13AT021This STTR Phase II proposal continues our work towards building a simple, high quality and unobtrusive mobile physiological sensor platform. The capabilities of the Phase I prototype will be expanded by adding sensors to further acquire SpO2 and respiration in addition to forming a body area network for data collection across multiple points on a subjects body. A software infrastructure will also ...
STTR Phase II 2017 Department of DefenseNavy