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SBC: OPTO-KNOWLEDGE SYSTEMS INC Topic: AF19AT011
New, innovative laser spectroscopy technology will be developed for performance quantification and combustion characterization in a Rotational Detonation Rocket Engine (RDRE). The effort will push the state of the art in tunable laser absorption spectroscopy to enable fast time response diagnostics of the extreme pressure and temperature conditions of an RDRE.STTR Phase II 2020 Department of DefenseAir Force
SBC: ENDECTRA LLC Topic: AF19AT016
Palm-sized unmanned aerial systems (nano UAS) are emerging as a new tool for warfighters, first responders, and private industry. However, their small mass, fragility, and limited batteries still necessitate the use of emerging, low mass/power technologies to meet the full range of potential missions, including new autonomous flight control and collision avoidance strategies, structural improvemen ...STTR Phase II 2020 Department of DefenseAir Force
SBC: TOYON RESEARCH CORPORATION Topic: AF20ATCSO1
Toyon is proposing to develop multiplier diode technology with record power handling in the 200 – 400 GHz output frequency range using Gallium Nitride (GaN) materials. This technology is needed to effectively utilize the high pump power now available from mmWave GaN power amplifiers. GaN has inherent material property advantages including high electric field strength, electron velocity, and ther ...STTR Phase II 2020 Department of DefenseAir Force
Using explainable AI (XAI) and related technologies to reduce physician burnout and improve medical surge capacity.SBC: DIGITAS, LLC Topic: AF20ATCSO1
Physicians are highly burned out (up to 80% of physicians) and the COVID-19 pandemic is making this problem much worse; Department of Defense doctors are at higher risk (caring for more patients per capita). Burnout may manifest itself as sustained stress; but also leads to severe effects such as physician suicides, physician drug abuse, and increased patient medical errors. Electronic health ...STTR Phase II 2020 Department of DefenseAir Force
Further Experimental Validation of a Fluid-Structure-Material Interaction (FSMI) Modeling and Simulation ToolsetSBC: ATA ENGINEERING, INC. Topic: AF17AT025
ATA Engineering, Inc. (ATA), partnered with a nonprofit research institution, CUBRC, Inc., (CUBRC), proposes a Phase II STTR project to further develop and continue validating a novel multiphysics simulation technology. The project team will implement the technology in a fluid-structure-material interaction (FSMI) software toolset that incorporates mutual interactions between aerodynamics and stru ...STTR Phase II 2020 Department of DefenseAir Force