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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

Displaying 1 - 10 of 8682 results
  1. Holistic Interoperable Directional Data Enhancement Network

    SBC: Fuse Integration, Inc.            Topic: AF17BT003

    Currently fielded multi-beam CDL systems have been developed in an ad-hoc manner consisting of a collection of poorly integrated off the shelf technologies where controllers, radios, routers, firewalls, encryptors, and antennas are bolted together to reduce time to field.Proprietary APIs, electrical interfaces, and hardware interfaces impede the success of the approach and result in a sub-optimal ...

    STTR Phase II 2019 Department of DefenseAir Force
  2. Progressive Model Generation for Adaptive Resilient System SoftwareDigital Thread Modeling Environment (DTME)

    SBC: SECURBORATION INC            Topic: N13AT014

    The ability to align Digital Threads (DT) to Digital Twins (DTw) is a critical component required to achieve reduction in total ownership cost of current and future Air Force (AF) programs. The connecting of the DT to the DTw is a key requirement to achieve model-based system engineering. One can view the connection between DT and DTw as the ability to develop robust models of the real-world syste ...

    STTR Phase II 2019 Department of DefenseAir Force
  3. High Temperature Materials for Hypersonic Radomes and Antennas

    SBC: AMERICAN TECHNICAL COATINGS, INC.            Topic: AF18AT013

    Successful completion of this Phase II proposal will fully characterize and evaluate a material for use in RF windows on hypersonic flight vehicles.Phase II will specifically examine the materials suitability through RF testing in X, Ku, and Ka bands and at elevated temperatures to 2000F.The desired outcome will be a material with predictable, repeatable dielectric properties over frequency and te ...

    STTR Phase II 2019 Department of DefenseAir Force
  4. Resilient Directional Mesh Enhanced Tactical Airborne Networks

    SBC: First RF Corporation            Topic: AF17BT003

    FIRST RF will lead the Phase II effort and will leverage the system architecture of the MAINLINE system and integrate multifunctional SiGe integrated circuits (ICs) developed by The University of California San Diego under the supervision of Prof. Gabriel Rebeiz. The SiGe devices developed during the Phase II effort will significantly reduce the power requirements of the MAINLINE system allowing f ...

    STTR Phase II 2019 Department of DefenseAir Force
  5. Computationally Efficient, Accurate and Uncertainty Characterized Chemical Kinetics for Hydrocarbon Fuels

    SBC: CFD Research Corporation            Topic: AF17AT004

    High-pressure turbulent combustion occurs in many combustion devices critical to the Air Force. Notwithstanding significant progress in computational modeling of these devices; several challenges have remained. A fundamental challenge is identification of reaction pathways and reactions in small molecule foundational chemical kinetics requiring improvements under these high-pressure turbulent cond ...

    STTR Phase II 2019 Department of DefenseAir Force
  6. High Temperature Materials for Hypersonic Radomes and Antennas

    SBC: ADVANCED CERAMICS MANUFACTURING, LLC            Topic: AF18AT013

    Missiles experience a wide range of thermal and mechanical environments due to the large variety of flight profiles.Since the missile radome is often the aerodynamic leading edge, it undergoes significant thermal and mechanical loading. The radome must survive the dynamic pressure loading, thermal shock and environmental erosion from airborne particulates (rain / sand) while performing as an elect ...

    STTR Phase II 2019 Department of DefenseAir Force
  7. Monte Carlo Transport Simulation of T2SL-Based Devices

    SBC: SIVANANTHAN LABORATORIES, INC.            Topic: AF17CT04

    Sivananthan Laboratories, Inc. and the University of Illinois at Chicago (UIC) will collaborate to develop a Monte Carlo (MC) transport simulation and device modeling software package for optoelectronic devices based on III-V Type-II superlattice (T2SL) materials.UICs existing, research-grade, ensemble MC transport code is predictive of carrier transport in T2SL materials because it properly captu ...

    STTR Phase II 2019 Department of DefenseAir Force
  8. HASLOC: Hierarchical And-Or Structures for Localization and Object Recognition

    SBC: Intelligent Automation, Inc.            Topic: AF18AT014

    Target detection and recognition is a challenging problem because of changes in appearance, viewing direction, occlusion and other covariates. Systems that can accurately and efficiently detect and track objects can provide several benefits in surveillance, monitoring and other applications. As part of this effort, we propose to develop a robust learning-based approach to detect, track and recogni ...

    STTR Phase II 2019 Department of DefenseAir Force
  9. Verification and Validation of Algorithms for Resilient Complex Software Controlled Systems

    SBC: XL Scientific, LLC            Topic: AF17CT05

    This effort seeks verification tools and techniques to ensure safety and stability of spacecraft Guidance, Navigation, and Control (GN&C) algorithms, particularly the attitude control system integrated with autonomy software. Advanced control algorithms and autonomy are increasingly necessary to enable responsiveness of fleets of vehicles to attitude constraints and object avoidance. Verus Researc ...

    STTR Phase II 2019 Department of DefenseAir Force
  10. Damage Morphology for Advanced Concretes

    SBC: Dynamic Systems And Research Corporation            Topic: AF18AT012

    The development and implementation of new damage morphology models for concrete materials is critical to understanding their dynamic behavior during severe shock loading environments.Current constitutive models of conventional strength concretes do not accurately represent the behavioral characteristics of new ultra-high strength concretes because of differences in damage mechanisms during failure ...

    STTR Phase II 2019 Department of DefenseAir Force

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