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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.

  1. MISSION RELIABILITY MODEL (MIREM) ENGINEERING WORKSTATION

    SBC: Daina            Topic: N/A

    THE COMPLEXITY OF THE NEXT-GENERATION FAULT-TOLERANT ELECTRONIC SYSTEM DESIGN TASKS WILL REQUIRE INTERACTIVE ACCESS TO THE RELIABILITYPREDICTION TOOLS IN ORDER TO ACHIEVE THE DESIRED RELIABILITY GOALS. THIS PROPOSAL ADDRESSES THE INTEGRATION OF THE AFHRL DEVELOPED MISSION RELIABILITY MODEL (MIREM) AND THE AVAILABLE CIRCUIT DESIGN PROGRAMS IN AN ENGINEERING WORKSTATION ENVIRONMENT. THE PROPOSED EFF ...

    SBIR Phase I 1988 Department of DefenseAir Force
  2. FAIL-SAFE FAULT-TOLERANT ELECTRONICS

    SBC: Daina            Topic: N/A

    N/A

    SBIR Phase I 1988 Department of DefenseAir Force
  3. DECREASEING THE COST AND INCREASING THE PERFORMANCE OF COMPUTER BASED TRAINING SIMULATIONS

    SBC: Digital Dispatch Inc            Topic: N/A

    CURRENTLY AVAILABLE AUTHORING SYSTEMS HAVE BEEN PROVEN EFFECTIVE IN PRODUCING COMPUTER-BASED TRAINING LESSONS CONTAINING SEQUENCES OF TEXT AND GRAPHICS SCREENS THROUGH WHICH THE STUDENT IS GUIDED UNTIL MASTERY IS ACHIEVED. IN A PERSONNEL TRAINING SIMULATION, FAR MORE ADVANCED CAPABILITIES ARE REQUIRED, INCLUDING MULTITASKING, COMMUNICATION WITH EXTERNAL DEVICES, HIGH SPEED DATA ANALYSIS AND GRAPHI ...

    SBIR Phase I 1988 Department of DefenseAir Force
  4. REACTIVE PROTECTION FOR HARDENED FACILITIES

    SBC: Seb Engineering Inc (fscm63834            Topic: N/A

    THE PURPOSE OF THE PROPOSED RESEARCH IS TO EXPLORE THE WORTHINESS OF EMPLOYING REACTIVE PROTECTION FOR STRUCTURES SUBJECTED TO THE EFFECTS OF MODERN CONVENTIONAL WEAPONS. THE REACTIVE PROTECTION CONSISTS OF HIGH EXPLOSIVE (HE) CHARGES EMBEDDED IN PROTECTIVE LAYERS. THE SYSTEM IS INTENDED FOR DISTRUBING THE PENETRATION CAPABILITIES OF MODERN CONVENTIONAL WEAPONS, CONTROLLING THE MAGNITUDE OF LOADS ...

    SBIR Phase I 1988 Department of DefenseAir Force
  5. NOVEL HIGH-FLUX ANTIFOULING MEMBRANE COATINGS

    SBC: BEND RESEARCH, INC.            Topic: N/A

    MEMBRANE FOULING, THE LONG-TERM IRREVERSIBLE DECLINE IN PERMEATE FLUX, GREATLY LIMITS THE APPLICATION OF ENERGY-EFFICIENT MEMBRANES TO INDUSTRIAL PROCESSING NEEDS. THE ECONOMICS OF MANY CURRENT MEMBRANE PROCESSES WOULD BE IMPROVED AND THE INTRODUCTION OF NEW MEMBRANE APPLICATIONS WOULD BE ACCELERATED IF EXISTING MEMBRANES COULD BE MODIFIEDTO EXHIBIT (1) HIGHER PERMEATE FLUXES WITHOUT ATTENDANT LOS ...

    SBIR Phase II 1988 Department of Energy
  6. HIGH-FLUX, HIGH-SELECTIVITY CYCLODEXTRIN MEMBRANES

    SBC: BEND RESEARCH, INC.            Topic: N/A

    IN DEVELOPING MEMBRANES TO PERFORM SEPARATIONS, TWO MAJOR TECHNICAL ISSUES MUST BE ADDRESSED: PERMEATE FLUX AND MEMBRANE SELECTIVITY. A MAJOR BARRIER TO THE APPLICATION OF MEMBRANES IN GAS OR LIQUID SEPARATIONS IS THE LACK OF MEMBRANE MATERIALS THAT EXHIBIT BOTH HIGH FLUX AND HIGH SELECTIVITY. THE APPLICATION OF MEMBRANES TO INDUSTRIAL-SCALE SEPARATIONS WOULD BE ACCELERATED SIGNIFICANTLY BY THE DE ...

    SBIR Phase II 1988 Department of Energy
  7. A PERSONAL-COMPUTER-BASED WORKSTATION FOR THE ADVANCED THER-MAL HYDRAULIC ENERGY NETWORK ANALYZER

    SBC: Ei International Inc.            Topic: N/A

    IT IS PLANNED TO DEVELOP A WORKSTATION ENVIRONMENT FOR THE ADVANCED THERMAL HYDRAULIC ENERGY NETWORK ANALYZER (ATHENA) CODE TO FACILITATE FUSION REACTOR DESIGN STUDIES. ATHENA HAS A WIDE RANGE OF CAPABILITIES AND IS AN ESSENTIAL TOOL FOR THE STUDY OF FUSION REACTOR DESIGN. THE PERSONAL-COMPUTER (PC)-BASED WORKSTATION ENVIRONMENT FOR ATHENA WILL STREAMLINE AND AUTOMATE THE DEVELOPMENT OF INPUTDECKS ...

    SBIR Phase I 1988 Department of Energy
  8. A DIGITAL FEEDWATER CONTROL SYSTEM WITH SENSOR VALIDATION AND ANALYTIC REDUNDANCY

    SBC: Ei International Inc.            Topic: N/A

    N/A

    SBIR Phase I 1988 Department of Energy
  9. COALBED METHANE PRODUCTION USING SHORT TO MEDIUM RADIUS HORIZONTAL WELLS

    SBC: Northwest Fuel Development, In            Topic: N/A

    THE OBJECTIVE OF THIS PROJECT IS TO ADVANCE AN INNOVATIVE METHOD FOR COMMERCIALLY PRODUCING COALBED METHANE (CBM). CBM IS TYPICALLY PRODUCED USING CONVENTIONAL VERTICAL WELLS THAT HAVE BEEN HYDRAULICALLY STIMULATED TO ENHANCE THE FORMATION PERMEABILITY. THIS DOES NOT ALLOW FOR EFFICIENT REMOVAL OF THE TOTAL RESOURCE UNLESS DRILLING IS ACCOMPLISHED ON A CLOSE SPACING, WHICH ADVERSELY AFFECTS ECONOM ...

    SBIR Phase I 1988 Department of Energy

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