MODERN TECHNOLOGY SOLUTIONS, INC.

Address

5285 SHAWNEE ROAD
SUITE 400
ALEXANDRIA, VA, -

http://www.mtsi-va.com

Information

DUNS: 807454640
# of Employees: 425

Ownership Information

Hubzone Owned: N
Socially and Economically Disadvantaged: N
Woman Owned: N

Award Charts




Award Listing

  1. Sensor Resource Management

    Amount: $99,261.00

    The task of managing employment planning and real time tasking of sensor resources in complex ballistic missile defense target environments demands innovative techniques. As the complexity of a threat ...

    SBIRPhase I2012Department of Defense
  2. Methodologies for a Partial Frame Correlation of Multiple Sensors

    Amount: $99,406.00

    In order to provide the highest level Quality of Service (QoS) for both tracking and discrimination functions it is imperative that information from all sensors be associated correctly. Due to potenti ...

    SBIRPhase I2012Department of Defense
  3. Innovative Signature Exploitation for Long Range Object Discrimination

    Amount: $99,905.00

    One of the principle challenges in developing a robust missile defense architecture is the characterization and classification of objects in a threat complex. The Ballistic Missile Defense System (BM ...

    SBIRPhase I2012Department of Defense
  4. Fusion of Multiple Space Weather Data for Situational Assessment

    Amount: $130,982.00

    ABSTRACT: As satellite technology has become increasingly pervasive in both our military warfighting capability and civilian society, the ability to determine and forecast space environmental impacts ...

    SBIRPhase I2012Department of Defense
  5. Hierarchical Recognition of Ships at Sea using One-Dimensional Radar profiles

    Amount: $749,594.00

    The proposed Phase II.5 work builds upon previous Phase II work for this SBIR program. MTSI will perform several tasks during the Phase II.5 program to extend the previous work and increase the Techno ...

    SBIRPhase II2012Department of Defense
  6. Fast Thermal Calculations for Responsive Targets in Support of Real-Time Scene Generation

    Amount: $99,975.00

    In order to provide the required simulation frame rates we propose to decouple the incident flux calculations from a simple thermal response model. We propose to develop a table-lookup methodology bas ...

    STTRPhase I2011Missile Defense Agency Department of Defense
  7. Numerical Model of Subsurface Transport of Noble Gases in Fractured Geologic Media for Detection and Identification of Subsurface Nuclear Explosion Te

    Amount: $149,915.00

    Surface detection of specific radioisotopes of the noble gases xenon and argon are essential for detection and discrimination of underground nuclear explosions. We propose a unique combination of nume ...

    SBIRPhase I2011Department of Defense
  8. Development of High-Fidelity Techniques to Model Impact Flash and Post-Impact Thermal Signature Prediction and Support Kill Assessment

    Amount: $649,989.00

    Accurate collateral damage assessment is of critical importance for missile defense because determining the likelihood of a successful intercept kill is required for efficient interceptor tasking. Thi ...

    SBIRPhase II2008Missile Defense Agency Department of Defense
  9. Recognition of High-Range-Resolution (HRR) Profile Signatures of Moving Ground Targets for Combat Identification (CID)

    Amount: $729,965.00

    The objective of this proposal is to extend and build on our Phase 1 research to create a hierarchical Aided Target Recognition (AiTR) capability utilizing High Range Resolution (HRR) RADAR profiles. ...

    SBIRPhase II2008Navy Department of Defense
  10. Development of High-Fidelity Techniques to Model Impact Flash and Post-Impact Thermal Signature Prediction and Support Kill Assessment

    Amount: $99,926.00

    Initial implementations of the United States missile defense system utilize two primary sensors for kill assessment: RADAR and infra-red (IR) sensors. The post-impact signatures must be accurately mod ...

    SBIRPhase I2007Missile Defense Agency Department of Defense

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