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HELIOS REMOTE SENSING SYSTEMS, INC.

Company Information
Address
52 GEIGER RD
ROME, NY 13441-4319
United States


http://www.heliossensors.com

Information

UEI: SJC6GV9P8LD5

# of Employees: 21


Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: Yes

Woman Owned: Yes




Success Stories

  1. Helios Remote Sensing Systems, Inc.

    While modern Doppler radar continues to improve every year with the breakthrough of new innovations and weather predicting technologies, a need still existed for the U.S. Air Force to be able to detect weather patterns from a great distance. Baseline technologies could predict precipitation from...

Award Charts




Award Listing

  1. Radar Tracking in Stressing Environments

    Amount: $999,995.00

    Helios Remote Sensing Systems, Inc. proposes to develop and estimate the performance of innovative improvements to radar systems that will help defeat advanced countermeasures. Novel signal processin ...

    SBIRPhase II2015Department of Defense Missile Defense Agency
  2. Digital Direction Finding (DF) System for the Next Generation Submarine Electronic Warfare (EW)

    Amount: $79,998.00

    Helios Remote Sensing Systems, Inc. proposes to develop a new Submarine Imaging Mast Direction Finding (DF) capability for the Next Generation Submarine Electronic Warfare (EW) System. During Phase I, ...

    SBIRPhase I2015Department of Defense Navy
  3. See-through-the-Sensor Ballistic Wind Measurement

    Amount: $99,996.00

    Helios Remote Sensing Systems, Inc. proposes to identify methods to extract meteorological measurements from Counter-fire Target Acquisition (CTA) radar echoes to provide the radar and counterfire wea ...

    SBIRPhase I2015Department of Defense Army
  4. Radar Waveforms to Discern Remote Object Attributes

    Amount: $99,999.00

    The objective of this effort is to develop signal waveform characteristics and processing algorithms that will deduce sensor-invariant attributes of a tracked object so that it can be classified, disc ...

    SBIRPhase I2013Department of Defense Missile Defense Agency
  5. 3G and 4G Communication System Interference Remediation Techniques

    Amount: $99,997.00

    The objective of the proposed research project is to develop novel algorithms and signal processing techniques that will minimize Aegis-to-3G & 4G and 3G & 4G-to-Aegis interference. We will perform a ...

    SBIRPhase I2013Department of Defense Missile Defense Agency
  6. Enhanced De-Interleavers for Submarine Electronic Warfare Support (ES) Systems

    Amount: $79,999.00

    The objective of the proposed program is to develop innovative algorithms and techniques to automatically detect, classify, and uniquely identify emitters exhibiting multi-dimensional agilities, extre ...

    SBIRPhase I2013Department of Defense Navy
  7. Mitigation of Range/Doppler Straddle for Radar Coherent Processing

    Amount: $999,999.00

    The objective of this effort is to develop track-before-detect algorithms to provide greater signal processing gain for pulsed-Doppler radars. We will develop and demonstrate signal processing techni ...

    SBIRPhase II2013Department of Defense Army
  8. Airborne Passive Radar

    Amount: $149,992.00

    ABSTRACT: The objective of this effort is to design and demonstrate a passive radar air to air detection sensor system for aircraft installation that can passively detect and track other aircraft. I ...

    SBIRPhase I2012Department of Defense Air Force
  9. Mitigation of Range/Doppler Straddle for Radar Coherent Processing

    Amount: $149,990.00

    The objective of this effort is to develop track-before-detect algorithms to provide greater signal processing gain for pulsed-Doppler radars. We will develop signal processing techniques to be used ...

    SBIRPhase I2012Department of Defense Army
  10. Exploiting Multipath for Efficient Target Classification

    Amount: $499,998.00

    The objective of this effort is to develop innovative methods to improve the efficiency and accuracy of Radar Cross Section (RCS) based target classification by exploiting naturally occurring multipat ...

    SBIRPhase II2012Department of Defense Navy
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