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The Award database is continually updated throughout the year. As a result, data for the given year is not complete until April of the following year. Annual Reports data is a snapshot of agency reported information for that year and hence might look different from the live data in the Awards Information charts.

  1. Development of the Low-Altitude Maritime Survey-Sampling (LAMASS) System

    SBC: Blue Storm Associates Inc.            Topic: 828

    In this Phase I effort, PEMDAS Technologies and Innovations, in collaboration with Aerovel, Inc., proposes to assess the feasibility of developing a multi-mission, transdisciplinary manned aerial platform, capable of fulfilling NOAA’s requirement to survey, map and collect on our nation’s natural ecosystems. Combining Aerovel’s experience in UAS development with PEMDAS’ atmospheric sensor ...

    SBIR Phase I 2017 Department of CommerceNational Oceanic and Atmospheric Administration
  2. Mariner Report Application (MARApp): Crowdsourcing Maritime Weather Conditions

    SBC: Liteweaver Technologies, Inc.            Topic: 826

    Metron proposes a software framework for crowd-sourcing weather observations in a maritime environment leveraging personal mobile devices. Our proposed App, the Mariner’s Report App (MARApp), draws data from existing sensors in modern smartphones and tablets, as well as meteorological sensors normally found on small marine vessels. Our architecture is modular, extensible, and readily adaptable t ...

    SBIR Phase I 2017 Department of CommerceNational Oceanic and Atmospheric Administration
  3. Design of an Autonomous, Green Powered, Mobile Coastal Monitor

    SBC: Tridentis, LLC            Topic: 821

    The mobile coastal monitor project is designed to research the state-of-the-art green power supplies and apply them as the propulsion and sensor power source for a highly efficient surface platform. The platform will be equipped with a modular sensor bay that is capable of housing a wide variety of atmospheric, air/sea interface, and sub-surface sensors suitable for a wide range of sensing operati ...

    SBIR Phase I 2017 Department of CommerceNational Oceanic and Atmospheric Administration
  4. Fish Trap Extension Kit for Lionfish Control

    SBC: R3 Digital Sciences, Inc.            Topic: 822N

    R3 Digital Sciences (R3-DS) will develop and commercialize the Fish Trap Extension Kit (FTEK), and electromechanical device that will extend the capabilities of existing fish traps, and convert them from indiscriminate traps into “smart traps” capable of targeting specific fish types. To eliminate lionfish bycatch, the FTEK will enable existing commercial spiny lobster traps to autonomously de ...

    SBIR Phase II 2017 Department of CommerceNational Oceanic and Atmospheric Administration
  5. Coastal Eyes, a Multi-Mission Topographic, Current Retrieval and Debris Mapping Sensor System

    SBC: Arete Associates, Inc.            Topic: 832D

    Areté Associates proposes the Coastal Eyes, a multi-mission sensor system to respond to NOAA’s core mission objectives for coastal emergency management measurements to map land and surface water topography over coastal, waterways and fresh water regions; surface (fresh and oceans) currents, debris detections and storm surges. Areté will develop a responsive, cost-effective sensor solution, whi ...

    SBIR Phase I 2015 Department of CommerceNational Oceanic and Atmospheric Administration
  6. An Advanced Algorithm for Radar Derived Bathymetry

    SBC: Arete Associates, Inc.            Topic: 91

    NOAA can reduce costs and improve efficiency by remotely monitoring harbors, navigation channels and coastlines for bathymetric changes. This will aid NOAA and its mission to maintain waterways and assure maritime safety. This remote sensing can be accomplished by implementing a new radar derived bathymetry capability. Areté Associated proposes to implement an advanced algorithm to derive bath ...

    SBIR Phase II 2014 Department of CommerceNational Oceanic and Atmospheric Administration
  7. Buoy Guard System

    SBC: McQ Inc.            Topic: 93

    Buoy vandalism occurs all over the world for many different reasons, and costs NOAA and other buoy operators an estimated $1 million annually to replace and repair them. To deter vandals and report any vandal attempts to NOAA, McQ has developed the Buoy Guard System (BGS). BGS is a small, extremely low power sensor system that will detect the presence of intruders first approaching and then boa ...

    SBIR Phase II 2014 Department of CommerceNational Oceanic and Atmospheric Administration
  8. Dynamic Frequency Passive Millemeter-Wave Radiometer Based on Optical Up-Conversion

    SBC: PHASE SENSITIVE INNOVATIONS            Topic: 94

    Passive microwave sensors aboard satellites provide valuable information regarding weather conditions by measuring atmospheric attenuation over a broad range of frequencies from 0-200 GHz. Additional ground-based sensors are desirable to provide complementary upward looking measurements that can be used to refine existing attenuation models. Operating over such a large bandwidth, however, places ...

    SBIR Phase II 2014 Department of CommerceNational Oceanic and Atmospheric Administration
  9. Buoy Guard System

    SBC: McQ Inc.            Topic: 932W

    McQ will develop a complete conceptual design for a Buoy Guard System (BGS). This system will detect the presence of intruders at and on the buoy. It will initiate deterrent actions to persuade and force the intruders away from the buoy. It will also collect imagery and other data about the intruders and about their activities associated with the buoy. This data, along with the basic warning w ...

    SBIR Phase I 2013 Department of CommerceNational Oceanic and Atmospheric Administration
  10. Dynamic Frequency Passive Millimeter-Wave Radiometer Based on Optical Up-Conversion

    SBC: PHASE SENSITIVE INNOVATIONS            Topic: 941D

    In the proposed effort, we will leverage this extensive experience and capabilities to realize a frequency agile mmW radiometer that can cover the range of DC-110 GHz and can be scaled to DC-200 GHz under Phase II. Ours is a photonic system that multiplies and up-coverts a low-frequency reference signal onto an optical carrier (laser) using EO modulation, then uses the modulation sidebands to inj ...

    SBIR Phase I 2013 Department of CommerceNational Oceanic and Atmospheric Administration

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