CRANFOA-22-0001

The summary for the CRANFOA-22-0001 grant is detailed below. This summary states who is eligible for the grant, how much grant money will be awarded, current and past deadlines, Catalog of Federal Domestic Assistance (CFDA) numbers, and a sampling of similar government grants. Verify the accuracy of the data FederalGrants.com provides by visiting the webpage noted in the Link to Full Announcement section or by contacting the appropriate person listed as the Grant Announcement Contact. If any section is incomplete, please visit the website for the NSWC CRANE, which is the U.S. government agency offering this grant.
CRANFOA-22-0001: Naval Surface Warfare Center, Crane Division is interested in receiving proposals for the following Basic Research Opportunity Areas: a. High Fidelity Radio Frequency Scene Generation for Real-Time Processing NSWC Crane seeks novel approaches to the problem of generating complex radio frequency (RF) scenes for use in real-time hardware-in-the-loop (HWIL) simulations. Of particular interest are synthetic RF scenes for navigation purposes such as terrain feature mapping radars, Doppler mapping radars, and object identification purposes within radar scenes generated by pulse-doppler radars and synthetic aperture radars. RF scenes generated by radars such as LIDAR are of interest as well. For HWIL applications, an RF scene is a synthetic scene derived from terrain databases such as Digital Terrain Elevation Data (DTED), merged with three dimensional objects (scatterers), combined with an aerospace vehicle's state (3 dimensional position, orientation, and 3 dimensional velocity), and presented as digital scenes suitable for conversion to RF signals for processing in real time by RF systems on the aerospace vehicle. Scene computation approaches should trade scene resolution and fidelity with computation time and effort for a given computing capability. Novel approaches can include precomputation of scenes given apriority knowledge on an aerospace vehicle's state over a given timeframe. Precomputation approaches should focus on minimizing scene computation and storage while preserving the ability to present those scenes in real time to a system under test. Aerospace vehicle expected velocities may range from subsonic to hypersonic speeds. A suitable proposal will address at least one of the areas discussed above and show improvement over current state of the art. b. Validation & Verification for Trusted Autonomous Vehicles NSWC Crane seeks research concerning Validation & Verification (V&V) of autonomous vehicles that utilize Artificial Intelligence (AI) algorithms. A primary area of exploration involves the evaluation of V&V approaches as they apply to the development of AI “Trust” for operational situations. Of particular interest is the use of Live-Virtual-Constructive (LVC) methods and hardware-in-the-loop (HWIL) for pre-mission evaluation of learning integrity. Methods that utilize Unmanned Surface Vessel (USV) platforms for AI capability implementation will be of particular interest. Methods that utilize multiple laboratory facilities for federated learning are also of special interest.
Federal Grant Title: CRANFOA-22-0001
Federal Agency Name: NSWC CRANE (DOD-ONR-SEA-CRANE)
Grant Categories: Science and Technology
Type of Opportunity: Discretionary
Funding Opportunity Number: N00164-22-1-1001
Type of Funding: Grant
CFDA Numbers: 12.300
CFDA Descriptions: Information not provided
Current Application Deadline: March 24th, 2022
Original Application Deadline: March 24th, 2022
Posted Date: February 24th, 2022
Creation Date: February 24th, 2022
Archive Date: April 23rd, 2022
Total Program Funding:
Maximum Federal Grant Award: $400,000
Minimum Federal Grant Award: $100,000
Expected Number of Awards: 2
Cost Sharing or Matching: No
Last Updated: February 24th, 2022
Applicants Eligible for this Grant
Unrestricted (i.e., open to any type of entity below), subject to any clarification in text field entitled "Additional Information on Eligibility"
Grant Announcement Contact
Jerry C Bean
Grantor
Phone 8128546823
Work Email
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