Project Grant 2526490
- The National Science Foundation Division of Electrical, Communications and Cyber Systems awarded a $300,000 Project Grant to George Mason University to support research titled "COLLABORATIVE RESEARCH: SWIFT: INTELLIGENT DYNAMIC SPECTRUM ACCESS (IDEA): AN EFFICIENT LEARNING APPROACH TO ENHANCING SPECTRUM UTILIZATION AND COEXISTENCE." The period of performance for this award is from September 15, 2022 through August 31, 2025. The funding will support research under the NSF Directorate...
- The National Science Foundation Division of Electrical, Communications and Cyber Systems awarded a $280,000 Project Grant to The Trustees of Princeton University for collaborative research titled "COLLABORATIVE RESEARCH: SWIFT: WIDEBAND SPECTRUM COEXISTENCE ENABLED BY PHOTONIC CIRCUITS: CROSS-LAYER DESIGN AND IMPLEMENTATION." The period of performance for this award is from September 1, 2021 to August 31, 2024. The goal of this research is to improve spectrum coexistence for wireless...
- The University of Utah received a $629,737 Project Grant from the National Science Foundation's Directorate for Mathematical and Physical Sciences (CFDA 47.049) effective October 1, 2025, through September 30, 2028, to conduct the Adaptive Spectrum Sharing and Use (ASSURE) project. This research initiative develops innovative spectrum-sharing technologies enabling 5G/6G cellular systems and federal radar systems to safely coexist within the 2.7-3.1 GHz band, addressing critical spectrum...
- Grant Award Summary: Securing Spectrum Sharing in Era 4 Northeastern University received a $380,000 Project Grant from the National Science Foundation's Directorate for Mathematical and Physical Sciences (CFDA 47.049) awarded on October 1, 2025, with a completion date of September 30, 2028. The project, titled "S3ERA4: Securing Spectrum Sharing in Era 4," develops radio frequency (RF)-centric machine learning techniques to address critical security and privacy challenges in spectrum...
- This $190,000 Project Grant from the National Science Foundation Directorate for Mathematical and Physical Sciences, under the Mathematical and Physical Sciences program (CFDA 47.049), will fund research into spectrum sharing techniques from January 2023 through December 2025. The award supports development of a Zone Management System prototype to enable spectrum sharing across disparate wireless services, such as communications, scientific sensing, and radar systems, within an Innovation Zone...
- The National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences awarded a $247,971 Project Grant to Colorado State University to conduct collaborative research on "SWIFT-SAT: DASS: Dynamically Adjustable Spectrum Sharing Between Ground Communication Networks and Earth Exploration Satellite Systems Above 100 GHz." The 3-year project, which commenced on January 1, 2024, aims to develop techniques for more flexible spectrum sharing and coexistence between...
- This three-year project grant from the National Science Foundation's Computer and Information Science and Engineering program provides $266,000 to Duke University for research titled "COLLABORATIVE RESEARCH: SWIFT: SHIELD: A SOFTWARE-HARDWARE APPROACH FOR SPECTRUM COEXISTENCE WITH RAPID INTERFERER LEARNING, DETECTION, AND MITIGATION." The grant supports investigator-initiated research and education in all areas of computing, communications, and information science and engineering....
- The University of Arizona was awarded a three-year, $375,000 project grant from the National Science Foundation's Computer and Information Science and Engineering program (CFDA 47.070) to conduct collaborative research on coexistence and interference mitigation in mid-band radio frequency spectrum for wireless technologies. The research focuses on addressing coexistence challenges in the 3.7-3.98 GHz C-band, 3.55-3.7 GHz Citizens Broadband Radio Service band, and newly unlicensed 5.925-7.125 GHz...
- The National Science Foundation Division of Electrical, Communications and Cyber Systems awarded a $324,999 Project Grant to The Ohio State University Office Of Sponsored Programs from September 1, 2021 to August 31, 2024. The grant funds the "COLLABORATIVE RESEARCH:SWIFT:ULTRA WIDEBAND FLEXIBLE MIMO RADIOS FOR ENERGY EFFICIENT SECURE SPECTRUM SHARING" project under the NSF Engineering program (CFDA 47.041). The project aims to develop ultra wideband flexible multiple-input...
- The National Science Foundation Division of Computer and Network Systems awarded a $250,000 Project Grant to Princeton University under the Computer and Information Science and Engineering federal grant program (CFDA 47.070) for research titled "COLLABORATIVE RESEARCH: SWIFT: NONLINEAR AND INSEPARABLE RADAR AND DATA (NIRAD) TRANSMISSION FRAMEWORK FOR PARETO EFFICIENT SPECTRUM ACCESS IN FUTURE WIRELESS NETWORKS." The three-year award, effective October 1, 2021 through September 30,...
COLLABORATIVE RESEARCH: SWIFT: MEDUSA: MID-BAND ENVIRONMENTAL SENSING CAPABILITY FOR DETECTING INCUMBENTS DURING SPECTRUM SHARING -SPECTRUM SHARING IN MID-BAND OFFERS UNPRECEDENTED OPPORTUNITY TO HARNESS DESIRABLE FREQUENCIES FOR COMMERCIAL 5G OPERATORS AND FOR UNLICENSED USE, ALTHOUGH HIGHER PRIORITY INCUMBENTS NEED TO BE RELIABLY DETECTED. AS AN EXAMPLE, THE REQUIREMENT OF DETECTING NAVAL SHIP-BORNE RADAR SIGNALS BY THE ENVIRONMENTAL SENSING CAPABILITY (ESC) SENSORS IN THE 3.55-3.7GHZ CITIZENS BROADBAND RADIO SERVICE (CBRS) BAND SEVERELY LIMITS THE TRANSMISSION POWER FOR 5G OPERATORS. THE OBJECTIVE OF THIS PROJECT CALLED MEDUSA: MID-BAND ENVIRONMENTAL SENSING CAPABILITY FOR DETECTING INCUMBENTS DURING SPECTRUM SHARING IS TO DETECT THE PRESENCE OF STATIC/MOBILE RADAR AND ANOMALOUS TRANSMISSIONS WITHIN CONCURRENT AND COMPARATIVELY HIGHER POWER 5G AND 4G-LTE SIGNALS. IT ACHIEVES THIS THROUGH MACHINE LEARNING (REACTING TO EXISTING INTERFERENCE) AND RECEIVER ANTENNA DESIGN (PROACTIVELY AVOIDING INTERFERENCE). MEDUSA WILL ENABLE ESC SENSORS TO WORK WITH DIFFERENT TYPES OF WIRELESS SIGNALS, BOTH FOR INDIVIDUAL SPECTRUM MONITORING AND VIA COLLABORATIVE METHODS FOR ENHANCED INCUMBENT DETECTION ACCURACY. THE PROJECT WILL RESULT IN OPEN-SOURCE RELEASE OF ANTENNA DESIGN FILES, DATASETS AND LEARNING ALGORITHMS FOR THE RESEARCH COMMUNITY. IT ALSO INCLUDES SEVERAL OUTREACH AND DISSEMINATION ACTIVITIES SUCH AS HOSTING RECORDINGS OF INTERVIEWS WITH SPECTRUM EXPERTS ON THE PROJECT WEBSITE, RECRUITING STUDENTS FROM UNDER-REPRESENTATIVE GROUPS, AND DESIGNING COURSE PROJECTS THAT USE CBRS-RELATED DATASETS. THE PROJECT HAS THREE GOALS FOR RADAR DETECTION IN THE CITIZENS BROADBAND RADIO SERVICE (CBRS) BAND BUT IS ALSO GENERALIZABLE FOR OTHER FREQUENCIES. FIRST, IT PROPOSES A DEEP LEARNING FRAMEWORK TO ENHANCE THE DISCRIMINATIVE ABILITIES OF THE ENVIRONMENTAL SENSING CAPABILITY (ESC) SENSOR WHILE PRESERVING PRIVACY BY USING SPECTROGRAM INPUTS. THESE SENSORS WILL DETECT RADAR PULSES WITHIN 5G AND 4G-LTE SIGNALS WITH POWERS STRONGER THAN FCC-MANDATED LEVELS BY 5 DB. FURTHERMORE, THE PIS WILL DEVELOP TRANSFER-LEARNING METHODS FOR UNSEEN CONDITIONS. SECOND, IT WILL ADVANCE THE SCIENCE OF COLLABORATIVE INFERENCE, WHEN MULTIPLE ESC SENSORS MAKE (I) INDEPENDENT AND (II) JOINT DECISIONS BY FUSING INDIVIDUAL PREDICTIONS USING THE ALGORITHMS DEVELOPED AS PART OF THE FIRST GOAL. IT ALSO PROPOSES A METHOD OF FUSION OF SPECTROGRAMS AND RAW IN-PHASE AND QUADRATURE (IQ) SAMPLES. THIRD, WHEN THE GEOGRAPHICALLY SEPARATED AND ARBITRARILY SPACED ESC SENSORS ARE TIME AND PHASE SYNCHRONIZED, THEY FORM A MASSIVE VIRTUAL ARRAY FOR RECEIVE BEAMFORMING. THE PIS WILL DESIGN REAL-TIME WEIGHT ADAPTATION ALGORITHMS AND HORN ANTENNAS THAT CAN CREATE NULLS TOWARDS KNOWN 5G/4G-LTE BASE STATIONS. FINALLY, THE RESEARCH GOALS WILL BE VALIDATED IN EMULATION AS WELL AS OVER EXPERIMENTAL TESTBEDS THROUGH THE NSF PLATFORM FOR ADVANCED WIRELESS RESEARCH (PAWR THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $167.6k | 3/4/25 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
UTAUSSUB00001880S | University Of Texas At Arlington | Project Grant 2526490 | $120.0k | 4/8/25 |