Project Grant 2514683
- This National Science Foundation project grant of $165,000 supports research into developing new computational tools and methods for designing distributed decision-making systems to assist in energy distribution and utility services. Awarded under the Computer and Information Science and Engineering program, the funding will be used over three years by researchers at the University of Maryland, College Park to advance the Automated Synthesis for Trustworthy Autonomous Utility Services (ASTRA)...
- This National Science Foundation project grant of $335,000 supports research at the University of California Irvine to develop an automated synthesis framework for trustworthy autonomous utility services (ASTRA). Under the Computer and Information Science and Engineering program (CFDA 47.070), the three-year award beginning April 1, 2022 will fund the design of scalable methods, algorithms and computational tools to model large-scale distributed decision-making infrastructures for strategic...
- This Project Grant award of $1,233,079.00 from the National Science Foundation (NSF) Engineering Directorate (CFDA 47.041) aims to develop a comprehensive theoretical framework for modeling, designing, sensing, and controlling the post-fault stability of future power systems with varying levels of inverter-based resources and synchronous generators. The key products and services to be delivered under this grant include: Establishing the theoretical foundations of energy functions for...
- The National Science Foundation (NSF) awarded a $418,561 federal Project Grant to The Trustees of the Stevens Institute of Technology under the Engineering program (CFDA 47.041). The 5-year project, titled "CAREER: Evaluating Cooperative Intelligence in Connected Communities", is exploring how groups of buildings can autonomously share and manage distributed energy resources such as solar panels, batteries, and generators to enhance energy efficiency and sustainability. Through a...
- This NSF Directorate for Engineering (CFDA 47.041) project grant award to the New Jersey Institute of Technology (NJIT) for $1,499,991 from September 1, 2023 to August 31, 2027 aims to develop a unified framework for modernizing power systems and integrating multiple renewable energy resources. The project, titled "ASCENT: From Sensors to Multiscale Digital Twin to Autonomous Operation of Resilient Electric Power Grids," will leverage advancements in control, power electronics, and...
- Federal Project Grant Award Summary Arizona State University, through its Office of Research and Sponsored Projects Administration (Orspa), received a $200,000 Project Grant from the National Science Foundation (NSF) Directorate for Engineering (CFDA 47.041) effective October 1, 2026, with completion targeted for September 30, 2029. This collaborative research initiative develops unified modeling, analysis, and control frameworks to characterize the interactions between data center...
- This federal Project Grant award of $200,000.00 from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program supports the development of a novel AI-surrogate enhanced cyberinfrastructure to accelerate large-scale power grid simulations. The key products and services to be delivered through this award include: Program-behavior analysis to identify optimal code regions for AI surrogate replacement Semi-automatic AI surrogate construction that...
- This $400,000 Project Grant awarded by the National Science Foundation (NSF) Division of Electrical, Communications and Cyber Systems aims to revolutionize the design of learning-enabled, safety-critical systems, with a focus on power systems. The project, titled "COLLABORATIVE RESEARCH: SLES: SAFETY UNDER DISTRIBUTIONAL SHIFT IN LEARNING-ENABLED POWER SYSTEMS", will develop proactive, antifragile systems that can anticipate and adapt to changes, utilize multi-agent systems for...
- The National Science Foundation (NSF) Division of Electrical, Communications and Cyber Systems awarded the University of Texas at Austin a $250,000 Project Grant under the NSF Engineering program (CFDA 47.041) to develop novel learning-based approaches for estimating the flexibility amount of grid edge resources (GERs) and designing equitable resource coordination and management methods. The project aims to transform the management of flexible energy resources in distribution electricity...
- This $350,000 federal Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) aims to develop a new reduced-order dynamic modeling paradigm for accurately representing the impacts of massive distributed energy resource (DER) integration in carbon-neutral power systems. The project, awarded to Arizona State University, will leverage tools in dynamic systems, nonlinear system identification, and machine learning to create physics-based and machine...
COLLABORATIVE RESEARCH: CPS: MEDIUM: ASTRA: AUTOMATED SYNTHESIS FOR TRUSTWORTHY AUTONOMOUS UTILITY SERVICES -LARGE-SCALE SYSTEMS WITH SOCIETAL RELEVANCE, SUCH AS POWER GENERATION SYSTEMS, ARE INCREASINGLY ABLE TO LEVERAGE NEW TECHNOLOGIES TO MITIGATE THEIR ENVIRONMENTAL IMPACT, E.G., BY HARVESTING ENERGY FROM RENEWABLE SOURCES. THIS NSF CPS PROJECT AIMS TO INVESTIGATE METHODS AND COMPUTATIONAL TOOLS TO DESIGN A NEW USER-CENTRIC PARADIGM FOR ENERGY APPORTIONMENT AND DISTRIBUTION AND, MORE BROADLY, FOR TRUSTWORTHY UTILITY SERVICES. IN THIS PARADIGM, DISTRIBUTED NETWORKED SYSTEMS WILL ASSIST THE END USERS OF ELECTRICITY IN SCHEDULING AND APPORTIONING THEIR CONSUMPTION. FURTHER, THEY WILL ENABLE LOCAL AND NATIONAL UTILITY MANAGERS TO OPTIMIZE THE USE OF GREEN ENERGY SOURCES WHILE MITIGATING THE EFFECTS OF INTERMITTENCE, PROMOTE FAIRNESS, EQUITY, AND AFFORDABILITY. THIS PROJECT PURSUES A TRACTABLE APPROACH TO ADDRESS THE CHALLENGES OF MODELING AND DESIGNING THESE LARGE-SCALE, MIXED-AUTONOMY, MULTI-AGENT CPSS. THE INTELLECTUAL MERITS INCLUDE NEW SCALABLE METHODS, ALGORITHMS, AND TOOLS FOR THE DESIGN OF DISTRIBUTED DECISION-MAKING STRATEGIES AND SYSTEM ARCHITECTURES THAT CAN ASSIST THE END USERS IN MEETING THEIR GOALS WHILE GUARANTEEING COMPLIANCE WITH THE FAIRNESS, RELIABILITY, AND PHYSICAL CONSTRAINTS OF THE DESIGN. THE BROADER IMPACTS INCLUDE ENABLING THE AUTOMATED DESIGN OF DISTRIBUTED CPSS THAT COORDINATE THEIR DECISION-MAKING IN MANY APPLICATIONS, FROM ROBOTIC SWARMS TO SMART MANUFACTURING AND SMART CITIES. THE RESEARCH OUTCOMES WILL ALSO BE USED IN K-12 AND UNDERGRADUATE STEM OUTREACH EFFORTS. THE PROPOSED FRAMEWORK, TERMED AUTOMATED SYNTHESIS FOR TRUSTWORTHY AUTONOMOUS UTILITY SERVICES (ASTRA), ADDRESSES THE DESIGN CHALLENGES VIA A THREE-PRONGED APPROACH. IT USES POPULATION GAMES TO MODEL THE EFFECT OF DISTRIBUTED DECISION-MAKING INFRASTRUCTURES (DMI) ON LARGE POPULATIONS OF STRATEGIC AGENTS. DMIS WILL BE REALIZED VIA DEDICATED NETWORKED HYBRID HARDWARE ARCHITECTURES AND ALGORITHMS WE SEEK TO DESIGN. ASTRA FURTHER INTRODUCES A SYSTEMATIC, LAYERED METHODOLOGY TO AUTOMATE THE DESIGN, VERIFICATION, AND VALIDATION OF DMIS FROM EXPRESSIVE REPRESENTATIONS OF THE REQUIREMENTS. FINALLY, IT OFFERS A SET OF CUTTING-EDGE COMPUTATIONAL TOOLS TO FACILITATE OUR METHODOLOGY BY ENABLING EFFICIENT REASONING ABOUT THE INTERACTION BETWEEN DISCRETE MODELS, E.G., USED TO DESCRIBE COMPLEX MISSIONS OR EMBEDDED SOFTWARE COMPONENTS, AND CONTINUOUS MODELS USED TO DESCRIBE PHYSICAL PROCESSES. THE EVALUATION PLAN INVOLVES EXPERIMENTATION ON A REAL TESTBED DESIGNED FOR ZERO-NET-ENERGY APPLICATIONS. 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 | $200.4k | 12/18/24 |