Project Grant 2309030
- The National Science Foundation awarded a $100,003 project grant under the Engineering (47.041) federal grant program to Rensselaer Polytechnic Institute for research developing advanced artificial intelligence and machine learning techniques to intelligently control passive and hybrid conditioning systems in buildings. Specifically, the grantee will create climate- and occupant-responsive control strategies leveraging natural resources like sunlight and outdoor air to condition indoor spaces....
- This $275,000 Project Grant from the National Science Foundation's Technology, Innovation, and Partnerships program will support Community Energy Labs Inc.'s development of an advanced building management system using model predictive control and machine learning techniques. The system aims to automate complex aspects of energy-efficient building control to simplify setup and implementation for small to mid-sized commercial building owners. By reducing costs and complexity, the technology...
- The National Science Foundation Office of International Science and Engineering awarded a $200,000 Project Grant to the University of Chicago to develop responsible artificial intelligence systems to support effective climate change policymaking through 2026. Funded under the CFDA 47.079 International Science and Engineering program, this collaborative research between U.S. and Australian researchers aims to bridge information gaps between publicly available climate change data and actionable...
- This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award of $294,457 to The Leland Stanford Junior University (Stanford University) explores the feasibility of using generative artificial intelligence (AI) language models to automate the creation of building energy models. The key objectives are to: 1) test the feasibility of applying generative AI to various steps of the building energy modeling process, and 2) quantify the performance and time trade-offs...
- The National Science Foundation (NSF) awarded a $600,000 Project Grant under the Computer and Information Science and Engineering (CISE) program to the Regents of the University of California at Riverside. The grant, awarded on October 1, 2023, aims to develop innovative solutions to enable carbon-zero colocation data centers that support the booming artificial intelligence industry and digital economy. Specifically, the project proposes to: (1) create a computationally-efficient mechanism to...
- Georgia Tech Research Corporation was awarded a $399,495 project grant by the National Science Foundation Division of Information and Intelligent Systems under the Computer and Information Science and Engineering federal grant program (CFDA 47.070). The grant will fund collaborative research between U.S. and Australian researchers to develop responsible artificial intelligence frameworks, techniques, and algorithms for enabling an equitable Internet of Energy. Specifically, the researchers...
- This National Science Foundation (NSF) Engineering program award to the University of Cincinnati aims to investigate the environmental and equity impacts of building decarbonization retrofits using a novel predictive modeling framework. The $414,396 project, running from January 1, 2024 to December 31, 2028, has three research objectives: (1) quantifying the benefits and burdens of building decarbonization retrofits by climate and grid region, (2) analyzing the interactions between retrofits and...
- Grant Award Summary Boston University received a $600,000 Project Grant from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070) on June 15, 2025, to develop foundational research and optimization frameworks for flexible artificial intelligence (AI) data centers. Under this award, which extends through May 31, 2028, the institution will deliver a comprehensive data center control framework designed to regulate power consumption...
- This $225,351 Project Grant award, funded by the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070), will support the development of AI emulator tools for improving the estimation of statistics for rare and extreme climate events, such as heat waves and cold spells. The project, led by New York University (NYU), will focus on creating novel methods to leverage AI techniques to better model and predict the impacts of these...
- This Project Grant award, totaling $203,802, was provided by the National Science Foundation (NSF) under the Integrative Activities program (CFDA 47.083). The award will fund a 4-year research project titled "CAREER: CAS- CLIMATE: An Altruistic Game Theoretic Framework to Characterize Environmental Responsiveness of Residential Electricity Consumption" at Purdue University. The key objectives of the project are to: 1) Generate new knowledge on residential customers' valuation of...
PIRE: BUILDING DECARBONIZATION VIA AI-EMPOWERED DISTRICT HEAT PUMP SYSTEMS -INCREASING CONCERNS ABOUT CLIMATE CHANGE, CLEAN ENERGY, AND ENERGY SECURITY DEMAND THAT OUR SOCIETY TRANSITION TO A NET-ZERO CARBON ECONOMY THAT SERVES THE TRIPLE BOTTOM LINE OF PLANETARY HEALTH, SOCIETAL WELL-BEING, AND ECONOMIC PROSPERITY. THIS PIRE PROJECT IS FOCUSED ON INNOVATING ARTIFICIAL INTELLIGENCE (AI) TECHNIQUES WITH AN UNDERSTANDING OF HUMAN NEED AND BEHAVIORS TO ENABLE AN EFFICIENT, HUMAN-CENTERED, RESILIENT, AND SOCIALLY JUSTIFIABLE OPERATION OF DISTRICT- AND COMMUNITY-SCALE HEAT PUMPS SYSTEMS THAT PROMOTE A REGIONAL SCALE ADOPTION OF BUILDING DECARBONIZATION. IN AN INCREASINGLY URBANIZED WORLD, THERE IS A PRESSING NEED TO ADDRESS THE CRITICAL CHALLENGES OF CLIMATE CHANGE THROUGH THE BUILT ENVIRONMENT BECAUSE THE BUILDING SECTOR ACCOUNTS FOR NEARLY 40% OF THE PRIMARY ENERGY USE IN THE U.S. AND ASSOCIATED GREENHOUSE GAS AND CO2 EMISSIONS, WITH ABOUT 50% OF THAT ENERGY DEDICATED TO HEATING, COOLING, VENTILATION, AND LIGHTING. IN ADDITION, PEOPLE SPEND MORE THAN 90% OF THEIR TIME INDOORS WHICH MEANS THAT ADDRESSING THEIR NEEDS AND COMFORT IN A SUSTAINABLE WAY IS CRITICAL FOR CLIMATE RESILIENCE PLANNING. ELECTRIFICATION OF HEATING AND COOLING SYSTEMS IS WIDELY ACKNOWLEDGED AS A CORE AND NON-NEGOTIABLE STRATEGY FOR DECARBONIZATION. MANY MAJOR U.S. METROPOLITAN AREAS HAVE PUT THE ADOPTION OF ELECTRIC HEAT PUMP TECHNOLOGIES ON THE ROADMAP REACHING BUILDING DECARBONIZATION IN THE NEXT DECADE. TAKING ADVANTAGE OF THE WIDE ADOPTION OF DISTRICT HEATING/COOLING HEAT PUMP SYSTEMS IN NORDIC COUNTRIES, THIS PROJECT SEEKS TO LEVERAGE THE DATA AND TESTBEDS PROVIDED BY OUR CORE INTERNATIONAL PARTNERS FROM SWEDEN AND DENMARK AND THE AI INNOVATIONS PROVIDED BY THE U.S. TEAM TO CATALYZE THE READINESS TO SUPPORT THE SCALING UP AND ADOPTION OF HUMAN-CENTERED AND EQUITY FOCUSED AI EMPOWERED DISTRICT SYSTEM OPERATION STRATEGIES AT A REGIONAL AND GLOBAL SCALE. FINDINGS FROM THIS PROJECT WILL BE DISSEMINATED THROUGH TWO INTERNATIONAL ENERGY AGENCY?S ANNEX TEAMS (81 AND 84) WHICH WILL REACH TO RESEARCHERS FROM MORE THAN 20 COUNTRIES. THROUGH THEIR OUTREACH ACTIVITIES, INCLUDING FOCUS GROUP DISCUSSIONS AND WORKSHOPS, THE TEAM WILL WORK CLOSELY WITH PARTNERS FROM GOVERNMENT AND COMMUNITY STAKEHOLDERS TO PROMOTE COMMUNITY-FOCUSED AND EQUITABLE DISTRICT HEAT PUMP ADOPTION, IMPLEMENTATION, AND OPERATION. TWO NEW CROSS-INSTITUTIONAL EDUCATION PROGRAMS ARE DESIGNED TO PROMOTE CONVERGENT INTERNATIONAL EDUCATION IN HUMAN CENTERED SUSTAINABLE BUILT ENVIRONMENT: A) SUMMER INTERNATIONAL GRADUATE BOOTCAMP AND EXCHANGE PROGRAM; AND B) SMART BUILT ENVIRONMENT CERTIFICATION PROGRAM. LEVERAGING PARTNER INSTITUTIONS? OTHER EXISTING FLAGSHIP PROGRAMS RANGING FROM K-12, UNDERGRADUATE, AND WORKFORCE TRAINING, THE PROJECT WILL TRAIN A DIVERSE, CONVERGENT WORKFORCE WELL-VERSED IN SCIENCE, TECHNOLOGY, ENGINEERING, ARTS, AND MATHEMATICS (STEAM), AI, AND SOCIOECONOMICS TO TACKLE GLOBAL CHALLENGES OF CLIMATE CHANGE. THIS PROJECT CONTRIBUTES TO: 1) DATA SCIENCE ? THE DEVELOPMENT OF NEW HUMAN-INTERACTIVE AI TOOLS TO HELP FACILITY MANAGERS AND BUILDING OWNERS (I.E., USERS) TO MAKE TIMELY DECISIONS AND TO HELP INCENTIVIZE A FASTER AND WIDER ADOPTION OF BUILDING DECARBONIZATION; 2) BUILDING SCIENCE ? THE DEVELOPMENT OF NOVEL AND SCALABLE MODELS AND ALGORITHMS FOR OCCUPANT-CENTRIC AND SOCIALLY EQUITABLE CONTROLS DRIVEN BY OCCUPANT, ENVIRONMENTAL, AND COMMUNITY NEEDS; AND 3) SOCIAL SCIENCE ? ENGAGING COMMUNITIES AND DECISION-MAKERS IN THE DESIGN OF AI SYSTEMS TO INCORPORATE THEIR ENVIRONMENTAL, SOCIAL, ECONOMIC, AND EQUITY NEEDS IN THE MODELS. SPECIFIC ANTICIPATED ENGINEERING/SCIENCE CONTRIBUTIONS INCLUDE: 1) NOVEL CAUSALLY-INFORMED BAYESIAN NETWORK WITH DYNAMIC CAUSAL DISCOVERY AND THERMOGRAPHY-BASED BIG DATA ANALYSIS FOR A SCALABLE PERFORMANCE MONITORING, ENERGY DIAGNOSIS, AND PROGNOSIS OF DISTRICT HEAT PUMP SYSTEMS, 2) A COMPREHENSIVE AI LEARNING BASED OCCUPANT NEEDS AND BEHAVIOR MODELING FRAMEWORK TO BRIDGE THE GAPS WITHIN HUMAN-BUILDING-COMMUNITY INTERACTIONS AND PROMOTE ENERGY EQUITY ACROSS THE DISTRICT, 3) NEW PHYSICS- AND DATA-INFORMED LEARNING MODELS FOR FORECASTING AND OPTIMIZATION UNDER UNCERTAINTY, AND 4) HOLISTIC DATA SETS COLLECTED FROM PILOT SITES IN SWEDEN/DENMARK AND THE U.S. THAT USE AN ENERGY JUSTICE LENS AND ARE DEVELOPED THROUGH A COMMUNITY-INFORMED APPROACH. THE PROJECT TEAM'S INTERNATIONAL INDUSTRY PARTNERS, INCLUDING A HEAT PUMP MANUFACTURER AND DISTRICT ENERGY SYSTEM MANAGEMENT COMPANIES, WILL GUIDE THE PROJECT TO STREAMLINE THE POTENTIAL TECHNOLOGY TRANSFER PROCESS. 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 5/15/26 | ||
| Not listed | $1.5m | 12/2/22 |