Project Grant 2207408
- This National Science Foundation (NSF) Engineering (CFDA 47.041) project grant award of $687,382 supports research and education focused on the foundations of the next generation of artificial intelligence (AI) for engineering design. The project, titled "CAREER: TOWARDS NEXTGEN-AI: RETHINKING DEEP GENERATIVE MODELS FOR ENGINEERING DESIGN", aims to establish deep generative models (DGMs) designed to handle challenges specific to engineering design across different scales, complexity,...
- This $399,978 Project Grant award from the National Science Foundation's STEM Education (CFDA 47.076) program aims to promote collaborative learning in architectural engineering design using generative artificial intelligence-powered augmented reality. The project, awarded to Worcester Polytechnic Institute, will develop two generative AI-AR modules to integrate into existing architectural engineering design studio curricula. Over the 3-year period from October 2024 to September 2027, the...
- This $287,667 Project Grant award from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070) aims to develop a cognitive and generative AI-driven cyberinfrastructure (CI) training platform for construction education. The key objectives are: 1) Develop BIM-related curriculum materials integrated with cognitive science theory, 2) Create a generative design method to automatically produce BIM CI working examples, 3) Build a...
- The National Science Foundation (NSF) awarded a $199,999 RAPID grant under the STEM Education (CFDA 47.076) program to Carnegie Mellon University (CMU) to develop and evaluate a generative AI-powered robot design assistant for educational robotics. The project aims to investigate the potential of a task-oriented generative AI tool to support lower-performing learners and advance educational equity in robotics. The key planned activities include the development and testing of a prototype...
- This National Science Foundation (NSF) Engineering Education and Centers (EEC) Division Project Grant, awarded to George Mason University (Mason), will explore the impact of generative artificial intelligence (GAI) technologies on the engineering research and teaching community. The $300,000 award, effective from August 15, 2023 to July 31, 2025, will develop and evaluate methods and resources to support the adoption and integration of GAI in engineering education research and teaching...
- This Project Grant award, funded by the National Science Foundation's STEM Education program (CFDA 47.076), aims to create Generative Artificial Intelligence (GenAI) learning assistants tailored for Architecture, Engineering, and Construction (AEC) education. The $172,581 award to the University of Arizona will develop and evaluate three course-specific GenAI assistants to enhance student learning and promote self-regulated learning skills in areas such as construction graphics, structural...
- This National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) Phase I Small Business Innovation Research (SBIR) grant awarded $275,000 to ADA TECH LLC to develop a novel artificial intelligence-powered generative design solution. The project aims to integrate consumer data, Internet of Things (IoT) telemetry, and design for excellence (DFX) engineering specifications into 3D generative computer-aided-design models. The primary objectives are to enable the...
- This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award of $500,000.00, with a period of performance from August 15, 2025 to July 31, 2030, will support a collaborative research project between the University of Connecticut and the University of Missouri. The project aims to reimagine engineering education by creating innovative tools and strategies that support the success of all students, particularly in the critical first two years of the undergraduate...
- This National Science Foundation (NSF) Project Grant award under the Engineering program (CFDA 47.041) will support a collaborative research project at Montana State University (MSU) focused on how generative artificial intelligence (GenAI) is being used in the chemical engineering industry and how to better prepare engineering students for this new technological reality. The $114,894 award, running from October 1, 2025 to September 30, 2027, will involve conducting interviews and focus groups...
- The National Science Foundation (NSF) Division of Civil, Mechanical, and Manufacturing Innovation awarded a $300,000 Project Grant to the Massachusetts Institute of Technology (MIT) under the NSF Engineering program (CFDA 47.041) to advance the field of engineering design. The project aims to develop a framework for accurately evaluating the novelty and quality of diverse design artifacts, such as CAD drawings, text, sketches, and prototypes, using a combination of human experts and machine...
EDUCATING GENERATIVE DESIGNERS IN ENGINEERING -WITH SUPPORT FROM NSF'S ACCELERATING DISCOVERY PROGRAM, THIS PROJECT AIMS TO RE-ENVISION UNDERGRADUATE ENGINEERING EDUCATION TO INCLUDE GENERATIVE DESIGN. GENERATIVE DESIGN IS A TRANSFORMATIVE DESIGN TECHNOLOGY THAT USES OPEN-ENDED ARTIFICIAL INTELLIGENCE ALGORITHMS TO ARRIVE AT SOLUTIONS FOR ENGINEERING PROBLEMS. GENERATIVE DESIGN SOFTWARE CAN BE FREED FROM PRECONCEIVED IDEAS OR PAST SOLUTIONS. AS A RESULT, IT ALLOWS EXPLORATION OF A WIDER VARIETY OF POTENTIAL SOLUTIONS, WITH THE GOAL OF ARRIVING AT AN OPTIMAL SOLUTION IN PARTNERSHIP WITH THE HUMAN ENGINEER. THE PROPOSED PROJECT WILL SUPPORT THE DEVELOPMENT OF OPEN-SOURCE EDUCATIONAL TOOLS FOR TEACHING AND LEARNING GENERATIVE DESIGN. THESE TOOLS WILL BE BASED ON EXISTING COMPUTER-ASSISTED DESIGN AND ENGINEERING SOFTWARE, AND WILL INCLUDE A SET OF PROJECT MODULES TO GUIDE STUDENTS THROUGH AUTHENTIC DESIGN PROBLEMS. THE SOFTWARE AND ASSOCIATED DESIGN PROBLEMS WILL BE PILOT TESTED BY STUDENTS AT THIRTEEN INSTITUTIONS, INCLUDING COMMUNITY COLLEGES, HISTORICALLY BLACK COLLEGES AND UNIVERSITIES, LIBERAL ARTS COLLEGES, AND PUBLIC UNIVERSITIES. INFORMATION FROM THESE PILOTS WILL BE USED ITERATIVELY TO REFINE THE SOFTWARE AND TEACHING APPROACH. THIS PROJECT REPRESENTS A NOVEL APPLICATION OF ARTIFICIAL INTELLIGENCE TO ENGINEERING THAT COULD AUGMENT THE CREATIVITY AND PRODUCTIVITY OF THE ENGINEERING WORKFORCE OF THE FUTURE. THE OVERALL GOAL OF THIS PROJECT IS TO FACILITATE THE TEACHING AND LEARNING OF GENERATIVE DESIGN AT THE UNDERGRADUATE LEVEL. TO ACCOMPLISH THIS GOAL, THE UNIVERSITY OF ARKANSAS, THE UNIVERSITY OF ILLINOIS AT URBANA-CHAMPAIGN, OREGON STATE UNIVERSITY, AND THE CONCORD CONSORTIUM WILL COLLABORATE TO DEFINE, IMPLEMENT, AND DISSEMINATE GENERATIVE DESIGN TOOLS AND PROJECTS FOR USE IN UNDERGRADUATE COURSES. RESEARCH QUESTIONS FROM THREE PERSPECTIVES WILL DRIVE THE PROJECT: 1) THEORETICAL PERSPECTIVE: WHAT ARE THE ESSENTIAL ELEMENTS OF GENERATIVE DESIGN THINKING THAT STUDENTS MUST ACQUIRE SO THEY CAN WORK EFFECTIVELY AT THE HUMAN-TECHNOLOGY FRONTIER IN ENGINEERING? 2) PRACTICAL PERSPECTIVE: TO WHAT EXTENT AND IN WHAT WAYS CAN THE CURRICULUM AND MATERIALS SUPPORT THE LEARNING OF GENERATIVE DESIGN AS INDICATED BY STUDENTS' GAINS IN GENERATIVE DESIGN THINKING? AND 3) AFFECTIVE PERSPECTIVE: TO WHAT EXTENT AND IN WHAT WAYS CAN ARTIFICIAL INTELLIGENCE AFFECT THE PROFESSIONAL FORMATION OF ENGINEERS AS INDICATED BY THE CHANGES OF STUDENTS' INTEREST AND SELF-EFFICACY IN ENGINEERING? TO ANSWER THESE QUESTIONS, INTERDISCIPLINARY RESEARCH THAT INTEGRATES THE PERSPECTIVES AND KNOWLEDGE IN ENGINEERING DESIGN, COMPUTER SCIENCE, LEARNING SCIENCE, AND WORKFORCE DEVELOPMENT WILL BE CONDUCTED. THE PROJECT WILL INVOLVE MORE THAN 1,000 STUDENTS AT 13 INSTITUTIONS AROUND THE COUNTRY. THE RESEARCH WILL INCLUDE DATA FROM DEMOGRAPHIC SURVEYS, QUESTIONNAIRES, SELF-EFFICACY MEASURES, DESIGN REPORTS, SCREENCAST VIDEOS, CLASSROOM OBSERVATIONS, AND PARTICIPANT INTERVIEWS. THE MATERIALS DEVELOPED BY THE PROJECT WILL BE OPEN SOURCE, INCLUDING AN OPEN-SOURCE TOOL FOR TEACHING AND LEARNING GENERATIVE DESIGN AND A SET OF PROJECT-BASED LEARNING MODULES THAT GUIDE USE OF THE TOOL TO SOLVE AUTHENTIC DESIGN PROBLEMS IN ARCHITECTURAL ENGINEERING AND ENERGY ENGINEERING. THE PRODUCTS OF THIS PROJECT ARE EXPECTED TO EQUIP STUDENTS WITH ESSENTIAL SKILLS AND MINDSETS NEEDED TO MASTER USING ARTIFICIAL INTELLIGENCE APPROACHES IN CONTEMPORARY ENGINEERING PRACTICES. 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 | 9/9/25 | ||
| Not listed | $2.0m | 1/25/22 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
UTAUSSUB00000479S | Oregon State University | Project Grant 2207408 | $207.9k | 3/12/25 | |
UTAUSSUB00000480S | Institute For Future Intelligence Inc. | Project Grant 2207408 | $1.5m | 4/26/23 | |
UTAUSSUB00000477S | University Of Illinois | Project Grant 2207408 | $188.8k | 3/29/23 |