Project Grant 2519445
- This Project Grant award from the National Science Foundation's Computer and Information Science and Engineering (CISE) program (CFDA 47.070) provides $657,210 to the University of Wisconsin System to develop open instructional materials and deliver a cybertraining program focused on enabling the use of digital twin technologies in robotics. The project aims to create instructional materials, including tokenized classes, Jupyter notebooks, and new Chrono models and documentation, to train...
- This $158,400 Project Grant award from the National Science Foundation's Computer and Information Science and Engineering (CISE) program (CFDA 47.070) supports the development of open instructional materials and a cybertraining program to expand the use of digital twin technologies in robotics. The project, executed by CAL State La University Auxiliary Services Inc. (UAS), aims to create training resources and deliver a cybertraining program that enables engineers, scientists, and students to...
- This EAGER (Early-concept Grants for Exploratory Research) project, awarded by the National Science Foundation (NSF) under the Engineering program (CFDA 47.041), aims to create a personalized training framework that adapts to each worker's cognitive functions and sensorimotor skills in collaborative robotic manufacturing environments. The $299,953 grant, awarded on September 1, 2024, with a completion date of August 31, 2026, focuses on advancing personalized training strategies for complex...
- This National Science Foundation (NSF) Computer and Information Science and Engineering (CISE) federal grant award provides $174,980 to the Rochester Institute of Technology (RIT) to develop techniques and a framework for enabling "live 3D digital twins" - real-time digital representations of 3D physical objects. The project aims to create adaptive digital twin pipelines that can maintain low latency and high accuracy across varying network and compute resources, with applications...
- This Project Grant award from the National Science Foundation (NSF) Mathematical and Physical Sciences program (CFDA 47.049) provides $269,979 to the Santa Fe Institute of Science to conduct collaborative research on developing robust digital twin models that can accurately predict the behavior of complex systems under unexpected conditions. The key objectives are to: Investigate the generalization abilities of digital twins by combining mathematical tools from nonlinear dynamics and machine...
- This $583,967 Project Grant award from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program, titled "COLLABORATIVE RESEARCH: CYBERTRAINING: IMPLEMENTATION: MEDIUM: BYTEBOOST: EMPOWERING COMPUTATIONAL RESEARCHERS AND EDUCATORS WITH NOVEL CUTTING-EDGE TECHNOLOGIES", supports the development of a community-driven unified training platform. The platform will offer a series of online training events and an in-person hands-on workshop to...
- This Project Grant award from the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070) provides $599,969 to San Jose State University Research Foundation to demonstrate the use of mixed reality and edge computing in human-robot interaction and collaboration. The key objectives are to: Develop immersive, context-aware experiences to study the psychological and ethical impacts of human-robot interaction using mixed reality simulations....
- This Project Grant award, funded by the National Science Foundation's (NSF) Computer and Information Science and Engineering (CISE) program (CFDA 47.070), is aimed at developing an Intelligent Extended Reality Tutoring System to accelerate skill acquisition for complex psychomotor tasks. The $515,838 project, set to be completed by June 30, 2026, will leverage extended reality (XR), artificial intelligence (AI), and Internet-of-Things (IoT) technologies to provide personalized, context-aware...
- This $140,000 Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) aims to revolutionize teleoperation technology for dexterous in-hand manipulation in human-robot collaboration. The primary research objectives are to: 1) develop a learning-based robot control policy to interpret human commands using end-effect-based task features, 2) create a safety-aware, multi-modal perception system to optimize sensory inputs for intuitive and safe operation, and...
- The University of Wisconsin System was awarded a $131,176 project grant from the National Science Foundation (NSF) Division of Information and Intelligent Systems under the Computer and Information Science and Engineering program (CFDA 47.070). The grant will support a collaborative research project to develop a better understanding of the technical and socio-technical requirements for accelerating the use of collaborative robotics in manufacturing, mining, construction, and other industrial...
COLLABORATIVE RESEARCH: CYBERTRAINING: IMPLEMENTATION: MEDIUM: CYBERTRAINING FOR EXPANDING THE USE OF DIGITAL TWIN TECHNOLOGIES IN ROBOTICS -ROBOTIC SYSTEMS THAT MUST OPERATE IN HAZARDOUS OR REMOTE ENVIRONMENTS, SUCH AS FUTURE EXTRATERRESTRIAL EXPLORATION VEHICLES, AUTONOMOUS CONSTRUCTION EQUIPMENT, AND SEARCH-AND-RESCUE ROBOTS, CANNOT BE DESIGNED SAFELY AND EFFICIENTLY BY TRIAL AND ERROR. THIS PROJECT CREATES OPEN INSTRUCTIONAL MATERIALS AND TRAINS THOUSANDS OF LEARNERS IN PHYSICS-BASED DIGITAL TWIN TECHNOLOGIES, ENABLING ENGINEERS, SCIENTISTS, AND STUDENTS TO DESIGN AND TEST ROBOTS THROUGH COMPUTER SIMULATION BEFORE HARDWARE IS BUILT. BY LOWERING COST AND RISK, SIMULATION ACCELERATES INNOVATION AND DISCOVERY, STRENGTHENS U.S. LEADERSHIP IN ADVANCED MANUFACTURING AND SPACE TECHNOLOGY, AND EXPANDS ECONOMIC OPPORTUNITY. A KEY FEATURE OF THE PROJECT IS ITS ANYONE-ANYWHERE-ANYTIME APPROACH TO LEARNING AND TRAINING, THAT HONES THE MODELING AND SIMULATION SKILLS OF PARTICIPANTS RANGING FROM CALIFORNIA STATE UNIVERSITY STUDENTS TO EXPERTS AT NASA, DEPARTMENT OF ENERGY, AND OTHER GOVERNMENT AGENCIES. THE PROJECT'S LONG-TERM IMPACT IS A WORKFORCE FLUENT IN ROBOTICS SIMULATION, DIGITAL TWIN TECHNOLOGIES, AND HIGH-PERFORMANCE COMPUTING THAT GAINS HANDS-ON EXPERIENCE WITH THE OPEN-SOURCE CHRONO SIMULATOR, POSITIONING THESE PROFESSIONALS TO ADVANCE NATIONAL PROSPERITY AND PUBLIC WELFARE. THIS PROJECT EXECUTES A CYBERTRAINING PLAN FOCUSED ON ENABLING THE USE OF DIGITAL TWINS IN ROBOTICS THROUGH TWO COORDINATED ACTIVITIES: (I) CREATING INSTRUCTIONAL MATERIAL, AND (II) DELIVERING A CYBERTRAINING (CT) PROGRAM. FOR (I), THIS PROJECT PROVIDES THE OPPORTUNITY TO CARRY OUT AN INSTRUCTIONAL-MATERIAL TOKENIZATION PROCESS AND FLIPPING OF THREE CHRONO-ENABLED OR CHRONO-RELATED CLASSES; PREPARE JUPYTER NOTEBOOKS FOR SELF-PACED TRAINING; AND PRODUCE NEW WIDELY AVAILABLE CHRONO MODELS AND DOCUMENTATION THAT ENCOURAGE CI TOOL USE THROUGH SMOOTHER ONBOARDING. FOR (II), THIS TEAM WILL FACILITATE CYBERTRAINING VIA BOTH SYNCHRONOUS AND ASYNCHRONOUS INSTRUCTIONAL APPROACHES. THESE CREATE CONTENT AND EXECUTE TRAINING ACTIVITIES WILL ANCHOR A TECHNICAL EFFORT THAT HAS FIVE CYBERTRAINING COMPONENTS. THE FIRST CT COMPONENT EXPANDS PARTICIPATION IN COMPUTATIONAL SCIENCE THROUGH A COLLABORATION BETWEEN PROJECT INVESTIGATORS FROM THE UNIVERSITY OF WISCONSIN?MADISON (UW?MADISON) AND THE CALIFORNIA STATE UNIVERSITY (CSU) SYSTEM. EVERY 12 MONTHS, A COHORT OF STUDENTS FROM FOUR CSU CAMPUSES ? LOS ANGELES, NORTHRIDGE, FULLERTON, AND POMONA ? WILL BE TRAINED IN USING SIMULATION IN LUNAR EXPLORATION ROBOTICS. THESE ACTIVITIES INCLUDE A VISIT TO NASA'S JET PROPULSION LABORATORY FOR A FIRSTHAND LOOK AT ROVER OPERATIONS; ONLINE TRAINING ON SIMULATION USE IN ROBOTICS; AND A TWO-WEEK SUMMER SCHOOL AT UW?MADISON THAT CONCLUDES WITH A ROBOTICS TEAM COMPETITION. THE SECOND CT COMPONENT WILL TRAIN PRACTITIONERS IN THE USE OF CHRONO VIA TUTORIALS HELD IN CONJUNCTION WITH AN ANNUAL CONSORTIUM MEETING THAT FOSTERS OUTREACH TO INDUSTRY. THE PROJECT ALSO INCLUDES REVAMPING THREE UW?MADISON COURSES THAT UNDERPIN THE CONCEPT OF DIGITAL TWINS IN ROBOTICS. THE FOURTH CT COMPONENT PROVIDES ASYNCHRONOUS TRAINING TO THOUSANDS OF ANONYMOUS CHRONO USERS. THIS TRAINING DRAWS ON MATERIALS UPLOADED TO THE NSF'S ACCESS ECOSYSTEM AND THE PROJECT CHRONO WEBSITE AND IS FURTHER SUPPORTED BY A LARGE LANGUAGE MODEL EXPERT AGENT PILOTED BY THIS GROUP. LASTLY, THE PROJECT ENGAGES STUDENTS PARTICIPATING IN NASA'S LUNAR AUTONOMY CHALLENGE. TOGETHER, THESE ACTIVITIES CREATE A SCALABLE, REPRODUCIBLE PIPELINE THAT COUPLES FLIPPED-CLASSROOM PEDAGOGY, CLOUD-READY SOFTWARE CONTAINERS, AND SOFTWARE-IN-THE-LOOP TESTBEDS. EXPECTED OUTCOMES OF THIS PROJECT INCLUDE A CURATED LIBRARY OF DIGITAL TWIN MODELS, FREELY AVAILABLE TRAINING ARTIFACTS HOSTED ON THE NSF'S ACCESS ECOSYSTEM, AND A MEASURABLE INCREASE IN CI-SAVVY ROBOTICS RESEARCHERS CAPABLE OF EXECUTING LARGE-SCALE SIMULATION STUDIES ON HIGH-PERFORMANCE COMPUTERS. 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 | $61.2k | 6/23/25 |