Project Grant 2233164

Award Date 10/1/23
Completion Date 9/30/27
Dollars Obligated $550K
Federal Grant Program
47.070
Assistance Type
Project Grant
Place of Performance
Atlanta, GA 30332, USA
Similar Awards
This National Science Foundation (NSF) Project Grant award for $25,000.00, with a start date of Sep 15, 2023 and an end date of Aug 31, 2027, supports research towards developing a task-agnostic and device-agnostic ankle exoskeleton control system to enhance human mobility. The project aims to revolutionize lower limb exoskeletons by leveraging advancements in wearable sensing and machine learning to enable exoskeletons to assist with a wide range of daily living tasks, rather than being limited...
This $50,000 project grant awarded by the National Science Foundation (NSF) under the Computer and Information Science and Engineering (CISE) program will support research by Clemson University to advance the control and optimization of lower-limb exoskeletons. The goal is to develop a customization framework that can rapidly adapt the exoskeleton assistance to different locomotor tasks and users' volitional motion, reducing the time and cost required for gait rehabilitation. The research will...
This National Science Foundation (NSF) CAREER: LEVERAGING HUMAN NEUROMOTOR LEARNING TO ENHANCE ROBOTIC EXOSKELETON PERFORMANCE award provides $650,866 in funding to the University of Massachusetts Amherst over the period of June 15, 2025 to May 31, 2030. The project, funded under the NSF Engineering program (CFDA 47.041), aims to advance the fundamental understanding of how people learn to walk more efficiently with wearable robotic exoskeletons. The research seeks to develop new metrics to...
This two-year, $299,926 National Science Foundation project grant funds research at Clemson University to identify principles of human motor skill learning when using multi-joint arm exoskeletons. The goal is to discover fundamental principles that will guide the design of adaptable exoskeleton control algorithms and personalized training protocols. Researchers will introduce exoskeletons to users with varying baseline skill levels performing complex tasks. A comprehensive set of neuromotor...
This National Science Foundation Project Grant of $500,000 supports research at Arizona State University from September 2022 to August 2026 under the Computer and Information Science and Engineering program (CFDA 47.070). The university will develop a human-centered computing and control framework to improve walking performance and prosthesis embodiment for individuals with lower limb amputations. Researchers will formulate a coordinated human-robot control problem and design a learning-based...
This three-year $180,000 Project Grant from the National Science Foundation's Division of Information and Intelligent Systems, under the Computer and Information Science and Engineering program (CFDA 47.070), will fund research at Virginia Polytechnic Institute and State University to understand the underlying risks and sociotechnical challenges of powered wearable exoskeletons for construction workers. The university will conduct three thrusts of research. The first will identify barriers and...
This $720,000 project grant from the National Science Foundation's Division of Information and Intelligent Systems (CFDA 47.070 - Computer and Information Science and Engineering) will develop a novel robotic ankle-foot orthosis (exoskeleton) system to assist older adults' mobility and gait ability in real-world ambulation. The project at North Carolina State University aims to design and fabricate a compact, lightweight robotic ankle-foot orthosis to provide powered assistance and enhance ankle...
The National Science Foundation, through its Computer and Information Science and Engineering program (CFDA 47.070), awarded a $239,810 Project Grant to the University of Alabama to develop a novel robotic ankle-foot orthosis (exoskeleton) system to improve mobility and gait ability for older adults. The project aims to create a compact, lightweight device that can assist with ankle movement and push-off, enabling more natural and efficient walking for elderly individuals experiencing...
San Jose State University Research Foundation was awarded a $199,946 project grant from the National Science Foundation Division of Chemical, Bioengineering, Environmental, and Transport Systems to develop autonomous personalized control strategies for lower limb exoskeletons. Under the NSF's Engineering grant program (CFDA 47.041), which aims to advance engineering research and education, the Foundation will design and implement impedance regulation and trajectory shaping methods to enhance...
This $762,104 National Science Foundation project grant supports the development of versatile wearable robots to rehabilitate gait disabilities in children with cerebral palsy. Funded under the NSF Engineering program (CFDA 47.041), the three-year award period runs from February 2022 to March 2025. Specifically, the grant recipient - North Carolina State University - will enhance the usability and comfort of a powered knee exoskeleton designed to improve gait biomechanics and walking metabolic...

This National Science Foundation (NSF) Project Grant award under the Computer and Information Science and Engineering (CISE) program, with an award amount of $550,000, provides funding for a research project titled "FRR: A NEW STRATEGY FOR TASK-AGNOSTIC CONTROL OF ROBOTIC EXOSKELETONS BY ESTIMATING UNDERLYING BIOLOGICAL EFFORT USING DEEP LEARNING." The project aims to advance exoskeleton technology by developing AI-based approaches to enable generalization of exoskeleton control across diverse everyday tasks, including both cyclic walking and discrete actions. The research will collect natural human data while wearing exoskeletons and create AI systems to recognize key internal human states, such as lower limb joint efforts. This will result in a control system that can be extended to new users and novel lower limb tasks, with the potential to improve community mobility, independence, and quality of life for individuals with physically demanding jobs or lower limb impairments. The project will be conducted by the Georgia Tech Research Corporation, a non-profit research organization and state-controlled institution of higher education, over a 4-year period from October 2023 to September 2027.

Generated 6/18/24, 9:40 AM