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NSF Advances Technologies To Improve Quality Of Life For Persons With Disabilities

Science & Tech

Accelerate Africa’s Digital Transformation

With a $30 million investment, NSF has selected six multidisciplinary research teams to advance from Phase 1 to Phase 2 of the NSF Convergence Accelerator's Track H: Enhancing Opportunities for Persons with Disabilities.

The NSF Convergence Accelerator track builds upon NSF's mission of accelerating convergence research, in this case across assistive and rehabilitative technologies for diverse populations of persons with disabilities.

Collectively, the selected Phase 2 teams will produce systems, technologies and tools to enable persons with disabilities to gain access places, jobs and experiences. Funded solutions include improvements to text-to-speech, applications for the hearing impaired, restored limb functions for the physically impaired, increased transportation efficiency for the visually impaired and more.

To support each team's solution development, the Phase 2 teams will participate in an innovation and entrepreneurial curriculum that includes training on product development, intellectual property, financial resources, sustainability planning, communications and outreach.

Phase 2 awardees include:

  • HeardAI: Led by Michigan State University, HeardAI's vision is to transform voice-artificial intelligence technology accessibility for 80 million people who stutter, then eventually benefit all users. The solution's extensible sociotechnical framework offers accessibility guidance for compliance checking, a realistic stuttered speech testbed for product evaluation, an application and an application programming interface to make voice-activated products and services accessible.  
  • Inclusio: Led by Saint Louis University, Inclusio is reimagining accessibility by transforming how people create and consume accessible content in classrooms, workplaces, and homes. The project aims to provide an end-to-end software platform that enables rapid sourcing and generation of accessible content that can be felt, heard, and seen across multiple platforms, with a core mission of serving those with low vision and blindness.
  • MABLE: Led by Lehigh University, Mapping for Accessibility in Environments (MABLE) is providing people with disabilities independence to experience large events, conferences and educational programs. Using crowdsensing, AI and robotics, MABLE empowers individuals with a responsive map and turn-by-turn instructions through a digital app to help them navigate indoor environments successfully.
  • Project DRIVE: Led by Northwestern University, Project DRIVE imagines a future where power wheelchairs are accessible to everyone that needs one. By connecting current and future technologies, the solution enables safe, independent, power wheelchair operations using intelligent robotic assistance.
  • RAFAS: Led by Harvard University, Restoring Arm Function after Stroke (RAFAS) is creating an at-home rehabilitation solution to restore arm function after a stroke. RAFAS is a wearable technology that supports an end-user to practice reaching with their affected arm during daily activities while remotely monitoring recovery and providing feedback to encourage behavioral change.  
  • UNav: Led by the New York University Medical Center, UNav revolutionizes navigation for visually impaired users through precision localization technology that maps and provides wayfinding for both indoor and outdoor environments. As a mobile application or hands-free wearable technology, UNav communicates directions and hazards using multisensory feedback. The solution improves travel equity by cutting travel time, reducing injuries and increasing environmental awareness.