View Grant Opportunity
Mind, Machine and Motor Nexus
U.S. National Science Foundation
PD-25-058Y
NSF
General Information
N/a
Est. Program Funding:
Est. Program Funding:
N/a
Expected No. of Awards
Expected No. of Awards
N/a
Award Ceiling
Award Ceiling
Opportunity Number:
PD-25-058Y
Owning Agency:
NSF
Opportunity Category:
Discretionary (D)
Synopsis
The Mind, Machine, and Motor Nexus (M3X) program supports fundamental research that enables intelligent engineered systems and humans to engage in bidirectional interaction in a physics-based environment, to enhance and ensure safety, productivity, and well-being.
For the purpose of this program an intelligent engineered system is a human-designed system — physical, virtual, or a combination of both — that interacts with its environment to achieve specific goals. These systems collect data, analyze it to make informed decisions, and take actions that enhance safety, efficiency, and well-being. They may operate autonomously or collaboratively with humans, adapting their actions based on the data they collect. A key requirement for the M3X program is that these systems must function within a physics-based environment, whether physical or virtual, where interactions exhibit recognizable physical behaviors, such as those associated with gravity, friction, force, and inertia.
Intelligent engineered systems are becoming increasingly integrated into our daily lives, interacting with humans across diverse environments and through different modalities (for example, visual, haptic, auditory). M3X aims to deepen the understanding of such interactions, particularly in complex and dynamic settings such as elder care, disaster response, and dynamic workplaces. The program encourages explorations into the physical or cognitive principles that enable or constrain human-machine collaboration, advancing foundational theories, interaction modeling, and technological innovations that enhance adaptability, efficiency, and intuitiveness.
Proposals submitted to the M3X program must clearly articulate how the proposed work advances knowledge of bidirectional interactions between humans and intelligent engineered systems. Examples include robots assisting in disaster response, smart environments that learn user preferences, and virtual reality-based rehabilitation technologies that simulate plausible physics.
While proposals are not required to address all aspects of the interaction, they must propose significant contributions to at least one of the following areas:
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| Response Date | |
| Posting Date | Apr 16, 2025 12:00:00 AM EDT |
| Archive Date | |
| Award Ceiling | N/a |
| Award Floor | N/a |
| Cost Sharing | No |
Eligibility
| Eligible Applicants | Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled "Additional Information on Eligibility" |
| Additional Info on Eligibility: | N/a |
Additional Information
| Agency Name | U.S. National Science Foundation |
| Link to Additional Information: | NSF Program Desccription PD-25-058Y |
| Grantor Contact Information: |
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CFDA Program(s)
- 47.041: Engineering
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