STARFISH SPACE, INC. — National Aeronautics and Space Administration SBIR Phase I: Z5

STARFISH SPACE, INC. — SBIR Phase I award from National Aeronautics and Space Administration.

Amount
$149,993
Agency
National Aeronautics and Space Administration
Program / Phase
SBIR · Phase I
Topic
Z5
Solicitation
SBIR_23_P1
NAICS
Place of performance
WA
Period
2023-07-20 → 2024-02-02

Description

Starfish Space envisions a future where autonomous robotic interaction in space is ubiquitous, enabling a thriving in-space community of scientific research, business, habitable platforms, exploration systems, and more. An underlying capability critical to enabling these missions is a universally-compatible, non-destructive capture system for in-space docking in all orbits. The ability to rendezvous and dock with unprepared spacecraft ndash; those launched without pre-configured docking hardware ndash; is vital to NASArsquo;s overall goals as it will enable space exploration and science missions to expand well beyond Low-Earth Orbit (LEO). Such missions include satellite servicing, satellite life extension, in-space logistics, assembly, manufacturing, and active debris remediation (ADR).NASA seeks robotic systems for space exploration that operate in challenging environments and enable servicing and assembly applications. Successful use of robotic end-effectors are critical to accomplish robotic manipulation tasks for space vehicles while interacting with orbital assets and enabling in-space servicing, assembly, and manufacturing (ISAM) technology. A robust in-space capture capability is required to bring this future to life and is a key enabler of all RPOD missions. Without it, capture of unprepared surfaces and assembly of delicate structures in space is impossible. A universally-compatible capture mechanism will also open the door to new possibilities in servicing and assembly across all orbits.The ability to do this depends on two key innovations. First, survivable systems able to withstand the space environment in GEO and beyond. Second, robotic capture mechanisms capable of operating independent of prebuilt docking interfaces.nbsp;