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  • Spacecraft Design, Testing and Performance  (2)
  • Cybernetics, Artificial Intelligence and Robotics; Spacecraft Design, Testing and Performance  (1)
  • 1
    Publication Date: 2020-01-08
    Description: No abstract available
    Keywords: Spacecraft Design, Testing and Performance
    Type: ARC-E-DAA-TN75918 , Asia-Pacific Regional Space Agency Forum; Nov 26, 2019 - Nov 29, 2019; Nagoya; Japan
    Format: application/pdf
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  • 2
    Publication Date: 2019-07-12
    Description: Synchronized Position Hold, Engage, Reorient, Experimental Satellites (SPHERES) are bowling-ball sized satellites that provide a test bed for development and research into multi-body formation flying, multi-spacecraft control algorithms, and free-flying physical and material science investigations. Up to three self-contained free-flying satellites can fly within the cabin of the International Space Station (ISS), performing flight formations, testing of control algorithms or as a platform for investigations requiring this unique free-flying test environment. Each satellite is a self-contained unit with power, propulsion, computers, navigation equipment, and provides physical and electrical connections (via standardized expansion ports) for Principal Investigator (PI) provided hardware and sensors.
    Keywords: Spacecraft Design, Testing and Performance
    Type: NASA FS-2013-08-02-ARC , ARC-E-DAA-TN10763
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  • 3
    Publication Date: 2019-07-13
    Description: The Astrobee Research Facility will maintain three identical free-flying Astrobee robots on the ISS. After the Astrobees are launched and commissioned in 2018, they will replace the SPHERES robots that have been operating on the ISS since 2006. Astrobee can fly autonomously throughout most of the US section of the ISS interior, but cannot operate outside the ISS. Astrobee is propelled by a pair of battery-operated fans, and can autonomously return to a docking station to recharge, so it can perform most activities without requiring any astronaut support. It carries a suite of six cameras, a two degree-of-freedom (DOF) arm with a gripper that can grasp ISS handrails and other objects, and three payload bays that provide power and data for guest science hardware. It can autonomously execute hours-long plans (for example, sensor surveys) or be teleoperated live from the ground or by astronauts.
    Keywords: Cybernetics, Artificial Intelligence and Robotics; Spacecraft Design, Testing and Performance
    Type: ARC-E-DAA-TN59158 , ISS R&D 2018; Jul 23, 2018 - Jul 26, 2018; San Francisco, CA; United States
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