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Coding Structures for Seated Row Simulation of an Active Controlled Vibration Isolation and Stabilization System for Astronaut’s Exercise PlatformSimulation for seated aerobic row exercise was a continued task to assist NASA in analyzing a one-dimensional vibration isolation and stabilization system for astronaut’s exercise platform. Feedback delay and signal noise were added to the simulation model. Simulation runs for this study were conducted in two software simulation tools, Trick and MBDyn, software simulation environments developed at the NASA Johnson Space Center. The exciter force in the simulation was calculated from motion capture of an exerciser during a seated aerobic row exercise. The simulation runs include passive control, active control using a Proportional, Integral, Derivative (PID) controller, and active control using a Piecewise Linear Integral Derivative (PWLID) controller. Output parameters include displacements of the exercise platform, the exerciser, and the counterweight; transmitted force to the wall of spacecraft; and actuator force to the platform. The simulation results showed excellent force reduction in the active controlled system compared to the passive controlled system, which resulted in less force reduction.
Document ID
20230005334
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Ziraguen O. Williams
(CACI International (United States) Arlington, Virginia, United States)
Shield B. Lin
(CACI International (United States) Arlington, Virginia, United States)
Fouad N. Matari
(CACI International (United States) Arlington, Virginia, United States)
Leslie J. Quiocho
(Johnson Space Center Houston, Texas, United States)
Date Acquired
April 12, 2023
Subject Category
Aerospace Medicine
Behavioral Sciences
Meeting Information
Meeting: International Conference on Dynamic Systems, Control and Robotics
Location: Ottawa, Ontario
Country: CA
Start Date: July 3, 2023
End Date: July 4, 2023
Sponsors: The World Academy of Sciences
Funding Number(s)
WBS: 251546.06.15.05.01.72.03
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
NASA Technical Management
Keywords
Simulation
counterweight
exercise
vibration
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