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  • CHEMISTRY AND MATERIALS (GENERAL)  (2)
  • ADMINISTRATION AND MANAGEMENT  (1)
  • AIRCRAFT STABILITY AND CONTROL  (1)
  • 1
    Publication Date: 2006-02-14
    Description: Issues of crew productivity during design work on space station are discussed. The crew productivity is defined almost exclusively in terms of human factors engineering and habitability design concerns. While such spatial environmental conditions are necessary to support crew performance and productivity, they are not sufficient to ensure high levels of crew performance and productivity on the post-Initial Operational Configurations (IOC) space station. The role of the organizational environment as a complement to the spatial environment for influencing crew performance in such isolated and confined work settings is examined. Three possible models of operation for post-IOC space station's organizational environment are identified and it is explained how they and space station's spatial environment will combine and interact to occasion patterns of crew behavior is suggested. A three phase program of research design: (1) identify patterns of crew behavior likely to be occasioned on post-IOC space station for each of the three models of operation; and (2) to determine proactive/preventative management strategies which could be adopted to maximize the emergence of preferred outcomes in crew behavior under each of the several spatial and organizational environment combinations.
    Keywords: ADMINISTRATION AND MANAGEMENT
    Type: NASA. Johnson (Lyndon B.) Space Center R and D Productivity: New Challenges for the US Space Program; p 368-376
    Format: text
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  • 2
    Publication Date: 2019-06-28
    Description: An automatic flight control systems design methods for aircraft that have complex characteristics and operational requirements, such as the powered lift STOL and V/STOL configurations are discussed. The method is effective for a large class of dynamic systems that require multiaxis control and that have highly coupled nonlinearities, redundant controls, and complex multidimensional operational envelopes. The method exploits the possibility of linearizing the system over its operational envelope by transforming the state and control. The linear canonical forms used in the design are described, and necessary and sufficient conditions for linearizability are stated. The control logic has the structure of an exact model follower with linear decoupled model dynamics and possibly nonlinear plant dynamics. The design method is illustrated with an application to a helicopter autopilot design.
    Keywords: AIRCRAFT STABILITY AND CONTROL
    Type: NASA-TM-84295 , A-9091 , NAS 1.15:84295
    Format: application/pdf
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  • 3
    Publication Date: 2019-06-28
    Keywords: CHEMISTRY AND MATERIALS (GENERAL)
    Type: Journal of Molecular Spectroscopy; 93; 1982
    Format: text
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  • 4
    Publication Date: 2019-06-28
    Keywords: CHEMISTRY AND MATERIALS (GENERAL)
    Type: Journal of Molecular Spectroscopy; 92; 1982
    Format: text
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