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VISUAL CONTROL OF RENDEZVOUSSpace rendezvous involving human occupants will be required in many phases of space flight. In order that rendezvous capability be concurrent with other phases of manned space flight to insure that such tasks as the rotation and addition of crews for manned space station, supply of stations and launching complexes for deep-space probes, and the emergency rescue of personnel may be carried out, it is desirable to determine the ability of a human pilot to control the rendezvous maneuver. The National Aeronautics and Space Administration has conducted a study program to determine vehicle requirements and control techniques for a number of proposed methods for performing piloted space rendezvous. The final step in each phase of the rendezvous study program has been a simulation of the man-machine combination to test its feasibility. Initially, an analytical study was conducted to determine a range of conditions that would exist at the beginning of the terminal phase of rendezvous (ref. 1). Piloted systems were investigated for rendezvous control using these initial conditions. One such study of piloted rendezvous in which all the required control information was displayed to the simulator pilot on instruments is presented in reference 2. While the control of the rendezvous maneuver by use of the instrument display was shown to be feasible, the sufficiently accurate measurement of the necessary information to operate the instrument was realized to be a difficult problem. Consideration was therefore given to the possibility of maneuvering range and range rate required for the control of the rendezvous from visual sightings made during the initial control application. To provide this capability, an analytical study was made. This analytical study, presented in reference 3, derived three techniques for obtaining range and range rate visually and conducted a simplified preliminary situation to test the three analytical techniques. The study reported herein is a continuation of the simulation work begun in reference 3, and is aimed at determining the ability of a pilot to use visual information to reduce or eliminate the need for some or all of the data that would normally be displayed on instruments.
Document ID
19620002355
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Roy F.. Brissenden
(Langley Research Center Hampton, Virginia, United States)
Edgar C. Lineberry, Jr.
(Langley Research Center Hampton, Virginia, United States)
Date Acquired
August 1, 2013
Publication Date
January 22, 1962
Subject Category
Lasers And Masers
Report/Patent Number
L-1871
Meeting Information
Meeting: 30th Annual Meeting of the Institute of Aerospace Sciences
Location: New York, NY
Country: US
Start Date: January 22, 1962
End Date: January 24, 1962
Sponsors: Institute of the Aerospace Sciences
Accession Number
62N12355
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Keywords
Rendezvous
Simulation
Visual control
Control
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