INFORMATION REQUIREMENTS FOR SPACE NAVIGATION.
Information requirements for space navigation
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Information requirements for space navigation
Biosensory unilateral response processor /burp/ - human information processing capacity determiner
Operator adaptation to sudden changes in controlled element gain and polarity based on tracking error and response time
Human-aided computer linguistic method for analysis of morphological data
Annotated bibliography on human factors and engineering
Machine recognition of handwriting patterns treated as two-dimensional vector displacements in time
Sources of measurement through analogy in simulation, models and games
Method for on-line simulation of electric networks - computer program for design tool in man-machine interaction
Man as integral part of spacecraft - human physiology and space environment
Functional extension of human hands through remote control machine
Human dynamic space orientation using control theory techniques
AMTRAN II on-line remote terminal for IBM 1620 computer to improve man-machine communication
Navigation requirements for Empire manned interplanetary missions discussing orbit determination, path corrections, sensor selection, functional systems and man-machine roles
Structural dynamics/manned space flight relation, discussing man-machine dynamics, Apollo command module LF studies, pilot control of spacecraft and launch vehicle, etc
Functional requirements for man-machine dialogue, noting voice insertion of data
Speech communication system between man and machine - electronic logic circuits
Necessity of integrating man-machine relationships properly into advanced aerospace systems
The historic earth orbital flight of the Mercury space capsule on February 20, 1962 has illustrated that man has the capability of creating instrumentation and equipment which permit him to survive outside the protective earth atmosphere which, in time, has served both as a shield and a barrier. Because of this great achievement man need no longer restrict himself to earth-space but may direct his resources to expand his zone of operation to earth-moon space. However, in order to exploit this new frontier many problems must be solved which are not mere extensions or extrapolations of those already treated. The problem associated with providing man with an adequate environment for extended periods in the earth's atmosphere, earth-moon space and on the lunar surface is indeed extensive. Trapped radiation, solar flare activity, meteoroid bombardment, solar radiation and the hard vacuum of space are no longer merely phenomena. of scientific interest; they describe the operating environment of manned earth-lunar spacecraft. In order that man may effectively operate in the earth-moon space, myriads of systems and subsystems of varying types and functions must be devised and integrated into an efficient, reliable man-machine complex. This paper will consider only one small aspect of this problem--that is, the problem of providing man with an adequate gaseous and thermal environment in earth-lunar spacecraft. Control of atmospheric gases in manned sealed environments will be treated in Part I. Part II treats thermal regulation and atmosphere control requirements of mobile life support systems for lunar exploration.