Apollo extension system studies. navigation system for a mobile laboratory
Dead reckoning navigation system for Lunar Roving Vehicle /LRV/ - Apollo project
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Dead reckoning navigation system for Lunar Roving Vehicle /LRV/ - Apollo project
Surface roughness profile for determining Lunar Roving Vehicle energy requirements for negotiating small obstacles
Celestial and satellite navigation sensitivity for Lunar roving vehicle /LRV/ position fix
Surveyor Lunar Roving Vehicle /SLRV/ mission in support of Apollo LEM program
Surveyor Lunar Roving Vehicle /SLRV/ system description and performance characteristics
Systems design validation of Surveyor lunar roving vehicle - navigation, control and display, television, telecommunications, power supply, and thermal control
Reliability of Surveyor lunar roving vehicle design - mathematical models, failure modes, and predictions
Validation of preliminary design for Surveyor lunar roving vehicle - mobility, structure, deployment, folding and erection mechanism, and Apollo support scientific experiments
Remote control study of Surveyor Lunar Roving Vehicle /SLRV/ test model
Summary of missions and systems studies for Surveyor Lunar Roving Vehicle /SLRV/
Man-machine system for extraterrestrial surface roving vehicles
Mobility and structural analyses of bellows concept for lunar roving vehicle
Using human performance and physiological measures during lunar surface mission simulation to evaluate minimum volume cabin design for lunar roving vehicle
Apollo extension system /AES/ for lunar surface exploration
System design technique for extraterrestrial vehicles which maximizes effectiveness of complex system operating in partially defined environment
Unmanned lunar roving vehicle power requirements, comparing radioisotope thermoelectric generator and solar cell/battery systems
Research and technology implications for improving lunar surface roving and flying vehicles
Auxiliary power systems and life support and cabin environmental control systems for lunar roving vehicle