Surveyor spacecraft power conversion.
Power conversion circuits of Surveyor spacecraft including distribution system, battery charging and central regulator units
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Power conversion circuits of Surveyor spacecraft including distribution system, battery charging and central regulator units
Electronic data processing outputs of Surveyor spacecraft failure reporting system used for visibility of quality problems on real time basis
Surveyor spacecraft testing at Environmental Test Laboratory, describing facilities and innovations designed for temperature extremes
The aerothermodynamics characteristics of the Mars Global Surveyor spacecraft are investigated and reported. These results have been used by the Mars Global Surveyor mission planners to design the aerobraking phase of the mission. Analytical and Direct Simulation Monte Carlo computer codes were used with a detailed, three dimensional model of the spacecraft to evaluate spacecraft aerobraking characteristics for flight in free molecular and transitional flow regimes. The spacecraft is found to be aerodynamically stable in aerobraking and planned contingency configurations. Aerodynamic forces, moments, and heating are found to be highly dependent on atmospheric density. Accommodation coefficient. is seen to strongly influence drag coefficient. Transitional flow effects are found to reduce overall solar panel heating. Attitude control thruster plumes are shown to interact with the freestream, diminishing the effectiveness of the attitude control system and even leading to thrust reversal. These plume-freestream interaction effects are found to be highly dependent on freestream density.
Surveyor spacecraft vernier propulsion system survival in lunar environment, suggesting temperature resistant seal and valve seat material for fluid loss prevention
Elastic properties of lunar surface material from Surveyor spacecraft strain gage data
Techniques to calculate structural design loads for Surveyor spacecraft during lunar landing
Elastic properties of lunar surface from Surveyor spacecraft data
Optical triangulation method for determining lunar surface elevation relative to Surveyor spacecraft
Solenoid stepper motor for positioning Surveyor antenna/solar cell panel
Measurements of phase jitter in oscillator modules - transmitter and receiver short term stability requirements for Surveyor spacecraft communication systems
Command and control system for real-time operation of Surveyor spacecraft
Surveyor touchdown-dynamics experimental study of spacecraft motion and landing site surface
The spacecraft testbed is a crucial part of the spacecraft development and operations phase. Given the aggressive schedule of the Mars Global Surveyor spacecraft, the Spacecraft Test Laboratory will play a crucial part during the MGS development phase in support of flight software testing, fault protection testing, sequence testing, and other areas to meet the November, 1996 launch date.
Surveyor 3 spacecraft attitude change on lunar surface, examining Apollo 12 mission photographs
Description of ground support systems for the surveyor lunar-landing spacecraft
The Surveyor Project achieved five successful lunar landings between 1966 and 1968, following an intensive five-year development effort. One of the many significant accomplishments made by Surveyor was the development and validation of the first-ever automated soft-landing system. This paper provides a historical and control aspects of the spacecraft's terminal descent system. Driving requirements and other important design considerations are described, along with the configuration and operational sequence of the actual flight system.
Surveyor sterilization study - spacecraft material and component compatibility to sterilization process, sterile techniques for aseptic assembly, and operation plan