Characterizing the Performance of the Wheel Electrostatic SpectrometerInsulators need to be discharged after each wheel revolution. Sensor responses repeatable within one standard deviation in the noise of the signal. Insulators may not need to be cleaned after each revolution. Parent Technology- Mars Environmental Compatibility Assessment/Electrometer Electrostatic sensors with dissimilar cover insulators Protruding insulators tribocharge against regolith simulant Developed for use on the scoop for the 2001 Mars Odyssey lander Wheel Electrostatic Spectrometer Embedded electrostatic sensors in prototype Martian rover wheel If successful, this technology will enable constant electrostatic testing on Mars Air ionizing fan used to neutralize the surface charge on cover insulators . WES rolled on JSClA lunar simulant Control experiment -Static elimination not conducted between trials -Capacitor discharged after each experiment Charge neutralization experiment -Static elimination conducted between trials -Capacitor discharged after each experiment. Air ionizing fan used on insulators after each wheel revolution Capacitor discharged after each trial Care was taken to roll WES with same speed/pressure Error bars represent one standard deviation in the noise of e ach sensor
Document ID
20130014306
Acquisition Source
Kennedy Space Center
Document Type
Presentation
Authors
Johansen, Michael R. (NASA Kennedy Space Center Cocoa Beach, FL, United States)
Mackey, P. J. (NASA Kennedy Space Center Cocoa Beach, FL, United States)
Holbert, E. (NASA Kennedy Space Center Cocoa Beach, FL, United States)
Calle, C. I. (NASA Kennedy Space Center Cocoa Beach, FL, United States)
Clements, J. S. (Appalachian State Univ. Boone, NC, United States)
IDRelationTitle20130011659See AlsoCharacterizing the Performance of the Wheel Electrostatic Spectrometer20130011659See AlsoCharacterizing the Performance of the Wheel Electrostatic Spectrometer