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Concepts for autonomous flight control for a balloon on MarsBalloons operating as airborne rovers have been suggested as ideal candidates for early exploration of the Martian surface. An international study team composed of scientists from the U.S.S.R., France, and the U.S.A. is planning the launching in 1994 of a balloon system to fly on Mars. The current likely design is a dual thermal/gas balloon that consists of a gas balloon suspended above a solar-heated thermal balloon. At night, the thermal balloon provides no lift, and the balloon system drifts just above the Martian surface; the lift of the gas balloon is just sufficient to prevent the science payload from hitting the ground. During the day, the balloon system flies at an altitude of 4 to 5 kilometers, rising due to the added lift provided by the thermal balloon. Over the course of a single Martian day, there may be winds in several directions, and in fact it can be expected that there will be winds simultaneously in different directions at different altitudes. Therefore, a balloon system capable of controlling its own altitude, via an autonomous flight control system, can take advantage of these different winds to control its direction, thereby greatly increasing both its mission utility and its longevity.
Document ID
19890006229
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Heinsheimer, Thomas F.
(Titan Systems, Inc., Gardena CA., United States)
Friend, Robyn C.
(Titan Systems, Inc., Gardena CA., United States)
Siegel, Neil G.
(Siegel, Neil G., Redondo Beach CA , United States)
Date Acquired
September 5, 2013
Publication Date
October 1, 1988
Publication Information
Publication: NASA, Marshall Space Flight Center, Fourth Conference on Artificial Intelligence for Space Applications
Subject Category
Aircraft Stability And Control
Accession Number
89N15600
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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