A study of the feasibility and applicability of shape controlled space based inflatable membrane structures

Approved for public release; distribution is unlimited === Inflatable structures used for space applications offer mass, volume, and cost savings to spacecraft programs, allowing larger space structures to be built. For certain space applications, there are advantages to using large structures. For...

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Bibliographic Details
Main Author: Whittinghill, Craig M.
Other Authors: Agrawal, Brij
Language:en_US
Published: Monterey, California. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/7798
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-77982015-08-06T16:02:57Z A study of the feasibility and applicability of shape controlled space based inflatable membrane structures Whittinghill, Craig M. Agrawal, Brij Wadsworth, Donald Approved for public release; distribution is unlimited Inflatable structures used for space applications offer mass, volume, and cost savings to spacecraft programs, allowing larger space structures to be built. For certain space applications, there are advantages to using large structures. For example, antennas achieve higher gains when they are increased in size. Higher gains equate to higher data throughputs. Therefore, inflatable structures offer improvements in performance to certain types of spacecraft components. Environmental factors induce surface errors on large inflatable structures, though. This degrades performance, especially for inflatable antennas. To reduce this degradation, active and passive control systems can be used to sense errors and control the shape of the antenna. One method of applying an active and passive control system is by using piezoelectric films that are either attached to or are part of the inflatable structure. The research performed for this thesis explored the theoretical performance of a large inflatable space-based antenna via spreadsheet analysis and the physical performance of a piezoelectric film via laboratory experimentation. For the laboratory experiment, the film was attached to a drum and varying internal pressures and voltages were applied. Also, in order to validate the experimental results, an analytical model was created using MSC/PATRAN and MSC/NASTRAN software 2012-08-09T18:48:16Z 2012-08-09T18:48:16Z 2000-09 Thesis http://hdl.handle.net/10945/7798 en_US Monterey, California. Naval Postgraduate School
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language en_US
sources NDLTD
description Approved for public release; distribution is unlimited === Inflatable structures used for space applications offer mass, volume, and cost savings to spacecraft programs, allowing larger space structures to be built. For certain space applications, there are advantages to using large structures. For example, antennas achieve higher gains when they are increased in size. Higher gains equate to higher data throughputs. Therefore, inflatable structures offer improvements in performance to certain types of spacecraft components. Environmental factors induce surface errors on large inflatable structures, though. This degrades performance, especially for inflatable antennas. To reduce this degradation, active and passive control systems can be used to sense errors and control the shape of the antenna. One method of applying an active and passive control system is by using piezoelectric films that are either attached to or are part of the inflatable structure. The research performed for this thesis explored the theoretical performance of a large inflatable space-based antenna via spreadsheet analysis and the physical performance of a piezoelectric film via laboratory experimentation. For the laboratory experiment, the film was attached to a drum and varying internal pressures and voltages were applied. Also, in order to validate the experimental results, an analytical model was created using MSC/PATRAN and MSC/NASTRAN software
author2 Agrawal, Brij
author_facet Agrawal, Brij
Whittinghill, Craig M.
author Whittinghill, Craig M.
spellingShingle Whittinghill, Craig M.
A study of the feasibility and applicability of shape controlled space based inflatable membrane structures
author_sort Whittinghill, Craig M.
title A study of the feasibility and applicability of shape controlled space based inflatable membrane structures
title_short A study of the feasibility and applicability of shape controlled space based inflatable membrane structures
title_full A study of the feasibility and applicability of shape controlled space based inflatable membrane structures
title_fullStr A study of the feasibility and applicability of shape controlled space based inflatable membrane structures
title_full_unstemmed A study of the feasibility and applicability of shape controlled space based inflatable membrane structures
title_sort study of the feasibility and applicability of shape controlled space based inflatable membrane structures
publisher Monterey, California. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/7798
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