Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.

This research develops an adaptive controller that actively suppresses a single frequency disturbance source at a remote position and tests the system on the NPS Space Truss. The experimental results are then compared to those predicted by an ANSYS finite element model. The NPS space truss is a 3.7-...

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Bibliographic Details
Main Author: Barney, Timothy A.
Other Authors: Shin, Young S.
Published: 2012
Online Access:http://hdl.handle.net/10945/10886
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-108862014-11-27T16:09:20Z Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss. Barney, Timothy A. Shin, Young S. Agrawal, Brij N. Mechanical Engineering This research develops an adaptive controller that actively suppresses a single frequency disturbance source at a remote position and tests the system on the NPS Space Truss. The experimental results are then compared to those predicted by an ANSYS finite element model. The NPS space truss is a 3.7- meter long truss that simulates a space-borne appendage with sensitive equipment mounted at its extremities. One of two installed piezoelectric actuators and an Adaptive Multi-Layer LMS control law were used to effectively eliminate an axial component of the vibrations induced by a linear proof mass actuator mounted at one end of the truss. Experimental and analytical results both demonstrate reductions to the level of system noise. Vibration reductions in excess of 50dB were obtained through experimentation and over 100dB using ANSYS, demonstrating the ability to model this system with a finite element model. This report also proposes a method to use distributed quartz accelerometers to evaluate the location, direction, and energy of impacts on the NPS space truss using the DSPACE data acquisition and processing system to capture the structural response and compare it to known reference Signals. 2012-08-22T15:34:06Z 2012-08-22T15:34:06Z 2001-06 Thesis http://hdl.handle.net/10945/10886 This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. As such, it is in the public domain, and under the provisions of Title 17, United States Code, Section 105, it may not be copyrighted.
collection NDLTD
sources NDLTD
description This research develops an adaptive controller that actively suppresses a single frequency disturbance source at a remote position and tests the system on the NPS Space Truss. The experimental results are then compared to those predicted by an ANSYS finite element model. The NPS space truss is a 3.7- meter long truss that simulates a space-borne appendage with sensitive equipment mounted at its extremities. One of two installed piezoelectric actuators and an Adaptive Multi-Layer LMS control law were used to effectively eliminate an axial component of the vibrations induced by a linear proof mass actuator mounted at one end of the truss. Experimental and analytical results both demonstrate reductions to the level of system noise. Vibration reductions in excess of 50dB were obtained through experimentation and over 100dB using ANSYS, demonstrating the ability to model this system with a finite element model. This report also proposes a method to use distributed quartz accelerometers to evaluate the location, direction, and energy of impacts on the NPS space truss using the DSPACE data acquisition and processing system to capture the structural response and compare it to known reference Signals.
author2 Shin, Young S.
author_facet Shin, Young S.
Barney, Timothy A.
author Barney, Timothy A.
spellingShingle Barney, Timothy A.
Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.
author_sort Barney, Timothy A.
title Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.
title_short Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.
title_full Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.
title_fullStr Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.
title_full_unstemmed Adaptive Multi-Layer LMS controller design and its active vibration suppression on a Space Truss.
title_sort adaptive multi-layer lms controller design and its active vibration suppression on a space truss.
publishDate 2012
url http://hdl.handle.net/10945/10886
work_keys_str_mv AT barneytimothya adaptivemultilayerlmscontrollerdesignanditsactivevibrationsuppressiononaspacetruss
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