Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique

System Identification Is An Experimental Approach To Determine The Transfer Function Or Equivalent Mathematical Description For The Dynamic Of A System Component By Using A Suitable Input Signal. A Pseudorandom Binary Sequence (PRBS) Signal Of 5 Different Maximum Lengths Sequence Of 15, 31, 63, 127,...

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Main Authors: Rahmat, Mohd. Fua'ad, Yeoh Keat, Hoe, Usman, Sahnius, Abdul Wahab, Norhaliza
Format: Article
Language:English
Published: Penerbit UTM Press 2005
Subjects:
Online Access:http://eprints.utm.my/1808/
http://eprints.utm.my/1808/1/JTJUN42D2.pdf
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author Rahmat, Mohd. Fua'ad
Yeoh Keat, Hoe
Usman, Sahnius
Abdul Wahab, Norhaliza
author_facet Rahmat, Mohd. Fua'ad
Yeoh Keat, Hoe
Usman, Sahnius
Abdul Wahab, Norhaliza
author_sort Rahmat, Mohd. Fua'ad
building UTeM Institutional Repository
collection Online Access
description System Identification Is An Experimental Approach To Determine The Transfer Function Or Equivalent Mathematical Description For The Dynamic Of A System Component By Using A Suitable Input Signal. A Pseudorandom Binary Sequence (PRBS) Signal Of 5 Different Maximum Lengths Sequence Of 15, 31, 63, 127, And 255 Has Been Used As An Input Signal To Determine The Open-Loop And Closed-Loop Model Of A Hot Air Blower System. The Autocorrelation Of The Input Signal And Cross-Correlation Between The Input And Output Signal Is Performed Using The Dynamic Signal Analyzer (DSA) And MATLAB Software. From The Correlograms Of Cross-Correlation And Autocorrelation, The Transfer Function Model Can Be Determined.
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institution Universiti Teknologi Malaysia
institution_category Local University
language English
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publishDate 2005
publisher Penerbit UTM Press
recordtype eprints
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spelling utm-18082017-11-01T04:17:35Z http://eprints.utm.my/1808/ Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique Rahmat, Mohd. Fua'ad Yeoh Keat, Hoe Usman, Sahnius Abdul Wahab, Norhaliza Q Science (General) System Identification Is An Experimental Approach To Determine The Transfer Function Or Equivalent Mathematical Description For The Dynamic Of A System Component By Using A Suitable Input Signal. A Pseudorandom Binary Sequence (PRBS) Signal Of 5 Different Maximum Lengths Sequence Of 15, 31, 63, 127, And 255 Has Been Used As An Input Signal To Determine The Open-Loop And Closed-Loop Model Of A Hot Air Blower System. The Autocorrelation Of The Input Signal And Cross-Correlation Between The Input And Output Signal Is Performed Using The Dynamic Signal Analyzer (DSA) And MATLAB Software. From The Correlograms Of Cross-Correlation And Autocorrelation, The Transfer Function Model Can Be Determined. Penerbit UTM Press 2005-06 Article PeerReviewed application/pdf en http://eprints.utm.my/1808/1/JTJUN42D2.pdf Rahmat, Mohd. Fua'ad and Yeoh Keat, Hoe and Usman, Sahnius and Abdul Wahab, Norhaliza (2005) Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique. Jurnal Teknologi D (42D). pp. 9-22. ISSN 0127-9696 http://www.penerbit.utm.my/cgi-bin/jurnal/artikel.cgi?id=42sirid2
spellingShingle Q Science (General)
Rahmat, Mohd. Fua'ad
Yeoh Keat, Hoe
Usman, Sahnius
Abdul Wahab, Norhaliza
Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique
title Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique
title_full Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique
title_fullStr Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique
title_full_unstemmed Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique
title_short Modelling Of PT326 Hot Air Blower Trainer Kit Using PRBS Signal And Cross-Correlation Technique
title_sort modelling of pt326 hot air blower trainer kit using prbs signal and cross-correlation technique
topic Q Science (General)
url http://eprints.utm.my/1808/
http://eprints.utm.my/1808/
http://eprints.utm.my/1808/1/JTJUN42D2.pdf