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/1808/1/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
collection ePrints
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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spelling utm.eprints-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/1808/1/JTJUN42D2.pdf
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