Frequency interval balanced truncation of discrete-time bilinear systems
This paper presents the development of a new model reduction method for discrete-time bilinear systems based on the balanced truncation framework. In many model reduction applications, it is advantageous to analyze the characteristics of the system with emphasis on particular frequency intervals of...
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Online Access: | http://dx.doi.org/10.1080/23311916.2016.1203082 |
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doaj-36e3ab24dbb540b4920a68f188b37f392021-01-15T14:43:42ZengTaylor & Francis GroupCogent Engineering2331-19162016-12-013110.1080/23311916.2016.12030821203082Frequency interval balanced truncation of discrete-time bilinear systemsAhmad Jazlan0Victor Sreeram1Hamid Reza Shaker2Roberto Togneri3University of Western AustraliaUniversity of Western AustraliaUniversity of Southern DenmarkUniversity of Western AustraliaThis paper presents the development of a new model reduction method for discrete-time bilinear systems based on the balanced truncation framework. In many model reduction applications, it is advantageous to analyze the characteristics of the system with emphasis on particular frequency intervals of interest. In order to analyze the degree of controllability and observability of discrete-time bilinear systems with emphasis on particular frequency intervals of interest, new generalized frequency interval controllability and observability gramians are introduced in this paper. These gramians are the solution to a pair of new generalized Lyapunov equations. The conditions for solvability of these new generalized Lyapunov equations are derived and a numerical solution method for solving these generalized Lyapunov equations is presented. Numerical examples which illustrate the usage of the new generalized frequency interval controllability and observability gramians as part of the balanced truncation framework are provided to demonstrate the performance of the proposed method.http://dx.doi.org/10.1080/23311916.2016.1203082model reductionbilinear systemsbalanced truncationfrequency interval gramiansfinite frequency interval |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ahmad Jazlan Victor Sreeram Hamid Reza Shaker Roberto Togneri |
spellingShingle |
Ahmad Jazlan Victor Sreeram Hamid Reza Shaker Roberto Togneri Frequency interval balanced truncation of discrete-time bilinear systems Cogent Engineering model reduction bilinear systems balanced truncation frequency interval gramians finite frequency interval |
author_facet |
Ahmad Jazlan Victor Sreeram Hamid Reza Shaker Roberto Togneri |
author_sort |
Ahmad Jazlan |
title |
Frequency interval balanced truncation of discrete-time bilinear systems |
title_short |
Frequency interval balanced truncation of discrete-time bilinear systems |
title_full |
Frequency interval balanced truncation of discrete-time bilinear systems |
title_fullStr |
Frequency interval balanced truncation of discrete-time bilinear systems |
title_full_unstemmed |
Frequency interval balanced truncation of discrete-time bilinear systems |
title_sort |
frequency interval balanced truncation of discrete-time bilinear systems |
publisher |
Taylor & Francis Group |
series |
Cogent Engineering |
issn |
2331-1916 |
publishDate |
2016-12-01 |
description |
This paper presents the development of a new model reduction method for discrete-time bilinear systems based on the balanced truncation framework. In many model reduction applications, it is advantageous to analyze the characteristics of the system with emphasis on particular frequency intervals of interest. In order to analyze the degree of controllability and observability of discrete-time bilinear systems with emphasis on particular frequency intervals of interest, new generalized frequency interval controllability and observability gramians are introduced in this paper. These gramians are the solution to a pair of new generalized Lyapunov equations. The conditions for solvability of these new generalized Lyapunov equations are derived and a numerical solution method for solving these generalized Lyapunov equations is presented. Numerical examples which illustrate the usage of the new generalized frequency interval controllability and observability gramians as part of the balanced truncation framework are provided to demonstrate the performance of the proposed method. |
topic |
model reduction bilinear systems balanced truncation frequency interval gramians finite frequency interval |
url |
http://dx.doi.org/10.1080/23311916.2016.1203082 |
work_keys_str_mv |
AT ahmadjazlan frequencyintervalbalancedtruncationofdiscretetimebilinearsystems AT victorsreeram frequencyintervalbalancedtruncationofdiscretetimebilinearsystems AT hamidrezashaker frequencyintervalbalancedtruncationofdiscretetimebilinearsystems AT robertotogneri frequencyintervalbalancedtruncationofdiscretetimebilinearsystems |
_version_ |
1724336814400995328 |