A Sampling Load Frequency Control Scheme for Power Systems with Time Delays

In this study, we investigate the effectiveness of a robust sampled-data H∞ load frequency control (LFC) scheme for power systems with randomly occurring time-varying delays. By using the input-delay technique, the sampled-data LFC model is reformulated as a continuous time-delay representation. The...

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Main Authors: R. Sriraman, Jihad A. Younis, C. P. Lim, P. Hammachukiattikul, G. Rajchakit, N. Boonsatit
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2022/3878321
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author R. Sriraman
Jihad A. Younis
C. P. Lim
P. Hammachukiattikul
G. Rajchakit
N. Boonsatit
author_facet R. Sriraman
Jihad A. Younis
C. P. Lim
P. Hammachukiattikul
G. Rajchakit
N. Boonsatit
author_sort R. Sriraman
collection DOAJ
description In this study, we investigate the effectiveness of a robust sampled-data H∞ load frequency control (LFC) scheme for power systems with randomly occurring time-varying delays. By using the input-delay technique, the sampled-data LFC model is reformulated as a continuous time-delay representation. Then, Bernoulli-distributed white noise sequences are used to describe randomly occurring time-varying delays in the sampled-data LFC model. Some less conservative conditions are achieved by utilizing the Lyapunov–Krasovskii functional (LKF) and employing Jensen inequality and reciprocal convex combination lemma to ensure the considered power system has mean-square asymptotic stability under the designed control scheme. The derived results are based on linear matrix inequalities (LMIs) that can readily be solved using the MATLAB LMI toolbox. The criteria obtained are used to analyze the upper bounds for time delays, and a comparison study to validate the efficacy of the presented method is presented.
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issn 1099-0526
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publishDate 2022-01-01
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series Complexity
spelling doaj-art-e4191fa378844789b7e025f2f1d2d8172025-08-20T02:21:34ZengWileyComplexity1099-05262022-01-01202210.1155/2022/3878321A Sampling Load Frequency Control Scheme for Power Systems with Time DelaysR. Sriraman0Jihad A. Younis1C. P. Lim2P. Hammachukiattikul3G. Rajchakit4N. Boonsatit5Department of MathematicsDepartment of MathematicsInstitute for Intelligent Systems Research and InnovationDepartment of MathematicsDepartment of MathematicsDepartment of MathematicsIn this study, we investigate the effectiveness of a robust sampled-data H∞ load frequency control (LFC) scheme for power systems with randomly occurring time-varying delays. By using the input-delay technique, the sampled-data LFC model is reformulated as a continuous time-delay representation. Then, Bernoulli-distributed white noise sequences are used to describe randomly occurring time-varying delays in the sampled-data LFC model. Some less conservative conditions are achieved by utilizing the Lyapunov–Krasovskii functional (LKF) and employing Jensen inequality and reciprocal convex combination lemma to ensure the considered power system has mean-square asymptotic stability under the designed control scheme. The derived results are based on linear matrix inequalities (LMIs) that can readily be solved using the MATLAB LMI toolbox. The criteria obtained are used to analyze the upper bounds for time delays, and a comparison study to validate the efficacy of the presented method is presented.http://dx.doi.org/10.1155/2022/3878321
spellingShingle R. Sriraman
Jihad A. Younis
C. P. Lim
P. Hammachukiattikul
G. Rajchakit
N. Boonsatit
A Sampling Load Frequency Control Scheme for Power Systems with Time Delays
Complexity
title A Sampling Load Frequency Control Scheme for Power Systems with Time Delays
title_full A Sampling Load Frequency Control Scheme for Power Systems with Time Delays
title_fullStr A Sampling Load Frequency Control Scheme for Power Systems with Time Delays
title_full_unstemmed A Sampling Load Frequency Control Scheme for Power Systems with Time Delays
title_short A Sampling Load Frequency Control Scheme for Power Systems with Time Delays
title_sort sampling load frequency control scheme for power systems with time delays
url http://dx.doi.org/10.1155/2022/3878321
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