Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.

In this paper, a modified form of the Proportional Integral Derivative (PID) controller known as the Integral- Proportional Derivative (I-PD) controller is developed for Automatic Generation Control (AGC) of the two-area multi-source Interconnected Power System (IPS). Fitness Dependent Optimizer (FD...

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Main Authors: Amil Daraz, Suheel Abdullah Malik, Ihsan Ul Haq, Khan Bahadar Khan, Ghulam Fareed Laghari, Farhan Zafar
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0242428
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spelling doaj-7513509f744c483db1a8bcd0a49a3b9b2021-03-04T12:28:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-011511e024242810.1371/journal.pone.0242428Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.Amil DarazSuheel Abdullah MalikIhsan Ul HaqKhan Bahadar KhanGhulam Fareed LaghariFarhan ZafarIn this paper, a modified form of the Proportional Integral Derivative (PID) controller known as the Integral- Proportional Derivative (I-PD) controller is developed for Automatic Generation Control (AGC) of the two-area multi-source Interconnected Power System (IPS). Fitness Dependent Optimizer (FDO) algorithm is employed for the optimization of proposed controller with various performance criteria including Integral of Absolute Error (IAE), Integral of Time multiplied Absolute Error (ITAE), Integral of Time multiplied Square Error (ITSE), and Integral Square Error (ISE). The effectiveness of the proposed approach has been assessed on a two-area network with individual source including gas, hydro and reheat thermal unit and then collectively with all three sources. Further, to validate the efficacy of the proposed FDO based PID and I-PD controllers, comprehensive comparative performance is carried and compared with other controllers including Differential Evolution based PID (DE-PID) controller and Teaching Learning Based Optimization (TLBO) hybridized with Local Unimodal Sampling (LUS-PID) controller. The comparison of outcomes reveal that the proposed FDO based I-PD (FDO-I-PD) controller provides a significant improvement in respect of Overshoot (Osh), Settling time (Ts), and Undershoot (Ush). The robustness of an I-PD controller is also verified by varying parameter of the system and load variation.https://doi.org/10.1371/journal.pone.0242428
collection DOAJ
language English
format Article
sources DOAJ
author Amil Daraz
Suheel Abdullah Malik
Ihsan Ul Haq
Khan Bahadar Khan
Ghulam Fareed Laghari
Farhan Zafar
spellingShingle Amil Daraz
Suheel Abdullah Malik
Ihsan Ul Haq
Khan Bahadar Khan
Ghulam Fareed Laghari
Farhan Zafar
Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
PLoS ONE
author_facet Amil Daraz
Suheel Abdullah Malik
Ihsan Ul Haq
Khan Bahadar Khan
Ghulam Fareed Laghari
Farhan Zafar
author_sort Amil Daraz
title Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
title_short Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
title_full Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
title_fullStr Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
title_full_unstemmed Modified PID controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
title_sort modified pid controller for automatic generation control of multi-source interconnected power system using fitness dependent optimizer algorithm.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description In this paper, a modified form of the Proportional Integral Derivative (PID) controller known as the Integral- Proportional Derivative (I-PD) controller is developed for Automatic Generation Control (AGC) of the two-area multi-source Interconnected Power System (IPS). Fitness Dependent Optimizer (FDO) algorithm is employed for the optimization of proposed controller with various performance criteria including Integral of Absolute Error (IAE), Integral of Time multiplied Absolute Error (ITAE), Integral of Time multiplied Square Error (ITSE), and Integral Square Error (ISE). The effectiveness of the proposed approach has been assessed on a two-area network with individual source including gas, hydro and reheat thermal unit and then collectively with all three sources. Further, to validate the efficacy of the proposed FDO based PID and I-PD controllers, comprehensive comparative performance is carried and compared with other controllers including Differential Evolution based PID (DE-PID) controller and Teaching Learning Based Optimization (TLBO) hybridized with Local Unimodal Sampling (LUS-PID) controller. The comparison of outcomes reveal that the proposed FDO based I-PD (FDO-I-PD) controller provides a significant improvement in respect of Overshoot (Osh), Settling time (Ts), and Undershoot (Ush). The robustness of an I-PD controller is also verified by varying parameter of the system and load variation.
url https://doi.org/10.1371/journal.pone.0242428
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