Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm

In this paper, an efficient meta-heuristic satin bowerbird optimization (SBO) algorithm is presented for congestion management (CM) in the deregulated power system. The main objective of CM is to relieve congestion in the transmission lines using a generation rescheduling-based approach, while satis...

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Main Authors: Jagadeeswar Reddy Chintam, Mary Daniel
Format: Article
Language:English
Published: MDPI AG 2018-01-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/1/183
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spelling doaj-8eb54695741747d18b71ccb0298eeac32020-11-24T21:00:35ZengMDPI AGEnergies1996-10732018-01-0111118310.3390/en11010183en11010183Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization AlgorithmJagadeeswar Reddy Chintam0Mary Daniel1Electrical and Electronics Engineering, Government College of Technology, Coimbatore, Tamilnadu 641013, IndiaElectrical and Electronics Engineering, Government College of Technology, Coimbatore, Tamilnadu 641013, IndiaIn this paper, an efficient meta-heuristic satin bowerbird optimization (SBO) algorithm is presented for congestion management (CM) in the deregulated power system. The main objective of CM is to relieve congestion in the transmission lines using a generation rescheduling-based approach, while satisfying all the constraints with minimum congestion cost. The SBO is a nature-inspired algorithm, developed based on the ‘male-attracts-the-female for breeding’ principle of the specialized stick structure mechanism of satin birds. The proposed approach is effectively tested on small and large test systems, namely, modified IEEE 30-bus, modified IEEE 57-bus, and IEEE 118-bus test systems. The constraints like line loading, line limits, generator limits, and bus voltage impact, etc., are incorporated into this study. The proposed technique gives superior results with regards to congestion cost and losses compared with various recent optimization algorithms.http://www.mdpi.com/1996-1073/11/1/183congestion managementderegulationoptimal power flowgenerator reschedulingsatin bowerbird optimizer
collection DOAJ
language English
format Article
sources DOAJ
author Jagadeeswar Reddy Chintam
Mary Daniel
spellingShingle Jagadeeswar Reddy Chintam
Mary Daniel
Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm
Energies
congestion management
deregulation
optimal power flow
generator rescheduling
satin bowerbird optimizer
author_facet Jagadeeswar Reddy Chintam
Mary Daniel
author_sort Jagadeeswar Reddy Chintam
title Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm
title_short Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm
title_full Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm
title_fullStr Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm
title_full_unstemmed Real-Power Rescheduling of Generators for Congestion Management Using a Novel Satin Bowerbird Optimization Algorithm
title_sort real-power rescheduling of generators for congestion management using a novel satin bowerbird optimization algorithm
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-01-01
description In this paper, an efficient meta-heuristic satin bowerbird optimization (SBO) algorithm is presented for congestion management (CM) in the deregulated power system. The main objective of CM is to relieve congestion in the transmission lines using a generation rescheduling-based approach, while satisfying all the constraints with minimum congestion cost. The SBO is a nature-inspired algorithm, developed based on the ‘male-attracts-the-female for breeding’ principle of the specialized stick structure mechanism of satin birds. The proposed approach is effectively tested on small and large test systems, namely, modified IEEE 30-bus, modified IEEE 57-bus, and IEEE 118-bus test systems. The constraints like line loading, line limits, generator limits, and bus voltage impact, etc., are incorporated into this study. The proposed technique gives superior results with regards to congestion cost and losses compared with various recent optimization algorithms.
topic congestion management
deregulation
optimal power flow
generator rescheduling
satin bowerbird optimizer
url http://www.mdpi.com/1996-1073/11/1/183
work_keys_str_mv AT jagadeeswarreddychintam realpowerreschedulingofgeneratorsforcongestionmanagementusinganovelsatinbowerbirdoptimizationalgorithm
AT marydaniel realpowerreschedulingofgeneratorsforcongestionmanagementusinganovelsatinbowerbirdoptimizationalgorithm
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