Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units

This paper presents a novel improved firefly algorithm (IFA) to deal the problem of the optimal operation of thermal generating units (OOTGU) with the purpose of reducing the total electricity generation fuel cost. The proposed IFA is developed based on combining three improvements. The first is to...

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Main Authors: Thang Trung Nguyen, Nguyen Vu Quynh, Le Van Dai
Format: Article
Language:English
Published: Hindawi-Wiley 2018-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2018/7267593
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spelling doaj-7d328f442bcf4c178dbfb98b2537528b2020-11-25T02:27:42ZengHindawi-WileyComplexity1076-27871099-05262018-01-01201810.1155/2018/72675937267593Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating UnitsThang Trung Nguyen0Nguyen Vu Quynh1Le Van Dai2Power System Optimization Research Group, Faculty of Electrical and Electronics Engineering, Ton Duc Thang University, Ho Chi Minh City 700000, VietnamDepartment of Electromechanical and Electronic, Lac Hong University, Đồng Nai Province, Biên Hòa 810000, VietnamInstitute of Research and Development, Duy Tan University, Da Nang 55000, VietnamThis paper presents a novel improved firefly algorithm (IFA) to deal the problem of the optimal operation of thermal generating units (OOTGU) with the purpose of reducing the total electricity generation fuel cost. The proposed IFA is developed based on combining three improvements. The first is to be based on the radius between two solutions, the second is updated step size for each considered solution based on different new equations, and the third is to slightly modify a formula producing new solutions by using normally distributed random numbers and canceling uniform random numbers of conventional firefly algorithm (FA). The effect of each proposed improvement on IFA is investigated by executing five benchmark functions and two different systems. The performance of IFA is investigated on six other study cases consisting of different types of objective function and complex level of constraints. The objective function considers single fuel with quadratic form and nonconvex form, and multifuels with the sum of several quadratic and nonconvex functions while a set of constraints taken into account are power loss, prohibited zone, ramp rate limit, spinning reserve, and all constraints in transmission power networks. The obtained results indicate the proposed improvements in terms of high optimal solution quality, stabilization of search ability, and fast convergence compared with FA. In addition, the comparisons with other methods also lead to a conclusion that the proposed method is a very promising optimization tool for systems with quadratic fuel cost function and with complicated constraints.http://dx.doi.org/10.1155/2018/7267593
collection DOAJ
language English
format Article
sources DOAJ
author Thang Trung Nguyen
Nguyen Vu Quynh
Le Van Dai
spellingShingle Thang Trung Nguyen
Nguyen Vu Quynh
Le Van Dai
Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units
Complexity
author_facet Thang Trung Nguyen
Nguyen Vu Quynh
Le Van Dai
author_sort Thang Trung Nguyen
title Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units
title_short Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units
title_full Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units
title_fullStr Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units
title_full_unstemmed Improved Firefly Algorithm: A Novel Method for Optimal Operation of Thermal Generating Units
title_sort improved firefly algorithm: a novel method for optimal operation of thermal generating units
publisher Hindawi-Wiley
series Complexity
issn 1076-2787
1099-0526
publishDate 2018-01-01
description This paper presents a novel improved firefly algorithm (IFA) to deal the problem of the optimal operation of thermal generating units (OOTGU) with the purpose of reducing the total electricity generation fuel cost. The proposed IFA is developed based on combining three improvements. The first is to be based on the radius between two solutions, the second is updated step size for each considered solution based on different new equations, and the third is to slightly modify a formula producing new solutions by using normally distributed random numbers and canceling uniform random numbers of conventional firefly algorithm (FA). The effect of each proposed improvement on IFA is investigated by executing five benchmark functions and two different systems. The performance of IFA is investigated on six other study cases consisting of different types of objective function and complex level of constraints. The objective function considers single fuel with quadratic form and nonconvex form, and multifuels with the sum of several quadratic and nonconvex functions while a set of constraints taken into account are power loss, prohibited zone, ramp rate limit, spinning reserve, and all constraints in transmission power networks. The obtained results indicate the proposed improvements in terms of high optimal solution quality, stabilization of search ability, and fast convergence compared with FA. In addition, the comparisons with other methods also lead to a conclusion that the proposed method is a very promising optimization tool for systems with quadratic fuel cost function and with complicated constraints.
url http://dx.doi.org/10.1155/2018/7267593
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AT levandai improvedfireflyalgorithmanovelmethodforoptimaloperationofthermalgeneratingunits
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