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A New Hybrid Particle Swarm Optimization for Optimal Coordination of Over Current Relay

Author:
محسن بشیر
,
مجید تقی زاده
,
جواد ساده
,
حبیب رجبی مشهدی
,
mohsen bashir
,
majid taghizadeh
,
Javad Sadeh
,
Habib Rajabi Mashhadi
Year
: 2010
Abstract: Directional over current relays (DOCRs)

coordination problem is a nonlinear and nonconvex problem

which has many constraints. Optimal coordination of over

current relays has been usually solved using linear and nonlinear

programming. Also genetic algorithm and particle swarm

optimization methods are used to fined the optimal solution of the

problem. In this paper a new hybrid approach will be used for

optimal coordination of over current relays. In this work, both

time setting multiplier (TMS) and current setting (IP) are taken

into account in the optimization procedure. The former is

consider as a continues parameter and the later is assumed to be

discrete parameter. The novelty of this paper is that quantizing IP

parameter is taken into account as a part of optimization

producer in the particle swarm optimization iterations. After

that, we can calculate the optimum TMS with linear

programming at the end of each iteration of PSO optimization

algorithm. To increase the accuracy of proposed algorithm, first

particle positions of swarms was calculated with linear

approaches. Both near-end and far-end faults are taken into

account in the constraint of the optimal coordination problem

and the results are compared with the other methods. The

obtained results are quite encouraging and will be useful as an

effective method for coordination of over current relays.
URI: http://libsearch.um.ac.ir:80/fum/handle/fum/3377636
Keyword(s): Over current relay,hybrid PSO,linear

programming
,
relay coordination
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    A New Hybrid Particle Swarm Optimization for Optimal Coordination of Over Current Relay

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contributor authorمحسن بشیرen
contributor authorمجید تقی زادهen
contributor authorجواد سادهen
contributor authorحبیب رجبی مشهدیen
contributor authormohsen bashirfa
contributor authormajid taghizadehfa
contributor authorJavad Sadehfa
contributor authorHabib Rajabi Mashhadifa
date accessioned2020-06-06T13:59:13Z
date available2020-06-06T13:59:13Z
date copyright10/24/2010
date issued2010
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3377636
description abstractDirectional over current relays (DOCRs)

coordination problem is a nonlinear and nonconvex problem

which has many constraints. Optimal coordination of over

current relays has been usually solved using linear and nonlinear

programming. Also genetic algorithm and particle swarm

optimization methods are used to fined the optimal solution of the

problem. In this paper a new hybrid approach will be used for

optimal coordination of over current relays. In this work, both

time setting multiplier (TMS) and current setting (IP) are taken

into account in the optimization procedure. The former is

consider as a continues parameter and the later is assumed to be

discrete parameter. The novelty of this paper is that quantizing IP

parameter is taken into account as a part of optimization

producer in the particle swarm optimization iterations. After

that, we can calculate the optimum TMS with linear

programming at the end of each iteration of PSO optimization

algorithm. To increase the accuracy of proposed algorithm, first

particle positions of swarms was calculated with linear

approaches. Both near-end and far-end faults are taken into

account in the constraint of the optimal coordination problem

and the results are compared with the other methods. The

obtained results are quite encouraging and will be useful as an

effective method for coordination of over current relays.
en
languageEnglish
titleA New Hybrid Particle Swarm Optimization for Optimal Coordination of Over Current Relayen
typeConference Paper
contenttypeExternal Fulltext
subject keywordsOver current relayen
subject keywordshybrid PSOen
subject keywordslinear

programming
en
subject keywordsrelay coordinationen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1018162.html
conference title2010 International Conference on Power System Technologyen
conference locationHangzhoufa
identifier articleid1018162
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