Sitting and sizing of DG in distribution network to improve of several parameters by PSO algorithm
Distributed Generation (DG) generally means power generation in consumption locality. But sometimes, it told technologies that use renewable energies for power generation. This paper presents a method for optimal sitting and sizing of DG in distribution systems. In this paper, our aim would be optim...
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creator | Sedighi, M Igderi, A Dankoob, A Abedi, S M |
description | Distributed Generation (DG) generally means power generation in consumption locality. But sometimes, it told technologies that use renewable energies for power generation. This paper presents a method for optimal sitting and sizing of DG in distribution systems. In this paper, our aim would be optimal distributed generation allocation and sizing for several parameters, include: voltage profile improvement, loss reduction, and THD (Total Harmonic Distortion) reduction in distribution networks. Particle Swarm Optimization (PSO) is used as the solving tool, which referring determined aim, the problem is defined and the objective function is introduced. Considering the fitness values sensitivity in PSO algorithm process, it is needed to apply load flow and harmonic calculations for decision-making. Finally, the feasibility of the proposed method is demonstrated for typical distribution network, and it is compared with the GA method in terms of the solution quality and computation efficiency. The experimental results show that the proposed PSO method is indeed capable of obtaining higher quality solutions efficiently. |
doi_str_mv | 10.1109/ICMET.2010.5598418 |
format | Conference Proceeding |
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But sometimes, it told technologies that use renewable energies for power generation. This paper presents a method for optimal sitting and sizing of DG in distribution systems. In this paper, our aim would be optimal distributed generation allocation and sizing for several parameters, include: voltage profile improvement, loss reduction, and THD (Total Harmonic Distortion) reduction in distribution networks. Particle Swarm Optimization (PSO) is used as the solving tool, which referring determined aim, the problem is defined and the objective function is introduced. Considering the fitness values sensitivity in PSO algorithm process, it is needed to apply load flow and harmonic calculations for decision-making. Finally, the feasibility of the proposed method is demonstrated for typical distribution network, and it is compared with the GA method in terms of the solution quality and computation efficiency. 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But sometimes, it told technologies that use renewable energies for power generation. This paper presents a method for optimal sitting and sizing of DG in distribution systems. In this paper, our aim would be optimal distributed generation allocation and sizing for several parameters, include: voltage profile improvement, loss reduction, and THD (Total Harmonic Distortion) reduction in distribution networks. Particle Swarm Optimization (PSO) is used as the solving tool, which referring determined aim, the problem is defined and the objective function is introduced. Considering the fitness values sensitivity in PSO algorithm process, it is needed to apply load flow and harmonic calculations for decision-making. Finally, the feasibility of the proposed method is demonstrated for typical distribution network, and it is compared with the GA method in terms of the solution quality and computation efficiency. The experimental results show that the proposed PSO method is indeed capable of obtaining higher quality solutions efficiently.</description><subject>component</subject><subject>Distributed Generation(DG)</subject><subject>Lead</subject><subject>Losses</subject><subject>PSO</subject><subject>THD</subject><subject>Voltage Profile</subject><isbn>9781424481002</isbn><isbn>1424481007</isbn><isbn>9781424481026</isbn><isbn>1424481023</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2010</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNpVUM1OwzAYC0JIoNEXgEteoCO_bXJEZYxJQ0Na71O6fhmBtpmSMDSenk7sgi-2ZcsHI3RHyZRSoh8W1eusnjIyeim1ElRdoEyXigomhKKEFZf_PGHXKIvxg4wQkhVM36Bm7VJyww6bocXR_Zykt_hpjt2AWxdTcM1Xcn7AA6RvHz5x8tj1--APcCpGOEAwHd6bYHpIECJujvhtvcKm2_ng0nt_i66s6SJkZ56g-nlWVy_5cjVfVI_L3GmS8oYIC9wWtihpK6BlDDhpuWENCOBbJQvCVcn5VlIKVkjLSzvmUnELhGjgE3T_N-sAYLMPrjfhuDkfw38B5c5Xfg</recordid><startdate>201009</startdate><enddate>201009</enddate><creator>Sedighi, M</creator><creator>Igderi, A</creator><creator>Dankoob, A</creator><creator>Abedi, S M</creator><general>IEEE</general><scope>6IE</scope><scope>6IL</scope><scope>CBEJK</scope><scope>RIE</scope><scope>RIL</scope></search><sort><creationdate>201009</creationdate><title>Sitting and sizing of DG in distribution network to improve of several parameters by PSO algorithm</title><author>Sedighi, M ; Igderi, A ; Dankoob, A ; Abedi, S M</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-i90t-b04fe3f6f671d4ed22e30d3a2be4e3c856038733c511ef45f37f0d3583fe009e3</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2010</creationdate><topic>component</topic><topic>Distributed Generation(DG)</topic><topic>Lead</topic><topic>Losses</topic><topic>PSO</topic><topic>THD</topic><topic>Voltage Profile</topic><toplevel>online_resources</toplevel><creatorcontrib>Sedighi, M</creatorcontrib><creatorcontrib>Igderi, A</creatorcontrib><creatorcontrib>Dankoob, A</creatorcontrib><creatorcontrib>Abedi, S M</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE Electronic Library (IEL)</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Sedighi, M</au><au>Igderi, A</au><au>Dankoob, A</au><au>Abedi, S M</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Sitting and sizing of DG in distribution network to improve of several parameters by PSO algorithm</atitle><btitle>2010 International Conference on Mechanical and Electrical Technology</btitle><stitle>ICMET</stitle><date>2010-09</date><risdate>2010</risdate><spage>533</spage><epage>538</epage><pages>533-538</pages><isbn>9781424481002</isbn><isbn>1424481007</isbn><eisbn>9781424481026</eisbn><eisbn>1424481023</eisbn><abstract>Distributed Generation (DG) generally means power generation in consumption locality. But sometimes, it told technologies that use renewable energies for power generation. This paper presents a method for optimal sitting and sizing of DG in distribution systems. In this paper, our aim would be optimal distributed generation allocation and sizing for several parameters, include: voltage profile improvement, loss reduction, and THD (Total Harmonic Distortion) reduction in distribution networks. Particle Swarm Optimization (PSO) is used as the solving tool, which referring determined aim, the problem is defined and the objective function is introduced. Considering the fitness values sensitivity in PSO algorithm process, it is needed to apply load flow and harmonic calculations for decision-making. Finally, the feasibility of the proposed method is demonstrated for typical distribution network, and it is compared with the GA method in terms of the solution quality and computation efficiency. The experimental results show that the proposed PSO method is indeed capable of obtaining higher quality solutions efficiently.</abstract><pub>IEEE</pub><doi>10.1109/ICMET.2010.5598418</doi><tpages>6</tpages></addata></record> |
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subjects | component Distributed Generation(DG) Lead Losses PSO THD Voltage Profile |
title | Sitting and sizing of DG in distribution network to improve of several parameters by PSO algorithm |
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