|本期目录/Table of Contents|

[1]毛璐明,杨玉群.考虑负荷重要性的微电网电源容量优化配置[J].工业仪表与自动化装置,2016,(06):62-65.
 MAO Luming,YANG Yuqun.Micro-grid generation capacity optimization with consideration of load importance[J].Industrial Instrumentation & Automation,2016,(06):62-65.
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考虑负荷重要性的微电网电源容量优化配置(PDF)

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2016年06期
页码:
62-65
栏目:
出版日期:
2016-12-15

文章信息/Info

Title:
Micro-grid generation capacity optimization with consideration of load importance
文章编号:
1000-0682(2016)06-0000-00
作者:
毛璐明杨玉群
(陕西省电力公司经济技术研究院,西安 710065)
Author(s):
MAO LumingYANG Yuqun
(State Grid Shaanxi Economic Research Institute, Xi,an 710065, China)
关键词:
微电网分布式发电电源规划粒子群算法
Keywords:
micro grid distributed generation(DG) power system planning particle swarm optimization (PSO) algorithm
分类号:
TM621.3
DOI:
-
文献标志码:
A
摘要:
微电网内负荷分为重要负荷和可中断负荷,该文采用粒子群优化算法,在根据负荷特性的分布式电源选址基础上,对并网运行的高渗透微电网和低渗透微电网进行电源容量优化,并考虑电压水平、微电网对大电网的渗透性、分布式电源容量的限制,采用分布式电源折算到每年的建设费用、运行维护费用、向上级大电网售电或购电费用、网络损耗费用的经济性模型。该模型符合现实优化要求,算法求解效率高,其结果更具有实用性和经济性,对实际的微电网规划具有一定的指导意义。
Abstract:
-

参考文献/References:

[1] Smallwood C L.Distributed Generation in Autonomous and Non-Autonomous Micro Grids[J].Rural Electric Power Conference,2002,1002299.

[2] Nigim K A,Wei-Jen Lee.Micro Grid Integration Opportunities and Challanges[J].Power Engineering Society General Meeting,2007,385669:1-6.
[3] 黄伟,孙昶辉,吴子平,等.含分布式发电系统的微网技术研究综述[J].电网技术,2009,33(9):14-18.
[4] Koichi Nara, Yasuhiro Hayashi, Kazushige Ikeda,et al. Application of Tabu Search to Optimal Placement of Distributed Generators[C]. Power Engineering Society Winter Meeting, 2001,918-923.
[5] M Gandomkar,M Vakilian,M Ehsan.Optimal Distributed Generation Allocation in Distribution Network Using Hereford Ranch Algorithm[C].Electrical Machines and Systems,2005.Proceedings of the Eighth International Conference, 2005:916-918.
[6] M F AlHajri, M R AlRashidi, M E El-Hawary. Hybrid Particle Swarm Optimization Approach for Optimal Distribution Generation Sizing and Allocation in Distribution Systems[C].Electrical and Computer Engineering,CCECE, 2007:1290-1293.
[7] Hamid Falaghi. ACO Based Algorithm for Distributed Generation Sources Allocation and Sizing in Distribution Systems[J].Power Tech,IEEE Lausanne, 2007(7):555–560.
[8] 刘煌煌,雷金勇,蔡润庆,等.基于SVM-MOPSO混合智能算法的配电网分布式电源规划[J].电力系统保护与控制,2014,42(10):46-54.
[9] 邱晓燕,夏莉丽,李兴源,等.智能电网建设中分布式电源的规划[J].电网技术,2010,34(4):7-10.
[10] 吴涛涛,赵宏伟,李伟.基于分布式电源的孤立系统规划初探[J].继电器,2007,35(8):31-35.
[11] 胡文杰,周渝慧.高渗透率下微电网潮流计算及其运行的多目标优化[D].北京:北京交通大学,2010.
[12] 吴涛涛,赵宏伟,李伟.基于分布式电源的孤立系统规划初探[J].继电器,2007,35(8):31-35.
[13] 撖奥洋,邓星,文明浩,等.高渗透率下大电网应对微网接入的策略[J].电力系统自动化,2010,34(1):78-83.
[14] 张佳佳,陈金富,范荣奇.微网高渗透对电网稳定性的影响分析[J].电力科学与技术学报,2009,24(1):25-29.
[15] 胡学浩.分布式发电与微型电网技术[J].电气时代, 2008:77-78.[16] 纪震,廖惠连,吴青华.粒子群算法及其应用[M].北京:科学出版社,2009.

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备注/Memo

备注/Memo:
收稿日期:2016-08-05
作者简介:毛璐明(1985),女,河北肃宁人,研究方向电网工程技术经济研究。
更新日期/Last Update: 1900-01-01