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考虑光伏接入不确定性的主动配电网有功无功可控资源优化配置

李斌 吕林 刘友波 刘俊勇 陈金祥 向月 张逸 韩为超

电网技术2017,Vol.41Issue(2):355-362,8.
电网技术2017,Vol.41Issue(2):355-362,8.DOI:10.13335/j.1000-3673.pst.2016.2431

考虑光伏接入不确定性的主动配电网有功无功可控资源优化配置

Optimal Configuration of Controllable Active-Reactive Power Resources in Active Distribution Network Considering Photovoltaic Access Uncertainty

李斌 1吕林 1刘友波 1刘俊勇 1陈金祥 2向月 1张逸 2韩为超1

作者信息

  • 1. 四川大学 电气信息学院,四川省 成都市 610065
  • 2. 国网福建省电力有限公司电力科学研究院,福建省 福州市 350007
  • 折叠

摘要

Abstract

Considering influence of photovoltaic access uncertainty on active distribution network,theuncertainty was analyzed and modeled. Probabilistic scenario modeling optimal multi-states was usedtoextract representative time-series scenarioswithphotovoltaic-load continuous probability density function. Based on these representative time-series scenarios, voltage quality, economic efficiency and autonomy ability,i.e. the most important performance factors of planning and operation in active distribution network,werequantifiedusing FAHP(Fuzzy Analytic Hierarchy Process). Using bi-level chance constrained programming, this paper builtoptimal allocation model of controllable active-reactive power resources in allusion to photovoltaic accessuncertainty.The modelwas solvedwithchaotic swarm optimization algorithm withembedded chance constraintto achieve timing operation and configuration of coordinated deployment of micro-turbines and capacitors. An actual feeder example verified effectiveness and practicability of the proposed modelwithimproved calculation accuracy.

关键词

光伏接入的不确定性/主动配电网/最优多状态/区域自治能力/双层规划

Key words

uncertainty of photovoltaic access/active distribution network/optimal multi-states model/regional autonomy/bi-level programming

分类

信息技术与安全科学

引用本文复制引用

李斌,吕林,刘友波,刘俊勇,陈金祥,向月,张逸,韩为超..考虑光伏接入不确定性的主动配电网有功无功可控资源优化配置[J].电网技术,2017,41(2):355-362,8.

基金项目

国家高技术发展研究计划(863项目)(2014AA051901);四川省电力电子节能技术与装备重点实验室开放基金项目(szjj2014-012)。National High Technology Research and Development Program(863 Program)(2014AA051901) (863项目)

Key Laboratory Fund Project of Power Electronic Energy-Saving Technology and Equipment of Sichuan Province (szjj2014-012) (szjj2014-012)

电网技术

OA北大核心CSCDCSTPCD

1000-3673

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