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机构地区:[1]广东工业大学自动化学院,广东广州510006
出 处:《现代电力》2015年第5期66-72,共7页Modern Electric Power
基 金:国家自然科学基金项目(50767001);国家高技术研究发展计划(863计划)项目(2007AA04Z197);广东自然科学基金项目(S2013010012431);广东省高等学校人才引进专项资金项目;广东省高等院校学科建设专项资金科技创新项目(2012KJCX0045)
摘 要:随着智能电网的建设,大量分布式电源引入配电网后,配电网的供电情况发生了很大的变化,对其故障自愈策略也越来越重视。本文在计及风、光伏发电和负荷功率的随机性的基础上,建立最优孤岛划分模型,找出配电网各负荷点的可靠性指标的计算方法,并使用蒙特卡洛对配电网可靠性进行求解。最后通过对IEEE-RBTS BUS 6系统进行分析,验证对含DG配电网采用最优孤岛划分的意义和其对系统可靠性评估的影响。本文从供电可靠性的角度,对含DG配电网的孤岛划分进行分析,为全面地评估含DG配电网供电可靠性和配电网故障自愈策略的制定提供了一定的理论依据。With the development of smart grid, a large num- ber of distributed generations are connected to distribution network, which cause great changes in the power supply sit- uation of distribution network, so the fault self - healing strategy is becoming more and more important. Based on the randomness characteristics of the load power, and wind and photovoltaic power generation, the optimal island partitio- ning model is built. In addition, the calculation method of reliability index on each load bus in distribution network is proposed, and the Monte Carlo method is used to solve the reliability index of distribution network. In the end, through analyzing the IEEE- RBTS BUS 6 system, the va- lidity of the application of optimal island partitioning meth- od to distribution network with DGs and its impact on relia-bility evaluation of distribution network are studied. In this paper, from the aspect of the power supply reliability, the is- land partitioning of distribution network with DGs is evaluated quantitatively, which provides certain theoretical basis for eval- uating the power supply reliability of distribution network with DG and determining relative fault self- healing strategy.
关 键 词:配电网 分布式电源 最优孤岛划分 可靠性评估 蒙特卡洛法
分 类 号:TM732[电气工程—电力系统及自动化]
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