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NEW CONTROL STRATEGIES TO PREVENT BLACKOUTS: INTENTIONAL ISLANDING OPERATION IN DISTRIBUTION NETWORKS

机译:防止停电的新控制策略:分销网络中的故意岛屿运行

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Several countries have experienced electric system deregulation. The market deregulation is currently associated with deep changes in distributed resources (DR or DG) technologies and communication & information technologies (ICT). The massive connection of DR and the need to improve their profitability leads to new electric system management concepts. The article presents the possible use of DR to supply partially local distribution area, isolated from the interconnected electrical power system (EPS) during a blackout for instance. This technical capacity may be achieved at various scales and may last several hours during a restoration process following a blackout. This intentional islanding may result of an ultimate saving action for a specific area of the EPS, or of a black start in a local area. This specific EPS running mode leads to new kind of DR control and DNO operation tools, to a new fast adaptation of the local protection systems. Some existing areas in the distribution EPS may be relatively well adapted to manage the needed local agent. The size and the location of these possible cells are introduced in the paper. The typical voltage level targeted in the paper is the medium voltage (MV). The main interest is to take profit of a local production capacity (interest for the network operator, the consumer and the producer) to increase the local security and availability. But this profit has a cost: local control and protection reinforcement and real time adaptation. This paper gives information on some local area networks characteristics: possible topology flexibility, cell definition, need for a specific exploitation strategy (frequency and voltage control requirement), improvement needed for the protection system and for the local information system. The intentional islanding availability study is presented in the paper through a proposed methodology that may be automated in the long run. The approach proposed in this paper is essentially based on technical constraints. The methodology is applied to a study case and the results are illustrated using EUROSTAG software simulation. Finally, a few characteristics for the information system for the intentional islanding application are given. The works included in the article are integrated in the CRISP project (CRISP: Distributed Intelligence in Critical Infrastructures for Sustainable Power. Project funded by the European Community under the Fifth RTD Framework Program (2002 - 2005)).
机译:有几个国家经历了电力系统放松管制。市场放松调整目前与分布式资源(DR或DG)技术和通信和信息技术(ICT)的深度变化相关。博士的大规模连接和提高其盈利能力的必要性导致新的电动系统管理概念。该物品呈现可能使用DR供给部分局部分布区域,例如在停电期间与互连电力系统(EPS)隔离。这种技术容量可以在各种尺度上实现,并且在停电后的恢复过程中可能持续数小时。这种故意岛屿可能导致EPS特定区域的最终节省行动,或在本地区域的黑色开始。这种特定的EPS运行模式导致新的DR控制和DNO操作工具,以实现局部保护系统的新快速调整。分发EPS中的一些现有区域可能相对适应,以管理所需的局部代理。本文介绍了这些可能细胞的尺寸和位置。纸张中靶向的典型电压电平是中电压(MV)。主要兴趣是利用当地生产能力(网络运营商,消费者和生产者的利益)来增加本地安全性和可用性。但这种利润具有成本:本地控制和保护加固和实时适应。本文提供了有关某些局域网特性的信息:可能的拓扑灵活性,电池定义,需要特定的开发策略(频率和电压控制要求),保护系统所需的改进和本地信息系统。故意岛屿可用性研究通过拟议的方法在篇章中介绍,这些方法可能会长期自动化。本文提出的方法基本上基于技术限制。该方法应用于研究案例,并使用EUTOSTAG软件仿真说明结果。最后,给出了有意孤岛申请的信息系统的一些特征。本文中包含的作品纳入了清晰的项目(CRISP:可持续权力的关键基础设施中的分布式智能。由欧洲共同体资助的项目第五个RTD框架计划(2002年 - 2005)资助。

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