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On-Line Analysis of the Electrical System Security: an Extensive Simulation Approach in a Dynamic Security Assessment (DSA) Environment

机译:电气系统安全的在线分析:动态安全评估中的广泛仿真方法(DSA)环境

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The growing complexity of the electrical systems, the energy sector restructuring and liberalization, the innovation in the field of power generation, transmission and distribution, make the power systems operation more complex year by year. In order to maintain adequacy, security and quality levels, the new situation requires to know, more accurately and quickly than in the past, the state of the electrical system, in order to precisely and timely identify critical contingencies, as well as to dispose as soon as possible the power network protection in case of system faults or restoration in case of black-outs. A possible solution, whose adoption is progressively growing among TSOs worldwide, does consist in the design of on-line special analysis tools, which help control room operators to manage the power system in the respect of static and dynamic security criteria, and suggest, if necessary, the most suitable remedial actions to be execute in order to prevent or correct dangerous conditions. The integration between modern measurement systems, controls and protections allows the TSO operators to increase their general awareness about the power system security, as well as to clearly display systems data and to evaluate from grid snapshots the system behaviour following contingencies. By mean of automated elaboration systems it is therefore possible to develop very sophisticated Static Security Assessment (SSA), Dynamic Security Assessment (DSA) and to identify Optimal Power Flow (OPF) and Optimal Reactive Power Flow (ORPF), until to adopt Special Protection Systems (SPS) and Wide Area Measurement/Control/Protection Systems (WAMS/WACS/WAPS). The aim of this paper is to show the main features of the new Dynamic Security Assessment (DSA) platform, developed for Terna by CESI, whose experimentation is on-going at the Italian National Control Centre of Rome. The paper introduces the main architecture, characteristics and features of the DSA environment and its relationship with static and dynamic simulation engines.
机译:电气系统的复杂性越来越复杂,能源部门重组和自由化,发电领域的创新,传播和分布,使电力系统变得更加复杂。为了保持充分性,安全和质量水平,新的情况需要更加准确,更快速,而不是过去的电气系统,以便精确和及时地识别关键的突发事件,以及处理在发生黑斑的情况下,尽快在系统故障或恢复的情况下电源网络保护。一个可能的解决方案,其通过在全球TSOS之间逐步增长,该解决方案在线设计方面包括在线特殊分析工具,这有助于控制房间运营商在静态和动态安全标准方面管理电力系统,并建议,如果必要的是要执行的最适当的补救措施,以防止或纠正危险情况。现代测量系统,控件和保护之间的集成允许TSO运营商提高对电力系统安全性的一般意识,以及清楚地显示系统数据并从网格快照之后评估在突发事件之后的系统行为。因此,通过自动化阐述系统的平均值,可以开发非常复杂的静态安全评估(SSA),动态安全评估(DSA),并识别最佳电流(OPF)和最佳的无功率流(ORPF),直到采用特殊保护系统(SPS)和广域测量/控制/保护系统(WAMS / WACS / WAP)。本文的目的是展示新的动态安全评估(DSA)平台的主要特点,为CESI开发,其实验正在进行罗马意大利国家控制中心。本文介绍了DSA环境的主要架构,特征和特征及其与静态和动态仿真发动机的关系。

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