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Framework for evaluating and comparing performance of power system reliability criteria

机译:评估和比较电力系统可靠性标准性能的框架

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Evolutions in the power system challenge the manner in which power system reliability is managed. In particular, currently used reliability criteria, typically the deterministic N-1 criterion, are increasingly inadequate. Moving to an alternative approach is difficult as quantifying benefits is hard in a multifaceted environment and system operators are reluctant to move away from the easy and transparent existing criterion. This paper presents a generic framework to evaluate and compare socio-economic and reliability performance of power system reliability criteria, focussing on the short term decision making process of transmission system operators (TSO). The framework can also be used to tune the parameters of reliability criteria. Short term operational planning and real time operation TSO decision making processes are simulated considering various reliability criteria. The framework is applied to a 5 node test system and the 24 node IEEE reliability test system, showing that the applied probabilistic reliability criterion outperforms deterministic N-0 and N-1 approaches in those systems in terms of expected reliability and socio-economic indicator values. The effect is larger in the bigger system with more operational flexibility.
机译:电力系统的发展对电力系统可靠性的管理方式提出了挑战。特别是,当前使用的可靠性标准(通常是确定性N-1标准)越来越不充分。由于在多方面的环境中难以量化收益,并且系统操作员不愿放弃简单而透明的现有标准,因此很难采用替代方法。本文提出了一个通用框架,用于评估和比较电力系统可靠性标准的社会经济和可靠性性能,重点是输电系统运营商(TSO)的短期决策过程。该框架还可以用于调整可靠性标准的参数。考虑各种可靠性标准,对短期运营计划和实时运营TSO决策过程进行了仿真。该框架应用于5节点测试系统和24节点IEEE可靠性测试系统,表明在期望的可靠性和社会经济指标值方面,所应用的概率可靠性标准在那些系统中优于确定性的N-0和N-1方法。在更大的系统中效果更大,操作灵活性更高。

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