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Evaluation of Operating Domains in Power Systems

机译:电力系统运行域评估

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This paper presents the results of a recent major industry-supported study with the aim to provide power system operators with more meaningful and effective means to quickly identify feasible operating boundaries as well as more flexibility to select alternate operating scenarios. In this regard, the paper outlines the main theoretical basis and computational framework for the development of innovative computerized schemes capable of identifying and processing various system integrity domains. The novel framework allows system operators to determine-in a fast and reliable manner-the most favorable operating scenarios which maintain system security, reliability and operating performance quality. For demonstration purposes, and without loss of generality, an emphasis is given to the dynamic system security problem where the Transient Energy Function (TEF) method is used to define quantitative measures of the level (degree) of system security for a given operating scenario. Nonetheless, the framework presented is applicable quite as well to other system performance functions and criteria that may be considered. A demonstrative application is presented for a 9-bus benchmark system, widely used in the literature. In addition, a practical application is also presented for the Saudi Electricity Company (SEC) power system where the operating security domain was evaluated in the operating parameter space spanned by two major interface flows in the system.
机译:本文介绍了最近一项主要的行业支持研究的结果,旨在为电力系统运营商提供更有意义和有效的方法,以快速确定可行的运行边界,并为选择其他运行方案提供更大的灵活性。在这方面,本文概述了开发能够识别和处理各种系统完整性域的创新计算机方案的主要理论基础和计算框架。新颖的框架允许系统操作员以快速可靠的方式确定最有利的操作方案,以保持系统的安全性,可靠性和操作性能质量。为了演示目的,并且不失一般性,重点是动态系统安全问题,其中使用瞬态能量函数(TEF)方法来定义给定操作场景下系统安全级别(程度)的定量度量。尽管如此,所提出的框架也同样适用于可以考虑的其他系统性能功能和标准。展示了9总线基准系统的演示应用程序,该系统在文献中得到了广泛使用。此外,还为沙特电力公司(SEC)的电力系统提供了一个实际应用,其中在系统中两个主要接口流所跨越的运行参数空间中评估了运行安全性域。

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