Electrical transmission system cascades and vulnerability - an operations research viewpoint

D. Bienstock
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引用次数: 102

Abstract

The power grid can be considered one of twentieth-century engineering s greatest achievements, and as grids and populations grow, robustness is a factor that planners must take into account. Power grid robustness is a complex problem for two reasons: the underlying physics is mathematically complex, and modeling is complicated by lack of accurate data. This book sheds light on this complex problem by introducing the engineering details of power grid operations from the basic to the detailed; describing how to use optimization and stochastic modeling, with special focus on the modeling of cascading failures and robustness; providing numerical examples that show "how things work"; and detailing the application of a number of optimization theories to power grids. Audience: This book is intended for operations researchers who want to learn about power grids and power engineers who seek a more in-depth understanding of optimization methodologies and of the rigorous thinking used in optimization.
电力传输系统级联与脆弱性——运筹学观点
电网可以被认为是20世纪工程学最伟大的成就之一,随着电网和人口的增长,稳健性是规划者必须考虑的一个因素。电网的稳健性是一个复杂的问题,原因有二:基础物理在数学上是复杂的,建模由于缺乏准确的数据而变得复杂。这本书通过介绍电网运行的工程细节从基本到详细,阐明了这个复杂的问题;描述如何使用优化和随机建模,特别关注级联故障和鲁棒性的建模;提供数值例子来说明“事物是如何工作的”;并详细介绍了一些优化理论在电网中的应用。读者:这本书是为想要了解电网的运维研究人员和寻求更深入地理解优化方法和优化中使用的严格思维的电力工程师设计的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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