电力系统多层次可靠性评估框架

A. Domínguez-García, P. Grainger
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引用次数: 7

摘要

提出了一种电力系统多级可靠性评估框架。可靠性,独立于用于测量它的标准(确定性的或概率的),通常被视为一个二元变量,也就是说,系统被认为是可靠的,如果它满足某些预期的功能,否则不可靠。这种二元方法适用于具有单一预期功能或不允许性能下降的系统。电能系统是高度分布的,具有多种功能,即向不同的负载供电。此外,电能系统在运行条件和物理结构上都是动态的,这对系统性能产生了额外的影响,从而对可靠性产生了影响。在此背景下,本文提出了电力系统工作的多级可靠性,并定义了性能退化的概念。所提出的多级可靠性评估框架明确地模拟了结构和操作的不确定性。随着基于用户的可靠性考虑在电力系统中变得越来越突出,它将变得越来越重要。
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A Framework for Multi-Level Reliability Evaluation of Electrical Energy Systems
This paper proposes a framework for multi-level reliability evaluation of electrical energy systems. Reliability, independent of the criteria (deterministic or probabilistic) used to measure it, is often treated as a binary variable, i.e, the system is considered to be reliable if it meets some intended function and unreliable otherwise. This binary approach is appropriate in systems with a single intended function or in which degraded performance is not allowed. Electrical energy systems are highly distributed and have multiple functions, i.e., deliver power to different loads. Furthermore, electrical energy systems are dynamic, both in operational conditions and physical structure, which has an additional impact on system performance, and therefore on reliability. In this context, the paper presents multiple levels of reliability and defines the concept of degraded performance for power systems work. The proposed multi-level reliability evaluation framework explicitly models both structural and operational uncertainty. It will become increasingly important as user-based reliability considerations become more prominent in electric power systems.
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