组成恒温控制负载以确定停电时的可靠性

Nils Müllner, Oliver E. Theel, M. Fränzle
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引用次数: 2

摘要

电网是一个并行系统,其中用户需要彼此独立的共享资源。当总需求增长或下降过快时,就会发生停电。本文结合了三个领域的方法和概念。第一个是通过马尔可夫链估计基于恒温控制负载的功耗。第二个领域提供了通过中间集总丰富的并行系统的组合,以构建最小聚合过渡模型,在这种情况下是住宅社区。第三个领域通过引入限制窗口可靠性作为度量来提供容错特性的推理,适用于考虑停电的持续风险。结合这三种方法和概念,可以确定一个社区随着时间的推移停电的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Composing Thermostatically Controlled Loads to Determine the Reliability against Blackouts
Power grids are parallel systems in which consumers demand a shared resource independent of each other. A blackout occurs when the total demand increases or decreases too rapidly. This paper combines methods and concepts from three domains. The first stems from estimating the power consumption based on thermostatically controlled loads via Markov chains. The second domain provides the composition of parallel systems enriched by intermediate lumping to construct a minimal aggregate transition model, in this case of a community of housings. The third domain provides reasoning about fault tolerance properties by introducing limiting window reliability as measure, suitable to account for the continuous risk of blackouts. Combined, the three methods and concepts allow to determine the risk of blackout of a community over time.
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