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Resilient monitoring system: Design and performance analysis

机译:弹性监控系统:设计和性能分析

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This paper is devoted to the design and performance analysis of an autonomous decentralized monitoring system that degrades gracefully under natural or malicious sensor malfunctioning. In the scenario considered, the sensors are characterized by a quantity referred to as data quality, and a method for estimating process variables, based on sensor measurements and data quality, is developed. Using these estimates, the plant status assessment is carried out, and the entropy of the resulting probability mass function, augmented by symmetrized relative entropy of sensor measurements, is used to drive the socalled rational controllers, which force the monitoring system to operate in the optimal state. Along with analytical results, the paper presents numerical examples, which illustrate the efficacy of the resulting resilient monitoring system, using a metric based on the Kullbeck-Liebler divergence.
机译:本文致力于自主分散监测系统的设计和性能分析,在自然或恶意传感器故障下优雅地降低。在考虑的场景中,传感器的特征在于称为数据质量的量,并且开发了一种基于传感器测量和数据质量来估计过程变量的方法。使用这些估计,执行工厂状态评估,并通过对对称的相对熵的传感器测量来增强所产生的概率质量功能的熵用于驱动太阳镜的合理控制器,该控制器强制监测系统在最佳状态下运行状态。除了分析结果之外,本文呈现了使用基于Kullbeck-Leebler发散的度量所产生的弹性监测系统的功效的数值例子。

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