Title :
Resilient monitoring system: Design and performance analysis
Author :
Garcia, Humberto E. ; Jhamaria, Naman ; Kuang, Heng ; Lin, Wen-Chiao ; Meerkov, Semyon M.
Author_Institution :
Idaho Nat. Lab., Idaho Falls, ID, USA
Abstract :
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 so-called 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.
Keywords :
entropy; probability; sensors; Kullbeck-Liebler divergence; autonomous decentralized resilient monitoring system; data quality; design analysis; malicious sensor malfunctioning; natural sensor malfunctioning; performance analysis; plant status assessment; probability mass function; rational controller; sensor measurement symmetrized relative entropy; Adaptation models; Entropy; Estimation; Monitoring; Numerical models; Random variables; Silicon; Graceful degradation; Malicious sensor malfunctioning; Measure of resiliency; Penalty function; Rational controllers; Resilient systems; Sensor networks;
Conference_Titel :
Resilient Control Systems (ISRCS), 2011 4th International Symposium on
Conference_Location :
Boise, ID
Print_ISBN :
978-1-4244-9294-7
Electronic_ISBN :
978-1-4244-9292-3
DOI :
10.1109/ISRCS.2011.6016090