Robust Quickest Change Detection With Sampling Control

IF 5.8 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Yingze Hou;Hoda Bidkhori;Taposh Banerjee
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引用次数: 0

Abstract

The problem of quickest detection of a change in the distribution of a sequence of random variables is studied. The objective is to detect the change with the minimum possible delay, subject to constraints on the rate of false alarms and the cost of observations used in the decision-making process. The post-change distribution of the data is known only within a distribution family. It is shown that if the post-change family has a distribution that is least favorable in a well-defined sense, then a computationally efficient algorithm can be designed that uses an on-off observation control strategy to save the cost of observations. In addition, the algorithm can detect the change robustly while avoiding unnecessary false alarms. It is shown that the algorithm is also asymptotically robust optimal as the rate of false alarms goes to zero for every fixed constraint on the cost of observations. The algorithm’s effectiveness is validated on simulated data and real public health data.
基于采样控制的鲁棒快速变化检测
研究了随机变量序列分布变化的最快检测问题。目标是在对假警报率和决策过程中使用的观察成本加以限制的情况下,以尽可能小的延迟检测变化。数据更改后的分布仅在分布族中已知。结果表明,如果后变化族在定义良好的意义上具有最不利的分布,则可以设计一种计算效率高的算法,该算法使用开-关观测控制策略来节省观测成本。此外,该算法可以鲁棒地检测变化,同时避免不必要的误报。结果表明,对于每一个固定的观测成本约束,当虚警率趋于零时,该算法也是渐近鲁棒最优的。仿真数据和实际公共卫生数据验证了该算法的有效性。
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来源期刊
IEEE Transactions on Signal Processing
IEEE Transactions on Signal Processing 工程技术-工程:电子与电气
CiteScore
11.20
自引率
9.30%
发文量
310
审稿时长
3.0 months
期刊介绍: The IEEE Transactions on Signal Processing covers novel theory, algorithms, performance analyses and applications of techniques for the processing, understanding, learning, retrieval, mining, and extraction of information from signals. The term “signal” includes, among others, audio, video, speech, image, communication, geophysical, sonar, radar, medical and musical signals. Examples of topics of interest include, but are not limited to, information processing and the theory and application of filtering, coding, transmitting, estimating, detecting, analyzing, recognizing, synthesizing, recording, and reproducing signals.
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