通过置信水平进行事件触发状态估计

IF 5.5 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Signal Processing Pub Date : 2025-02-25 DOI:10.1109/TSP.2025.3543721
Wei Liu
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引用次数: 0

摘要

研究事件触发格式下离散线性系统的状态估计问题。为了提高性能,提出了一种基于置信水平的事件触发方案,该方案采用卡方分布和温和正则性假设。针对这种新的事件触发模式,利用已有的结果,提出了最小均方误差(MMSE)状态估计器。针对所提出的MMSE状态估计器,提出了两种通信速率估计算法,第一种算法基于一步延迟信息,第二种算法基于两步延迟信息。最后以目标跟踪为例,对所提出的MMSE状态估计器和两种通信速率估计算法的性能和有效性进行了说明。
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Event-Triggered State Estimation Through Confidence Level
This paper considers the state estimation problem for discrete-time linear systems under event-triggered scheme. In order to improve performance, a novel event-triggered scheme based on confidence level is proposed using the chi-square distribution and mild regularity assumption. In terms of the novel event-triggered scheme, a minimum mean squared error (MMSE) state estimator is proposed using some results presented in this paper. Two algorithms for communication rate estimation of the proposed MMSE state estimator are developed where the first algorithm is based on information with one-step delay, and the second algorithm is based on information with two-step delay. The performance and effectiveness of the proposed MMSE state estimator and the two communication rate estimation algorithms are illustrated using a target tracking scenario.
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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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