JOURNAL ARTICLE

Optimal Linear Estimators for Systems With Random Sensor Delays, Multiple Packet Dropouts and Uncertain Observations

Jing MaShuli Sun

Year: 2011 Journal:   IEEE Transactions on Signal Processing Vol: 59 (11)Pages: 5181-5192   Publisher: Institute of Electrical and Electronics Engineers

Abstract

This paper is concerned with the optimal linear estimation problem for linear discrete-time stochastic systems with random sensor delays, packet dropouts and uncertain observations. We develop a unified model to describe the mixed uncertainties of random delays, packet dropouts and uncertain observations by three Bernoulli distributed random variables with known distributions. Based on the proposed model, the optimal linear estimators that only depend on probabilities are developed via an innovation analysis approach. Their solutions are given in terms of a Riccati equation and a Lyapunov equation. They can deal with the optimal linear filtering, prediction and smoothing for systems with random sensor delays, packet dropouts and uncertain observations in a unified framework. Simulation results show the effectiveness of the proposed optimal linear estimators.

Keywords:
Estimator Network packet Bernoulli distribution Bernoulli's principle Smoothing Linear system Computer science Mathematical optimization Random variable Riccati equation Control theory (sociology) Mathematics Kalman filter Stochastic process Optimal estimation Statistics Differential equation Artificial intelligence

Metrics

110
Cited By
19.95
FWCI (Field Weighted Citation Impact)
25
Refs
0.99
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Stability and Control of Uncertain Systems
Physical Sciences →  Engineering →  Control and Systems Engineering
Target Tracking and Data Fusion in Sensor Networks
Physical Sciences →  Computer Science →  Artificial Intelligence
Distributed Sensor Networks and Detection Algorithms
Physical Sciences →  Computer Science →  Computer Networks and Communications

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