A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks
In this paper, the distributed filtering problem is addressed for a class of discrete-time stochastic systems over a sensor network with a given topology, susceptible to suffering deception attacks, launched by potential adversaries, which can randomly succeed or not with a known success probability...
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doaj-cdc674c5bbb14db8b4226739476252ce2020-11-25T04:08:41ZengMDPI AGSensors1424-82202020-11-01206445644510.3390/s20226445A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception AttacksRaquel Caballero-Águila0Aurora Hermoso-Carazo1Josefa Linares-Pérez2Departamento de Estadística, Universidad de Jaén, Paraje Las Lagunillas, 23071 Jaén, SpainDepartamento de Estadística, Universidad de Granada, Avda. Fuentenueva, 18071 Granada, SpainDepartamento de Estadística, Universidad de Granada, Avda. Fuentenueva, 18071 Granada, SpainIn this paper, the distributed filtering problem is addressed for a class of discrete-time stochastic systems over a sensor network with a given topology, susceptible to suffering deception attacks, launched by potential adversaries, which can randomly succeed or not with a known success probability, which is not necessarily the same for the different sensors. The system model integrates some random imperfections and features that are frequently found in real networked environments, namely: (1) fading measurements; (2) multiplicative noises in both the state and measurement equations; and (3) sensor additive noises cross-correlated with each other and with the process noise. According to the network communication scheme, besides its own local measurements, each sensor receives the measured outputs from its adjacent nodes. Based on such measurements, a recursive algorithm is designed to obtain the least-squares linear filter of the state. Thereafter, each sensor receives the filtering estimators previously obtained by its adjacent nodes, and these estimators are all fused to obtain the desired distributed filter as the minimum mean squared error matrix-weighted linear combination of them. The theoretical results are illustrated by a simulation example, where the efficiency of the developed distributed estimation strategy is discussed in terms of the error variances.https://www.mdpi.com/1424-8220/20/22/6445networked uncertain systemsfading measurementsdistributed filteringrandom deception attacks |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Raquel Caballero-Águila Aurora Hermoso-Carazo Josefa Linares-Pérez |
spellingShingle |
Raquel Caballero-Águila Aurora Hermoso-Carazo Josefa Linares-Pérez A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks Sensors networked uncertain systems fading measurements distributed filtering random deception attacks |
author_facet |
Raquel Caballero-Águila Aurora Hermoso-Carazo Josefa Linares-Pérez |
author_sort |
Raquel Caballero-Águila |
title |
A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks |
title_short |
A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks |
title_full |
A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks |
title_fullStr |
A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks |
title_full_unstemmed |
A Two-Phase Distributed Filtering Algorithm for Networked Uncertain Systems with Fading Measurements under Deception Attacks |
title_sort |
two-phase distributed filtering algorithm for networked uncertain systems with fading measurements under deception attacks |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2020-11-01 |
description |
In this paper, the distributed filtering problem is addressed for a class of discrete-time stochastic systems over a sensor network with a given topology, susceptible to suffering deception attacks, launched by potential adversaries, which can randomly succeed or not with a known success probability, which is not necessarily the same for the different sensors. The system model integrates some random imperfections and features that are frequently found in real networked environments, namely: (1) fading measurements; (2) multiplicative noises in both the state and measurement equations; and (3) sensor additive noises cross-correlated with each other and with the process noise. According to the network communication scheme, besides its own local measurements, each sensor receives the measured outputs from its adjacent nodes. Based on such measurements, a recursive algorithm is designed to obtain the least-squares linear filter of the state. Thereafter, each sensor receives the filtering estimators previously obtained by its adjacent nodes, and these estimators are all fused to obtain the desired distributed filter as the minimum mean squared error matrix-weighted linear combination of them. The theoretical results are illustrated by a simulation example, where the efficiency of the developed distributed estimation strategy is discussed in terms of the error variances. |
topic |
networked uncertain systems fading measurements distributed filtering random deception attacks |
url |
https://www.mdpi.com/1424-8220/20/22/6445 |
work_keys_str_mv |
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