Distributed Resilient Interval Observers for Bounded-Error LTI Systems Subject to False Data Injection Attacks

Fuente: arXiv
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Main Authors: Khajenejad, Mohammad, Brown, Scott, Martinez, Sonia
Format: Preprint
Published: 2023
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author Khajenejad, Mohammad
Brown, Scott
Martinez, Sonia
author_facet Khajenejad, Mohammad
Brown, Scott
Martinez, Sonia
contents This paper proposes a novel distributed interval-valued simultaneous state and input observer for linear time-invariant (LTI) systems that are subject to attacks or unknown inputs injected both on their sensors and actuators. Each agent in the network leverages a singular value decomposition (SVD) based transformation to decompose its observations into two components, one of them unaffected by the attack signal, which helps to obtain local interval estimates of the state and unknown input and then uses intersection to compute the best interval estimate among neighboring nodes. We show that the computed intervals are guaranteed to contain the true state and input trajectories, and we provide conditions under which the observer is stable. Furthermore, we provide a method for designing stabilizing gains that minimize an upper bound on the worst-case steady-state observer error. We demonstrate our algorithm on an IEEE 14-bus power system.
format Preprint
id arxiv_https___arxiv_org_abs_2303_11407
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Distributed Resilient Interval Observers for Bounded-Error LTI Systems Subject to False Data Injection Attacks
Khajenejad, Mohammad
Brown, Scott
Martinez, Sonia
Systems and Control
This paper proposes a novel distributed interval-valued simultaneous state and input observer for linear time-invariant (LTI) systems that are subject to attacks or unknown inputs injected both on their sensors and actuators. Each agent in the network leverages a singular value decomposition (SVD) based transformation to decompose its observations into two components, one of them unaffected by the attack signal, which helps to obtain local interval estimates of the state and unknown input and then uses intersection to compute the best interval estimate among neighboring nodes. We show that the computed intervals are guaranteed to contain the true state and input trajectories, and we provide conditions under which the observer is stable. Furthermore, we provide a method for designing stabilizing gains that minimize an upper bound on the worst-case steady-state observer error. We demonstrate our algorithm on an IEEE 14-bus power system.
title Distributed Resilient Interval Observers for Bounded-Error LTI Systems Subject to False Data Injection Attacks
topic Systems and Control
url https://arxiv.org/abs/2303.11407