Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations

One of the major challenges about cyber–physical systems is how to protect system integrity from cyber attacks. There has been a large number of different types of attacks discussed in the literature. In this paper we aim to investigate one special type of attacks in the discrete-event system framew...

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Main Author: Su, Rong
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/137887
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1378872020-04-28T08:31:57Z Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations Su, Rong School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Discrete-event Systems Supervisory Control One of the major challenges about cyber–physical systems is how to protect system integrity from cyber attacks. There has been a large number of different types of attacks discussed in the literature. In this paper we aim to investigate one special type of attacks in the discrete-event system framework, where an attacker can arbitrarily alter sensor readings after intercepting them from a target system, aiming to trick a given supervisor to issue improper control commands, which can drive the system to an undesirable state. We first consider the cyber attack problem from an attacker’s point of view, and formulate an attack-with-bounded-sensor-reading-alterations (ABSRA) problem. We then show that the supremal (or least restrictive) ABSRA exists and can be computed, as long as the plant model and the supervisor model are regular, i.e., representable by finite-state automata. Upon the synthesis of the supremal ABSRA, we present a synthesis algorithm, which computes a supervisor that is ABSRA-robust in the sense that any ABSRA will either be detectable or inflict no damage to the system. NRF (Natl Research Foundation, S’pore) MOE (Min. of Education, S’pore) Accepted version 2020-04-17T04:40:09Z 2020-04-17T04:40:09Z 2018 Journal Article Su, R. (2018). Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations. Automatica, 94, 35-44. doi:10.1016/j.automatica.2018.04.006 0005-1098 https://hdl.handle.net/10356/137887 10.1016/j.automatica.2018.04.006 94 35 44 en Automatica © 2018 Elsevier Ltd. All rights reserved. This paper was published in Automatica and is made available with permission of Elsevier Ltd. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
Discrete-event Systems
Supervisory Control
spellingShingle Engineering::Electrical and electronic engineering
Discrete-event Systems
Supervisory Control
Su, Rong
Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
description One of the major challenges about cyber–physical systems is how to protect system integrity from cyber attacks. There has been a large number of different types of attacks discussed in the literature. In this paper we aim to investigate one special type of attacks in the discrete-event system framework, where an attacker can arbitrarily alter sensor readings after intercepting them from a target system, aiming to trick a given supervisor to issue improper control commands, which can drive the system to an undesirable state. We first consider the cyber attack problem from an attacker’s point of view, and formulate an attack-with-bounded-sensor-reading-alterations (ABSRA) problem. We then show that the supremal (or least restrictive) ABSRA exists and can be computed, as long as the plant model and the supervisor model are regular, i.e., representable by finite-state automata. Upon the synthesis of the supremal ABSRA, we present a synthesis algorithm, which computes a supervisor that is ABSRA-robust in the sense that any ABSRA will either be detectable or inflict no damage to the system.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Su, Rong
format Article
author Su, Rong
author_sort Su, Rong
title Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
title_short Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
title_full Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
title_fullStr Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
title_full_unstemmed Supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
title_sort supervisor synthesis to thwart cyber attack with bounded sensor reading alterations
publishDate 2020
url https://hdl.handle.net/10356/137887
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