Preliminaries of Orthogonal Layered Defence Using Functional and Assurance Controls in Industrial Control Systems

Abstract

Industrial Control Systems (ICSs) are responsible for the automation of different processes and the overall control of systems that include highly sensitive potential targets such as nuclear facilities, energy-distribution, water-supply, and mass-transit systems. Given the increased complexity and rapid evolvement of their threat landscape, and the fact that these systems form part of the Critical National infrastructure (CNI), makes them an emerging domain of conflict, terrorist attacks, and a playground for cyberexploitation. Existing layered-defence approaches are increasingly criticised for their inability to adequately protect against resourceful and persistent adversaries. It is therefore essential that emerging techniques, such as orthogonality, be combined with existing security strategies to leverage defence advantages against adaptive and often asymmetrical attack vectors. The concept of orthogonality is relatively new and unexplored in an ICS environment and consists of having assurance control as well as functional control at each layer. Our work seeks to partially articulate a framework where multiple functional and assurance controls are introduced at each layer of ICS architectural design to further enhance security while maintaining critical real-time transfer of command and control traffic.

Publication DOI: https://doi.org/10.3390/jsan8010014
Divisions: College of Business and Social Sciences > Aston Business School > Cyber Security Innovation (CSI) Research Centre
College of Business and Social Sciences > Aston Business School > Operations & Information Management
Additional Information: © 2019 by the authors. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Uncontrolled Keywords: Industrial Control Systems,SCADA,Critical National Infrastructure
Last Modified: 10 Apr 2024 17:28
Date Deposited: 24 Jan 2023 14:32
Full Text Link: http://www.mdpi ... 224-2708/8/1/14
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PURE Output Type: Article
Published Date: 2019-02-14
Published Online Date: 2019-02-14
Accepted Date: 2019-01-27
Authors: Mackintosh, Mike
Epiphaniou, Gregory
Al-Khateeb, Haider (ORCID Profile 0000-0001-8944-123X)
Burnham, Keith
Pillai, Prashant
Hammoudeh, Mohammad

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