2019Unpublished venueRequires access

Towards a Cyber-Physical Range

Georgios Kavallieratos, Sokratis Katsikas, Vasileios Gkioulos

Open publisher page 34 citations

Abstract

Cyber-physical systems are being increasingly employed in everyday applications, including critical ones. This integration of operational technology systems, originally designed to operate in physical isolation -hence with no or little cyber security defences- with information technology systems, by default meant to be networked, dramatically increases the cyber-attack surface of the resulting composite systems. Thus, the assessment of the security posture of cyber-physical systems, as well as the evaluation of the effectiveness and efficiency of the defensive mechanisms become of paramount importance. Unfortunately, testing cyber security in live real-world cyber-physical systems is not advisable, even when it is possible; hence, the use of testbeds is a necessary alternative. This work surveys cyber-physical testbeds in five major application domains, with an eye towards identifying key features to be subsequently used as input to the process of defining requirements for future cyber-physical testbeds with cyber security posture assessment capability. We then propose a reference architecture for the next generation of cyber ranges, namely the cyber-physical ranges.

About this research paper

What this paper is about

Cyber-physical systems are being increasingly employed in everyday applications, including critical ones. This integration of operational technology systems, originally designed to operate in physical isolation -hence with no or little cyber security defences- with information technology systems, by default meant to be networked, dramatically increases the cyber-attack surface of the resulting composite systems. Thus, the assessment of the security posture of cyber-physical systems, as well as the evaluation of the effectiveness and efficiency of the defensive mechanisms become of paramount importance. Unfortunately, testing cyber security in live real-world cyber-physical systems is not advisable, even when it is possible; hence, the use of testbeds is a necessary alternative. This work surveys cyber-physical testbeds in five major application domains, with an eye towards identifying key features to be subsequently used as input to the process of defining requirements for future cyber-physical testbeds with cyber security posture assessment capability. We then propose a reference architecture for the next generation of cyber ranges, namely the cyber-physical ranges.

Why it matters

OpenAlex reports 34 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Cyber-physical systems are being increasingly employed in everyday applications, including critical ones. This integration of operational technology systems, originally designed to operate in physical isolation -hence with no or little cyber security defences- with information technology systems, by default meant to be networked, dramatically increases the cyber-attack surface of the resulting composite systems. Thus, the assessment of the security posture of cyber-physical systems, as well as the evaluation of the effectiveness and efficiency of the defensive mechanisms become of paramount importance. Unfortunately, testing cyber security in live real-world cyber-physical systems is not advisable, even when it is possible; hence, the use of testbeds is a necessary alternative. This work surveys cyber-physical testbeds in five major application domains, with an eye towards identifying key features to be subsequently used as input to the process of defining requirements for future cyber-physical testbeds with cyber security posture assessment capability. We then propose a reference architecture for the next generation of cyber ranges, namely the cyber-physical ranges.

Key concepts: Cyber-physical system, Computer security, Computer science, Attack surface, Isolation (microbiology), Key (lock), Process (computing), Physical security

Related papers

Back to paper searchBrowse research topicsOriginal source
Towards a Cyber-Physical Range — Research Paper | ScholarLens