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A novel autonomous container-based platform for cybersecurity training and research.

Nestoras Chouliaras1, Ioanna Kantzavelou1, Leandros Maglaras2

  • 1University of West Attica, Athens, Greece.

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Summary
This summary is machine-generated.

This study introduces a cost-effective, lightweight cyber range platform. It enhances cybersecurity training by leveraging Docker and OpenStack for scalable, high-performance digital environments.

Keywords:
Cyber exercisesCyber range

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Area of Science:

  • Computer Science
  • Cybersecurity Engineering

Background:

  • Cyberattacks are increasingly sophisticated, necessitating advanced cybersecurity training.
  • Existing cyber range platforms are costly and resource-intensive to develop and maintain.
  • Upskilling cybersecurity professionals requires hands-on training in realistic digital environments.

Purpose of the Study:

  • To present a novel, lightweight cyber range platform.
  • To reduce the cost and resource requirements for cybersecurity training environments.
  • To enhance the scalability and performance of cyber range platforms.

Main Methods:

  • Development of a lightweight cyber range platform using Docker technology.
  • Implementation on the open-source cloud platform OpenStack.
  • Utilization of Infrastructure as Code (IaC) methodology for automation.

Main Results:

  • The proposed platform offers a cost-effective solution for cybersecurity training.
  • Achieved maximization of performance and scalability.
  • Reduced resource consumption and development time compared to traditional platforms.

Conclusions:

  • The lightweight cyber range platform effectively addresses the challenges of cost and resource intensity.
  • Combines Docker, DevOps, and OpenStack for an optimized cybersecurity training solution.
  • Enables continuous capacity building and digital skill competence for cybersecurity professionals.