Defensive maneuver cyber platform modeling with Stochastic Petri Nets
Title | Defensive maneuver cyber platform modeling with Stochastic Petri Nets |
Publication Type | Conference Paper |
Year of Publication | 2014 |
Authors | Moody, W.C., Hongxin Hu, Apon, A. |
Conference Name | Collaborative Computing: Networking, Applications and Worksharing (CollaborateCom), 2014 International Conference on |
Date Published | Oct |
Keywords | control systems, Cyberspace, deceptive defense strategies, defensive maneuver cyber platform modeling, information systems security, malicious attackers, military computing, moving target defense strategies, Petri nets, security, security of data, Standards, stochastic petri nets, Stochastic processes |
Abstract | Distributed and parallel applications are critical information technology systems in multiple industries, including academia, military, government, financial, medical, and transportation. These applications present target rich environments for malicious attackers seeking to disrupt the confidentiality, integrity and availability of these systems. Applying the military concept of defense cyber maneuver to these systems can provide protection and defense mechanisms that allow survivability and operational continuity. Understanding the tradeoffs between information systems security and operational performance when applying maneuver principles is of interest to administrators, users, and researchers. To this end, we present a model of a defensive maneuver cyber platform using Stochastic Petri Nets. This model enables the understanding and evaluation of the costs and benefits of maneuverability in a distributed application environment, specifically focusing on moving target defense and deceptive defense strategies. |
Citation Key | 7014609 |