Title :
A System Dynamics Model of Cyber Conflict
Author :
Polatin-Reuben, Dana ; Craig, Richard ; Spyridopoulos, Theodoros ; Tryfonas, Theo
Author_Institution :
Dept. of Comput. Sci., Univ. of Oxford, Oxford, UK
Abstract :
In this paper we try to determine whether a potential state-aggressor in a recent cyber attack can be identified through an understanding of shared international dependencies between nations. Combining the International Affairs and Systems Science disciplines, we put forth a system dynamics model of cyber conflict which may facilitate the identification of a culpable state or states in a cyber attack through publicly available information. Having identified 22 countries with military or civilian cyber capability, data on economic trade imports and diplomatic relationships were combined to identify dependencies, or countries upon which dependent countries rely for trade or military collaboration. The system dynamics model simulates diplomatic tension between two countries to estimate the probability of a cyber conflict. Nine case studies, in which the likely cyber combatant was identified, are used to test the model. Initial results yielded a number of prior indicators of cyber conflict, such as dips in trade imports from future cyber combatants up to 2 years before a launched cyber attack.
Keywords :
military computing; cyber attack; cyber combatants; cyber conflict; diplomatic relationships; diplomatic tension simulation; economic trade imports; military collaboration; state-aggressor; system dynamics model; trade collaboration; Collaboration; Computational modeling; Computer science; Computers; Economics; Internet; Military computing; Cyber Conflict; Interdependencies; International Relations; System Dynamics;
Conference_Titel :
Systems, Man, and Cybernetics (SMC), 2013 IEEE International Conference on
Conference_Location :
Manchester
DOI :
10.1109/SMC.2013.58