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Simulations in Cyber-Security: A Review of Cognitive Modeling of Network Attackers, Defenders, and Users

机译:网络安全模拟:网络攻击者,捍卫者和用户的认知建模综述

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摘要

Computational models of cognitive processes may be employed in cyber-security tools, experiments, and simulations to address human agency and effective decision-making in keeping computational networks secure. Cognitive modeling can addresses multi-disciplinary cyber-security challenges requiring cross-cutting approaches over the human and computational sciences such as the following: (a) adversarial reasoning and behavioral game theory to predict attacker subjective utilities and decision likelihood distributions, (b) human factors of cyber tools to address human system integration challenges, estimation of defender cognitive states, and opportunities for automation, (c) dynamic simulations involving attacker, defender, and user models to enhance studies of cyber epidemiology and cyber hygiene, and (d) training effectiveness research and training scenarios to address human cyber-security performance, maturation of cyber-security skill sets, and effective decision-making. Models may be initially constructed at the group-level based on mean tendencies of each subject's subgroup, based on known statistics such as specific skill proficiencies, demographic characteristics, and cultural factors. For more precise and accurate predictions, cognitive models may be fine-tuned to each individual attacker, defender, or user profile, and updated over time (based on recorded behavior) via techniques such as model tracing and dynamic parameter fitting.
机译:认知过程的计算模型可以用于网络安全工具,实验和模拟,以解决人工机构和有效的决策,以保持计算网络安全。认知建模可以解决需要对人类和计算科学的交叉切割方法的多学科网络安全挑战,例如以下:(a)对攻击者的推理和行为博弈理论来预测攻击主体公用事业和决策似然分布,(b)人如何解决人力系统整合挑战,对后卫认知状态估算的影响因素,以及自动化机会,(c)涉及攻击者,后卫和用户模型的动态模拟,以提高网络流行病学和网络卫生的研究,(d)培训有效研究和培训方案解决人类网络安全性能,网络安全技能成熟,有效的决策。基于特定技能概况,人口特征和文化因素,可以基于每个受试者的子组的平均趋势,基于每个受试者的子组的平均趋势来构建模型。对于更精确和准确的预测,可以通过诸如模型跟踪和动态参数拟合的技术进行微调(基于记录的行为)微调到每个单独的攻击者,防御者或用户简档。

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