基于多目标分布式约束优化技术的网络安全问题

Tenda Okimoto, Naoto Ikegai, Katsumi Inoue, H. Okada, Tony Ribeiro, H. Maruyama
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引用次数: 9

摘要

网络安全问题是系统弹性的一个重要应用领域。恶意软件、计算机病毒和密集的网络攻击的增加是我们信息社会的严重问题。在本文中,我们介绍了网络安全问题的一种新表示。我们的模型是基于一个多目标分布式约束优化问题(MO-DCOP),这是一个可以形式化与多智能体合作相关的各种应用的基本问题。MO-DCOP适用于网络安全问题建模,因为网络安全问题涉及多个标准,例如风险(安全)、监控(隐私)和成本。此外,MO-DCOP是一个去中心化的模型。在该模型中,变量和约束分布在agent之间。由于不存在维护所有信息的单一代理,因此它对密集的网络攻击具有弹性。此外,我们开发了一种新的算法来解决网络安全问题,该算法利用了众所周知且广泛使用的分支定界技术和深度优先搜索策略,并找到了所有的权衡解。我们还提出了该算法的扩展,利用一种称为软弧一致性的预处理技术。softAC是一种著名的预处理技术,它将约束优化问题转化为可有效求解的简化问题。在实验中,我们检查了我们提出的算法在网络安全问题中的运行时间,并表明我们的算法可以快速解决网络安全问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyber security problem based on Multi-Objective Distributed Constraint Optimization technique
A cyber security problem is an important application domain for systems resilience. The increase of malware, computer viruses, and intensive cyber attacks are serious problems for our information society. In this paper, we introduce a new presentation of a cyber security problem. Our model is based on a Multi-Objective Distributed Constraint Optimization Problem (MO-DCOP) which is a fundamental problem that can formalize various applications related to multi-agent cooperation. MO-DCOP is suitable for modeling a cyber security problem, since cyber security problems involve multiple criteria, e.g., risk (security), surveillance (privacy) and cost. Furthermore, MO-DCOP is a decentralized model. In this model, variables and constraints are distributed among agents. Since there exists no single agent which maintains all informations, it is resilient against intensive cyber attacks. Furthermore, we develop a novel algorithm for solving a cyber security problem which utilizes well-known and widely used branch and bound technique and depth-first search strategy and finds all trade-off solutions. We also propose the extension of this algorithm which utilizes a preprocessing technique called soft Arc Consistency. The softAC is a well-known preprocessing technique which transforms a constraint optimization problem into a simplified problem that can be solved efficiently. In the experiments, we examine the run time of our proposed algorithms in cyber security problems and show that our algorithms can solve cyber security problems quickly.
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