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Autonomic Computing for Defense-in-Depth Information Assurance: Architecture and a Case Study

机译:深度防御信息保障的自主计算:体系结构和案例研究

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摘要

In recent years, defense-in-depth information assurance is one of the main focuses in information security research. However, the complexity of information assurance systems increases rapidly with more and more security functions and subsystems being included. In this paper, we propose an auto-nomic computing architecture for defense-in-depth information assurance systems (DDIAS) so that the increasing complexity of DDIAS can be tackled by distributed autonomous security subsystems with the abilities of self-configuration, self-optimization, self-healing and self-protection. We also present a case study of autonomic computing for distributed emergency response and incident recovery, which is usually the last line of in-depth defense. In the case study, we combine the tenure duty method (TDM) with autonomic system architecture to realize autonomic service roaming and dynamic backup. Experiments show that the proposed method greatly improves the survivability of information systems without much loss of quality of service.
机译:近年来,深度防御信息保证是信息安全研究的重点之一。然而,随着越来越多的安全功能和子系统被包括在内,信息保证系统的复杂性迅速增加。在本文中,我们提出了一种用于深度防御信息保证系统(DDIAS)的自动计算架构,以便可以通过具有自我配置,自我优化能力的分布式自治安全子系统来解决DDIAS日益复杂的问题。 ,自我修复和自我保护。我们还提供了用于分布式应急响应和事件恢复的自主计算案例研究,这通常是深度防御的最后一道防线。在案例研究中,我们将权属法(TDM)与自主系统架构相结合,以实现自主服务漫游和动态备份。实验表明,该方法在不损失服务质量的前提下,极大地提高了信息系统的生存能力。

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