An Architectural Approach for Self-Managing Security Services

G. Russello, Naranker Dulay
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引用次数: 1

Abstract

Self-managing systems are the focus of an increasing research activity since can provide a more robust way of building software artifacts. In this paper, we focus on self-managing systems for adapting the security concern. Providing security as a one-size-fits-all solution results in a system that is far too rigid to accommodate the needs of different application domains. Security mechanisms can depend on the hardware that is available and can be changed over time. Offering a system that can cope with such change without the need of major re-engineering is a major challenge. Moreover, not at all time the same security level has to be maintained. A system that can adapt its security mechanisms to the actual threat level can deliver better performance. In this paper, we provide an architecture for self-adapting the security concern to the actual context. Context is provided in terms of trust and threat values. Moreover, contextual information on resource consumption (e.g., memory and bandwidth) and system status (e.g., availability) can be provided.
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自管理安全服务的体系结构方法
自管理系统是越来越多的研究活动的焦点,因为它可以提供构建软件工件的更健壮的方法。在本文中,我们关注自管理系统以适应安全问题。将安全性作为一刀切的解决方案提供会导致系统过于僵化,无法适应不同应用程序领域的需求。安全机制可能取决于可用的硬件,并且可以随时间而更改。提供一个能够应付这种变化而不需要主要重新设计的系统是一个主要的挑战。此外,并不是在任何时候都必须保持相同的安全级别。能够根据实际威胁级别调整其安全机制的系统可以提供更好的性能。在本文中,我们提供了一种使安全关注自适应于实际环境的体系结构。上下文以信任值和威胁值的形式提供。此外,还可以提供有关资源消耗(例如,内存和带宽)和系统状态(例如,可用性)的上下文信息。
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