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VESPA: Multi-Layered Self-Protection for Cloud Resources

机译:VESPA:云资源的多层自我保护

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Self-protection has recently raised growing interest as possible element of answer to the cloud computing infrastructure protection challenge. Faced with multiple threats and heterogeneous defense mechanisms, the autonomic approach proposes simpler, stronger, and more efficient cloud security management. Yet, previous solutions fall at the last hurdle as they overlook key features of the cloud, by lack of flexible security policies, cross-layered defense, multiple control granularities, and open security architectures. This paper presents VESPA, a self-protection architecture for cloud infrastructures overcoming such limitations. VESPA is policy-based, and regulates security at two levels, both within and across infrastructure layers. Flexible coordination between self-protection loops allows enforcing a rich spectrum of security strategies such as cross-layer detection and reaction. A multi-plane extensible architecture also enables simple integration of commodity detection and reaction components. Evaluation of a VESPA implementation shows that the design is applicable for effective and flexible sel f-protection of cloud infrastructures.
机译:自我保护最近引起了越来越多的兴趣,作为应对云计算基础架构保护挑战的可能因素。面对多种威胁和异构防御机制,自主方法提出了更简单,更强大和更高效的云安全管理。但是,由于缺乏灵活的安全策略,跨层防御,多种控制粒度和开放式安全体系结构,因此先前的解决方案由于忽视了云的关键功能而成为最后的障碍。本文介绍了VESPA,一种针对云基础架构的自我保护架构,可克服此类限制。 VESPA是基于策略的,并在基础架构层之内和跨基础架构的两个层次上对安全性进行监管。自我保护回路之间的灵活协调允许实施多种安全策略,例如跨层检测和反应。多平面可扩展体系结构还可以实现商品检测和反应组件的简单集成。对VESPA实施的评估表明,该设计适用于对云基础架构的有效而灵活的自我保护。

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