Enabling Decision Support for the Delivery of Real-Time Services

D. McKee, D. Webster, Jie Xu
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引用次数: 10

Abstract

The domain of high assurance distributed systems has focused greatly on the areas of fault tolerance and dependability. As a result the paradigm of service orientated architectures (SOA) has been commonly applied to realize the significant benefits of loose coupling and dynamic binding. However, there has been limited research addressing the issues of managing real-time constraints in SOAs that are by their very nature dynamic. Although the paradigm itself is derived from fundamental principles of dependability, these same principles appear to not be applied when considering the timed dimension of quality of service. As a result the current state-of-the-art in SOA research only addresses soft real-time and does not seek to provide concrete guarantees about a systems performance. When a distributed system is deployed we do not understand enough the emerging behavior that will occur. This paper therefore proposes an approach that probabilistically monitors system state within a given workflow's execution window. Utilizing a real distributed system we experiment with services from the computer vision domain, with clear real-time constraints, evaluating the performance of each system component. Our approach successfully models the likelihood of the service meeting providing various levels of QoS, providing the basis for a more dynamic and intelligent approach to real-time service orientation.
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高保证分布式系统的研究主要集中在容错性和可靠性方面。因此,面向服务的体系结构(SOA)范例已被广泛应用于实现松耦合和动态绑定的显著优势。然而,对于管理soa中的实时约束问题的研究非常有限,因为soa本质上是动态的。尽管范式本身来源于可靠性的基本原则,但在考虑服务质量的时间维度时,这些原则似乎并不适用。因此,当前SOA研究的最新技术只涉及软实时,而不寻求提供有关系统性能的具体保证。当部署分布式系统时,我们对即将出现的行为没有足够的了解。因此,本文提出了一种在给定工作流执行窗口内概率监视系统状态的方法。利用一个真实的分布式系统,我们对来自计算机视觉领域的服务进行了实验,具有明确的实时约束,评估了每个系统组件的性能。我们的方法成功地模拟了服务满足提供不同级别QoS的可能性,为面向实时服务的更动态、更智能的方法提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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