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首页> 外文期刊>ACM transactions on the web >A Hybrid Approach for Efficient Web Service Composition with End-to-End QoS Constraints
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A Hybrid Approach for Efficient Web Service Composition with End-to-End QoS Constraints

机译:具有端到端QoS约束的高效Web服务组合的混合方法

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摘要

Dynamic selection of Web services at runtime is important for building flexible and loosely-coupled service-oriented applications. An abstract description of the required services is provided at design-time, and matching service offers are located at runtime. With the growing number of Web services that provide the same functionality but differ in quality parameters (e.g., availability, response time), a decision needs to be made on which services should be selected such that the user's end-to-end QoS requirements are satisfied. Although very efficient, local selection strategy fails short in handling global QoS requirements. Solutions based on global optimization, on the other hand, can handle global constraints, but their poor performance renders them inappropriate for applications with dynamic and realtime requirements. In this article we address this problem and propose a hybrid solution that combines global optimization with local selection techniques to benefit from the advantages of both worlds. The proposed solution consists of two steps: first, we use mixed integer programming (MIP) to find the optimal decomposition of global QoS constraints into local constraints. Second, we use distributed local selection to find the best Web services that satisfy these local constraints. The results of experimental evaluation indicate that our approach significantly outperforms existing solutions in terms of computation time while achieving close-to-optimal results.
机译:在运行时动态选择Web服务对于构建灵活且松耦合的面向服务的应用程序很重要。在设计时提供了所需服务的抽象描述,而在运行时提供了匹配的服务。随着提供相同功能但质量参数(例如,可用性,响应时间)不同的Web服务的数量不断增长,需要决定应选择哪些服务,以便满足用户的端到端QoS要求。满意。尽管非常有效,但是本地选择策略在处理全局QoS要求方面失败了。另一方面,基于全局优化的解决方案可以处理全局约束,但其性能较差使其不适用于具有动态和实时要求的应用程序。在本文中,我们解决了这个问题,并提出了一种混合解决方案,该解决方案将全局优化与局部选择技术相结合,以从两个世界的优势中受益。所提出的解决方案包括两个步骤:首先,我们使用混合整数规划(MIP)来找到将全局QoS约束最佳分解为局部约束的方法。其次,我们使用分布式本地选择来找到满足这些本地约束的最佳Web服务。实验评估的结果表明,我们的方法在计算时间上显着优于现有解决方案,同时获得了接近最佳的结果。

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