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A Transactional-QoS Driven Approach for Web Service Composition

机译:Web服务组合的事务性QoS驱动方法

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Existing Web Service architectures provide the basis for publishing applications as Web Services (WSs), and for composing existing WSs to provide new functionalities. To fully meet user requests when WSs are composed, functional characteristics of the WSs as well as Quality of Service (QoS) parameters and transactional capabilities of their executions, need to be simultaneously considered. QoS parameters describe WSs in terms of their behavior; transactional capabilities state whether a service is reliable during execution time if unpredictable failures occur. We formalize this WS composition problem as an optimization problem that considers at the same time functional, QoS, and transactional requirements. We also define a utility function that combines functionality, QoS, and transactional WS properties, to guide the service compositor into the space of compositions that best meet the QoS and transactional criteria. In addition, we propose a service compositor, named PT-SAM-Transac, which adapts a Petri-Net unfolding algorithm and efficiently traverses the space of optimal compositions. Our experiments show that PT-SAM-Transac outperforms a state-of-the-art solution (called SAM) by identifying compositions that better meet the QoS and transactional criteria, while the composition time of both approaches are in the same order of magnitude.
机译:现有的Web服务体系结构为将应用程序发布为Web服务(WS)以及组成现有WS提供新功能提供了基础。为了在组成WS时完全满足用户的要求,需要同时考虑WS的功能特性以及其执行的服务质量(QoS)参数和事务处理能力。 QoS参数以行为来描述WS。事务功能说明如果发生无法预测的故障,服务在执行期间是否可靠。我们将此WS组成问题形式化为一个优化问题,同时考虑功能,QoS和事务需求。我们还定义了一个实用程序功能,该功能结合了功能,QoS和事务性WS属性,以将服务合成器引导到最能满足QoS和事务性标准的组合空间中。此外,我们提出了一种服务合成器,名称为PT-SAM-Transac,它采用了Petri-Net展开算法并有效地遍历了最佳合成的空间。我们的实验表明,PT-SAM-Transac通过识别可以更好地满足QoS和事务处理标准的组合,而这两种方法的组合时间处于相同数量级,其性能优于最新解决方案(称为SAM)。

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