动态数据流驱动的天文数据处理服务组合机制

Man Wang, Zhihui Du, Yinong Chen, Suihui Zhu, Weihua Zhu
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引用次数: 10

摘要

虽然已经提出了一些相对成熟的动态服务组合的产品和系统,但它们的操作对于普通用户来说大多并不简单和直观。因此,本文针对天文应用,提出了一种数据流驱动的动态服务组合架构,以简化用户组合服务的需求。该体系结构利用数据流驱动的概念发现包含长度最短、并行结构良好的最终组合服务的原始拓扑图,并使用反向组合算法快速确定最终结果。将该体系结构应用于天文数据处理的PMGrid原型中,实验结果表明,该体系结构满足分布式系统的并行性和异步性,避免了人为错误,提高了服务配置效率,提供了结构更好的组合服务,提高了执行并行性,最终提高了科学发现的效率。
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Dynamic Dataflow Driven Service Composition Mechanism for Astronomy Data Processing
Although some relatively mature products and systems about Dynamic service composition are proposed, their manipulations are mostly not trivial and intuitive for the common users. Therefore, this paper proposes a dataflow driven dynamic service composition architecture aiming at astronomy applications, to simplify the requirements for users to compose a service. The architecture utilizes Dataflow Driven conception to discover an Original Topology Graph, which includes the final composite service with the shortest length and good parallel structure, and uses a Converse Composition algorithm to ascertain the final result quickly. This architecture is applied in the PMGrid prototype for astronomy data processing, and the experiment results show the architecture satisfies the parallelism and asynchrony in distributed system, avoids manual errors, increases the service configuring efficiency, provides the composite service with better structure to increase the executing parallelism, and finally improve the scientific discovery.
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