On Dynamic Replication Strategies in Data Service Grids

Xiaohua Dong, Ji Li, Zhongfu Wu, Dacheng Zhang, Jie Xu
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引用次数: 15

Abstract

Service oriented architecture (SOA) allows multiple and heterogeneous data resources to be integrated within a single service while hiding the implementation details and formats of data resources from users of the service. However, data sources for a service are often distributed geographically and connected with long-latency networks; time and bandwidth consumption of data transportation may have an impact on the system performance. Dynamic data replication is a practical solution to this problem. By replicating data copies to appropriate sites, this approach aims to reduce time and bandwidth consumptions over networks. Existing strategies for dynamic replication are typically based on so-called single-location algorithms for identifying a single site for data replication. In this paper we discuss the issues with single-location strategies in large-scale data integration applications, and examine potential multiple-location schemes. Dynamic multiple-location replication is NP-complete in nature. We therefore transform the multiple-location problem into several classical mathematical problems with different parameter settings, for which efficient approximation algorithms exist. Experimental results indicate that unlike single-location strategies our multiple-location schemes are efficient with respect to access latency and bandwidth consumption, especially when the requesters of a data set are distributed over a large scale of locations.
数据服务网格中的动态复制策略研究
面向服务的体系结构(SOA)允许将多个异构数据资源集成到单个服务中,同时对服务的用户隐藏数据资源的实现细节和格式。然而,服务的数据源通常分布在地理位置上,并与长延迟网络连接;数据传输占用的时间和带宽可能会影响系统性能。动态数据复制是解决这个问题的一种实用的解决方案。通过将数据副本复制到适当的站点,这种方法旨在减少网络上的时间和带宽消耗。现有的动态复制策略通常基于所谓的单位置算法,用于识别用于数据复制的单个站点。本文讨论了大规模数据集成应用中单位置策略的问题,并研究了潜在的多位置方案。动态多位置复制本质上是np完全的。因此,我们将多位置问题转化为几个具有不同参数设置的经典数学问题,并存在有效的近似算法。实验结果表明,与单位置策略不同,我们的多位置方案在访问延迟和带宽消耗方面是有效的,特别是当数据集的请求者分布在大规模的位置时。
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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