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首页> 外文期刊>International Journal of Genomics >A P2P Framework for Developing Bioinformatics Applications in Dynamic Cloud Environments
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A P2P Framework for Developing Bioinformatics Applications in Dynamic Cloud Environments

机译:在动态云环境中开发生物信息学应用程序的P2P框架

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摘要

Bioinformatics is advanced from in-house computing infrastructure to cloud computing for tackling the vast quantity of biological data. This advance enables large number of collaborative researches to share their works around the world. In view of that, retrieving biological data over the internet becomes more and more difficult because of the explosive growth and frequent changes. Various efforts have been made to address the problems of data discovery and delivery in the cloud framework, but most of them suffer the hindrance by a MapReduce master server to track all available data. In this paper, we propose an alternative approach, called PRKad, which exploits aPeer-to-Peer(P2P) model to achieve efficient data discovery and delivery. PRKad is a Kademlia-based implementation withRound-Trip-Time(RTT) as the associated key, and it locates data according toDistributed Hash Table(DHT) and XOR metric. The simulation results exhibit that our PRKad has the low link latency to retrieve data. As an interdisciplinary application of P2P computing for bioinformatics, PRKad also provides good scalability for servicing a greater number of users in dynamic cloud environments.
机译:生物信息学从内部计算基础架构发展到云计算,可处理大量生物数据。这一进步使大量的合作研究可以在世界范围内分享他们的作品。鉴于此,由于爆炸性增长和频繁变化,通过互联网检索生物数据变得越来越困难。为了解决云框架中的数据发现和传递问题,已经进行了各种努力,但是其中大多数都受到MapReduce主服务器跟踪所有可用数据的阻碍。在本文中,我们提出了一种称为PRKad的替代方法,该方法利用对等(P2P)模型来实现有效的数据发现和传递。 PRKad是基于Rade-Rrip-Time(RTT)作为关联密钥的基于Kademlia的实现,它根据分布式哈希表(DHT)和XOR度量来定位数据。仿真结果表明,我们的PRKad具有较低的链接延迟来检索数据。作为针对生物信息学的P2P计算的跨学科应用程序,PRKad还提供了良好的可伸缩性,可为动态云环境中的大量用户提供服务。

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