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A Novel Data Centric Information Retrieval Protocol for Queries in Delay Tolerant Networks

机译:时延容忍网络中一种新型的以数据为中心的查询信息检索协议

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摘要

Information Retrieval (IR) systems aim to retrieve data that satisfies certain requirements and constitute an important service in many types of networks, including Delay/Disruption Tolerant Networks (DTNs). In current DTN based IR systems, the data that satisfies a query is assumed to be stored on a single node. Therefore, once a node receives a query in which it has the corresponding data, the query can be resolved completely. However, in scenarios where a query requires data from multiple nodes, these IR systems may fail. Henceforth, in this paper, we propose Distributed Data-Centric Information Retrieval (DDC-IR), a data centric IR system that supports all query types; e.g., continuous and complex. More importantly, it is designed specifically to operate in DTNs. It also incorporates a new packet, aka Query Reply Packet, that includes both a query and one or more replies. We show how this packet facilitates efficient query resolution and enables data centric routing. In addition, it uses caching so that nodes store popular queries that has the effect of speeding up query resolution. We have conducted an extensive simulation study to compare DDC-IR to state of the art IR systems using the popular Random Waypoint model and a trace-file containing student movements on a campus. The results show that DDC-IR is able to resolve 50 % more queries and has an 80 % lower buffer occupancy level than existing IR systems. We also tested DDC-IR in networks with varying sizes. For networks with 100 nodes, DDC-IR is able to resolve queries while current IR systems fail to resolve any queries. In particular, when the number of nodes increases, current IR systems fail to resolve any queries, whilst DDC-IR is able to resolve complex and continuous queries. The influence of the number of sub-queries on query resolution time is also studied. Specifically, when the number of sub-queries in a complex query increases from five to nine, DDC-IR uses 50 % more time to resolve a query. In comparison, prior IR systems fail to resolve any queries.
机译:信息检索(IR)系统旨在检索满足某些要求并构成许多类型的网络(包括延迟/中断容忍网络(DTN))中的重要服务的数据。在当前的基于DTN的IR系统中,假定满足查询条件的数据存储在单个节点上。因此,一旦节点收到其中具有相应数据的查询,该查询就可以完全解决。但是,在查询需要来自多个节点的数据的情况下,这些IR系统可能会失败。此后,在本文中,我们提出了分布式数据中心信息检索(DDC-IR),它是一种以数据为中心的,支持所有查询类型的IR系统。例如,连续和复杂。更重要的是,它是专门为在DTN中运行而设计的。它还合并了一个新的数据包,也称为查询答复数据包,其中包括查询和一个或多个答复。我们将展示此数据包如何促进有效的查询解析并实现以数据为中心的路由。另外,它使用缓存,以便节点存储流行的查询,从而提高了查询解析的速度。我们进行了广泛的模拟研究,以使用流行的随机航点模型和包含学生在校园内运动的跟踪文件将DDC-IR与最先进的IR系统进行比较。结果表明,与现有的IR系统相比,DDC-IR能够解决多50%的查询,并降低80%的缓冲区占用水平。我们还在不同大小的网络中测试了DDC-IR。对于具有100个节点的网络,DDC-IR能够解析查询,而当前的IR系统无法解析任何查询。特别地,当节点数量增加时,当前的IR系统无法解决任何查询,而DDC-IR能够解决复杂且连续的查询。还研究了子查询数量对查询解析时间的影响。具体来说,当复杂查询中的子查询数量从五个增加到九个时,DDC-IR会花费50%以上的时间来解析查询。相比之下,现有的IR系统无法解决任何查询。

著录项

  • 来源
    《Journal of network and systems management》 |2015年第4期|870-901|共32页
  • 作者

    Zhenxin Feng; Kwan-Wu Chin;

  • 作者单位

    School of Electrical, Computer, and Telecommunications Engineering, University of Wollongong, Northfields Avenue, Wollongong, NSW 2500, Australia;

    School of Electrical, Computer, and Telecommunications Engineering, University of Wollongong, Northfields Avenue, Wollongong, NSW 2500, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Challenged networks; Routing; Query resolution; Multi-hop; Search;

    机译:面临挑战的网络;路由;查询解析;多跳搜索;

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