无线传感器网络中的分布式Top-K查询处理

D. Zeinalipour-Yazti, Zografoula Vagena
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引用次数: 8

摘要

只提供摘要形式。无线传感器网络创造了一种创新技术,使用户能够以极高的分辨率监控和研究物理世界。由于固有的能量和通信约束所带来的复杂性,在这种特殊环境中进行查询处理是一项具有挑战性的任务。为此,研究界建议考虑用户自定义参数,以便快速有效地推导出K个最相关(或Top-K)答案。Top-K查询返回最相关答案的子集,而不是所有答案,原因有两个:i)最小化与检索所有答案相关的成本指标;ii)提高答案集的召回率和精度,这样用户就不会被不相关的结果所淹没。本教程介绍分布式Top- K查询处理背后的基本概念,以及这些算法对分布式和无线传感器网络的适应。它还提供了涵盖该领域重要研究机构的基本和高级技术的概述。本教程将首先概述最具影响力的集中式和中间件Top-K查询处理算法,然后详细描述用于一次性Top-K查询、连续Top-K查询和近似Top-K查询的分布式Top-K排序算法。最后,它将提供一个引人注目的未来应用前景,可以在这些算法的基础上构建。尽管本教程专门针对无线传感器网络,但所提出的许多思想可以在其他移动环境中得到扩展,例如自组织网络、车载网络和移动Web。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Top-K Query Processing in Wireless Sensor Networks
Summary form only given. Wireless sensor networks create an innovative technology that enables users to monitor and study the physical world at an extremely high resolution. Query processing in such ad-hoc environments is a challenging task due to the complexities imposed by the inherent energy and communication constraints. To this end, the research community has proposed to take into account user-defined parameters in order to derive the K most relevant (or Top-K) answers quickly and efficiently A Top-K query returns the subset of most relevant answers, in place of all answers, for two reasons: i) to minimize the cost metric that is associated with the retrieval of all answers; and ii) to improve the recall and the precision of the answer set, such that the user is not overwhelmed with irrelevant results. This tutorial presents the fundamental concepts behind distributed Top- K query processing and the adaptations of these algorithms to distributed and wireless sensor networks. It additionally provides a gentle overview of rudimentary and advanced techniques covering a significant body of research in this domain. The tutorial will start out with an overview of the most influential centralized and middleware Top-K query processing algorithms and then proceed with an elaborate description of distributed Top-K ranking algorithms for one-time top-k queries, continuous top-k queries and approximate top-k queries. Finally, it will provide an outlook to compelling future applications that can be constructed on the foundation of these algorithms. Although the tutorial is specifically geared towards wireless sensor networks, many of the presented ideas find extensions in other mobile environments such as adhoc networks, vehicular networks and the mobile Web.
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