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Design and Implementation of Spatial Operators and Energy-Efficient Query Processing Strategy in Wireless Sensor Network Database System

机译:无线传感器网络数据库系统中空间算子和节能查询处理策略的设计与实现

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Database applications in wireless sensor networks very often demand data collection from sensor nodes of specific target regions. Design and development of spatial query expressions and energy-efficient query processing strategy are important issues for sensor network database systems. The existing sensor network database systems lack the needed sophistication for the space calculation of the target sensor nodes; hence, unnecessary query/data transmissions are required between the sensor nodes and the server. This paper describes our spatial operations and energy-efficient query processing methods that are designed and implemented in our sensor network database system calledSNQL+s. With a set of spatial operators based on geometric parameters, such as Envelope, NearBy, Distance, Direction, and set theoretic operators,SNQL+sallows sensor network applications to easily specify the target space of interest. Our energy-efficient query processing strategy implements an in-network query management based on the lowest common ancestor (LCA) algorithm, so that the query processing cost for calculating the target spaces is greatly reduced by avoiding the need of heavy query/data transmissions between the base-station and target nodes. Performance evaluation shows that our proposed design and implementation of spatial query expressions and processing strategy achieve improved energy efficiency for database operations in the wireless sensor network.
机译:无线传感器网络中的数据库应用通常需要从特定目标区域的传感器节点收集数据。空间查询表达式的设计和开发以及高能效查询处理策略是传感器网络数据库系统的重要问题。现有的传感器网络数据库系统缺乏目标传感器节点空间计算所需的复杂性。因此,在传感器节点和服务器之间需要不必要的查询/数据传输。本文介绍了在我们的传感器网络数据库系统SNQL + s中设计和实现的空间操作和节能查询处理方法。借助基于几何参数(例如信封,近距离,距离,方向)的一组空间运算符,以及设置理论运算符,SNQL +使得传感器网络应用程序可以轻松地指定目标目标空间。我们的高能效查询处理策略基于最低公共祖先(LCA)算法实现了网络内查询管理,从而避免了繁琐的查询/数据之间的传输,从而大大降低了计算目标空间的查询处理成本基站和目标节点。性能评估表明,我们提出的空间查询表达式和处理策略的设计与实现可提高无线传感器网络中数据库操作的能效。

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