A Distributed Algorithm for Joins in Sensor Networks

Alexandru Coman, M. Nascimento
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引用次数: 22

Abstract

Given their autonomy, flexibility and large range of functionality, wireless sensor networks can be used as an effective and discrete means for monitoring data in many domains. Typical sensor nodes are very constrained, in particular regarding their energy and memory resources. Thus, any query processing solution over these devices should consider their limitations. We investigate the problem of processing join queries within a sensor network. Due to the limited memory at nodes, joins are typically processed in a distributed manner over a set of nodes. Previous approaches have either assumed that the join processing nodes have sufficient memory to buffer the subset of the join relations assigned to them, or that the amount of available memory at nodes is known in advance. These assumptions are not realistic for most scenarios. In this context we propose and investigate DIJ, a distributed algorithm for join processing that considers the memory limitations at nodes and does not make a priori assumptions on the available memory at the processing nodes. At the same time, our algorithm still aims at minimizing the energy cost of query processing.
传感器网络中的分布式连接算法
鉴于其自主性、灵活性和广泛的功能范围,无线传感器网络可以作为在许多领域监测数据的有效和离散手段。典型的传感器节点是非常受限的,特别是在它们的能量和内存资源方面。因此,在这些设备上的任何查询处理解决方案都应该考虑到它们的局限性。我们研究了在传感器网络中处理连接查询的问题。由于节点上的内存有限,连接通常在一组节点上以分布式方式处理。以前的方法要么假设连接处理节点有足够的内存来缓冲分配给它们的连接关系的子集,要么假设节点上的可用内存量是事先已知的。这些假设在大多数情况下是不现实的。在这种情况下,我们提出并研究了DIJ,这是一种用于连接处理的分布式算法,它考虑节点上的内存限制,并且不对处理节点上的可用内存进行先验假设。同时,我们的算法仍然以最小化查询处理的能量开销为目标。
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