首页> 外文会议>Fourth ACM International Symposium on Mobile Ad Hoc Networking and Computing Jun 1-3, 2003 Annapolis, Maryland, USA >Connected Sensor Cover: Self-Organization of Sensor Networks for Efficient Query Execution
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Connected Sensor Cover: Self-Organization of Sensor Networks for Efficient Query Execution

机译:相连的传感器盖:传感器网络的自组织结构,可高效执行查询

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Spatial query execution is an essential functionality of a sensor network, where a query gathers sensor data within a specific geographic region. Redundancy within a sensor network can be exploited to reduce the communication cost incurred in execution of such queries. Any reduction in communication cost would result in an efficient use of the battery energy, which is very limited in sensors. One approach to reduce the communication cost of a query is to self-organize the network, in response to a query, into a topology that involves only a small subset of the sensors sufficient to process the query. The query is then executed using only the sensors in the constructed topology. In this article, we design and analyze algorithms for such self-organization of a sensor network to reduce energy consumption. In particular, we develop the notion of a connected sensor cover and design a centralized approximation algorithm that constructs a topology involving a near-optimal connected sensor cover. We prove that the size of the constructed topology is within an O(log n) factor of the optimal size, where n is the network size. We also develop a distributed self-organization version of our algorithm, and propose several optimizations to reduce the communication overhead of the algorithm. Finally, we evaluate the distributed algorithm using simulations and show that our approach results in significant communication cost reduction.
机译:空间查询执行是传感器网络的一项基本功能,其中查询可在特定地理区域内收集传感器数据。可以利用传感器网络内的冗余来减少执行此类查询所引起的通信成本。通信成本的任何降低都将导致电池能量的有效利用,这在传感器中非常有限。减少查询的通信成本的一种方法是响应于查询,将网络自组织为拓扑,该拓扑仅包含足以处理查询的一小部分传感器。然后仅使用构造拓扑中的传感器执行查询。在本文中,我们设计并分析了用于传感器网络自组织的算法,以减少能耗。特别是,我们开发了连接传感器盖的概念,并设计了一种集中式近似算法,该算法构造了一个包含接近最佳连接传感器盖的拓扑。我们证明构造的拓扑的大小在最佳大小的O(log n)因子之内,其中n是网络大小。我们还开发了算法的分布式自组织版本,并提出了一些优化措施以减少算法的通信开销。最后,我们使用仿真评估了分布式算法,并表明我们的方法可显着降低通信成本。

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