Cell-based snapshot and continuous data collection in wireless sensor networks

S. Ji, Jing He, A. Uluagac, R. Beyah, Yingshu Li
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引用次数: 25

Abstract

Data collection is a common operation of wireless sensor networks (WSNs). The performance of data collection can be measured by its achievable network capacity. However, most existing works focus on the network capacity of unicast, multicast or/and broadcast. In this article, we study the snapshot/continuous data collection (SDC/CDC) problem under the physical interference model for randomly deployed dense WSNs. For SDC, we propose a Cell-Based Path Scheduling (CBPS) algorithm based on network partitioning. Theoretical analysis shows that its achievable network capacity is order-optimal. For CDC, a novel Segment-Based Pipeline Scheduling (SBPS) algorithm is proposed which combines the pipeline technique and the compressive data gathering technique. Theoretical analysis shows that SBPS significantly speeds up the CDC process and achieves a high network capacity.
无线传感器网络中基于单元的快照和连续数据采集
数据采集是无线传感器网络(WSNs)的一项常见操作。数据采集的性能可以通过其可实现的网络容量来衡量。然而,大多数现有的工作都集中在单播、多播或广播的网络容量上。本文研究了随机部署的密集WSNs在物理干扰模型下的快照/连续数据采集(SDC/CDC)问题。针对SDC,我们提出了一种基于网络分区的基于cell的路径调度(CBPS)算法。理论分析表明,其可实现的网络容量是有序最优的。针对CDC问题,提出了一种基于分段的管道调度(SBPS)算法,该算法将管道技术与压缩数据采集技术相结合。理论分析表明,SBPS显著加快了CDC过程,实现了较高的网络容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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