传感器混合网络调度

Hongsik Choi, Ju Wang, E. Hughes
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引用次数: 35

摘要

我们研究了无线传感器网络中一个独特的调度问题,其中集群中的所有节点以最小的传输时间为目标向指定的汇聚节点发送一个数据包。难点在于节点传输必须在时间或空间上充分隔离,以避免碰撞。该问题是通过图表示来表述和解决的。我们用特定的网络拓扑(行或树)证明了这一点;通过管道式调度,可以有效地获得最优的传输调度。对于有n个节点的线(或树)拓扑,所需的最短时间为3(n-2)。我们进一步证明了我们的调度问题对于一般图是np困难的。我们提出了一种通用图的启发式算法。我们的启发式算法试图调度尽可能多的独立路段,以增加并行传输的程度。该算法与基于RTS/CTS的分布式算法进行了比较。初步仿真结果表明,启发式算法的调度性能优于基于RTS/CTS的分布式算法(最高达30%),且调度行为稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scheduling on sensor hybrid network
We investigate a unique scheduling problem in wireless sensor networks where all nodes in a cluster send exactly one packet to a designated sink node with goal of minimized transmission time. The difficulty lies in the fact that node transmissions must be sufficiently isolated either in time or in space to avoid collisions. The problem is formulated and solved via graph representation. We prove that with specific network topologies (either line or tree); an optimal transmission schedule can be obtained efficiently through a pipeline-like schedule. The minimum time required for a line (or tree) topology with n nodes is 3(n-2). We further prove that our scheduling problem is NP-hard for general graphs. We propose a heuristic algorithm for general graphs. Our heuristic tries to schedule as many independent segments as possible to increase the degree of parallel transmission. This algorithm is compared to an RTS/CTS based distributed algorithm. Preliminary simulated results indicate that our heuristic algorithm out-performs the RTS/CTS based distributed algorithm (up to 30%) and exhibits stable scheduling behavior.
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