移动无线传感器网络中基于经验的Sink放置

Subhra Banerjee, S. Bhunia, N. Mukherjee
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引用次数: 2

摘要

在无线传感器网络(WSN)的一些应用中,传感器节点是移动的,而接收器是静态的。在这种动态环境中,可能会出现多个传感器节点通过同一个汇聚节点转发数据,导致汇聚节点过载的情况。接收器过载的一个明显影响是丢包。在对丢失敏感的WSN应用中,它还会间接影响网络的生存期。因此,在这种动态环境中,接收器的正确放置对WSN应用的性能有很大的影响。在某些情况下,由于节点密度可能不均匀,多个sink放置也可能无法工作。本文介绍了一种汇聚点放置方案,该方案旨在收集不同时间区域内传感器节点密度的经验,并根据这些观察结果提出候选汇聚点位置,以减少汇聚点过载。接下来,基于当前传感器节点密度模式,这些位置的接收器被调度到活动模式,而其余候选位置的接收器被调度到睡眠模式。第二阶段周期性地重复。该方案在仿真环境中实现,并与另一种众所周知的策略,即地理Sink放置(GSP)进行了比较。与GSP相比,该方案在sink过载和丢包方面表现出更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experience Based Sink Placement in Mobile Wireless Sensor Network
In some applications of wireless sensor networks (WSN), sensor nodes are mobile while the sinks are static. In such dynamic environment, situations may arise where many sensor nodes are forwarding data through the same sink node resulting in sink overloading. One of the obvious effects of sink overloading is packet loss. It also indirectly affects the network lifetime in loss-sensitive WSN applications. Therefore, proper placement of sinks in such dynamic environment has a great impact on the performance of WSN applications. Multiple sink placement may not also work in some situations as node density may not be uniform. This paper introduces a sink placement scheme that aims at gathering experiences about sensor node density in region at different times and based on these observations, the scheme proposes candidate sink locations in order to reduce sink overloading. Next, based upon current sensor node density pattern, sinks at these locations are scheduled to active mode, while sinks at remaining candidate locations are scheduled to sleep mode. The second phase is repeated periodically. The scheme is implemented in a simulation environment and compared with another well-known strategy, namely Geographic Sink Placement (GSP). It has been observed that the proposed scheme exhibits better performance with respect to sink overloading and packet loss in comparison with GSP.
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