Priority-based bandwidth allocation in wireless sensor networks

A. Marin, S. Rossi
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引用次数: 3

Abstract

In Wireless Sensor Networks (WSN) a set of motes monitors the environment by measuring some physical phenomena such as humidity, light, temperature, vibrations. The coexistence of different data types arises the problem of assigning the network resources in a fair way by taking into account possible different priorities among the traffic streams. In this paper we propose an allocation control scheme which is easy to implement, meets the limited resources of sensor nodes, and does not require extra control traffic in the WSN. Our scheme is based on the idea that the motes maintain a window with the classes of the latest transmissions. We propose an analytical model and provide an algorithm to study the performance of this allocation scheme with respect to the throughput and the fairness achieved. The model is a continuous time Markov chain which is proved to be dynamically reversible (although not reversible) and admits a product-form equilibrium distribution.
无线传感器网络中基于优先级的带宽分配
在无线传感器网络(WSN)中,一组mote通过测量一些物理现象(如湿度、光线、温度、振动)来监测环境。不同数据类型的共存产生了通过考虑流量流之间可能存在的不同优先级来公平分配网络资源的问题。本文提出了一种易于实现,满足传感器节点有限资源的分配控制方案,并且不需要在WSN中增加额外的控制流量。我们的方案基于这样一种思想,即粒子与最新传输的类保持一个窗口。我们提出了一个分析模型,并提供了一个算法来研究该分配方案在吞吐量和公平性方面的性能。该模型是一个连续时间马尔可夫链,被证明是动态可逆的(尽管不可逆),并允许产品形式的平衡分布。
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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