分布式wsn中从中断概率到ALOHA MAC层性能分析

M. Seddik, V. Toldov, L. Clavier, N. Mitton
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引用次数: 7

摘要

在蜂窝网络中,中断概率是指信号干扰加噪声比(SINR)小于给定阈值的概率。在本文中,我们首先考虑了问题参数,即网络中节点的空间密度、噪声功率、传输功率、所考虑节点与基站之间的距离以及衰减系数,建立了无线传感器网络中断概率的显式公式。其次,利用马尔可夫链对给定节点进行建模,研究了slottealoha协议和带初步信道保留的slottealoha协议下MAC层的性能。特别是在本研究中,我们从理论上估计了经过一定次数的尝试后传输成功的可能性,我们认为这是评估所考虑的协议性能的指标。最后,将理论结果与Lille大型平台FIT物联网实验室的实验结果进行了比较。综上所述,本文回答了以下问题:我们需要多少信道来实现高性能的分布式无线传感器网络?经过一定次数的尝试后,使传输成功可能性最大化的必要信道数给出了答案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From outage probability to ALOHA MAC layer performance analysis in distributed WSNs
In cellular networks, the outage probability is the probability that the signal-to-interference-plus-noise-ratio (SINR) is less than a given threshold. In this article, firstly, we develop an explicit formula for outage probability for a wireless sensor network taking account of the problem parameters — i.e. the spatial density of nodes in the network, the noise power, the transmission power, the distance between the considered node and the base station, and finally the attenuation coefficient —. Secondly, we model a given node by a Markov chain to study the performance of the MAC layer in the case of a Slotted-ALOHA protocol and Slotted-ALOHA with preliminary channel reservation. Especially in this study, we theoretically estimate the transmission success likelihood after a certain number of attempts that we consider as a metric to evaluate the performance of the considered protocol. Finally we compare the theoretical results with experimental ones achieved on the large scale platform FIT IoT-Lab of Lille. To sum up, this paper responds to the following question: How many channels do we need to a achieve high performance distributed wireless sensor network? The answer is given by the necessary number of channels which maximizes the transmission success likelihood after a certain number of trials.
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