基于干扰的无线自组网呼叫接纳控制

Sridhar K N, M. Chan
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引用次数: 4

摘要

在本文中,我们提出了一种无线自组织网络的呼叫允许控制机制,称为基于干扰的呼叫允许控制(iCAC)。廉政公署的独特之处在于,它不会统一处理干扰,而是根据对干扰节点位置的估计对干扰进行分类。廉政公署依靠两种新技术:(1)估计干扰节点的位置;(2)利用带宽获取和速率控制公平分配。廉署采用这些技术,可大幅增加估计的可用频宽,而不会令网络超载。我们比较廉署与感知入场控制(PAC)及IEEE 802.11无入场控制。仿真结果显示,廉署可接纳比PAC多得多的请求,吞吐量达到IEEE 802.11的80%以上,同时丢包率和平均延迟与PAC相当低
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interference based Call Admission Control for Wireless Ad Hoc Networks
In this paper, we propose a call admission control mechanism for wireless ad hoc networks called interference-based call admission control (iCAC). iCAC is unique in that it does not treat interference uniformly instead classifies interference based on estimates of the position of the interfering nodes. iCAC relies on two novel techniques: (1) estimation of position of the interfering nodes (2) fair allocation using bandwidth acquisition and rate control. By incorporating these techniques, iCAC is able to increase the estimated available bandwidth substantially without overloading the network. We compare iCAC with perceptive admission control (PAC) and IEEE 802.11 without admission control. Simulation results show that iCAC is able to admit substantially more requests than PAC, achieves more than 80% of the throughput of IEEE 802.11 and at the same time maintains very low packet loss rate and average delay comparable to PAC
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