基于信道绑定的无线局域网信道分配策略研究

IF 0.6 4区 计算机科学 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS Ad Hoc & Sensor Wireless Networks Pub Date : 2020-11-16 DOI:10.1145/3416011.3424755
Amel Chadda, Marija Stojanova, Thomas Begin, A. Busson, I. G. Lassous
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引用次数: 1

摘要

为了提高无线数据速率,IEEE 802.11n引入了WLAN节点将两个通道绑定为单个通道的可能性。然而,通道键合也限制了空间重用并使通道分配复杂化。本文提出了一种基于信道绑定的802.11无线局域网中信道宽度选择和信道分配的快速有效的解决方案。所提出的算法使用一种新颖的、以图形为中心的度量来为WLAN的所有ap提出一个单一的通道宽度,旨在避免网络中任何ap的饥饿。信道宽度和信道分配的选择解耦产生了一种可伸缩的方法,该方法绕过了经典信道分配方案中常见的复杂性问题。通过将其结果与ns-3网络模拟器提供的结果进行比较,我们测试了该解决方案在选择合适的信道宽度和分配方面的精度。我们得到,在绝大多数情况下,我们的解所做的选择与仿真结果相匹配。
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Towards a Fast and Efficient Strategy to Assign Channels in WLANs with Channel Bonding
With the aim of increasing wireless data rates, IEEE 802.11n introduced the possibility for WLAN nodes to bond two channels into a single channel. However, channel bonding also limits spacial reutilization and complexifies channel assignment. In this paper, we present a fast and efficient solution for channel width selection and channel assignment in 802.11 WLANs using channel bonding. The proposed algorithm uses a novel, graph-centric metric to propose a single channel width for all the APs of the WLAN aiming at avoiding starvation in any of the network's APs. Decoupling the choice of channel width and channel assignment results in a scalable approach that bypasses the usual complexity issues of classic channel assignment schemes. We test the solution's precision in choosing a suited channel width and assignment by comparing its results with those delivered by the ns-3 network simulator. We obtain that, in the large majority of the cases, the choice made by our solution matches the simulation results.
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来源期刊
Ad Hoc & Sensor Wireless Networks
Ad Hoc & Sensor Wireless Networks 工程技术-电信学
CiteScore
2.00
自引率
44.40%
发文量
0
审稿时长
8 months
期刊介绍: Ad Hoc & Sensor Wireless Networks seeks to provide an opportunity for researchers from computer science, engineering and mathematical backgrounds to disseminate and exchange knowledge in the rapidly emerging field of ad hoc and sensor wireless networks. It will comprehensively cover physical, data-link, network and transport layers, as well as application, security, simulation and power management issues in sensor, local area, satellite, vehicular, personal, and mobile ad hoc networks.
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