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Analysis and enhancement of wireless LANs in noisy channels.

机译:噪声通道中无线局域网的分析和增强。

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摘要

Without a doubt, Wireless Local Area Networks (WLANs) technology has been encountering an explosive growth lately. IEEE 802.11 is the standard associated with this promising technology, which enures shared access to the wireless medium through the distributed coordination function (DCF). Recently, the IEEE 802.11e task group has made extensions to WLANs medium access control (MAC) in order to support quality of service (QoS) traffic.;An inherited problem for WLANs, is the volatility of the propagation medium, which is a challenging issue that affects the system performance significantly. Consequently, enhancing the operation of the DCF in noisy environments is of great interest, and has attracted the attention of many researchers.;Our first major contribution in the presented thesis, is an analytical and simulation analysis for the binary exponential backoff (BEB) scheme of the DCF, in the presence of channel noise. We show that following the BEB procedure when a host encounters erroneous transmission is needed only if the channel was highly loaded. However, incrementing the contention window (CW) upon each packet failure, whether caused by instantaneous transmission (i.e. collision) or channel noise, will result in the waste of air time if the channel was lightly loaded. Accordingly, we present a hybrid access method that adapts the CW according to the channel load along with the frame error rate (FER).;Other means to overcome the channel noise is the adjustment of the transmission rate. Many rate adaptation (RA) algorithms were introduced in the past few years, including the Automatic Rate Fallback (ARF) which is currently implemented in the wireless cards. Yet, many drawbacks are associated with these RA algorithms; specifically, in regard to the techniques and events that should trigger the rate change. Moreover, the IEEE 802.11e QoS flows requirements were not considered with the latter schemes. Accordingly, our next major contribution in this work is the presentation of a novel rate adaptation scheme. The simplicity of the introduced rate adaptation scheme is that it relies on the MAC layer parameters rather than those of the PHY layer when adjusting the rate. Furthermore, our algorithm supports the IEEE 802.11e MAC extensions where QoS traffic requirements were integrated in the procedure of adjusting the bit rate. Hence, strict real-time flow parameters such as delay and maximum drop rate are respected. Finally, we enhance the dynamic assignment of transmission opportunities (TXOPs) in order to offer fair air-time for nodes facing high packet loss rate.
机译:毫无疑问,无线局域网(WLAN)技术近来一直呈爆炸式增长。 IEEE 802.11是与此有前途的技术相关的标准,该技术可确保通过分布式协调功能(DCF)共享对无线介质的访问。最近,IEEE 802.11e任务组对WLAN介质访问控制(MAC)进行了扩展,以支持服务质量(QoS)流量。WLAN的一个固有问题是传播介质的易变性,这具有挑战性严重影响系统性能的问题。因此,在嘈杂的环境中增强DCF的操作引起了极大的兴趣,并引起了许多研究人员的关注。;我们在本文中的第一个主要贡献是对二进制指数退避(BEB)方案的分析和仿真分析。存在信道噪声时,DCF的变化。我们显示,仅当信道负载较高时,才需要在主机遇到错误传输时遵循BEB程序。然而,无论是瞬时传输(即冲突)还是信道噪声引起的,在每个分组失败时增加竞争窗口(CW)都会浪费信道时间,如果信道负载较轻。因此,我们提出了一种混合访问方法,根据信道负载和帧错误率(FER)来调整CW。克服信道噪声的其他方法是调整传输率。在过去几年中引入了许多速率自适应(RA)算法,包括当前在无线卡中实现的自动速率回退(ARF)。然而,这些RA算法有许多缺点。具体来说,关于触发速率变化的技术和事件。此外,后一种方案未考虑IEEE 802.11e QoS流量要求。因此,我们在这项工作中的下一个主要贡献是提出了一种新颖的速率自适应方案。引入的速率自适应方案的简单性在于,在调整速率时,它依赖于MAC层参数而不是PHY层的参数。此外,我们的算法支持IEEE 802.11e MAC扩展,其中在调整比特率的过程中集成了QoS流量要求。因此,必须遵守严格的实时流量参数,例如延迟和最大下降率。最后,我们增强了传输机会(TXOP)的动态分配,以便为面临高丢包率的节点提供公平的通话时间。

著录项

  • 作者

    Shamy, Khoder.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.A.Sc.
  • 年度 2008
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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