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Fair TCP Channel Access for IEEE 802.11 WLANs.

机译:IEEE 802.11 WLAN的公平TCP通道访问。

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摘要

TCP exhibits unfairness in IEEE 802.11 WLANs due to the high rate of channel errors, frame collisions, and delays associated with wireless transmission. While much existing work has focused on improving TCP throughput in the presence of random data loss and delays, it has not completely addressed the problems that occur when TCP segments are involved in collisions. For example, when TCP acknowledgments (ACKs) collide with data segments, the data almost always survives due to the packet capture effect, while the ACKs cannot be decoded. Excess ACK errors can create unintended behavior in TCP congestion control algorithms, leading to slow data rates and unequal throughput distribution across parallel connections. Fair TCP Channel Access (FTCA) is a comprehensive MAC-layer solution developed to fix these issues. FTCA prioritizes TCP control packets at the MAC layer using quality-of-service mechanisms in the 802.11 standard. It reduces TCP ACK delays and prevents collisions between TCP control packets and data segments that could cause improper protocol operation. FTCA is designed to be easily deployable in existing networks. Using NS-3 network simulations, we perform a thorough comparison of FICA against other algorithms in capture-enabled WLANs. We show that FTCA significantly improves TCP fairness with minimal throughput overhead.
机译:由于通道错误,帧冲突和与无线传输相关的延迟很高,TCP在IEEE 802.11 WLAN中表现出不公平性。尽管许多现有工作集中于在存在随机数据丢失和延迟的情况下提高TCP吞吐量,但它还没有完全解决当TCP段涉及冲突时发生的问题。例如,当TCP确认(ACK)与数据段发生冲突时,由于数据包捕获效果,数据几乎总是存在,而ACK无法解码。过多的ACK错误会在TCP拥塞控制算法中造成意想不到的行为,从而导致数据速率降低以及并行连接之间的吞吐量分配不均。公平TCP通道访问(FTCA)是为解决这些问题而开发的综合MAC层解决方案。 FTCA使用802.11标准中的服务质量机制在MAC层对TCP控制数据包进行优先级排序。它减少了TCP ACK延迟,并防止了TCP控制包和数据段之间的冲突,这些冲突可能导致协议操作不正确。 FTCA旨在易于部署在现有网络中。使用NS-3网络模拟,我们在启用捕获的WLAN中将FICA与其他算法进行了全面比较。我们表明,FTCA以最小的吞吐量开销显着提高了TCP公平性。

著录项

  • 作者

    Sang, Christopher.;

  • 作者单位

    The Cooper Union for the Advancement of Science and Art.;

  • 授予单位 The Cooper Union for the Advancement of Science and Art.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 M.E.
  • 年度 2014
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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