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On Markov Modeling of Random Access in Communication Systems.

机译:通信系统中随机访问的马尔可夫建模。

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摘要

This dissertation considers the random access process in the Medium Access Control (MAC) of communications system. New MAC models are developed to improve the performance of random access based systems.;The first contribution is the introduction of a general multichannel random access model with a variable radix. This model is general and can be applied to many existing MAC protocols that utilize random access. It is shown that using the standard Binary Exponential Backoff (BEB) to resolve collisions is not always the best choice. By adjusting the radix, contention efficiency can be improved significantly. The analytical results obtained are confirmed by simulation.;The second contribution is the investigation of the variable radix backoff strategy with the contention-based bandwidth request (BW-REQ) mechanism in IEEE 802.16 systems. An analytical model of the BW-REQ procedure is presented which includes a variable radix in the backoff process. Analytical results are presented which show that the variable radix can easily be adjusted to the number of users and the available resources to enhance the efficiency of the Random Access Channel in the uplink subframe. Simulations results are presented to confirm the theory.;The third contribution is the development of a reliable Quality of Service (QoS) mechanism for random access systems. The available resources are quantitatively categorized to provide differential services to two classes of users. The model is extended to employ a variable radix strategy. Results show that this strategy can be used in combination with differential services to provide an efficient QoS technique for random access.;The fourth contribution is an optimized packet-based finite state Markov chain (FSMC) model for the physical channel. This model employs an equal average fade range duration (AFRD) strategy to partition the signal-to-noise ratio (SNR). The Nakagami-m fading channel model is used as it can span a wide range of fading conditions. The accuracy of the analytical results is confirmed by simulation. A cross-layer Markov model encompassing the FSMC model and a general multichannel random access model is introduced.;Finally, a simulation toolbox using object oriented programming is presented. It was used to accurately simulate the models developed in this dissertation. This toolbox is general and can be used for a wide range of MAC models.
机译:本文考虑了通信系统介质访问控制(MAC)中的随机访问过程。开发了新的MAC模型以提高基于随机访问的系统的性能。第一个贡献是引入了具有可变基数的通用多通道随机访问模型。该模型是通用的,可以应用于许多利用随机访问的现有MAC协议。结果表明,使用标准的二进制指数补偿(BEB)解决冲突并非总是最佳选择。通过调整基数,可以显着提高竞争效率。仿真结果证实了所获得的分析结果。第二点是研究IEEE 802.16系统中基于竞争的带宽请求(BW-REQ)机制的可变基数退避策略。提出了BW-REQ过程的分析模型,该模型在退避过程中包括一个可变基数。给出的分析结果表明,可以容易地将可变基数调整为用户数量和可用资源,以增强上行链路子帧中随机接入信道的效率。给出了仿真结果,以证实该理论。第三点是为随机接入系统开发了可靠的服务质量(QoS)机制。可用资源被定量分类以向两类用户提供差异服务。该模型被扩展为采用可变基数策略。结果表明,该策略可与差分服务结合使用,为随机访问提供有效的QoS技术。第四点是优化的基于分组的物理通道有限状态马尔可夫链(FSMC)模型。该模型采用相等的平均衰落范围持续时间(AFRD)策略来划分信噪比(SNR)。使用Nakagami-m衰落信道模型,因为它可以跨越各种衰落条件。分析结果的准确性通过仿真得到确认。介绍了一个包含FSMC模型和通用多通道随机访问模型的跨层马尔可夫模型。最后,提出了一种使用面向对象程序设计的仿真工具箱。它被用来精确地模拟本文开发的模型。该工具箱是通用的,可用于多种MAC模型。

著录项

  • 作者单位

    University of Victoria (Canada).;

  • 授予单位 University of Victoria (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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