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Performability analysis of wireless mobile communication systems.

机译:无线移动通信系统的性能分析。

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摘要

Components of wireless mobile systems are subject to unplanned and planned outages. The duration of the outages and recoveries may follow arbitrarily general distribution in contrast to the widely-held exponential assumption for convenient Markov availability models in practice. We study the availability of systems with non-exponentially distributed outages and give useful criteria with regard to the use of all-exponential availability models. We also study how redundancy in a system can be taken advantage in planned outages to improve system performability.; We introduce a fault-tolerant feature to mitigate the adverse impact by control channel failures. We build Markov chain performability models to show the effectiveness of the automatic protection scheme in the cellular environment with multiple base repeaters for each cell. To conduct efficient numerical evaluation, we also build hierarchical Markov models using decomposition technique to avoid largeness and stiffness in the exact models.; The advent of packet-switched data services into wireless mobile systems presents great challenges in the performance modeling. One of the major difficulties is that the arrival processes of connection requests are so complicated by the data user behavior and the strong coupling effect caused by the multiple access mechanisms that simple assumptions such as Poisson arrivals may no longer be valid. We take on this problem by first examining the performance of a realistic system, GPRS (General Packet Radio Service), by building a comprehensive model which reflects the major features in its uplink multiple access mechanism. We then investigate a downlink scheduling policy, namely the Generalized Weighted Queue Length (GWQL) policy, to evaluate its performance under bursty data traffic and time-varying channels. We also study the effect of the distribution of access delay in multiplexing data traffic over a wireless link under the capacity-on-demand concept in wireless data services. (Abstract shortened by UMI.)
机译:无线移动系统的组件会遭受计划外和计划内的中断。与广泛使用的方便马尔可夫可用性模型的指数假设相反,中断和恢复的持续时间可以遵循任意一般分布。我们研究了非指数分布中断的系统可用性,并就使用全指数可用性模型给出了有用的标准。我们还研究了如何在计划内的停机中利用系统中的冗余来提高系统性能。我们引入了容错功能,以减轻控制通道故障带来的不利影响。我们建立马尔可夫链性能模型,以显示在每个单元具有多个碱基中继器的蜂窝环境中自动保护方案的有效性。为了进行有效的数值评估,我们还使用分解技术构建了层次马尔可夫模型,以避免精确模型中的较大性和刚性。分组交换数据服务进入无线移动系统的出现对性能建模提出了巨大挑战。主要困难之一是,连接请求的到达过程由于数据用户的行为以及多重访问机制引起的强烈耦合效应而变得非常复杂,以至于简单的假设(例如泊松到达)可能不再有效。我们首先通过建立一个反映其上行链路多址访问机制主要特征的综合模型来研究实际系统GPRS(通用分组无线业务)的性能,从而解决这个问题。然后,我们研究下行链路调度策略,即广义加权队列长度(GWQL)策略,以评估其在突发数据流量和时变信道下的性能。我们还研究了在无线数据服务中按需容量概念下无线链路上多路复用数据流量中访问延迟分布的影响。 (摘要由UMI缩短。)

著录项

  • 作者

    Cao, Yonghuan.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 165 p.
  • 总页数 165
  • 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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