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Discrete-time modeling for performance analysis of real-time services in IEEE 802.16 networks

机译:离散建模,用于IEEE 802.16网络中实时服务的性能分析

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摘要

The IEEE 802.16 standard has been proposed to provide last-mile wireless broadband access, especially for real-time applications. Both unsolicited grant service (UGS) and real-time polling service (rtPS) are defined to support real-time data transmission. The most important parameters of UGS and rtPS are allocated bandwidth and number of request opportunities, respectively. The critical problems of real-time applications, including latency, packet loss, and bandwidth utilization, would be impacted by different parameters configurations of UGS and rtPS. Even though the discrete-time queueing systems could be more accurate and effect in modeling frame-based systems, discrete model is not widely applied due to its complicated analysis. It motivates us to utilize a discrete-time GI-D-c model and a GI-Geo-1 model to investigate the performance of UGS and rtPS, respectively. In both models, the arrival process and service process are both derived while accounting for the traffic load, data size, and number of request opportunities. Numerous experiments indicate that the simulation results agree well with the analysis results. The UGS performs stably in most circumstances. However, latency and transmission queue size degenerate as traffic load increases when the allocated bandwidth is less than the number of arrival PDUs. The latency of rtPS is higher than the latency of UGS due to the request/grant scheme, and decreases as the number of request opportunities increases. Moreover, the bandwidth utilization of UGS and request opportunity efficiency of rtPS are also analyzed under various traffic load and linearly increase as traffic load increases. The study provides a tool to analyze the impact of different parameter configurations and the tool can be easily applicable to other scheduling services.
机译:已经提出了IEEE 802.16标准以提供最后一英里的无线宽带访问,特别是对于实时应用。主动提供的授权服务(UGS)和实时轮询服务(rtPS)均被定义为支持实时数据传输。 UGS和rtPS的最重要参数分别是分配的带宽和请求机会的数量。 UGS和rtPS的不同参数配置会影响实时应用程序的关键问题,包括延迟,数据包丢失和带宽利用率。尽管离散时间排队系统可能更准确,并且可以在基于帧的系统建模中发挥作用,但是由于其复杂的分析,离散模型并未得到广泛应用。它激励我们利用离散时间GI-D-c模型和GI-Geo-1模型分别研究UGS和rtPS的性能。在这两种模型中,都在考虑流量负载,数据大小和请求机会数量的同时导出了到达过程和服务过程。大量实验表明,仿真结果与分析结果吻合良好。在大多数情况下,UGS的性能稳定。但是,当分配的带宽小于到达PDU的数量时,等待时间和传输队列大小会随着流量负载的增加而退化。由于请求/授予方案,rtPS的等待时间高于UGS的等待时间,并且随着请求机会数量的增加而减少。此外,还分析了在各种流量负载下UGS的带宽利用率和rtPS的请求机会效率,并且随着流量负载的增加线性增加。该研究提供了一种工具来分析不同参数配置的影响,并且该工具可以轻松地应用于其他调度服务。

著录项

  • 来源
    《Computer Communications》 |2010年第16期|P.1928-1936|共9页
  • 作者单位

    Department of Computer Science and Engineering, National Chung Hsing University 250, Kuo Kuang Rd., Taichuang 402, Taiwan;

    rnDepartment of Computer Science and Engineering, National Chung Hsing University 250, Kuo Kuang Rd., Taichuang 402, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    WiMAX; scheduling services; UGS; rtPS; discrete-time queueing model;

    机译:WiMAX;调度服务;UGS;rtPS;离散时间排队模型;

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