On the rate constraint of transmitting multiple priority classes with QoS

W. Kumwilaisak, Qian Zhang, Wenwu Zhu, C.-C. Jay Kuo, Ya-Qin Zhang
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引用次数: 1

Abstract

The rate constraint of transmitting multiple priority classes over a time-varying service-rate channel is studied in this work. This constraint specifies the maximum data rate that can be transmitted reliably with QoS (quality of service) guarantee. In our framework, the time-varying service channel is modeled by an N-state discrete Markov process, where each Markov state is associated with a channel service rate, and the absolute priority scheduling is used to transport packets of different classes. The transmission rate constraint is derived based on effective bandwidth and capacity. To be more specific, given channel parameters and the maximum buffer size for each priority class, statistical QoS guarantees in terms of packet loss probabilities can be determined and translated to the transmission rate constraint. The derived result is verified by simulation in a time-varying wireless environment.
基于QoS的多优先级传输速率约束研究
研究了时变服务速率信道上传输多个优先级的速率约束问题。此约束指定了在QoS(服务质量)保证下可以可靠传输的最大数据速率。在我们的框架中,时变服务通道由n状态离散马尔可夫过程建模,其中每个马尔可夫状态与通道服务速率相关联,并使用绝对优先级调度来传输不同类别的数据包。基于有效带宽和有效容量导出了传输速率约束。更具体地说,给定每个优先级类的通道参数和最大缓冲区大小,就可以确定丢包概率方面的统计QoS保证,并将其转换为传输速率约束。在时变无线环境下进行了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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