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Queueing performance analysis of CAC scheme in OFDMA based WiMAX system

机译:基于OFDMA的WiMAX系统中CAC方案的排队性能分析

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This paper presents a problem of queueing theoretic performance modeling and analysis of Orthogonal Frequency Division Multiple Access (OFDMA) under broad-band wireless networks. We consider a single-cell WiMAX environment in which the base station allocates subchannels to the subscriber stations in its coverage area. The subchannels allocated to a subscriber station are shared by multiple connections at that subscriber station. To ensure the Quality of Service (QoS) performances, a Connection Admission Control (CAC) scheme is considered at a subscriber station. A queueing analytical framework for these admission control schemes is presented considering OFDMA-based transmission at the physical layer. Then, based on the queueing model, both the connection-level and the packet-level performances are studied and compared with their analogues in the case without CAC. The connection arrival is modeled by a Poisson process and the packet arrival for a connection by a Markov Modulated Poisson Process (MMPP). We determine analytically and numerically different performance parameters.
机译:本文提出了宽带无线网络下的排队理论性能建模和正交频分多址(OFDMA)分析的问题。我们考虑一个单小区WiMAX环境,在该环境中,基站将子信道分配给其覆盖区域中的用户站。分配给用户站的子信道由该用户站上的多个连接共享。为了确保服务质量(QoS)性能,在用户站上考虑了连接许可控制(CAC)方案。考虑到物理层基于OFDMA的传输,提出了用于这些准入控制方案的排队分析框架。然后,基于排队模型,研究了连接级别和数据包级别的性能,并与没有CAC的情况下的类似性能进行了比较。通过泊松过程对连接到达进行建模,并通过马尔可夫调制泊松过程(MMPP)对连接的分组到达进行建模。我们在分析和数值上确定不同的性能参数。

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