无线多媒体网络中OFDM子载波分配的排队分析

Yan Zhang, Yifan Chen
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引用次数: 3

摘要

本文在正交频分复用(OFDM)子载波分配方面有两个主要贡献。首先对无线多媒体网络中OFDM子载波分配的话务排队问题进行了分析。在文献中,已经研究了与OFDM相关的各种问题。然而,对OFDM系统性能的研究却很少。呼叫连接请求分为窄带和宽带两种类型。对于任何一类呼叫,流量过程都被描述为批量到达,因为每个呼叫可能请求多个子载波以满足其服务质量(QoS)要求。批大小是一个随机变量,遵循具有实际最大值的概率质量函数(pmf)。此外,各个班级的服务时间也不同。因此,在基于OFDM的宽带无线多媒体网络中,将系统表述为多类多服务器批量到达排队系统。第二个贡献是研究了两种呼叫允许控制算法,批量阻塞方案和部分阻塞方案。为以下重要的性能指标开发了公式:呼叫被阻塞的概率和带宽利用率。数值研究展示了关键参数和性能指标之间的关键相互作用。仿真结果验证了分析模型的正确性;因此,它为构建下一代宽带无线接入网提供了一种有效的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Queueing Analysis of OFDM Subcarrier Allocation in Wireless Multimedia Networks
There are two major contributions in this paper in the context of Orthogonal Frequency Division Multiplexing (OFDM) subcarrier allocation. The first is to perform a tele- traffic queueing analysis for OFDM subcarrier allocation in wireless multimedia networks. In the literature, a variety of issues related to OFDM have been studied. However, the OFDM system performance is rarely investigated. Call connection requests are differentiated into two types: narrow-band and wide-band. For either class of call, the traffic process is characterized as batch arrival because each call may request multiple subcarriers to satisfy its Quality-of-Service (QoS) requirements. The batch size is a random variable following a probability mass function (pmf) with a realistic maximum value. In addition, the service times for various classes are different. Consequently, in OFDM- based broadband wireless multimedia networks, the system are formulated as multiclass multiserver batch arrival queueing systems. The second contribution is the investigation of two call admission control algorithms, the batch blocking scheme and the partial blocking scheme. Formulae are developed for the following significant performance metrics: the probability that a call will be blocked and bandwidth utilization. Numerical investigations are presented to demonstrate the key interaction between key parameters and performance metrics. The analytical model was validated by the simulation results; consequently, it provides an efficient tool for building future-generation broadband wireless access networks.
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