Effective service capacity analysis of opportunistic multi-carrier OFDMA systems

J. Gross, Marco Weyres, A. Wolisz
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引用次数: 1

Abstract

Exact queuing-theoretic modeling of wireless systems is tough due to the complex service processes that arise from the interaction of the wireless channel with state-of-the-art signal processing algorithms. Nevertheless, with the rise of video applications like streaming and telephony in upcoming fourth generation cellular networks, such analysis is important for devising admission control strategies. In this paper we apply recent insights into approximation approaches for queuing systems to opportunistic OFDMA systems and study different approaches for applying the modulation type to OFDM subcarriers. In particular, we provide analytical closed-form expressions for the delay distribution of three opportunistically scheduling OFDMA systems (adaptive modulation, link adaptation per terminal, link adaptation over all subcarriers). After validating these expressions, we evaluate the different system designs numerically. We find that although adaptive modulation systems have a higher complexity, their queuing performance is only slightly superior to systems with link adaptation per terminal. Furthermore, the systems feature in general an optimal number of terminals that can be supported in the cell, leveraging multi-user diversity with limited available resources. Nevertheless, these optima change from scheme to scheme.
机会多载波OFDMA系统的有效业务容量分析
由于无线信道与最先进的信号处理算法相互作用所产生的复杂服务过程,无线系统的精确排队理论建模是困难的。然而,随着流媒体和电话等视频应用在即将到来的第四代蜂窝网络中的兴起,这种分析对于制定准入控制策略非常重要。在本文中,我们将排队系统的近似方法的最新见解应用于机会OFDMA系统,并研究了将调制类型应用于OFDM子载波的不同方法。特别是,我们提供了三种机会调度OFDMA系统(自适应调制,每个终端的链路自适应,所有子载波的链路自适应)的延迟分布的解析封闭形式表达式。在验证了这些表达式之后,我们对不同的系统设计进行了数值评估。我们发现,尽管自适应调制系统具有更高的复杂性,但其排队性能仅略优于每终端链路自适应的系统。此外,系统通常具有蜂窝中可支持的最佳终端数量,利用有限可用资源的多用户多样性。然而,这些最优值因方案而异。
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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