Admission control based on OFDMA channel transformations

J. Gross
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引用次数: 19

Abstract

It is well known that channel-dependent OFDMA resource assignment algorithms provide a significant performance improvement compared to static (i.e. channelunaware) approaches. Such dynamic algorithms constantly adapt resource assignments to current channel states according to some objective function. Due to these dynamics, it is difficult to predict the resulting performance for such schemes given a certain scenario (characterized by the number of terminals in the cell and their average channel gains). Hence, previous work on admission control for OFDMA systems neglects the performance improvement from channel-dependent resource assignments and bases analysis on the average channel gains instead. In this paper we provide for the first time an analytical framework for admission control in OFDMA systems applying channel-dependent resource assignments. The framework is based on fundamental transformations of the channel gains caused by the channel-dependent assignment algorithms. We provide closed-form expressions for these transformations and derive from them probability functions for the rate achieved per terminal and frame. These functions can then be used for admission control as demonstrated in this paper for Voice-over-IP streams in IEEE 802.16e systems.
基于OFDMA信道变换的准入控制
众所周知,与静态(即信道不知情)方法相比,信道相关的OFDMA资源分配算法提供了显着的性能改进。这种动态算法根据一定的目标函数不断调整资源分配以适应当前信道状态。由于这些动态,在给定特定场景(以小区中的终端数量及其平均信道增益为特征)的情况下,很难预测这些方案的最终性能。因此,先前关于OFDMA系统准入控制的工作忽略了信道相关资源分配的性能改进,而是基于平均信道增益的分析。在本文中,我们首次提供了一个基于信道相关资源分配的OFDMA系统准入控制的分析框架。该框架基于由信道相关分配算法引起的信道增益的基本变换。我们为这些变换提供了封闭形式的表达式,并由此导出了每个终端和帧的速率的概率函数。这些功能可以用于入场控制,如本文所示,用于IEEE 802.16e系统中的ip话音流。
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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