基于Erlang损失模型的OFDMA蜂窝网络下行链路的维数分析

B. Błaszczyszyn, M. Karray
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引用次数: 25

摘要

在本文中,我们提出了以下方法来确定OFDMA网络中下行链路的无线电部分的尺寸。首先,我们利用信息论来表征从基站到其移动端信道的比特率。这取决于分配给这个移动设备的功率和带宽。然后,我们描述了资源(功率和带宽)分配问题,并描述了所有用户的比特率的可行配置。作为关键元素,我们提出了一些特定的充分条件(以多erlang形式),以使给定的比特率配置可行。最后,我们考虑一个Erlang的损失模型,在这个模型中,流到达会导致违反这个充分条件的流到达被阻塞和丢失。在该模型中,可以使用Kaufman-Roberts算法计算阻塞概率。我们提出它来评估基站的最小密度,以确保每个地面单元给定负载的流通信的可接受阻塞概率。我们通过将阻塞概率与类似模型中模拟的阻塞概率进行比较来验证这种方法,其中接纳控制基于原始可行性属性(而不是其充分条件)。我们的充分比特率可行性条件也可用于弹性流量的网络维度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dimensioning of the downlink in OFDMA cellular networks via an Erlang's loss model
In this paper we propose the following approach to the dimensioning of the radio part of the downlink in OFDMA networks. First, we use information theory to characterize the bit-rate in the channel from a base station to its mobile. It depends on the power and bandwidth allocated to this mobile. Then, we describe the resource (power and bandwidth) allocation problem and characterise feasible configurations of bit-rates of all users. As the key element, we propose some particular sufficient condition (in a multi-Erlang form) for a given configuration of bit-rates to be feasible. Finally, we consider an Erlang's loss model, in which streaming arrivals whose admission would lead to the violation of this sufficient condition are blocked and lost. In this model, the blocking probabilities can be calculated using Kaufman-Roberts algorithm. We propose it to evaluate the minimal density of base stations assuring acceptable blocking probabilities for a streaming traffic of a given load per surface unit. We validate this approach by comparison of the blocking probabilities to these simulated in the similar model in which the admission control is based on the original feasibility property (instead of its sufficient condition). Our sufficient bit-rate feasibility condition can also be used to dimension the network with respect to the elastic traffic.
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