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A cross layer framework of Radio Resource Allocation for QoS provisioning in multi-channel fading wireless networks

机译:多信道衰落无线网络中用于QoS设置的无线资源分配跨层框架

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In this paper, we present an analytical framework for the performance evaluation of Radio Resource Allocation (RRA) in Orthogonal Frequency Division Multiple Access (OFDMA) networks. We focus on Quality of Service (QoS) guaranteed traffic whose capacity, in terms of the number of active user connections, depends on the users' QoS requirements and channel conditions, and the RRA algorithm. The required QoS is guaranteed by restricting the number of admitted calls, which in turn requires an accurate estimate of the QoS metrics and capacity supported by the RRA when a new call arrives. These estimates for OFDMA networks are variable and usually obtained through time-consuming offline computer simulations. Mathematical frameworks on the other hand yield timely and accurate results. However, earlier known works on analytical modelling of RRA either consider a single channel with random traffic arrivals or multiple channels with full buffer data traffic. In contrast, we develop a queueing theoretic framework considering randomly arriving QoS-guaranteed traffic in a variable-rate multi-channel multi-class OFDMA network. The framework can be used online leading to better dynamic Call Admission Control. We characterize the RRA algorithm using a scheduler control parameter which can regulate the call blocking probability while providing predefined QoS constraints. We model the RRA as a variable service rate, multi-server, multi-class, finite buffer queueing system and verify the derived QoS metrics using extensive Monte-Carlo discrete event simulations.
机译:在本文中,我们为正交频分多址(OFDMA)网络中的无线电资源分配(RRA)性能评估提供了一个分析框架。我们专注于服务质量(QoS)保证的流量,其流量(根据活动用户连接数)取决于用户的QoS要求和信道条件以及RRA算法。通过限制允许的呼叫数量来保证所需的QoS,这又要求对新呼叫到达时RRA支持的QoS指标和容量进行准确的估计。 OFDMA网络的这些估计是可变的,通常是通过耗时的脱机计算机模拟获得的。另一方面,数学框架会产生及时而准确的结果。但是,有关RRA的分析建模的早期已知工作要么考虑具有随机流量到达的单个通道,要么考虑具有完整缓冲区数据流量的多个通道。相比之下,我们在可变速率多通道多类OFDMA网络中考虑了随机到达的QoS保证流量,从而开发了排队理论框架。该框架可在线使用,从而实现更好的动态呼叫准入控制。我们使用调度程序控制参数来表征RRA算法,该参数可以在提供预定义的QoS约束的同时调节呼叫阻塞概率。我们将RRA建模为可变服务速率,多服务器,多类,有限缓冲区排队系统,并使用广泛的蒙特卡洛离散事件仿真来验证派生的QoS指标。

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