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Impacts of Radio Channel Characteristics, Heterogeneous Traffic Intensity, and Near–Far Effect on Rate Adaptive Scheduling Algorithms

机译:无线电信道特性,异构业务强度和近远效应对速率自适应调度算法的影响

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Applying adaptive modulation combined with scheduling in a shared data channel can substantially improve the spectral efficiency for wireless systems. This performance gain results from the multiuser diversity, which exploited independent channel variations across multiple users. In this paper, we present a cross-layer analysis to integrate physical-layer channel characteristics, media access control (MAC) layer scheduling strategies, and the network layer issue of heterogeneous traffic intensity across near–far users. Specifically, for radio channel characteristics, we take account of path loss, slowly varying log-normal shadowing and fast-varying Nakagami fading. We also evaluate the impact of selective transmit diversity on the throughput and fairness of wireless data networks. Furthermore, we consider three MAC schedulers: random scheduler, greedy scheduler (GS), and a newly proposed queue-length-based scheduler (QS). By applying the proposed cross-layer analytical framework, the following insights can be gained. First, for the three considered schedulers, channel fluctuations induced by Nakagami fading or log-normal shadowing can improve both total throughput and fairness. Second, using selective transmit diversity can improve throughput, but is unfavorable for the fairness performance. Third, the GS and the QS methods can improve throughput at the expense of unfairness to the far users. However, the throughput improvement from using the GS and the QS decreases as the traffic intensity of the far user increases. In summary, this cross-layer analysis can be used to develop new scheduling mechanisms for achieving better tradeoff between the fairness and throughput for wireless data networks.
机译:在共享数据信道中应用自适应调制与调度相结合可以大大提高无线系统的频谱效率。这种性能提升来自多用户多样性,该多样性利用了跨多个用户的独立信道变化。在本文中,我们提出了一个跨层分析,以整合物理层的信道特性,媒体访问控制(MAC)层调度策略以及跨远距离用户的异构流量强度的网络层问题。具体来说,对于无线电信道特性,我们考虑路径损耗,缓慢变化的对数正态阴影和快速变化的Nakagami衰落。我们还评估了选择性传输分集对无线数据网络的吞吐量和公平性的影响。此外,我们考虑了三个MAC调度程序:随机调度程序,贪婪调度程序(GS)和新提出的基于队列长度的调度程序(QS)。通过应用提出的跨层分析框架,可以获得以下见解。首先,对于三个已考虑的调度器,由Nakagami衰落或对数正态阴影引起的信道波动可以提高总吞吐量和公平性。其次,使用选择性发射分集可以提高吞吐量,但是不利于公平性。第三,GS和QS方法可以提高吞吐量,但代价是对远端用户不公平。但是,使用GS和QS带来的吞吐量提高随着远程用户的通信强度的增加而降低。总之,此跨层分析可用于开发新的调度机制,以实现无线数据网络的公平性和吞吐量之间的更好权衡。

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