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Adaptive scheduling for MIMO wireless networks: cross-layer approach and application to HSDPA

机译:MIMO无线网络的自适应调度:跨层方法及其在HSDPA中的应用

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摘要

In this paper, we consider the scheduling problem in multiple-input multiple-output (MIMO) wireless networks. The main important characteristic of an optimal scheduler is to maximize throughput while servicing users in a fair manner. Herein, we formulate MIMO scheduling as a generalized assignment problem (GAP) and propose a general solution for the GAP, namely, a cross-layer MIMO scheduler (CMS), which uses a novel adaptive proportional fairness (APF) mapping approach in conjunction with a new fast transmit antenna selection (FTAS) technique, to determine the set of users to transmit to and the antenna over which the data associated to each user should be transmitted. The proposed scheduler is applied for packet transmission in high-speed downlink packet access (HSDPA), taking advantage of the use of adaptive modulation and coding while coping with the constraints on the maximum number of simultaneous codes a user equipment can support, the limited uplink signalling, and the absence of fast power control. Numerical results show that the proposed CMS provides up to 70% increase in total throughput compared to other scheduling schemes
机译:在本文中,我们考虑了多输入多输出(MIMO)无线网络中的调度问题。最佳调度程序的主要重要特征是在以公平的方式为用户提供服务的同时最大化吞吐量。在本文中,我们将MIMO调度表述为广义分配问题(GAP),并提出了针对GAP的通用解决方案,即跨层MIMO调度器(CMS),该方案结合了新颖的自适应比例公平(APF)映射方法和一种新的快速发射天线选择(FTAS)技术,以确定要向其发射的用户组以及应在其上发射与每个用户相关的数据的天线。拟议的调度程序适用于高速下行链路分组接入(HSDPA)中的分组传输,它利用自适应调制和编码的优势,同时解决了用户设备可以支持的最大同时代码数量,有限的上行链路的限制发信号,并且没有快速的功率控制。数值结果表明,与其他调度方案相比,建议的CMS可将总吞吐量提高多达70%

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