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Dynamic Resource Allocation for Downlink Multiuser MIMO-OFDMA/SDMA Systems

机译:下行多用户MIMO-OFDMA / SDMA系统的动态资源分配

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摘要

In this paper, new dynamic resource allocation algorithms are investigated for the downlink of multiuser multiple-input multiple-output orthogonal frequency-division multiple-access and space-division multiple-access (MU-MIMO-OFDMA/SDMA) systems. Firstly, a mathematical formulation of the optimization problem is presented with the objective of maximizing the total system throughput under the constraints of each user's quality of service (QoS) requirement and the integer modulation orders available on each spatial subchannel. Secondly, since it is difficult to obtain the optimal solution to the joint optimization problem, the whole optimization procedure is divided into two steps, namely, the subcarrier-user scheduling and the resource allocation. In the first step, a new metric is proposed to measure the spatial compatibility of multiple users, each with multiple receive antennas, based on which a new scheduling algorithm is designed to identify the optimal sets of selected users over all subcarriers. In the second step, two dynamic resource allocation algorithms are developed to assign radio resources to the scheduled users subcarrier by subcarrier. Simulation results demonstrate that the proposed algorithms outperform the traditional allocation methods based on random scheduling scheme. Especially, the performance of the algorithm, combined with power reuse strategy, approaches closely to that of the optimal allocation method based on user selection.
机译:本文针对多用户多输入多输出正交频分多址和空分多址(MU-MIMO-OFDMA / SDMA)系统的下行链路,研究了新的动态资源分配算法。首先,提出了优化问题的数学公式,其目的是在每个用户的服务质量(QoS)要求和每个空间子信道上可用的整数调制阶数的约束下最大化总系统吞吐量。其次,由于难以获得联合优化问题的最优解,因此整个优化过程分为子载波-用户调度和资源分配两步。第一步,提出一种新的度量标准,以测量每个用户具有多个接收天线的多个用户的空间兼容性,在此基础上,设计一种新的调度算法,以识别所有子载波上选定用户的最佳集合。在第二步中,开发了两种动态资源分配算法,以将无线资源逐个子载波分配给调度用户。仿真结果表明,该算法优于基于随机调度方案的传统分配方法。特别是,结合功率重用策略的算法性能与基于用户选择的最佳分配方法的性能非常接近。

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