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A Distributed Scheduling Algorithm for Multiuser MIMO Systems with 1-bit SINR Feedback

机译:具有1位SINR反馈的多用户MIMO系统分布式调度算法

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Opportunistic scheduling in random beamforming maximizes the sum-rate by allocating resources to the users with the best channel condition, thus leveraging on multiuser diversity/multiplexing gain. Even if the scheduler assigns the resources according to the SINR, the main drawback to the practical deployment of these schemes is the intense feedback to be provided by every user. In this paper we address the sum-rate maximization of downlink multiuser MIMO Space Division Multiple Access systems based on 1-bit quantization of SINR feedback where each available spatial beam is assigned to a different user. To minimize signalling, here it is proposed a distributed method to locally estimate the optimal quantization thresholds among the terminals that guarantees a fair allocation of the available resources. Analytical results prove that the distributed scheme is asymptotically (when increasing the number of users) optimal in terms of sum-rate scaling law. Numerical simulations validate the analysis and highlight the capability of the distributed scheme to guarantee fairness constraints.
机译:随机波束成形中的机会定期调度通过将资源分配给具有最佳通道条件的用户来最大化总和速率,从而利用多用户分集/复用增益。即使调度程序根据SINR分配资源,即,这些方案的实际部署的主要缺点是每个用户提供的强烈反馈。在本文中,我们基于SINR反馈的1位量化来解决下行链路多用户MIMO空间分割多址系统的SUM速率最大化,其中每个可用空间光束被分配给不同的用户。为了最小化信令,在这里提出了一种分布式方法,用于局部地估计终端之间的最佳量化阈值,该终端可以保证可用资源的公平分配。分析结果证明了分布式方案是渐近的(当用户数量增加时)在总和率缩放法中最佳。数值模拟验证分析并突出分布式方案以保证公平限制的能力。

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