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Exploiting Spatial Interference Alignment and Opportunistic Scheduling in the Downlink of Interference-Limited Systems

机译:在受限受限系统的下行链路中利用空间干扰对齐和机会调度

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In this paper, we analyze the performance of single-stream and multistream spatial multiplexing (SM) systems employing opportunistic scheduling in the presence of interference. In the proposed downlink framework, every active user reports the postprocessing signal-to-interference-plus-noise power ratio (post-SINR) or the receiver-specific mutual information (MI) to its own transmitter using a feedback channel. The combination of scheduling and multiantenna receiver processing leads to substantial interference suppression gain. Specifically, we show that opportunistic scheduling exploits the spatial interference alignment (SIA) property inherent to a multiuser system for effective interference mitigation. We obtain bounds for the outage probability and the sum outage capacity for single-stream and multistream SM employing real or complex encoding for a symmetric interference channel (SIC) model. The techniques considered in this paper are optimal in different operating regimes. We show that the sum outage capacity can be maximized by reducing the SM rate to a value less than the maximum allowed value. The optimal SM rate depends on the number of interferers and the number of available active users. In particular, we show that the generalized multiuser SM (MU SM) method employing real-valued encoding provides a performance that is either comparable or significantly higher than that of MU SM employing complex encoding. A combination of analysis and simulation is used to describe the tradeoff between the multiplexing rate and the sum outage capacity for different antenna configurations.
机译:在本文中,我们分析了在存在干扰的情况下采用机会调度的单流和多流空间复用(SM)系统的性能。在提出的下行链路框架中,每个活跃用户都使用反馈信道将后处理信号干扰加噪声功率比(SINR)或特定于接收机的互信息(MI)报告给其自己的发射机。调度和多天线接收器处理的结合导致了很大的干扰抑制增益。具体来说,我们表明机会调度利用多用户系统固有的空间干扰对齐(SIA)属性来有效地缓解干扰。我们针对对称干扰信道(SIC)模型采用实数或复数编码,得出单流和多流SM的中断概率和总中断容量的界限。本文中考虑的技术在不同的操作方案中是最佳的。我们表明,通过将SM速率降低到小于最大允许值的值,可以使总停机容量最大化。最佳SM速率取决于干扰源的数量和可用活动用户的数量。特别是,我们表明采用实值编码的广义多用户SM(MU SM)方法提供的性能与采用复杂编码的MU SM相当或相当。分析和仿真的组合用于描述不同天线配置的复用率和总中断容量之间的折衷。

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