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Joint User Scheduling and Adaptive Intercell Interference Cancelation for MISO Downlink Cellular Systems

机译:MISO下行蜂窝系统的联合用户调度和自适应小区间干扰消除

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摘要

Recently, an adaptive intercell interference (ICI) mitigation technique has been proposed for downlink cellular systems as a means to increase throughput with low system complexity. However, in the prior work, the issue of intercell user scheduling has not been considered. In this paper, we study multiple-input–single-output (MISO) downlink cellular systems that jointly design adaptive ICI cancelation (ICIC) and intercell user scheduling assuming that partial channel state information (CSI) is shared among base stations (BSs). Since the optimal solution would require high complexity, we investigate a new low-complexity algorithm that selects the best users and their beamforming strategies in terms of maximizing the weighted sum rate (WSR). To this end, we first develop a simple threshold criterion for each user to decide the preferred beamforming strategy based on the derivation of the expected signal-to-interference-plus-noise ratio (SINR). Then, according to users' feedback about their decisions, a successive user and beamforming selection algorithm is performed at the BSs. From simulation results, we show that, combined with proportional fair scheduling, the proposed scheme provides excellent throughput performance with very low computational complexity and the amount of inter-BS CSI exchange. Furthermore, we discuss an extension of the proposed scheme to limited feedback systems and observe that our algorithm also provides similar advantages over conventional schemes with quantized feedback.
机译:近来,已经提出了一种用于下行链路蜂窝系统的自适应小区间干扰(ICI)缓解技术,作为一种以低系统复杂度提高吞吐量的方法。然而,在先前的工作中,尚未考虑小区间用户调度的问题。在本文中,我们研究了多输入单输出(MISO)下行链路蜂窝系统,该系统共同设计了自适应ICI消除(ICIC)和小区间用户调度,假设基站(BS)之间共享部分信道状态信息(CSI)。由于最佳解决方案将需要很高的复杂度,因此我们研究了一种新的低复杂度算法,该算法从最大化加权和率(WSR)的角度选择最佳用户及其波束成形策略。为此,我们首先为每个用户开发一个简单的阈值标准,以基于预期的信噪比加噪声比(SINR)的推导确定首选的波束成形策略。然后,根据用户对其决定的反馈,在BS处执行连续用户和波束成形选择算法。从仿真结果可以看出,与比例公平调度相结合,该方案以极低的计算复杂度和基站间CSI交换量提供了出色的吞吐性能。此外,我们讨论了所提出的方案到有限反馈系统的扩展,并观察到我们的算法与具有量化反馈的常规方案相比也提供了类似的优势。

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