Distributed interference alignment with limited feedback for cellular networks

J. Schreck, G. Wunder, P. Jung
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引用次数: 6

Abstract

In theory, coordinated multipoint transmission (CoMP) promises vast gains in spectral efficiency. However, industrial field trials show rather disappointing throughput gains, whereby the major limiting factor is properly sharing channel state information. This so-called limited feedback problem has been considered in many recent papers in context of CoMP under the assumptions: 1) infinite SNR regime, 2) no user selection and 3) ideal link adaption; rendering the analysis overly optimistic. In this paper we make a step forward towards a more realistic assessment of the limited feedback problem by introducing an improved metric for the performance evaluation, which better captures the throughput degradation. We obtain the relevant scaling laws (lower and upper bounds) and show that they are, at finite SNR, fundamentally different from existing ones. Moreover we provide a robust iterative interference alignment algorithm and corresponding feedback strategies achieving the optimal scaling laws. The main idea is that instead of sending the complete channel matrix to each base station each user fixes a receive filter in each iteration and feeds back a quantized version of the effective channel. Finally we underline the findings with simulations for the proposed system.
蜂窝网络有限反馈的分布式干扰对准
理论上,协调多点传输(CoMP)有望在频谱效率方面获得巨大收益。然而,工业现场试验显示相当令人失望的吞吐量增益,其中主要的限制因素是适当地共享信道状态信息。最近的许多论文在CoMP的背景下考虑了这种所谓的有限反馈问题,其假设是:1)无限信噪比,2)无用户选择和3)理想链路自适应;使分析过于乐观。在本文中,我们通过引入一种改进的性能评估指标,向更现实的有限反馈问题评估迈出了一步,该指标更好地捕获了吞吐量退化。我们得到了相关的标度定律(下界和上界),并表明它们在有限信噪比下与现有的标度定律有本质的不同。此外,我们还提供了一种鲁棒迭代干涉对准算法和相应的反馈策略,以实现最优标度律。其主要思想是,每个用户在每次迭代中固定一个接收滤波器,并反馈有效信道的量化版本,而不是向每个基站发送完整的信道矩阵。最后,我们通过对所提出系统的仿真来强调研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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