A comparative study of interference alignment schemes with LTE-compliant turbo coding

S. Papaharalabos, G. Alexandropoulos, C. Papadias
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引用次数: 2

Abstract

It was recently theoretically shown that the sum capacity of the K-user interference channel scales linearly with a factor of K/2 in the high signal-to-noise ratio (SNR) regime. This scaling can be accomplished with interference alignment (IA), which is a transmission technique that requires perfect global channel state information to be available at all transceivers. For the general case of K > 3 users, a number of different iterative algorithms for achieving the IA sum-rate scaling at high SNRs has been lately proposed. These algorithms compute transmit and receive filters aiming at optimizing a certain performance objective, thus ranging in sum-rate performance vs. complexity tradeoffs. However, most of the performance evaluation studies to date do not include error correction coding, thus taking away from our ability to quantify the true sum-rate potential of the various aforementioned algorithms in practice. In this paper, we perform a comparative study of several IA schemes in the spatial dimension when combined with an error correction coding scheme. Our results shed light into how IA would perform in LTE-compliant systems.
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兼容lte的turbo编码干扰对准方案的比较研究
最近有理论表明,在高信噪比(SNR)条件下,K用户干扰信道的总容量以K/2的系数线性缩放。这种缩放可以通过干扰对齐(IA)来完成,IA是一种传输技术,需要在所有收发器上提供完美的全局信道状态信息。对于K > 3用户的一般情况,最近提出了许多不同的迭代算法来实现高信噪比下的IA和速率缩放。这些算法计算发送和接收过滤器,旨在优化特定的性能目标,从而在和速率性能与复杂性之间进行权衡。然而,到目前为止,大多数性能评估研究都不包括纠错编码,从而使我们无法量化实践中各种上述算法的真实求和率潜力。在本文中,我们在空间维度上对几种IA方案与纠错编码方案相结合进行了比较研究。我们的结果揭示了IA在lte兼容系统中的表现。
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