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MIMO Signal Processing in Offset-QAM Based Filter Bank Multicarrier Systems

机译:基于偏置QAM的滤波器组多载波系统中的MIMO信号处理

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Next-generation communication systems have to comply with very strict requirements for increased flexibility in heterogeneous environments, high spectral efficiency, and agility of carrier aggregation. This fact motivates research in advanced multicarrier modulation (MCM) schemes, such as filter bank-based multicarrier (FBMC) modulation. This paper focuses on the offset quadrature amplitude modulation (OQAM)-based FBMC variant, known as FBMC/OQAM, which presents outstanding spectral efficiency and confinement in a number of channels and applications. Its special nature, however, generates a number of new signal processing challenges that are not present in other MCM schemes, notably, in orthogonal-frequency-division multiplexing (OFDM). In multiple-input multiple-output (MIMO) architectures, which are expected to play a primary role in future communication systems, these challenges are intensified, creating new interesting research problems and calling for new ideas and methods that are adapted to the particularities of the MIMO-FBMC/OQAM system. The goal of this paper is to focus on these signal processing problems and provide a concise yet comprehensive overview of the recent advances in this area. Open problems and associated directions for future research are also discussed.
机译:下一代通信系统必须遵守非常严格的要求,以提高异构环境中的灵活性,高频谱效率以及载波聚合的敏捷性。这一事实激发了对高级多载波调制(MCM)方案的研究,例如基于滤波器组的多载波(FBMC)调制。本文重点介绍基于偏移正交幅度调制(OQAM)的FBMC变体,称为FBMC / OQAM,它在许多通道和应用中均表现出出色的频谱效率和局限性。然而,其特殊的性质产生了许多新的信号处理挑战,这些挑战在其他MCM方案中并没有出现,特别是在正交频分复用(OFDM)中。在有望在未来的通信系统中扮演主要角色的多输入多输出(MIMO)架构中,这些挑战愈演愈烈,产生了新的有趣的研究问题,并呼吁采用适合其特殊性的新思想和方法。 MIMO-FBMC / OQAM系统。本文的目的是关注这些信号处理问题,并简要概述该领域的最新进展。还讨论了未解决的问题和未来研究的相关方向。

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