柔性多载波通信系统的统一框架

Esteban Gutierrez, J. López-Salcedo, G. Seco-Granados
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引用次数: 4

摘要

当涉及到滤波器组多载波(FBMC)调制技术时,多载波通信系统的高效架构设计是一项具有挑战性的任务。在FBMC系统中发现的主要设计问题是由带限整形脉冲的结合产生的。然而,这些脉冲在性能方面有许多优点,例如提供改进的频谱限制或相邻子载波之间没有频率重叠。它们还受益于窄带干扰前的鲁棒性,以及减少带外功率发射等。然而,从实现的角度来看,FBMC方案的优点往往是模糊不清的。对于灵活的FBMC系统尤其如此,除了结合带限整形脉冲外,对信号参数(即符号速率,载波间隔或采样频率)没有任何限制。在这种情况下,本文将提供一个统一的框架来描述灵活的FBMC信号,当信号设计和实现标准相结合。
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Unified framework for flexible multi-carrier communication systems
The design of efficient architectures for Multi-Carrier (MC) communication systems can be a challenging task when it involves the adoption of Filter-Bank Multi-Carrier (FBMC) modulation techniques. The main design issues found in FBMC systems are generated by the incorporation of band-limited shaping pulses. Yet, these pulses have many advantages in terms of performance, such as providing either improved spectral confinement or no frequency overlap between adjacent subcarriers. They also benefit from robustness in front of narrowband interferences, and reduced out-of-band power emission, among others. However, the advantages of FBMC schemes are often obscured when it comes to the implementation point of view. This is particularly true for the flexible FBMC systems, where on top of incorporating band-limited shaping pulses, no restrictions are imposed on the signal parameters (i.e. symbol rate, carrier spacing or sampling frequency). In this context, the present paper will provide a unified framework to describe flexible FBMC signals when both signal design and implementation criteria are combined.
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