Coded SC-FDMA for broadband satellite return links

S. Rosati, G. Corazza, A. Vanelli-Coralli
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引用次数: 2

Abstract

In this paper we deal with Single Carrier Frequency Division Multiple Access (SC-FDMA) as uplink air interface of broadband satellite networks. Interestingly, SC-FDMA enables a significant increase of the spectral efficiency with respect to the state-of-the-art single-carrier systems. However, as witnessed by the recent specification of the Second Generation DVB Interactive Satellite System (DVB-RCS2) standard [1], in this context, the single-carrier solutions are still preferred to multicarrier ones. This choice is mainly due to the problem of the high vulnerability of multicarrier modulations to the synchronization offsets, phase noise, and, nonlinear distortion effects. In this paper we present a solution to these problems, by proposing a coded SC-FDMA system which including a Joint Multi-User (JMU) Estimation method, and a state-of-the-art Low Density Parity Check (LDPC) coding scheme. Accurate simulations considering, synchronization offsets, phase noise, and, nonlinear distortion effects, show that the present solution can effectively guarantee the quality of service necessary to support new interactive and on-demand services in a satellite scenario.
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宽带卫星返回链路编码SC-FDMA
本文研究了单载波频分多址(SC-FDMA)作为宽带卫星网络的上行空中接口。有趣的是,相对于最先进的单载波系统,SC-FDMA能够显著提高频谱效率。然而,从最近的第二代DVB交互卫星系统(DVB- rcs2)标准规范[1]可以看出,在这种情况下,单载波解决方案仍然比多载波解决方案更受青睐。这种选择主要是由于多载波调制极易受到同步偏移、相位噪声和非线性失真效应的影响。在本文中,我们提出了一种解决这些问题的方法,通过提出一个编码SC-FDMA系统,其中包括联合多用户(JMU)估计方法和最先进的低密度奇偶校验(LDPC)编码方案。考虑同步偏移、相位噪声和非线性失真效应的精确仿真表明,该方案可以有效地保证服务质量,以支持卫星场景下新的交互式和按需服务。
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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