空间5G:采用非正交多载波传输的卫星通信物理层设计

Johannes Dommel, G. Boccolini, Leszek Raschkowski, S. Jaeckel, L. Thiele, T. Haustein, N. G. Prelcic
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引用次数: 25

摘要

在第五代地面移动通信中,基于非正交波形的多载波(MC)传输为了实现更高的吞吐量和更灵活的频谱管理,是一种比正交频分复用(OFDM)更有前途的技术组件。考虑到卫星是未来网络中的附加组件,允许垂直切换到地面无线电接口,可以提供覆盖范围的扩展和业务的连续性。本文讨论了滤波器组多载波(FBMC)作为潜在MC传输方案的特性,并考虑了高功率放大器(hpa)引起的非线性失真等卫星物理层的要求。从峰值平均功率比(PAPR)、计算复杂度、非线性失真以及载波频偏灵敏度(cfo)等方面分析了特定FBMC配置的性能。尽管FBMC和OFDM具有相似的PAPR,并且在非线性放大器的输出处遭受类似的频谱再生,但链路级的仿真表明,在存在非线性失真的情况下,FBMC在CFO灵敏度和符号错误率方面仍然优于OFDM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5G in space: PHY-layer design for satellite communications using non-orthogonal multi-carrier transmission
For the 5th generation of terrestrial mobile communications, Multi-Carrier (MC) transmission based on non-orthogonal waveforms is a promising technology component compared to orthogonal frequency division multiplex (OFDM) in order to achieve higher throughput and enable flexible spectrum management. Coverage extension and service continuity can be provided considering satellites as additional components in future networks by allowing vertical handover to terrestrial radio interfaces. In this paper, the properties of Filter Bank Multicarrier (FBMC) as potential MC transmission scheme is discussed taking into account the requirements for the satellite-specific PHY-Layer like non-linear distortions due to High Power Amplifiers (HPAs). The performance for specific FBMC configurations is analyzed in terms of peak-to-average power ratio (PAPR), computational complexity, non-linear distortions as well as carrier frequency offsets sensitivity (CFOs). Even though FBMC and OFDM have similar PAPR and suffer comparable spectral regrowth at the output of the non linear amplifier, simulations on link level show that FBMC still outperforms OFDM in terms of CFO sensitivity and symbol error rate in the presence of non-linear distortions.
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