Performance of a CDMA-based satellite communication system with phase noise

J. Kim
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引用次数: 3

Abstract

In this paper, the impact of phase noise on a CDMA-based satellite communication system is analyzed and simulated. The satellite channel is modeled as combination of Rician fading and shadowed Rayleigh fading channels. The nonlinear Fokker-Planck method is employed to analyze the first-order PLL (phase locked loop) performance. Phase noise is modeled as Tikhonov distribution. The performance is evaluated in terms of bit error probability. The simulation results for BER performance with phase noise are shown in terms of many system parameters such as SNR, the number of users in a beam, and standard deviation of shadowing. From simulation results, it is concluded that the phase noise substantially degrades system performance of the CDMA-based satellite system. This can be interpreted that detection loss (decrease of SNR) due to phase noise leads to degradation of system performance. The considerations in this paper can be applied to a satellite link design for a CDMA-based satellite system.
相位噪声下基于cdma的卫星通信系统性能研究
本文分析和仿真了相位噪声对基于cdma的卫星通信系统的影响。将卫星信道建模为搀杂的瑞利衰落信道和搀杂的瑞利衰落信道。采用非线性Fokker-Planck方法分析了一阶锁相环的性能。相位噪声建模为吉洪诺夫分布。性能是根据误码率来评估的。用信噪比、波束内用户数、阴影标准差等系统参数对相位噪声下的误码率性能进行了仿真。仿真结果表明,相位噪声严重降低了基于cdma的卫星系统的系统性能。这可以解释为由于相位噪声导致的检测损失(信噪比降低)导致系统性能下降。本文的考虑可以应用于基于cdma的卫星系统的卫星链路设计。
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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