A single-carrier modulation system based on the fractional fourier domain equalization in aeronautical channels

Zheng Jing, Wang Zulin, Guo Xujing, Zhao Yi-huan
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引用次数: 2

Abstract

The channel is time-frequency-selective due to considerable relative movement between airborne communication transceivers in aeronautical communications systems. The performances based on traditional orthogonal frequency division multiplexing (OFDM) and single carrier frequency domain equalization (SC-FDE) systems are degraded because of the timing variant characteristic under time-frequency-selective channels. To get better performance, researches have been done for the OFDM system based on the fractional Fourier transform through selecting the optimal fractional order. However, the application of the method is limited because of the request of feedback link. This paper proposes a signal carrier modulation systems with equalization based on the fractional Fourier transform (SC-FRFDE), in which the feed-back link is not necessary. After description of the channel characteristic, the channel estimator and equalizer are designed according to the least squares (LS) algorithm and zero forcing criterion. Moreover, the algorithm for selecting the optimal order of fractional Fourier transform is derived. Theoretical analysis and numerical simulation results show that the system can significantly improve the performance of SC-FDE system.
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航空信道中基于分数阶傅立叶域均衡的单载波调制系统
由于航空通信系统中机载通信收发器之间相当大的相对运动,该信道具有时频选择性。在时频选择信道下,传统的正交频分复用(OFDM)和单载波频域均衡(SC-FDE)系统的时变特性降低了系统的性能。为了获得更好的性能,对基于分数阶傅里叶变换的OFDM系统进行了研究,通过选择最优分数阶对OFDM系统进行了优化。但由于反馈环节的要求,限制了该方法的应用。本文提出了一种基于分数阶傅立叶变换(SC-FRFDE)的均衡信号载波调制系统,该系统不需要反馈链路。在描述了信道特性的基础上,根据最小二乘算法和零强迫准则设计了信道估计器和均衡器。此外,还推导了分数阶傅里叶变换最优阶数的选择算法。理论分析和数值仿真结果表明,该系统能显著提高SC-FDE系统的性能。
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