多载波调制方案在浅水水声通信中的效率研究

S. Dushin, Igor Y. Kurov, S. Shavrin, V. S. Aleshin, M. Farkhadov
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引用次数: 1

摘要

浅水水声通信的高数据速率数据传输由于信道的双选择性,具有长时延时变脉冲响应和显著的多普勒频移等特点,面临着很多问题。在这种情况下,多载波调制是一种有效的减轻码间干扰的方法,但显著的时间选择性会导致载波间干扰。本文研究了不同的多载波方案在特定应用下的效率,目的是为每种考虑的方案选择可行的参数,并对其特性进行仿真和分析。我们特别考虑了传统OFDM、滤波OFDM、加窗OFDM、QAM-FBMC和UFMC,它们与基于快速收敛RLS的均衡器相结合。仿真使用开源软件滤波器组多载波调制进行。利用水印基准中的布雷斯特商港实验对该信道进行了仿真,得到了在32.5-37.5 kHz范围内浅水信道的真实脉冲响应特性。理论分析和仿真结果表明,对于大量子载波(2500子载波),FBMC方法的性能明显优于OFDM方法。另一方面,在这种情况下,FBMC-QAM系统的实现在计算上更加复杂。同样重要的是,对于所有考虑的方案,性能高度依赖于均衡器特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multicarrier modulation schemes efficiency investigation in shallow water hydroacoustic communication application
High data rate data transmission in hydroacoustic communication in shallow water faces a lot of problems due to the doubly selective nature of the channel, which is characterized by long delay time-varying impulse response and significant Doppler shifting. Multicarrier modulation is a powerful method of inter symbol interference mitigating in these conditions, but significant time-selectivity leads to the inter carrier interference. In this paper the efficiency of different multicarrier schemes is being investigated in the application specified, targeting to choose the viable parameters for each considered scheme, using simulation and analysis of their property. In particular, we consider conventional OFDM, filtered OFDM, windowed OFDM, QAM-FBMC and UFMC, which are combined with fast convergence RLS based equalizer. The simulation is being performed using open source software Filter Bank Multicarrier Modulation. The channel is being simulated using Brest Commercial Harbor experiment from Watermark benchmark, which provides measured characteristics of real impulse responses of the channels in shallow water within band 32.5-37.5 kHz. The theoretical analysis and simulation results show that FBMC approach provides significantly better performance compare to its OFDM counterparts for large number of subcarriers (2500 subcarriers). On the other hand, the realization of FBMC-QAM system in such case is computationally more complex. It is also important that for all considered schemes the performance is highly depend on equalizer characteristics.
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