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基于SC-IFDMA 的电离层短波宽带通信系统设计与实现
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TN92

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陕西省自然科学基础研究计划重点项目(2024JC-ZDXM-36)


A Design and Implementation in Ionospheric HF Wideband Communication System Based on SC-IFDMA
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    摘要:

    为了满足航空器在远海远域的超视距可靠通信需求,针对短波电离层反射信道的时频双选衰落严重的问题,设计了基于单载波频分多址技术(SC-IFDMA)的短波宽带通信系统,该系统使用联合分段相关和选择式RAKE接收的前导检测算法,保证系统在-15 dB的极低信噪比下的漏检和虚警概率都达到10-4 及以下。利用SC-IFDMA 符号在时域的重复结构进行频偏估计和信噪比估计,节省了系统开销,提升了系统传输性能。最后结合USRP搭建了半实物试验样机,在信道仿真仪环境下完成单链路回环测试。测试结果表明:系统样机能够在-15~5 dB信噪比区间内,实现误码率在10-5 以下的200~20 000 bps自适应速率可靠通信。

    Abstract:

    Aimed at the problems that in order to meet the needs of the over-the-horizon long range communication being reliable for aircraft in super-sight-distance on far oceans and far territories, and the timefrequency double-selective fade is severe in shortwave ionospheric reflection channels, a HF wideband communication system is proposed based on single-carrier frequency division multiple access (SC-IFDMA). The proposed method is to utilize a preamble detection algorithm in combination with segmented correlation and selective RAKE reception, ensuring both the missed detection and false alarm probabilities to reach 10-4 or lower under low signal-to-noise ratio (SNR) of -15 dB. The frequency offset estimation and SNR estimation are achieved by utilizing the repetitive structure of SC-IFDMA symbols in time domain, saving the system overhead and enhancing the transmission performance. Finally, the system prototype of the semi-physical test system is built based on USRP, and the loopback test of single link is completed in the channel simulator environment. The test results indicate that the system prototype can achieve reliable Aimed at the problems that in order to meet the needs of the over-the-horizon long range communication being reliable for aircraft in super-sight-distance on far oceans and far territories, and the timefrequency double-selective fade is severe in shortwave ionospheric reflection channels, a HF wideband communication system is proposed based on single-carrier frequency division multiple access (SC-IFDMA). The proposed method is to utilize a preamble detection algorithm in combination with segmented correlation and selective RAKE reception, ensuring both the missed detection and false alarm probabilities to reach 10-4 or lower under low signal-to-noise ratio (SNR) of -15 dB. The frequency offset estimation and SNR estimation are achieved by utilizing the repetitive structure of SC-IFDMA symbols in time domain, saving the system overhead and enhancing the transmission performance. Finally, the system prototype of the semi-physical test system is built based on USRP, and the loopback test of single link is completed in the channel simulator environment. The test results indicate that the system prototype can achieve reliable communication with an adaptive rate ranging from 200 to 20 000 bps and a bit error rate below 10-5 within the SNR range of -15 to 5 dB.

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王一卓, 张 阳, 张 笑, 王冠林, 杨云冲, 任 鹏.基于SC-IFDMA 的电离层短波宽带通信系统设计与实现[J].空军工程大学学报,2025,26(2):71-80

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  • 在线发布日期: 2025-03-31
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