1.重庆邮电大学通信与信息工程学院,重庆 400065
2.重庆邮电大学超视距可信信息传输研究所,重庆 400065
[ "张洪伟 男,1998年6月生,四川巴中人.重庆邮电大学通信与信息工程学院研究生.主要研究方向为信道均衡. E-mail: 1310338050@qq.com" ]
[ "李国军 男,1978年10月生,四川资阳人.博士,重庆邮电大学教授、博士生导师.主要研究方向为复杂恶劣环境超视距无线通信与网络.中国电子学会会员编号:E190009327M.E-mail: ligj@cqupt.edu.cn" ]
收稿:2023-05-25,
修回:2023-11-02,
纸质出版:2024-06-25
移动端阅览
张洪伟,李国军,叶昌荣,等.高速移动环境OTSM通信双迭代判决反馈均衡研究[J].电子学报,2024,52(06):1801-1808.
ZHANG Hong-wei, LI Guo-jun, YE Chang-rong, et al.Research on Double Iterative Decision Feedback Equalization of OTSM Communication in High-Speed Mobile Environment[J].Acta Electronica Sinica, 2024, 52(06): 1801-1808.
张洪伟,李国军,叶昌荣,等.高速移动环境OTSM通信双迭代判决反馈均衡研究[J].电子学报,2024,52(06):1801-1808. DOI:10.12263/DZXB.20230460
ZHANG Hong-wei, LI Guo-jun, YE Chang-rong, et al.Research on Double Iterative Decision Feedback Equalization of OTSM Communication in High-Speed Mobile Environment[J].Acta Electronica Sinica, 2024, 52(06): 1801-1808. DOI:10.12263/DZXB.20230460
针对现有正交时序复用(Orthogonal Time Sequence Multiplexing,OTSM)通信均衡方法在高速移动环境下难以有效处理符号间干扰的问题,提出一种基于最小二乘QR分解(Least Square QR,LSQR)的双迭代判决反馈均衡方法.该方法利用基于零填充的OTSM系统时域传输矩阵的分块特性,使用LSQR迭代算法对时域观测数据进行逐块均衡以实现对待检测符号的快速粗估计;随后将其转换至延迟-序列域中通过数次迭代的方式进行动态门限量化判决,进而利用判决反馈结果对延迟-序列域观测数据进行分块干扰消除,最后通过LSQR迭代均衡实现符号粗估计的迭代优化.仿真结果表明,在500 km/h移动速度下该均衡方法与目前广泛使用的基于高斯赛德尔(Gauss-Seidel,GS)的均衡方法和基于最大比合并(Maximum Ratio Combining,MRC)的均衡方法相比,采用16-QAM调制且误码率为
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时分别带来了2.61 dB和1.76 dB的性能增益.
Aiming at the problem that the existing orthogonal time sequence multiplexing (OTSM) communication equalization method is difficult to effectively deal with inter-symbol interference i
n high-speed mobile environment
a double iterative decision feedback equalization method based on least squares QR (LSQR) decomposition is proposed. The method utilizes the block characteristics of the time-domain transmission matrix of the OTSM system based on zero padding
and uses the LSQR iterative algorithm to equalize the time domain observation data in blocks to realize the rapid preliminary estimation of the signal symbol to be detected. Then
it is converted to the delay-sequence domain for dynamic threshold quantization decision by several iterations
and then the decision feedback results are used to eliminate block interference on the delay-sequence domain observation data. Finally
the iterative optimization of symbol initial estimation is realized by LSQR iterative equalization. The simulation results show that at the moving speed of 500 km/h and compared with Gauss-Seidel equalization method and maximum ratio combining equalization method
the performance gains of 2.61dB and 1.76 dB are obtained respectively by using 16-QAM modulation with the bit error rate at
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.
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