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基于迭代变步长LMS的数字域自干扰对消
引用本文:刘建成,全厚德,赵宏志,唐友喜.基于迭代变步长LMS的数字域自干扰对消[J].电子学报,2016,44(7):1530-1538.
作者姓名:刘建成  全厚德  赵宏志  唐友喜
作者单位:1. 军械工程学院信息工程系, 河北石家庄 050003; 2. 电子科技大学通信抗干扰技术国家级重点实验室, 四川成都 611731
基金项目:国家自然科学基金(No.61531009,No.61271164,No.61471108,No.61201266,No.61501093);重大专项(No.2014ZX03003001-002);国家863高技术研究发展计划(No.2014AA01A704,No.2014AA01A706,No.2015AA01A701);国家电网公司科技项目(SGSCDKJLZJKJ1400099)
摘    要:针对同时同频全双工(Co-frequency and Co-time Full Duplex,CCFD)系统已有的数字域干扰对消方法收敛速度慢和对消比低的问题,本文提出了迭代变步长最小均方(Least Mean Square,LMS)算法,利用该算法实现了快速收敛的高对消比数字域干扰对消.首先,改进Logistic函数,缩短其函数值由大至小的变化区间,再利用该非线性函数计算随迭代次数变化的步长因子值,从而加快干扰对消的收敛速度,高精度递推估计自干扰信道参数,即获得高的对消比.最后,理论分析了该对消方法收敛性和计算复杂度,得到了稳态条件下对消比的闭合表达式.仿真表明,该方法与已有变步长LMS对消方法相比,对消比可增加6dB以上,收敛速度可提高1倍,与最小二乘信道估计干扰对消方法相比,对消比提高了至少10dB.

关 键 词:同时同频全双工  自干扰对消  变步长LMS  
收稿时间:2015-02-25

Digital Self-Interference Cancellation Based on Iterative Variable Step-Size LMS
LIU Jian-cheng,QUAN Hou-de,ZHAO Hong-zhi,TANG You-xi.Digital Self-Interference Cancellation Based on Iterative Variable Step-Size LMS[J].Acta Electronica Sinica,2016,44(7):1530-1538.
Authors:LIU Jian-cheng  QUAN Hou-de  ZHAO Hong-zhi  TANG You-xi
Affiliation:1. Department of Information Engineering, Ordnance Engineering College of PLA, Shijiazhuang, Hebei 050003, China; 2. National Key Laboratory of Science and Technology on Communications, University of Electronic Science and Technology of China, Chengdu, Sichuan 611731, China
Abstract:Recently,the co-frequency co-time full duplex (CCFD)has been widely studied for its higher spectral ef-ficiency.However,it must avoid the strong co-channel self-interference to put this technology into practice,and the existing digital interference cancellation methods usually have slow convergence and small cancellation-ratio.Considering this obsta-cle,the digital cancellation method based on iterative variable step-size least mean square algorithm (IVSSLMS)is proposed in this paper.Firstly,the function of Logistic is modified to accelerate its tendency for value changing lower.Then,the itera-tive variable step-size is obtained through the modified nonlinear function.Consequently,convergence of interference cancel-lation is speeded up,and accurate parameters of self-interference channel are estimated to achieve high cancellation-ratio is derited.Finally,the convergence and complexity of this digital interference cancellation method are analyzed and the closed expression of steady-state cancellation-ratio is derived.Simulations verify that the cancellation-ratio of this method could a-chieve more than 6dB and 10dB in comparison with the existing variable step-size LMS methods and cancellation method based on least square channel estimation respectively,and the convergence speed could be enhanced doubled.
Keywords:co-frequency and co-time full duplex  self-interference cancellation  variable step-size LMS
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