1.哈尔滨工程大学信息与通信工程学院,黑龙江哈尔滨 150001
2.先进船舶通信与信息技术工业和信息化部重点实验室, 黑龙江哈尔滨 150001
3.哈尔科夫国立无线电电子大学,乌克兰哈尔科夫 61166
[ "国 强 男,1972年11月出生于黑龙江省哈尔滨市.现为哈尔滨工程大学教授、博士生导师,乌克兰工程院外籍院士.主要研究方向为电子对抗、雷达信号分选与识别.中国电子学会会员编号:E190027944S.E-mail: guoqiang@hrbeu.edu.cn" ]
[ "李 沛 女,1996年6月出生于内蒙古乌兰察布市.现为哈尔滨工程大学硕士研究生.主要研究方向为阵列信号处理.E-mail: s320080051@hrbeu.edu.cn" ]
[ "戚连刚(通讯作者) 男,1990年1月出生于河北省邢台市. 现为哈尔滨工程大学预聘副教授.主要研究方向为自适应干扰抑制、阵列信号处理、智能信息处理.中国电子学会会员编号:E190027452M.E-mail: qiliangang@hrbeu.edu.cn" ]
收稿:2022-03-28,
修回:2022-07-04,
纸质出版:2023-05-25
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国强,李沛,徐伟等.基于MR-MWC系统的载频与DOA联合估计[J].电子学报,2023,51(05):1282-1290.
GUO Qiang,LI Pei,XU Wei,et al.Joint Estimation of Carrier Frequency and DOA Based on the MR-MWC System[J].ACTA ELECTRONICA SINICA,2023,51(05):1282-1290.
国强,李沛,徐伟等.基于MR-MWC系统的载频与DOA联合估计[J].电子学报,2023,51(05):1282-1290. DOI: 10.12263/DZXB.20220322.
GUO Qiang,LI Pei,XU Wei,et al.Joint Estimation of Carrier Frequency and DOA Based on the MR-MWC System[J].ACTA ELECTRONICA SINICA,2023,51(05):1282-1290. DOI: 10.12263/DZXB.20220322.
针对传统奈奎斯特采样会产生庞大的数据量以及现有的阵列压缩采样系统存在结构复杂、重构运算量大等问题,本文提出了一种基于均匀线型阵列的改进型调制宽带转换器(Modulated Wideband Converter,MWC)的阵列接收系统,无需重构即可直接对接收信号的压缩采样数据进行载频与波达方向(Direction Of Arrival,DOA)估计.所提系统在MWC测频支路中采用周期性循环移位伪随机序列作为混频函数以求得子带索引估计,采用基于快速傅里叶变换(Fast Fourier Transform,FFT)谱线插值法进行基带频率估计,且将MWC测向分支中混频函数设置为相同的伪随机序列,便可直接利用高分辨率的多重信号分类(MUltiple SIgnal Classification,MUSIC)算法对组合压缩采样数据完成DOA估计.实验仿真结果证明了所提系统能较好地从压缩采样数据中完成对目标的载频与DOA参数估计.
In view of the problems that the traditional Nyquist sampling generates huge data volume and the existing array compressed sampling systems have complex structures and large reconstruction operations
this paper proposes an array reception system based on an improved modulated wideband converter (MWC) of uniform linear array
which can directly perform carrier frequency and direction of arrival (DOA) estimation on the compressive sampling (CS) data of the received signal without reconstruction. The proposed system sets multiple MWC branches after the first antenna
and selects the periodic cyclic shift pseudo-random sequence as the mixing function
so that there is a fixed phase difference between the compressed sampled values of adjacent branches
and the subband index estimation can be obtained from the phase difference. The baseband frequency is estimated by FFT (Fast Fourier Transform) spectral line interpolation method
and the carrier frequency estimation of the received signal can be obtained when the two estimated values are combined. The rest of the array antennas are set as a single channel MWC structure
and the mixing function of each channel is the same as that in the first MWC branch of the first array antenna
which avoids the need for phase compensation and the resulting error in DOA estimation. The high-resolution multiple signal classification (MUSIC) algorithm can be directly used to complete DOA estimation on the CS data obtained from the first branch and other array antennas. The experimental simulation results show that the proposed system can estimate the carrier frequency and DOA parameters of the target from the compressed sampling data.
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