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引用本文:孙 兵, 李永刚, 刘 洋, 谢前朋, 郭力兵, 胡上成, 杨海民. 异点L型双基地EMVS-MIMO雷达高精度2D-DOD和2D-DOA估计[J]. 雷达科学与技术, 2025, 23(3): 269-279.[点击复制]
SUN Bing, LI Yonggang, LIU Yang, XIE Qianpeng, GUO Libing, HU Shangcheng, YANG Haimin. High Accuracy 2D-DOD and 2D-DOA Estimation for Bistatic EMVS-MIMO Radar with Non-Collocating L-Shaped Structure[J]. Radar Science and Technology, 2025, 23(3): 269-279.[点击复制]
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异点L型双基地EMVS-MIMO雷达高精度2D-DOD和2D-DOA估计
孙 兵, 李永刚, 刘 洋, 谢前朋, 郭力兵, 胡上成, 杨海民
1. 中国卫星海上测控部, 江苏江阴 214431;2. 北京市遥感信息研究所, 北京 100011;3. 国防科技大学电子信息系统复杂电磁环境效应国家重点实验室, 湖南长沙 410073
摘要:
为改进双基地EMVS-MIMO雷达中2D-DOD和2D-DOA的估计性能,本文提出基于异点L型EMVS结构的发射阵列和接收阵列。相比于共点式EMVS发射阵列和接收阵列,稀疏异点EMVS结构在相同阵元数情况下可以降低接收端的单快拍数据维度。并且,借助于自动参数配对的旋转不变算法和精粗估计结合解模糊处理过程,本文设计的稀疏异点L型EMVS阵列可以实现对2D-DOD和2D-DOA的精确估计。同时,本文利用重构的EMVS广义空间响应给出发射端和接收端极化参数的求解过程。仿真实验进一步验证了异点L型阵列多维参数估计的有效性。
关键词:  双基地EMVS-MIMO雷达  2D-DOD估计  2D-DOA估计  异点L型结构  旋转不变算法
DOI:DOI:10.3969/j.issn.1672-2337.2025.03.005
分类号:TN958
基金项目:国家自然科学基金(No.62071476,61890545,61890542,61890540); 长沙市科技计划项目经费资助(No.Kq2209002)
High Accuracy 2D-DOD and 2D-DOA Estimation for Bistatic EMVS-MIMO Radar with Non-Collocating L-Shaped Structure
SUN Bing, LI Yonggang, LIU Yang, XIE Qianpeng, GUO Libing, HU Shangcheng, YANG Haimin
1. China Satellite Maritime Tracking and Control Department, Jiangyin 214431, China;2. Beijing Institute of Remote Sensing Information, Beijing 100011,China;3. State Key Laboratory of Complex Electromagnetic Environment Effects on Electronics and Information System, National University of Defense Technology, Changsha 410073, China
Abstract:
In order to improve the estimation performance of 2D-DOD and 2D-DOA in bistatic EMVS-MIMO radar, a non-collocating L-shaped EMVS structure is designed in this paper. Compared to the collocating EMVS transmitting and receiving arrays, the dimension of the sparse non-collocating EMVS receiving data with a single snapshot can be reduced under the same number of array elements. Moreover, for the designed sparse L-shaped EMVS structure, the automatically paired 2D-DOD and 2D-DOA estimation can be effectively realized via the rotational invariance technique and the combination of the high-accuracy and low-accuracy estimated results. Besides, the transmitting and receiving polarization parameters are also derived by using the reconstructed EMVS spatial response. The simulation results further verify the effectiveness and superiority of the non-collocating L-shaped structure for multi-dimensional parameter estimation.
Key words:  bistatic EMVS-MIMO radar  2D-DOD estimation  2D-DOA estimation  non-collocating L-shaped structure  rotational invariance technique

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