4.6 Article

Tensor-Based Angle Estimation Approach for Strictly Noncircular Sources with Unknown Mutual Coupling in Bistatic MIMO Radar

期刊

SENSORS
卷 18, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/s18092788

关键词

bistatic MIMO radar; angle estimation; strictly noncircular signal; mutual coupling; higher-order singular value decomposition

资金

  1. National Natural Science Foundation of China [61701144, 61661019]
  2. Nature Science Foundation of Beijing Municipality [4174084]
  3. Program of Hainan Association for Science and Technology Plans [QCXM201706]
  4. scientific research projects of University in Hainan Province [Hnky2018ZD-4]
  5. major Science and Technology Project of Hainan Province [ZDKJ2016015]
  6. Natural Science Foundation of Hainan Province [617024]
  7. Scientific Research Setup Fund of Hainan University [KYQD(ZR) 1731]

向作者/读者索取更多资源

In the paper, the estimation of joint direction-of-departure (DOD) and direction-of-arrival (DOA) for strictly noncircular targets in multiple-input multiple-output (MIMO) radar with unknown mutual coupling is considered, and a tensor-based angle estimation method is proposed. In the proposed method, making use of the banded symmetric Toeplitz structure of the mutual coupling matrix, the influence of the unknown mutual coupling is removed in the tensor domain. Then, a special enhancement tensor is formulated to capture both the noncircularity and inherent multidimensional structure of strictly noncircular signals. After that, the higher-order singular value decomposition (HOSVD) technology is applied for estimating the tensor-based signal subspace. Finally, the direction-of-departure (DOD) and direction-of-arrival (DOA) estimation is obtained by utilizing the rotational invariance technique. Due to the use of both noncircularity and multidimensional structure of the detected signal, the algorithm in this paper has better angle estimation performance than other subspace-based algorithms. The experiment results verify that the method proposed has better angle estimation performance.

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