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Robust Sparse Recovery DOA Estimation for MIMO Radar under Unknown Mutual Coupling

机译:未知互耦合下MIMO雷达的鲁棒稀疏恢复DOA估计

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摘要

A novel block sparse reconstruction algorithm is presented for direction-of-arrival (DOA) estimation in the presence of unknown mutual coupling of the monostatic multiple-input multiple-output (MIMO) radar. Consider the banded complex symmetric Toeplitz structure of the unknown mutual coupling matrices (MCM) in both transmit and receive array, a new block representation model is constructed first by parameterizing the steering matrices to avoid the influence of mutual coupling and has no loss of array aperture. Then, a reduced-dimensional transformation matrix is structured to eliminate the redundant rows in the received data for reducing the computational complexity. Finally, the DOA estimation problem can be transformed into minimization constrained optimization problem. The simulation results show that the proposed algorithm outperforms the existing algorithms for DOA estimation under unknown mutual coupling conditions in monostatic MIMO radar.
机译:提出了一种新颖的稀疏稀疏重构算法,用于在单静态多输入多输出(MIMO)雷达存在未知相互耦合的情况下进行到达方向(DOA)估计。考虑发送和接收阵列中未知互耦合矩阵(MCM)的带状复对称Toeplitz结构,首先通过对导引矩阵进行参数化来构造新的块表示模型,以避免互耦合的影响,并且不会损失阵列孔径。然后,构建降维变换矩阵以消除接收到的数据中的多余行,以降低计算复杂度。最后,DOA估计问题可以转化为最小约束优化问题。仿真结果表明,在未知互耦条件下,所提出的算法优于现有的单基地MIMO雷达DOA估计算法。

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