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Angle Estimation Using Local Searching for Bistatic MIMO Radar with Unknown MCM

机译:使用本地搜索Bistatic MIMO雷达的角度估计与未知MCM

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Multiple input and multiple output (MIMO) radar systems have advantages over traditional phased-array radar in resolution, parameter identifiability, and target detection. However, the estimation performance of the direction of arrivals (DOAs) and the direction of departures (DODs) will be significantly degraded for a colocated MIMO radar system with unknown mutual coupling matrix (MCM). Although auxiliary sensors (AS) can be set to solve this problem, the computational cost of two-dimensional multiple signal classification (2D-MUSIC) is still large. In this paper, a new angle estimation method is proposed to reduce the computational complexity. First, a local-search range is defined for each initial angle estimation obtained by the MUSIC with AS method. Second, the new estimation of DOAs and DODs of the targets is estimated via the joint estimation theory of angle and mutual coupling coefficient in the local search area. Simulation results validate that the proposed method can obtain the same precision and have the advantage over the global searching in computational complexity.
机译:多个输入和多输出(MIMO)雷达系统在分辨率,参数可识别性和目标检测中具有传统相控阵雷达的优点。然而,对于具有未知相互耦合矩阵(MCM)的光环MIMO雷达系统,将显着降低抵达的估计性能(DOAS)和偏移方向(DODS)。尽管可以设置辅助传感器(AS)来解决这个问题,但是二维多信号分类(2D-Music)的计算成本仍然很大。本文提出了一种新的角度估计方法来降低计算复杂性。首先,为由音乐与方法获得的每个初始角度估计定义了本地搜索范围。其次,通过当地搜索区域中的角度和相互耦合系数的联合估计理论估计目标的DOA和DOD的新估计。仿真结果验证了所提出的方法可以获得相同的精度并具有在计算复杂性中的全局搜索中的优点。

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