2D Angle Estimation Based on Block Spatial Smoothing Interpolation Method

Jing Li, L. Zou, Chuanchuan Pang, Xue-gang Wang
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Abstract

For MIMO cascaded sparse planar array radar, the angle resolution and precision are not high enough and the sidelobe is high if use zero-padding. This paper proposed an angle estimation method based on block spatial smoothing interpolation. This method combines spatial smoothing and interpolation. Firstly, segment and smooth the antenna array. By solving the interpolation function to find the relationship of actual and expected flow pattern matrixes, we can realize the interpolation of the received signal and figure out the angle information. According to the simulation result, under a certain SNR, the elevation resolution can be improved for 2–3 times with suitable interpolation antenna number, compared to traditional method. Meanwhile, the main / sidelobe ratio is improved about 11dB. The reduction of the high sidelobe and gatelobe is also good.
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基于分块空间平滑插值方法的二维角度估计
对于MIMO级联稀疏平面阵列雷达,如果采用零填充,其角度分辨率和精度不够高,且旁瓣高。提出了一种基于分块空间平滑插值的角度估计方法。该方法将空间平滑和插值相结合。首先,对天线阵进行分段和平滑处理。通过求解插值函数求出实际流型矩阵与期望流型矩阵的关系,实现对接收信号的插值并求出角度信息。仿真结果表明,在一定信噪比下,与传统方法相比,适当的插值天线数可使仰角分辨率提高2-3倍。同时,主副瓣比提高约11dB。对高旁瓣和门瓣的抑制效果也很好。
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