Extraction Micro-Doppler Feature of Precession Targets in Orthogonal Frequence Division Multiplexing-Linear Frequence Modulation Multiple Input Multiple Output Radar

Lixun Han, Bo Tian, C. Feng, Xugusng Xu
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Abstract

The micro-Doppler feature of ballistic targets is a hot spot in current research. The problem that the single-base radar can’t accurately obtain the target micro-motion parameters due to the shielding effects in radar observation angle. This paper puts forward a method to introduce Orthogonal Frequence Division Multiplexing-Linear Frequence Modulation(OFDMLFM) signal into Multiple Input Multiple Output(MIMO) radar. Firstly, the mathematical model of the cone-cylinder ballistic target’s precession in MIMO radar is constructed, and then the micro-Doppler effect of the target when the radar radiates OFDM-LFM signal is analyzed. On this basis, using Hough transform to extract the parameters of the time-frequency curve, by solving multiple nonlinear equations to obtain the estimated value of the target precession angle, micro-motion angle velocity, target height, and finally verify the effectiveness of the algorithm through simulation experiments.
正交频分复用-线性调频多输入多输出雷达进动目标微多普勒特征提取
弹道目标的微多普勒特性是当前研究的热点。针对单基雷达由于雷达观测角度的屏蔽效应而无法准确获取目标微运动参数的问题。提出了一种将正交频分复用线性调频(OFDMLFM)信号引入多输入多输出(MIMO)雷达的方法。首先建立了MIMO雷达中锥柱弹道目标进动的数学模型,然后分析了雷达辐射OFDM-LFM信号时目标的微多普勒效应。在此基础上,利用Hough变换提取时频曲线参数,通过求解多个非线性方程得到目标进动角、微动角速度、目标高度的估计值,最后通过仿真实验验证算法的有效性。
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