时频域MIMO雷达波形联合优化设计

C. Chu, Yi-jun Chen, Qun Zhang, Ying Luo
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引用次数: 2

摘要

MIMO雷达的发射波形直接影响其性能。波形设计是MIMO雷达系统设计中的关键问题之一。提出了一种基于时域和频域联合优化的MIMO雷达波形设计新方法。首先,选取连续相位编码信号波形集作为优化目标变量;设计目标是集合中所有波形在时域上是正交的,并且每个波形的功率谱密度(PSD)在频域上近似于期望的分布。根据要求,分别对时域和频域问题进行了分析。同时,建立了加权相关旁瓣电平(MWISL)最小和阻带功率谱密度(MSPSD)最小两个目标函数。然后,引入最优尺度因子将时域和频域整合为一个组合模型,并通过对时频联合优化模型进行适当的简化和均衡,推导出码元的近似解。通过对推导过程的总结,得到了一种递归算法。最后,通过数值算例验证了该方法在匹配期望频谱分布和减小相关旁瓣方面的有效性。
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MIMO Radar Waveform Joint Optimization Design in Time and Frequency Domain
The performance of MIMO radar is directly affected by its transmitting waveforms. The waveform design is one of the critical issues in the design of MIMO radar system. In this paper, a new MIMO radar waveform design method based on time domain and frequency domain joint optimization is proposed. Firstly, a continuous phase coded signal waveform set is chosen to be the optimization objective variable. The design objectives is that all waveforms in the set are orthogonal in time domain, and the power spectral density (PSD) of every waveform approximates to the desired distribution in the frequency domain. According to the requirements, the problems in time domain and frequency domain are analyzed, respectively. Meanwhile, two objective functions based on minimizing the weighted correlation sidelobe level (MWISL) and minimizing the stopband power spectral density (MSPSD) are established. Then, an optimal scale factor is introduced to integrate the time domain and frequency domain into a combined model and a close form solution of code element is deduced through proper simplification and equalization of the time-frequency (T-F) joint optimization model. A recursive algorithm is obtained by summarizing the derivation process. At last, numerical examples prove the effectiveness of the proposed method in matching desired spectrum distribution and decreasing correlation sidelobe.
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