基于交替序贯投影融合的低范围旁瓣、多普勒容差和低截获概率波形设计

Yu Fan, Xiang Feng, Yinan Zhao, Zhanfeng Zhao, Feng-cong Li, Wenqing Cui
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摘要

本文提出了一种基于交变频率的序列投影融合(AFSPF)方法,在非凸约束下设计具有低范围旁瓣、多普勒容限和低截获概率的波形。首先,利用正弦混沌映射部分和线性调频部分建立了新的波形模型。然后,用交替的方法推导出多个非合作目标或干扰所对应的工程数学问题。利用多变量分解思想,将原问题分解为三变量问题,通过AFSPF进行求解。其中,AFSPF在序列融合和FFT运算的辅助下,增强了非模约束下的全局优化收敛性。最后,对几种常用方法进行了仿真和数值比较。
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Design Waveform with Low Range Sidelobes, Doppler Tolerance and Low Probability of Intercept Based on Alternating Sequential Projection Fusion
In this paper, we propose a novel method named Alternating Frequency-based Sequential Projection Fusion (AFSPF) to design waveform with low range sidelobes, Doppler tolerance and low probability of intercept under non-convex constraint. Firstly, the novel waveform model has been formulated by Sine-chaotic mapping parts and LFM ones. Then, the engineering mathematical problem corresponding to multiple non-cooperative targets or interference is formulated in the alternating way. Furthermore, using the multi-variable decomposition idea, the original problem is divided into triple-variable ones, which could be solved via AFSPF. Here, AFSPF assisted by sequential fusion and FFT operation, would enhance the global optimization convergence under unimodular constraint. Finally, simulations and numerical results show comparisons with several popular methods.
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