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Radar tracking waveform design in continuous space and optimization selection using differential evolution

机译:连续空间雷达跟踪波形设计及差分演化优化选择

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Waveform design that allows for a wide variety of chirps has proven benefits. However, dictionary based optimization is limited and gradient search methods are often intractable. A new method is proposed using differential evolution (DE) to design cubic chirps with coefficients constrained to the three-dimensional (3D) unit sphere. Nonlinear functions sufficiently approximated by a third order Maclaurin series can be represented in this chirp space. Cascaded integrator methods for generating polynomial chirps allow for practical implementation in real world systems. While simplified tracking models and finite waveform dictionaries have information theoretic results, we explore two-dimensional (2D) tracking continuous waveform design in cluttered environments.
机译:经过验证的波形设计可以实现多种chi声。但是,基于字典的优化是有限的,并且梯度搜索方法通常很棘手。提出了一种新的方法,利用微分演化(DE)设计系数受限于三维(3D)单位球面的三次线性调频chi。在此线性调频空间中可以表示出由三阶Maclaurin级数充分近似的非线性函数。用于生成多项式线性调频的级联积分器方法允许在实际系统中实际实施。尽管简化的跟踪模型和有限波形字典具有信息理论上的结果,但我们在杂乱的环境中探索了二维(2D)跟踪连续波形设计。

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