论文标题

雷达波形设计的相位检索

Phase Retrieval for Radar Waveform Design

论文作者

Pinilla, Samuel, Mishra, Kumar Vijay, Sadler, Brian M., Arguello, Henry

论文摘要

雷达在范围和多普勒速度上区分雷达的能力完全以其发射波形的歧义函数(AF)为特征。从数学上讲,它是通过将波形与其多普勒偏移和延迟的复制品相关联获得的。我们考虑设计雷达传输波形的逆问题,该波形满足指定的幅度。该过程可能被视为具有一定相位检索方法变化的信号重构。我们提供了一种信任区域算法,该算法将平滑的非凸照最小二乘目标函数最小化,以迭代地恢复时间或带限值支持的基础信号。该方法首先使用迭代光谱算法近似信号,然后根据一系列梯度迭代来完善所达到的初始化。我们的理论分析表明,使用信号样本不超过三次信号频率或时间样本的数量,可以使用唯一的信号重建。数值实验表明,我们的方法从稀疏和随机采样,嘈杂和无嘈杂的AFS中恢复了时间和带限的信号。

The ability of a radar to discriminate in both range and Doppler velocity is completely characterized by the ambiguity function (AF) of its transmit waveform. Mathematically, it is obtained by correlating the waveform with its Doppler-shifted and delayed replicas. We consider the inverse problem of designing a radar transmit waveform that satisfies the specified AF magnitude. This process may be viewed as a signal reconstruction with some variation of phase retrieval methods. We provide a trust-region algorithm that minimizes a smoothed non-convex least-squares objective function to iteratively recover the underlying signal-of-interest for either time- or band-limited support. The method first approximates the signal using an iterative spectral algorithm and then refines the attained initialization based on a sequence of gradient iterations. Our theoretical analysis shows that unique signal reconstruction is possible using signal samples no more than thrice the number of signal frequencies or time samples. Numerical experiments demonstrate that our method recovers both time- and band-limited signals from sparsely and randomly sampled, noisy, and noiseless AFs.

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