基于阻带和相关约束的认知雷达波形设计

Hao He, P. Stoica, Jian Li
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引用次数: 135

摘要

认知雷达的主要目标之一是使发射波形的频谱适应特定的需要,例如避免保留频带或窄带干扰。除了频谱要求外,在特定应用(如距离压缩)中也需要发射波形具有良好的相关特性。此外,实际的硬件限制通常要求发射波形是单模的(即只有相位调制)。本文提出了一种新的算法SCAN (stopband cyclic algorithm new),用于设计具有低相关旁瓣和频谱功率抑制的任意波段的非模序列。SCAN算法从随机初始化开始,可以生成许多具有类似良好性质的序列。此外,SCAN算法基于FFT(快速傅立叶变换)运算,因此计算效率高,有利于长序列设计和实时波形更新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Waveform design with stopband and correlation constraints for cognitive radar
One of the main objectives of cognitive radar is to adapt the spectrum of transmit waveforms to certain needs, such as avoiding reserved frequency bands or narrowband interferences. Besides spectral requirements, good correlation properties of the transmit waveforms are also desired in specific applications, such as range compression. Moreover, practical hardware constraints usually require the transmit waveforms be unimodular (i.e. only phase-modulated). In this paper, we propose a new algorithm named SCAN (stopband cyclic algorithm new) to design unimodular sequences with spectral power suppressed in arbitrary bands and with low correlation sidelobes as well. The SCAN algorithm, which starts from random initializations, can generate many sequences possessing similarly good properties. Furthermore, the SCAN algorithm is based on FFT (fast Fourier transform) operations and thus is computationally efficient, which facilitates long-sequence design and real-time waveform update.
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