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Aperture effect influence and analysis of stepped frequency wideband phased array radar

机译:步进频率宽带相控阵雷达的孔径效应影响与分析

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摘要

Wideband phased array has high range resolution. It can realize target recognition and radar imaging, which provides key technical support for modern high-performance radar meeting the future war demand. However, the aperture effect will cause the beam-pointing shift, broaden the main lobe of the one-dimension target range profile, lower the resolution, and reduce the signal to noise ratio (SNR). Each pulse in the standard stepped frequency waveform is a narrow band signal. It achieves the large instantaneous wideband by the synthesis of the pulse sequence. Therefore we can use interveinal phase matching to compensate the aperture effect. This paper analyzes the relationship between the wideband antenna beam-pointing with the instantaneous signal frequency, and introduces the principle of stepped frequency synthesis wideband, then simulates the method of interveinal phase matching, the simulation results show that this method can compensate the aperture effect of stepped frequency wideband phased array effectively, lastly get high resolution and high precision one-dimension target range profile.
机译:宽带相控阵具有高范围分辨率。它可以实现目标识别和雷达成像,为满足未来战争需求的现代高性能雷达提供关键技术支持。但是,孔径效应将导致光束指向偏移,加宽一维目标范围轮廓的主瓣,降低分辨率并降低信噪比(SNR)。标准步进频率波形中的每个脉冲都是一个窄带信号。通过脉冲序列的合成,可以实现较大的瞬时宽带。因此,我们可以使用静脉相位匹配来补偿光圈效应。本文分析了宽带天线波束指向与瞬时信号频率之间的关系,并引入了步进频率合成宽带的原理,并对相位相位匹配方法进行了仿真,仿真结果表明,该方法可以补偿天线相位匹配的孔径效应。步频宽带相控阵,有效地获得了高分辨率和高精度的一维目标范围轮廓。

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