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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >A Novel Helicopter-Borne Rotating SAR Imaging Model and Algorithm Based on Inverse Chirp-Z Transform Using Frequency-Modulated Continuous Wave
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A Novel Helicopter-Borne Rotating SAR Imaging Model and Algorithm Based on Inverse Chirp-Z Transform Using Frequency-Modulated Continuous Wave

机译:基于调频连续波的Chirp-Z逆变换的直升机波音旋转SAR成像模型和算法

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摘要

With an appropriate geometric configuration, a helicopter-borne rotating synthetic aperture radar (ROSAR) can break through the limitations of conventional strip-map monostatic SAR on forward-looking imaging. Owing to such a capability, ROSAR has extensive potential applications, such as self-navigation and self-landing. Moreover, it has many advantages if combined with frequency-modulated continuous wave (FMCW) technology. In this letter, a novel geometric platform configuration and an imaging algorithm for helicopter-borne FMCW-ROSAR are proposed. First, by adopting the higher order approximation of slant range model to improve the azimuth resolution for FMCW-ROSAR, the precise 2-D spectrum of the echo signal is derived based on series reversion. Moreover, at the same time, the Doppler offset caused by the continuous motion of the antenna is analyzed and compensated as well. Then, according to the analysis on the range-dependent velocity variation caused by ROSAR geometric configuration, an efficient inverse chirp-Z transform is utilized to remove the variant range cell migration, and a well-focused SAR image can thus be obtained. Finally, the experimental results with simulated data demonstrate the effectiveness of the proposed algorithm.
机译:有了合适的几何配置,直升飞机旋转合成孔径雷达(ROSAR)可以突破传统带状图单基地SAR在前瞻性成像方面的局限性。由于具有这种能力,ROSAR具有广泛的潜在应用,例如自动导航和自动着陆。此外,如果与调频连续波(FMCW)技术结合使用,它将具有许多优势。在这封信中,提出了一种新型的直升机机载FMCW-ROSAR几何平台配置和成像算法。首先,通过采用斜率模型的高阶近似来提高FMCW-ROSAR的方位角分辨率,基于序列反转获得了回波信号的精确二维频谱。而且,同时,还分析并补偿了由天线的连续运动引起的多普勒偏移。然后,根据对由ROSAR几何构型引起的与速度相关的速度变化的分析,利用有效的chirp-Z逆变换来消除变化的距离单元迁移,从而可以获得聚焦良好的SAR图像。最后,仿真数据的实验结果证明了该算法的有效性。

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