Single Sideband Modulation Based Phase-coded Continuous Wave Inverse Synthetic Aperture Ladar Demonstration and Outdoor Experiment

Anpeng Song, Chen Xu, Jun Yu Li, Kai Jin, K. Wei
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Abstract

Inverse synthetic aperture LADAR(ISAL) is a coherent imaging technology whose resolution is independent of the target distance. Compared with traditional linear frequency modulation scheme, phase-coded ISAL can refer to the methods in communication to reduce noise interference or compensate the carrier phase error. In this paper, a novel single sideband modulation based phased coded continuous-wave ISAL system is proposed and experimentally demonstrated. The spectral efficiency of the new system is twice that of the traditional system, resulting in twice the utilization of echo energy. In addition, the use of continuous wave modulation improves anti-noise capability and imaging quality. Imaging results with azimuth resolution of 1.51cm are obtained by two 4cm aperture diameter telescopes at the distance of 7km, achieved about twenty times higher than conventional real aperture imaging system.
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基于单边带调制的相位编码连续波逆合成孔径雷达演示与室外实验
逆合成孔径雷达(ISAL)是一种分辨率与目标距离无关的相干成像技术。与传统的线性调频方案相比,相位编码ISAL可以参考通信中减少噪声干扰或补偿载波相位误差的方法。本文提出了一种基于单边带调制的相位编码连续波ISAL系统,并进行了实验验证。新系统的频谱效率是传统系统的两倍,从而使回波能量利用率提高了一倍。此外,连续波调制的使用提高了抗噪声能力和成像质量。利用2台口径为4cm的望远镜,在7km的距离上获得了方位角分辨率为1.51cm的成像结果,比传统的实口径成像系统提高了约20倍。
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