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High-resolution single-photon imaging based on fast AOM supplementary scanning

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【作者】 张伟华; 李召辉; 王煜蓉; 翟迪迪; 王大宇; 费铭之; 张朋城; 陈修亮; 潘海峰; 吴光;

【Author】 Weihua Zhang;Zhaohui Li;Yurong Wang;Didi Zhai;Dayu Wang;Mingzhi Fei;Pengcheng Zhang;Xiuliang Chen;Haifeng Pan;Guang Wu;State Key Laboratory of Precision Spectroscopy,East China Normal University;Collaborative Innovation Center of Extreme Optics,Shanxi University;

【通讯作者】 李召辉;吴光;

【机构】 State Key Laboratory of Precision Spectroscopy,East China Normal University; Collaborative Innovation Center of Extreme Optics,Shanxi University;

【摘要】 Scanning time-of-flight light detection and ranging(LiDAR) is the predominant technique for autonomous driving.Mainstream mechanical scanning is reliable but limited in speed and usually has blind areas. This work proposes a scanning method that uses an acousto-optic modulator to add high-frequency scanning on the slow axis of traditional automotive LiDAR linear scanning. It eliminated blind areas and enhanced the angular resolution to the size of the laser divergence angle. In experiments, this method increased the recognition probability of small targets at approximately 40 m from 70% to over 90%, providing an effective solution for future high-level autonomous driving.

【Abstract】 Scanning time-of-flight light detection and ranging(LiDAR) is the predominant technique for autonomous driving.Mainstream mechanical scanning is reliable but limited in speed and usually has blind areas. This work proposes a scanning method that uses an acousto-optic modulator to add high-frequency scanning on the slow axis of traditional automotive LiDAR linear scanning. It eliminated blind areas and enhanced the angular resolution to the size of the laser divergence angle. In experiments, this method increased the recognition probability of small targets at approximately 40 m from 70% to over 90%, providing an effective solution for future high-level autonomous driving.

【基金】 supported by the National Natural Science Foundation of China (Nos. 62075062 and 62175067)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2025年11期
  • 【分类号】TN958.98
  • 【下载频次】3
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