• Infrared and Laser Engineering
  • Vol. 50, Issue 5, 20200291 (2021)
Ruqing Liu, Yan Jiang, Feng Li, Zhe Meng, Wenju Guo, and Jingguo Zhu*
Author Affiliations
  • Institute of Microelectronics of the Chinese Academy of Sciences, Beijing 100029, China
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    DOI: 10.3788/IRLA20200291 Cite this Article
    Ruqing Liu, Yan Jiang, Feng Li, Zhe Meng, Wenju Guo, Jingguo Zhu. Design of multi-channel data acquisition system for real-time perception lidar[J]. Infrared and Laser Engineering, 2021, 50(5): 20200291 Copy Citation Text show less
    References

    [1] D Supekar Omkar, N Ozbay Baris, Zohrabi Mo, et al. Two-photon laser scanning microscopy with electrowetting-based prism scanning. Biomed Opt Express, 5412-5426(2017).

    [2] Ruqing Liu, Yan Jiang, Chenghao Jiang, et al. Amplifying circuit interface model for Lidar signal processing systems. Journal of Electronics & Information Technology, 42, 1636-1642(2020).

    [3] Jianbiao Chen, Huayan Sun, Rongsheng Zhao, et al. Research development of range-resolved laser radar technology. Infrared and Laser Engineering, 48, 0805007(2019).

    [4] Yu Wei, Shilei Jiang, Guobin Sun, et al. Design of solid-state array laser radar receiving optical system. Chinese Optics, 48, 517-526(2020).

    [5] Le Luo, Changqiang Wu, Jie Lin, et al. Time-domain denoising based on photo-counting Lidar. Optics and Precision Engineering, 27, 1175-1180(2018).

    [6] Lesani Asad, Nateghinia Ehsan, F Miranda-Moreno Luis. Development and evaluation of a real-time pedestrian counting system for high-volume conditions based on 2D LiDAR. Transportation Research Part C, 114, 20-35(2020).

    [7] Xinqing Li, Tianshu Zhang, Yinbin Fu, et al. Design of data acquisition card for Lidar echo signal based on FPGA. Journal of Atmospheric and Environmental optics, 13, 150-160(2018).

    [8] Binggang Liu, Jianhua Chang, Fan Xu, et al. Design of Lidar data acquisition system based on FPGA chip. Electronics Opticas & Control, 25, 68-72(2018).

    [9] Yanping Liu, chong Wang, Haiyun Xia. Application progress of time-frequency analysis of Lidar. Laser & Optoelectronics Process, 55, 68-83(2018).

    [10] Yunfei Cai, Tingmin Shi, Zhenmin Tang. Negative obstacle perception in unstructured environment with double multi-beam Lidar. Acta Automatica Sinica, 44, 569-576(2018).

    [11] Jingguo Zhu, Feng Li, Qitai Hang, et al. Design and realization of an airborne Lidar dual-wedge scanning system. Infrared and Laser Engineering, 45, 0502001(2016).

    [12] Haohao Zeng, Song Li, Zhiyu Zhang, et al. Risley-prism-based beam scanning system for mobile Lidar. Optics and Precision Engineering, 27, 1444-1450(2019).

    [13] Hao Wang, Pei Luo, Xiaolu Li. Design of Lidar ranging system for short-distance dynamic range and error analysis. Journal of Beijing University of Aeronautics and Astronautics, 46, 422-429(2020).

    [14] Yicheng Hu, Xiaoxi Zhang, Mingqing Dai, et al. Design of multi-channel signal acquisition system based on DSP and FPGA. Information & Communications, 86-88(2019).

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    Ruqing Liu, Yan Jiang, Feng Li, Zhe Meng, Wenju Guo, Jingguo Zhu. Design of multi-channel data acquisition system for real-time perception lidar[J]. Infrared and Laser Engineering, 2021, 50(5): 20200291
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