Chinese Journal of Lasers, Volume. 51, Issue 8, 0810002(2024)
Research on Automatic Driving Lidar Ranging Method Based on TDC
[1] Li Y, Guzman J I. Lidar for autonomous driving[J]. IEEE Signal Processing Magazine, 37, 50-61(2020).
[2] Di H G, Hua D X. Research progress of lidar in cloud detection[J]. Acta Optica Sinica, 42, 0600002(2022).
[3] Zimmermann M, Gestwa M, König C et al. First results of LiDAR-aided helicopter approaches during NATO DVE-mitigation trials[J]. CEAS Aeronautical Journal, 10, 859-874(2019).
[4] Guo C, Xu Q, Dong X J et al. Geohazard recognition and inventory mapping using airborne LiDAR data in complex mountainous areas[J]. Journal of Earth Science, 32, 1079-1091(2021).
[5] Wang G J, Wu J, He R et al. Speed and accuracy tradeoff for LiDAR data based road boundary detection[J]. IEEE/CAA Journal of Automatica Sinica, 8, 1210-1220(2020).
[6] Leslie M. On-chip LiDAR technology advances for cars, cell phones[J]. Engineering, 18, 3-5(2022).
[7] Choi Y, Kim N, Hwang S et al. KAIST multi-spectral day/night data set for autonomous and assisted driving[J]. IEEE Transactions on Intelligent Transportation Systems, 19, 934-948(2018).
[8] Zhang W M, Cai S S, Liang X L et al. Cloth simulation-based construction of pit-free canopy height models from airborne LiDAR data[J]. Forest Ecosystems, 7, 1-13(2020).
[10] Friedl F. LiDAR and autonomous cars: no conventional solution: TOF lidars are recognized as the norm, but FMCW systems are increasingly growing in popularity[J]. PhotonicsViews, 19, 42-44(2022).
[11] Kim M G, Park Y W, Won M. Development of a TOF LADAR sensor for unmanned vehicle systems[J]. Journal of the Korea Institute of Military Science and Technology, 19, 415-423(2016).
[12] Wang J L, Xu X B, Wu J L et al. Echo characteristics of multiplane targets detection using pulsed laser[J]. Chinese Journal of Lasers, 49, 0604004(2022).
[13] Rapp J, Tachella J, Altmann Y et al. Advances in single-photon lidar for autonomous vehicles: working principles, challenges, and recent advances[J]. IEEE Signal Processing Magazine, 37, 62-71(2020).
[14] Zhang M S, Wang Y B, Zhang L X et al. Phase-modulated continuous-wave coherent ranging method for optical phased array lidar[J]. Optics Express, 31, 6514-6528(2023).
[15] Zhang H K, Wang L, Guo S G et al. Error correction method in measurement of high-speed targets with frequency-modulated continuous-wave lidar[J]. Chinese Journal of Lasers, 50, 1310003(2023).
[16] Dehghani A, Saneei M, Mahani A. Time-to-digital convertor based on resolution control[J]. IET Circuits, Devices & Systems, 9, 370-376(2015).
[17] Wang H, Zhang M, Liu J. High-resolution short time interval measurement system implemented in a single FPGA chip[J]. Chinese Science Bulletin, 56, 1285-1290(2011).
[18] Huang H H. Design and implementation of high precision TDC system based on FPGA fast carry chain[D], 26-44(2016).
[19] Wang L, Guo T Y, Pang C. A TDC design method by improved counting method[J]. Journal of Geodesy and Geodynamics, 37, 987-990(2017).
[20] Szplet R, Czuba A. Two-stage clock-free time-to-digital converter based on vernier and tapped delay lines in FPGA device[J]. Electronics, 10, 2190(2021).
[21] Machado R, Cabral J, Alves F S. Recent developments and challenges in FPGA-based time-to-digital converters[J]. IEEE Transactions on Instrumentation and Measurement, 68, 4205-4221(2019).
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Huijuan Yu, Yubing Wang, Shuhua Zhao, Mingshi Zhang, Yue Song, Cheng Qiu, Yuxin Lei, Peng Jia, Lei Liang, Li Qin, Lijun Wang. Research on Automatic Driving Lidar Ranging Method Based on TDC[J]. Chinese Journal of Lasers, 2024, 51(8): 0810002
Category: remote sensing and sensor
Received: Jul. 21, 2023
Accepted: Sep. 4, 2023
Published Online: Mar. 22, 2024
The Author Email: Wang Yubing (wangyubing@ciomp.ac.cn)
CSTR:32183.14.CJL231050