Semiconductor Optoelectronics, Volume. 41, Issue 3, 448(2020)

Super-resolution Planar Array 3D Imaging for Dynamic Objects Pose Estimation

WANG Shengjie1...2,3,4, LIU Bo1,3,*, LI Heping2, CHEN Zhen1,3, and JIANG Shuo1,34 |Show fewer author(s)
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
  • show less
    References(31)

    [1] [1] Schwarz B. Lidar: Mapping the world in 3D[J]. Nature Photonics, 2010, 4(7): 429-430.

    [2] [2] Lee J, Kim Y, Lee K, et al. Time-of-flight measurement with femtosecond light pulses[J]. Nature Photon., 2010, 4(10): 716-720.

    [3] [3] McManamon P F. Review of ladar: a historic, yet emerging, sensor technology with rich phenomenology[J]. Opt. Engin., 2012, 51(6): 1-14.

    [4] [4] Gariepy G, Henderson R, Li C, et al. Single-photon sensitive light-in-flight imaging[J]. Nature Commun., 2015, 6: 6021.

    [5] [5] Albota M A, Aull B F, Fouche D G, et al. Three-dimensional imaging ladars with Geigermode avalanche photodiode arrays[J]. Lincoln Lab. J, 2002, 13(2): 351-370.

    [6] [6] Marino R M, Davis W R. Jigsaw: a foliage-penetrating 3D imaging ladar system[J]. Lincoln Lab. J., 2005, 15(1): 23-32.

    [7] [7] Kirmani A, Venkatraman D, Shin D, et al. First-photon imaging[J]. Science, 2014, 343(6166): 58-61.

    [8] [8] Shin D, Kirmani A, Goyal V K, et al. Photon-efficient computational 3D and reflectivity imaging with single-photon detectors[J]. IEEE Trans. on Computational Imaging, 2015, 1(2): 112-125.

    [9] [9] Shin D, Xu F, Venkatraman D, et al. Photon-efficient imaging with a single-photon camera[J]. Nature Commun., 2016, 7: 12046.

    [10] [10] Schultz K I, Kelly M W, Baker J J, et al. Digital-pixel focal plane array technology[J]. Lincoln Lab. J., 2014, 20(2): 36-51.

    [11] [11] Aull B F, Duerr E K, Frechette J P, et al. Large-format Geiger-mode avalanche photodiode arrays and readout circuits[J]. IEEE J. of Sel. Top. in Quantum Electron., 2018, 24(2): 1-10.

    [12] [12] Laurenzis M, Christnacher F, Monnin D. Long-range three-dimensional active imaging with superresolution depth mapping[J]. Opt. Lett., 2007, 32(21): 3146-3148.

    [13] [13] Zhang X, Yan H, Jiang Y. Pulse-shape-free method for long-range three-dimensional active imaging with high linear accuracy[J]. Opt. Lett., 2008, 33(11): 1219-1221.

    [14] [14] Zhang X, Yan H, Zhou Q. Overcoming the shot-noise limitation of three-dimensional active imaging[J]. Opt. Lett., 2011, 36(8): 1434-1436.

    [15] [15] Djazovski O, Daigle O, Laurin D, et al. Electron-multiplying CCDs for future space instruments[J]. Proc. SPIE, 2013, 8915, 89150Q-1.

    [16] [16] Denvir D J, Emer C. Electron multiplying CCD technology: The new ICCD[J]. Proc. SPIE, 2002, 4796: 167-174.

    [17] [17] Zhang Wenwen, Chen Qian. Signal-to-noise ratio performance comparison of electron multiplying CCD and intensified CCD detectors[C]// Proc. IASP International Confer. on Imaging Analysis and Signal Processing, 2009: 337-341.

    [18] [18] Dussault D, Hoess P. Noise performance comparison of ICCD with CCD and EMCCD cameras[J]. Proc. SPIE, 2004, 5563: 561839.

    [19] [19] Robbins M S, Hadwen B J. The noise performance of electron multiplying charge coupled devices[J]. IEEE Trans. on Electron Devices, 2003, 50(5): 1227-1232.

    [20] [20] Yariv A, Yeh P. Electro-optic Devices[M]. Optical Waves in Crystals: Propagation and Control of Laser Radiation, United States: John Wiley & Sons, 2002: 276-317.

    [21] [21] Chen Z, Liu B, Liu E, et al. Electro-optic modulation methods in range-gated active imaging[J]. Appl. Opt., 2016, 55(3): A184-A190.

    [22] [22] Chen Z, Liu B, Liu E, et al. Adaptive polarization-modulated method for high resolution 3D imaging[J]. IEEE Photon. Technol. Lett., 2016, 28(3): 295-298.

    [23] [23] Fournier G R, Bonnier D, Forand J L, et al. Range-gated underwater laser imaging system[J]. Opt. Eng., 1993, 32: 2185-2190.

    [24] [24] Busck J, Heiselberg H. Gated viewing and high-accuracy three-dimensional laser radar[J]. Appl. Opt., 2004, 43(24): 4705-4710.

    [25] [25] Busck J. Underwater 3-D optical imaging with a gated viewing laser radar[J]. Opt. Eng., 2005, 44(11): 116001.

    [26] [26] Dabov K, Foi A, Katkovnik V, et al. Image denoising by sparse 3-D transform-domain collaborative filtering[J]. IEEE Trans. on Image Proc., 2007, 16(8): 2080-2095.

    [27] [27] Foi A, Trimeche M, Katkovnik V, et al. Practical poissonian-Gaussian noise modeling and fitting for single-image raw-data[J]. IEEE Tran. on Image Proc., 2008, 17(10): 1737-1754.

    [28] [28] Liu Xinhao, Tanaka M, Okutomi M. Practical signal-dependent noise parameter estimation from a single noisy image[J]. IEEE Trans. on Image Proc., 2014, 23(10): 4361-4371.

    [29] [29] Guizar-Sicairos M, Thurman S T, Fienup J R. Efficient subpixel image registration algorithms[J]. Opt. Lett., 2008, 33(2): 156-158.

    [30] [30] Tong W. Subpixel image registration with reduced bias[J]. Opt. Lett., 2011, 36(5): 763-765.

    [31] [31] Foroosh H, Zerubia J B, Berthod M. Extension of phase correlation to subpixel registration[J]. IEEE Trans. on Image Process, 2002, 11(3): 188-200.

    Tools

    Get Citation

    Copy Citation Text

    WANG Shengjie, LIU Bo, LI Heping, CHEN Zhen, JIANG Shuo. Super-resolution Planar Array 3D Imaging for Dynamic Objects Pose Estimation[J]. Semiconductor Optoelectronics, 2020, 41(3): 448

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Feb. 18, 2020

    Accepted: --

    Published Online: Jun. 18, 2020

    The Author Email: Bo LIU (boliu@ioe.ac.cn)

    DOI:10.16818/j.issn1001-5868.2020.03.027

    Topics