[1]
[2] Lewis T S, Hutchins H S. A synthetic aperture at optical frequencies[C]//IEEE, 1970, 58(4): 587-588.
[3] Lewis T S, Hutchins H S. A synthetic aperture at 10.6 microns[C]//IEEE, 1970, 58(10): 1781-1782.
[4]
[5] Aleksoff C C, Accetta J S, Tai L M, et al. Synthetic aperture imaging with a pulsed CO2 TEA laser[C]//SPIE, 1987, 783: 29-40.
[6]
[7]
[8] Marcus S, Colella B D, Green T J J. Solid-state laser synthetic aperture radar[J]. Appl Opt, 1994, 33(6): 960-964.
[9]
[10] Bashkansky M, Lucke R L, et al. Two-dimensional synthetic aperture imaging in the optical domain[J]. Opt Lett, 2002, 27(22): 1983-1985.
[11]
[12] Beck S M, Buck J R, Buell W F, et al. Synthetic aperture imaging ladar: laboratory demonstration and signal processing[J]. Appl Opt, 2005, 44(35): 7621-7629.
[13]
[14] Buck J R, Krause B W, Malm A I R, et al. Synthetic aperture imaging at optical wavelengths[C]//Conference on Lasers and Electro-Optics (CLEO), 2009: PThB3.
[15] Krause B W, Buck J, Ryan C M, et al. Synthetic aperture ladar flight demonstration[C]//Conference on Lasers and Electro-Optics (CLEO): Applications and Technology (CLEO_AT), 2011: PDPB7.
[16]
[17]
[18] Ricklin J C, Tomlinson P G. Active imaging at DARPA[C]//SPIE, 2005, 5895: 589505.
[19]
[20] Eichel P H, Wahl D E, Ghiglia D C, et al. Phase gradient autofocus-a robust tool for high resolution SAR phase correction[J]. IEEE Trans on Aerospace and Electronic System, 1994, 30(3): 827-835.
[21] Wu Jin. Matched filter in synthetic aperture ladar imaging[J]. Acta Optica Sinica, 2010, 30(7): 2123-2129. (in Chinese) 吴谨. 合成孔径激光雷达成像之匹配滤波器[J]. 光学学报, 2010, 30(7): 2123-2129.