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NTIS 바로가기한국광학회지 = Korean journal of optics and photonics, v.33 no.1, 2022년, pp.1 - 10
심주현 (부경대학교 지구환경시스템과학부 환경공학전공) , 김태경 (부경대학교 지구환경시스템과학부 환경공학전공) , 주소희 (부경대학교 지구환경시스템과학부 환경공학전공) , 노영민 (부경대학교 환경공학과) , 김덕현 (한밭대학교 기초과학부)
In this study we introduce a new method for high-spatial-resolution continuous wave (CW) aerosol lidar that has a high spatial resolution in the near field and a low spatial resolution at long distances. A normal lidar system uses a nanosecond-pulse laser and measures the round-trip TOF between the ...
C. Xie, M. Zhao, B. Wang, Z. Zhong, L. Wang, D. Liu, and Y. Wang, "Study of the scanning lidar on the atmospheric detection," J. Quant. Spectrosc. Radiat. Transf. 150, 114-120 (2015).
N. Graves and S. Newsam, "Camera-based visibility estimation: incorporating multiple regions and unlabeled observations," Ecol. Inform. 23, 62-68 (2014).
D. Kim, "Real-time measurement of fog aerosol extinction coefficients at the three RGB wavelengths using general landscape images," in Proc. International Symposium on Remote Sensing (Korea, May 2021), pp.123-126.
T. Mori and M. Burton, "The SO 2 camera: a simple, fast and cheap method for ground-based imaging of SO 2 in volcanic plumes," Geophys. Res. Lett. 33, L24804 (2006).
T. Halldorsson and J. Langerholc, "Geometrical form factors for the lidar function," Appl. Opt. 17, 240-244 (1978).
J. Wang, W. Liu, C. Liu, T. Zhang, J. Liu, Z. Chen, Y. Xiang, and X. Meng, "The determination of aerosol distribution by a no-blind-zone scanning lidar," Remote Sens. 12, 626 (2020).
A. Shimizu, T. Nishizawa, Y. Jin, S.-W. Kim, Z. Wang, D. Batdorj, and N. Sugimoto, "Evolution of a lidar network for tropospheric aerosol detection in East Asia," Opt. Eng. 56, 031219 (2016).
R. E. W. Pettifer, "Signal induced noise in lidar experiments," J. Atmos. Terr. Phys. 37, 669-673 (1975).
A. Comeron, F. Rocadenbosch, M. A. Lopez, A. Rodriguez, C. Munoz, D. Garcia-Vizcaino, and M. Sicard, "Effects of noise on lidar data inversion with the backward algorithm," Appl. Opt. 43, 2572-2577 (2004).
S. W. Dho, Y. J. Park, and H. J. Kong, "Experimental determination of a geometric form factor in a lidar equation for an inhomogeneous atmosphere," Appl. Opt. 36, 6009-6010 (1997).
Y. Sasano, H. Shimizu, N. Takeuchi, and M. Okuda, "Geometrical form factor in the laser radar equation: an experimental determination," Appl. Opt. 18, 3908-3910 (1979).
J. Li, C. Li, Y. Zhao, J. Li, and Y. Chu, "Geometrical constraint experimental determination of Raman lidar overlap profile," Appl. Opt. 55, 4924-4928 (2016).
G. Biavati, G. D. Donfrancesco, F. Cairo, and D. G. Feist, "Correction scheme for close-range lidar returns," Appl. Opt. 50, 5872-5882 (2011).
J. Su, M. P. McCormick, Z. Liu, K. H. Leavor, R. B. Lee, J. Lewis, and M. T. Hill, "Obtaining a ground-based lidar geometric form factor using coincident spaceborne lidar measurements," Appl. Opt. 49, 108-113 (2010).
R. M. Measures, Laser remote sensing: fundamentals and applications, Hardcover ed. (Krieger Publishing Company, USA, 1985), p. 524.
L. Mei and M. Brydegaard, "Atmospheric aerosol monitoring by an elastic Scheimpflug lidar system," Opt. Express 23, 247841 (2015).
L. Mei and M. Brydegaard, "Continuous-wave differential absorption lidar," Laser Photonics Rev. 9, 629-636 (2015).
M. Brydegaard, A. Gebru, and S. Svanberg, "Super resolution laser radar with blinking atmospheric particles Application to interacting flying insects," Prog. Electromagn. Res. 147, 141-151 (2014).
G. Sun, L. Qin, Z. Hou, X. Jing, F. He, F. Tan, and S. Zhang, "Small-scale Scheimpflug lidar for aerosol extinction coefficient and vertical atmospheric transmittance detection," Opt. Express 26, 7423-7436 (2018).
L. Mei and M. Brydegaard, "Development of a Scheimpflug lidar system for atmospheric aerosol monitoring," EPJ Web Conf. 119, 27005 (2016).
L. Mei, Z. Kong, T. Ma, L. Li, and Z. Liu, "Applications of the Scheimpflug lidar technique in atmospheric remote sensing," in Proc. Photonics & Electromagnetics Research Symposium (Rome, Italy, Jun. 2019).
M. Brydegaard, E. Malmqvist, S. Jansson, J. Larsson, S. Torok, and G. Zhao, "The Scheimpflug lidar method," Proc. SPIE 10406, 104060I (2017).
A. Kabir, N. Sharma, J. E. Barnes, J. Butt, M. Bridgewater, and N. Stubbs, "Aerosol mapping using a Bistatic camera lidarand comparing with radiosonde data in the Bahamas," in Proc. IGARSS 2018 - IEEE International Geoscience and Remote Sensing Symposium (Valencia, Spain, Jul. 2018), pp. 3230-3233.
Z. Kong, Z. Liu, L. Zhang, P. Guan, L. Li, and L. Mei, "Atmospheric pollution monitoring in urban area by employing a 450-nm lidar system," Sensors 18, 1880 (2018).
Y. Yang, P. Guan, and L. Mei, "A scanning Scheimpflug lidar system developed for urban pollution monitoring," EPJ Web Conf. 176, 01013 (2018).
J. D. Klett, "Lidar inversion with variable backscatter/extinction ratios," Appl. Opt. 24, 1638-1643 (1985).
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