Paper
12 January 2004 Advances in laser ranging
Author Affiliations +
Abstract
Multiple-scattering effects can severely influences ground-based lidar measurements when the optical depth is not negligible such as in presence of fog or clouds. This problem can be faced both analytically and by Monte Carlo methods, although as usual the analytical techniques require several simplifications about the microphysical mechanisms whereas Monte Carlo simulation constitutes a more direct approach. In this paper, we discuss an iterative Monte Carlo method to simulate photon multiple scattering in optically dense media. Our results show that it is possible to correct for the multiple scattering influence both extinction and backscattering coefficients obtained by Raman lidar. In particular, for the typical cirrus cloud, the presence of the multiple scattering can lead to an underestimation of the extinction coefficient as large as 100% whereas the backscattering coefficient is almost unaffected by such process. This in turn evidences the strong dependence of the lidar ratio on the multiple-scattering effect.
© (2004) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Allan I. Carswell "Advances in laser ranging", Proc. SPIE 5240, Laser Radar Technology for Remote Sensing, (12 January 2004); https://doi.org/10.1117/12.510233
Lens.org Logo
CITATIONS
Cited by 3 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
LIDAR

Laser applications

Ranging

Laser systems engineering

Laser development

Water

Airborne laser technology

RELATED CONTENT

Schematic of space-borne lidar surveying neritic seabed terrain
Proceedings of SPIE (September 19 2013)
Design of laser radar-based feature points measurement scheme
Proceedings of SPIE (September 18 2014)
Laser echo detection technology based on G-APDs
Proceedings of SPIE (December 18 2019)
Compressive full waveform lidar
Proceedings of SPIE (May 05 2017)

Back to Top