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Simulating full-waveform LIDAR

2012
LIDAR (LIght Detection And Ranging) is used to remotely measure the threedimensional shapes and arrangements of objects with high efficiency and accuracy by making precise measurements of time-of-flight of pulses of light. Discrete return LIDAR systems provide a discrete series of elevation points corresponding to reflections from objects in the scene.
openaire   +1 more source

Full-waveform topographic lidar: State-of-the-art

ISPRS Journal of Photogrammetry and Remote Sensing, 2009
Clement Mallet, Frédéric Bretar
exaly  

Total Variation Regularization Strategies in Full-Waveform Inversion

SIAM Journal on Imaging Sciences, 2018
Aleksandr Aravkin   +2 more
exaly  

Correlation-based reflection full-waveform inversion

Geophysics, 2015
Yuzhu Liu, Benxin Chi, Liangguo Dong
exaly  

Full-waveform inversion using seislet regularization

Geophysics, 2017
Hejun Zhu, Sergey Fomel, Zhiguang Xue
exaly  

Application of optimal transport and the quadratic Wasserstein metric to full-waveform inversion

Geophysics, 2018
Yunan Yang   +2 more
exaly  

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