Paper
12 October 2015 Concept study of a vegetation lidar on International Space Station
T. Kimura, T. Imai, D. Sakaizawa, T. Kobayashi, J. Murooka
Author Affiliations +
Abstract
IPCC Fifth Assessment Report says that there are still large uncertainties of carbon flux estimations in the interaction between ground and atmosphere. That is because of the uncertainties of “change of land use”, in other words, “change of biomass” such as deforestation. Biomass estimation needs not only area of the forest but also its height information with topological features. In that sense, active sensors are highly expected for precise height measurement. Laser Altimeter or simply LIDAR is able to measure the height of dense forest, where SAR has salutation. ICESat / GLAS is firstly used to measure biomass as satellite LIDAR. However it was reported that there is uncertainty where terrain relief exists. To calibrate terrain relief using multi footprints, a Vegetation LIDAR named MOLI (Multi Observation LIDAR and Imager) was studied by JAXA. The unique points of MOLI are the dual beams with enough small and close footprints to determine terrain relief. Full wave analysis technique is also under development to distinguish canopy heights, crown depth and other forest features. Co-aligned imager will be used for determination of positions where LIDAR measured and observation of phonology. MOLI system design is about to finalize. Regarding Laser Transmitter, Bread Board Model with pressure vessel is being tested under vacuum condition. Target launch year of MOLI is around 2019.
© (2015) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
T. Kimura, T. Imai, D. Sakaizawa, T. Kobayashi, and J. Murooka "Concept study of a vegetation lidar on International Space Station", Proc. SPIE 9639, Sensors, Systems, and Next-Generation Satellites XIX, 96390K (12 October 2015); https://doi.org/10.1117/12.2196424
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
LIDAR

Imaging systems

Transmitters

Vegetation

Signal to noise ratio

Synthetic aperture radar

Carbon

Back to Top