共 36 条
- [21] Maguya A S, Tegel K, Junttila V, Kauranne T, Korhonen M, Burns J, Leppanen V, Sanz B., Moving voxel method for estimating canopy base height from airborne laser scanner data, Remote Sensing, 7, 7, pp. 8950-8972, (2015)
- [22] Palaiologou P, Kalabokidis K, Kyriakidis P., Forest mapping by geoinformatics for landscape fire behaviour modelling in coastal forests, Greece, International Journal of Remote Sensing, 34, 12, pp. 4466-4490, (2013)
- [23] Pierce A D, Farris C A, Taylor A H., Use of random forests for modeling and mapping forest canopy fuels for fire behavior analysis in Lassen Volcanic National Park, California, USA, Forest Ecology and Management, 279, pp. 77-89, (2012)
- [24] Qian L., Zhang Q X, Zhang Y M., Correction effect of ensemble Kalman filter algorithm on FARSITE prediction, Fire Safety Science, 29, 1, pp. 32-41, (2020)
- [25] Quan X W, He B B, Liu X Z, Liao Z M, Qiu S, Yin C M., Retrieval of fuel moisture content by using radiative transfer models from optical remote sensing data, Journal of Remote Sensing, 23, 1, pp. 62-77, (2019)
- [26] Reeves M C, Ryan K C, Rollins M G, Thompson T G., Spatial fuel data products of the LANDFIRE project, International Journal of Wildland Fire, 18, 3, pp. 250-267, (2009)
- [27] Reinhardt E, Crookston N L., The Fire and Fuels Extension to the Forest Vegetation Simulator, Rocky Mountain Research Station, (2003)
- [28] Riano D, Chuvieco E, Condes S, Gonzalez-Matesanz J, Ustin S L., Generation of crown bulk density for Pinus Sylvestris L. from lidar, Remote Sensing of Environment, 92, 3, pp. 345-352, (2004)
- [29] Rollins M G., LANDFIRE: a nationally consistent vegetation, wildland fire, and fuel assessment, International Journal of Wildland Fire, 18, 3, pp. 235-249, (2009)
- [30] Scott J H, Reinhardt E D., Assessing Crown Fire Potential By Linking Models of Surface and Crown Fire Behavior, Rocky Mountain Research Station, (2001)