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覃先林等:中国林火卫星遥感预警监测技术研究进展 519 DO:10.3724SPJ.1010.2014.00642] 方法研究林业科学研究,7(1):13-19) Roberts g j and Wooster M J. 2008. Fire detection and fire character. Yi H R and Ji P. 1998. The methods of evaluating burned area of forest ization over Africa using meteosat SEVIRl. IEEE Transactions on fire by using remote sensing Remote Sensing Technology and Ap- Geoscience and Remote Sensing, 46(4): 1200-1218 DOI: 10 plication,13(2)10-14(易浩若,纪平,1998.森林过火面积的遥 l109grs.2008.915751 感测算方法.遥感技术与应用,13(2):10-14)[DO1:10.11873 Somers B, Verbesselt J, Ampe E M, Sims N, Verstraeten W wand issn.1004-0323.1998.02.002 Coppin P. 2010. Spectral mixture analysis to monitor defoliation Yi H R, Ji P and Qin X L. 2004. Study on forest fire danger forecast in mixed-age Eucalyptus globulus Labill plantations in southern system and its operation in China. Scientia Silvae Sinicae, 40(3) 203-207(易浩若,纪平,覃先林.2004.全国森林火险预报系统 tional Journal of Applied Earth Observation and Geoinformation, 的研究与运行,林业科学,40(3):203-207)[DO:10.3321is: 12(4:270-277[DOl:10.1016jjag2010.03005] 1001-74882004.03.036 unG F 2018. Method for Burned Forest Area Identification and Veg- Yi K P, Tani H, Zhang J Q, Guo M, Wang X F and Zhong G S. 2013 etation Restoration Using Satellite Data. Beijing: Chinese Acade- Long-term satellite detection of post-fire vegetation trends in bo- my of Forestry(孙桂芬,2018.森林火烧迹地识别及植被恢复卫 real forests of China. Remote Sensing, 5(12): 6938-6957 [DOI 星遥感监测方法.北京:中国林业科学研究院) 10.3390/s5126938 Wang C and Glenn N F, 2009. Estimation of fire severity using pre- Yu Y F, Pan J, Xing L X, Jiang L J, Meng T, Han X J and Zhou CC. and post-fire LiDAR data in sagebrush steppe rangelands Interna- 013. Identification of high temperature targets in remote sensing tional Journal of Wildland Fire, 18(7): 848-856 [DOl: 10.1071/ ce. Remote Sensing Informa- WF08173 tion,28(5):90-94(于一凡,潘军,邢立新,蒋立军,孟涛,韩晓静 Wang L T, Zhou Y, Wang S X and Chen S R. 2004. Monitoring for 周彩彩.2013.基于马氏距离的遥感图像高温目标识别方法研 究,遥感信息,28(5):90-94)[DOl:10.3969iss.100031 IEEE Intermational Geoscience and Remote Sensing Symposium 2013.05.017] Anchorage, AK, USA: IEEE: 2095-2098. DOI: 10.1109/ Zhou Y, Wang S X, Wang L T, Chen SR and Li H C. 2007. MoDis da GARSS.2004.1370770 ta-based automatic extraction of information on fire spot. Journal Wooster M J, Roberts G, Perry G L W and Kaufman Y J. 2005. Re- of Natural disasters,l6(1):88-93(周艺,王世新,王丽涛,陈世 trieval of biomass combustion rates and totals from fire radiative 荣,李浩川.2007.基于MODS数据的火点信息自动提取方法 power observations; FRP derivation and calibration relationships 然灾害学报,16(1):8893)[DOl:10.39690isn.1004-4574 between biomass consumption and fire radiative energy release 2007.01.017 Journal of Geophysical Research, 110(D24): D24311 DOL: 10. Zhu X and Qin X L 2013. Burned area mapping using HJ-1A/B CCD 1029/2005JD006318 lata based on two-phase algorithm. Remote Sensing Technology Wooster M J and Zhang Y H. 2004. Boreal forest fires burn less in- and Application,28(1):72-77(朱曦,覃先林.2013.基于二阶段 tensely in Russia than in North America Geophysical Research 算法的HCCD数据过火区制图.遥感技术与应用,28(1)7 Letr31(20):L20505[DO1:10.10292004g1020805] 77)[DOl:10.11873/s.10040323.2013.1 Wu X Q, Qin X L, Li C, Tian Z w, Xiong Y Q, Yang D F and Zhang Zhu X, Qin X L and Liao J. 2013. Remote sensing mapping for uni- R. 2010. Analysis of current forest fire monitoring system in Chi- temporal cross-region forest burned area based on fuzzy set theo- na. Inner Mongolia Forestry Investigation and Design, 33(3): 69- ry. Remote Sensing for Land and Resources, 25(4): 122-128(/R 72(吴雪琼,覃先林,李程,田祖为,熊有强,杨德付,张瑞.2010. 曦,罩先林,廖靖.2013.基于模糊集理论的单时相跨区域森林 中国林火监测体系现状分析.内蒙古林业调查设计,33(3)69 过火区遥感制图.国土资源遥感,25(4:122128)[DOl:10 72)[DO:10.3969issn.1006-6993.2010.03.029 6046/ gtzyyg.2013.0419y Yang F. 2012. Study on the Extraction Method of Active Fire Line Us- Zhu Y J, Xing LX, Pan J, Meng T, Wen JC, Wang HH, Qiao Z M an ing High Spatial Resolution Data. Kunming: Southwest Forestry Huang J C. 2011. Method of identifying high-temperature target University(杨飞,2012.基于高空间分辨率数据的林火燃烧现 sing shortwave infrared remote sensing data Remote Sensing In- 状提取研究.昆明:西南林业大学) formation,(6):33-36,41(朱亚静,邢立新,潘军,孟涛,闻久成, Yang w 2013. The Study on Burned Area Mapping and Vegetation Re- 王红红,乔振民,黄竞铖.2011.短波红外遥感高温地物目标识 generation Based on Remote Sensing Data in Heilongjiang Basin 别方法研究,遥感信息,(6):33-36,41)[DOl:10.3969isn. Changchun: Northeast Institute of Geography and Agroecology 1000-31772011.06.007 Chinese Academy of Sciences(杨伟.2013.基于遥感的黑龙江zhuZ,Keyc, Ohlen d and Benson n.200. Evaluate Sensitivities of 流域火烧迹地及其植被恢复研究,长春:中国科学院研究生院 Burn-Severity Mapping Algorithms for Different Ecosystems and Fire Histories in the United States. USA Final Report to the Joint P. 1994. Research method for remote sensing Fire Science Program, Project: JFSP0l-1-4-12. USGS EROS image processing using expert system. Forest Research, 7(1): 13- Zu X F, Qin X L, Li Z Y, Sun G F and Liu S C. 2017. Method for 19(易浩若,白黎娜,纪平.1994.专家系统用于遥感图像处理的 burned forest biomass estimation using satellite remote sensing覃先林 等:中国林火卫星遥感预警监测技术研究进展 [DOI:10.3724/SP.J.1010.2014.00642] Roberts G J and Wooster M J. 2008. Fire detection and fire character‐ ization over Africa using Meteosat SEVIRI. IEEE Transactions on Geoscience and Remote Sensing, 46(4): 1200-1218 [DOI: 10. 1109/tgrs.2008.915751] Somers B, Verbesselt J, Ampe E M, Sims N, Verstraeten W W and Coppin P. 2010. Spectral mixture analysis to monitor defoliation in mixed-age Eucalyptus globulus Labill plantations in southern Australia using Landsat 5-TM and EO-1 Hyperion data. Interna‐ tional Journal of Applied Earth Observation and Geoinformation, 12(4): 270-277 [DOI: 10.1016/j.jag.2010.03.005] Sun G F. 2018. Method for Burned Forest Area Identification and Veg‐ etation Restoration Using Satellite Data. Beijing: Chinese Acade‐ my of Forestry (孙桂芬. 2018. 森林火烧迹地识别及植被恢复卫 星遥感监测方法. 北京: 中国林业科学研究院) Wang C and Glenn N F. 2009. Estimation of fire severity using pre￾and post-fire LiDAR data in sagebrush steppe rangelands. Interna‐ tional Journal of Wildland Fire, 18(7): 848-856 [DOI: 10.1071/ WF08173] Wang L T, Zhou Y, Wang S X and Chen S R. 2004. Monitoring for grassland and forest fire danger using remote sensing data//2004 IEEE International Geoscience and Remote Sensing Symposium. Anchorage, AK, USA: IEEE: 2095-2098. [DOI: 10.1109/ IGARSS.2004.1370770] Wooster M J, Roberts G, Perry G L W and Kaufman Y J. 2005. Re‐ trieval of biomass combustion rates and totals from fire radiative power observations: FRP derivation and calibration relationships between biomass consumption and fire radiative energy release. Journal of Geophysical Research, 110(D24): D24311 [DOI: 10. 1029/2005JD006318] Wooster M J and Zhang Y H. 2004. Boreal forest fires burn less in‐ tensely in Russia than in North America. Geophysical Research Letters, 31(20): L20505 [DOI: 10.1029/2004gl020805] Wu X Q, Qin X L, Li C, Tian Z W, Xiong Y Q, Yang D F and Zhang R. 2010. Analysis of current forest fire monitoring system in Chi‐ na. Inner Mongolia Forestry Investigation and Design, 33(3): 69- 72 (吴雪琼, 覃先林, 李程, 田祖为, 熊有强, 杨德付, 张瑞. 2010. 中国林火监测体系现状分析 . 内蒙古林业调查设计, 33(3): 69- 72) [DOI: 10.3969/j.issn.1006-6993.2010.03.029] Yang F. 2012. Study on the Extraction Method of Active Fire Line Us‐ ing High Spatial Resolution Data. Kunming: Southwest Forestry University (杨飞 . 2012. 基于高空间分辨率数据的林火燃烧现 状提取研究. 昆明: 西南林业大学) Yang W. 2013. The Study on Burned Area Mapping and Vegetation Re‐ generation Based on Remote Sensing Data in Heilongjiang Basin. Changchun: Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences (杨伟 . 2013. 基于遥感的黑龙江 流域火烧迹地及其植被恢复研究 . 长春: 中国科学院研究生院 (东北地理与农业生态研究所)) Yi H R, Bai L N and Ji P. 1994. Research method for remote sensing image processing using expert system. Forest Research, 7(1): 13- 19 (易浩若, 白黎娜, 纪平. 1994. 专家系统用于遥感图像处理的 方法研究. 林业科学研究, 7(1): 13-19) Yi H R and Ji P. 1998. The methods of evaluating burned area of forest fire by using remote sensing. Remote Sensing Technology and Ap‐ plication, 13(2): 10-14 (易浩若, 纪平 . 1998. 森林过火面积的遥 感测算方法 . 遥感技术与应用, 13(2): 10-14) [DOI: 10.11873/j. issn.1004-0323.1998.02.002] Yi H R, Ji P and Qin X L. 2004. Study on forest fire danger forecast system and its operation in China. Scientia Silvae Sinicae, 40(3): 203-207 (易浩若, 纪平, 覃先林 . 2004. 全国森林火险预报系统 的研究与运行 . 林业科学, 40(3): 203-207) [DOI: 10.3321/j.issn: 1001-7488.2004.03.036] Yi K P, Tani H, Zhang J Q, Guo M, Wang X F and Zhong G S. 2013. Long-term satellite detection of post-fire vegetation trends in bo‐ real forests of China. Remote Sensing, 5(12): 6938-6957 [DOI: 10.3390/rs5126938] Yu Y F, Pan J, Xing L X, Jiang L J, Meng T, Han X J and Zhou C C. 2013. Identification of high temperature targets in remote sensing imagery based on mahalanobis distance. Remote Sensing Informa‐ tion, 28(5): 90-94 (于一凡, 潘军, 邢立新, 蒋立军, 孟涛, 韩晓静, 周彩彩 . 2013. 基于马氏距离的遥感图像高温目标识别方法研 究 . 遥 感 信 息 , 28(5): 90-94) [DOI: 10.3969/j. issn. 1000-3177. 2013.05.017] Zhou Y, Wang S X, Wang L T, Chen S R and Li H C. 2007. MODIS da‐ ta-based automatic extraction of information on fire spot. Journal of Natural Disasters, 16(1): 88-93 (周艺, 王世新, 王丽涛, 陈世 荣, 李浩川. 2007. 基于MODIS数据的火点信息自动提取方法. 自然灾害学报, 16(1): 88-93) [DOI: 10.3969/j.issn. 1004-4574. 2007.01.017] Zhu X and Qin X L. 2013. Burned area mapping using HJ-1A/B CCD data based on two-phase algorithm. Remote Sensing Technology and Application, 28(1): 72-77 (朱曦, 覃先林 . 2013. 基于二阶段 算法的 HJ-CCD 数据过火区制图 . 遥感技术与应用, 28(1): 72- 77) [DOI: 10.11873/j.issn.1004-0323.2013.1.72] Zhu X, Qin X L and Liao J. 2013. Remote sensing mapping for uni￾temporal cross-region forest burned area based on fuzzy set theo‐ ry. Remote Sensing for Land and Resources, 25(4): 122-128 (朱 曦, 覃先林, 廖靖 . 2013. 基于模糊集理论的单时相跨区域森林 过火区遥感制图 . 国土资源遥感, 25(4): 122-128) [DOI: 10. 6046/gtzyyg.2013.04.19] Zhu Y J, Xing L X, Pan J, Meng T, Wen J C, Wang H H, Qiao Z M and Huang J C. 2011. Method of identifying high-temperature target using shortwave infrared remote sensing data. Remote Sensing In‐ formation, (6): 33-36, 41 (朱亚静, 邢立新, 潘军, 孟涛, 闻久成, 王红红, 乔振民, 黄竞铖 . 2011. 短波红外遥感高温地物目标识 别方法研究 . 遥感信息, (6): 33-36, 41) [DOI: 10.3969/j.issn. 1000-3177.2011.06.007] Zhu Z, Key C, Ohlen D and Benson N. 2006. Evaluate Sensitivities of Burn-Severity Mapping Algorithms for Different Ecosystems and Fire Histories in the United States. USA Final Report to the Joint Fire Science Program, Project: JFSP 01-1-4-12. USGS EROS Zu X F, Qin X L, Li Z Y, Sun G F and Liu S C. 2017. Method for burned forest biomass estimation using satellite remote sensing 519
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