Classifying Eucalyptus forests with high spatial and spectral resolution imagery:: an investigation of individual species and vegetation communities

被引:48
作者
Goodwin, N [1 ]
Turner, R
Merton, R
机构
[1] Univ New S Wales, Sch Biol Earth & Environm Sci, Sydney, NSW 2052, Australia
[2] State Forests New S Wales, Pennant Hills, NSW 2120, Australia
关键词
D O I
10.1071/BT04085
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Mapping the spatial distribution of individual species is an important ecological and forestry issue that requires continued research to coincide with advances in remote-sensing technologies. In this study, we investigated the application of high spatial resolution ( 80 cm) Compact Airborne Spectrographic Imager 2 (CASI-2) data for mapping both spectrally complex species and species groups (subgenus grouping) in an Australian eucalypt forest. The relationships between spectral reflectance curves of individual tree species and identified statistical differences among species were analysed with ANOVA. Supervised maximum likelihood classifications were then performed to assess tree species separability in CASI-2 imagery. Results indicated that turpentine (Syncarpia glomulifera Smith), mesic vegetation ( primarily rainforest species), and an amalgamated group of eucalypts could be readily distinguished. The discrimination of S. glomulifera was particularly robust, with consistently high classification accuracies. Eucalypt classification as a broader species group, rather than individual species, greatly improved classification performance. However, separating sunlit and shaded aspects of tree crowns did not increase classification accuracy.
引用
收藏
页码:337 / 345
页数:9
相关论文
共 40 条
[1]  
[Anonymous], 1995, Canadian Journal of Remote Sensing, DOI DOI 10.1080/07038992.1995.10874590
[2]   Using vegetation reflectance variability for species level classification of hyperspectral data [J].
Cochrane, MA .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 2000, 21 (10) :2075-2087
[3]   Predicting the complexity of habitat in forests from airborne videography for wildlife management [J].
Coops, NC ;
Catling, PC .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1997, 18 (12) :2677-2682
[4]   Assessment of crown condition in eucalypt vegetation by remotely sensed optical indices [J].
Coops, NC ;
Stone, C ;
Culvenor, DS ;
Chisholm, L .
JOURNAL OF ENVIRONMENTAL QUALITY, 2004, 33 (03) :956-964
[5]   Chlorophyll content in eucalypt vegetation at the leaf and canopy scales as derived from high resolution spectral data [J].
Coops, NC ;
Stone, C ;
Culvenor, DS ;
Chisholm, LA ;
Merton, RN .
TREE PHYSIOLOGY, 2003, 23 (01) :23-31
[6]   REMOTE-SENSING OF FOLIAR CHEMISTRY [J].
CURRAN, PJ .
REMOTE SENSING OF ENVIRONMENT, 1989, 30 (03) :271-278
[7]   Visible/near infrared reflectance and chlorophyll content in Eucalyptus leaves [J].
Datt, B .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1999, 20 (14) :2741-2759
[8]   A new reflectance index for remote sensing of chlorophyll content in higher plants:: Tests using Eucalyptus leaves [J].
Datt, B .
JOURNAL OF PLANT PHYSIOLOGY, 1999, 154 (01) :30-36
[9]  
Datt B., 1999, THESIS U NEW S WALES
[10]   The effects of vegetation phenology on endmember selection and species mapping in southern California chaparral [J].
Dennison, PE ;
Roberts, DA .
REMOTE SENSING OF ENVIRONMENT, 2003, 87 (2-3) :295-309