Retrieving forest biomass through integration of CASI and LiDAR data

被引:64
作者
Lucas, R. M. [1 ]
Lee, A. C. [2 ]
Bunting, P. J. [1 ]
机构
[1] Univ Wales, Inst Geog & Earth Sci, Aberystwyth SY23 3DB, Ceredigion, Wales
[2] Australian Natl Univ, Sch Resources Environm & Soc, Canberra, ACT, Australia
关键词
D O I
10.1080/01431160701736497
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
To increase understanding of forest carbon cycles and stocks, estimates of total and component (e.g. leaf, branch and trunk) biomass at a range of scales are desirable. Focusing on mixed species forests in central south-cast Queensland, two different approaches to the retrieval of biomass from small footprint Light Detection and Ranging (LiDAR) and Compact Airborne Spectrographic Imager (CASI) hyperspectral data were developed and compared. In the first, stems were located using a LiDAR crown openness index, and each was associated with crowns delineated and identified to species using CASI data. The component biomass for individual trees was then estimated using LiDAR-derived height and stem diameter as input to species-specific allometric equations. When summed to give total above-ground biomass (AG13) and aggregated to the plot level, these estimates showed a reasonable correspondence with ground (plot-based) estimates (r(2) =0.56, RSE=25.3Mg ha(-1), n=21) given the complex forest being assessed. In the second approach, a Jackknife linear regression utilizing six LiDAR strata heights and crown cover at the plot-scale produced more robust estimates of AG13 that showed a closer correspondence with plot-scale ground data (1.2 =0.90, RSE=11.8Mg ha(-1), n=31). AGB aggregated from the tree-level and Jackknife regression plot-based AG13 estimates (for 270 plots-each of 0.25ha) compared well for more mature homogeneous and open forests. However, at the tree level, AGB was overestimated in taller forests dominated by trees with large spreading crowns, and underestimated AGB where an understorey with a high density of stems occurred. The study demonstrated options for quantifying component biomass and AGB through integration of LiDAR and CASI data but highlighted the requirement for methods that give improved estimation of tree density (by size class distributions) and species occurrence in complex forests.
引用
收藏
页码:1553 / 1577
页数:25
相关论文
共 56 条
  • [1] Quantifying uncertainty in estimates of C emissions from above-ground biomass due to historic land-use change to cropping in Australia
    Barrett, DJ
    Galbally, IE
    Graetz, RD
    [J]. GLOBAL CHANGE BIOLOGY, 2001, 7 (08) : 883 - 902
  • [2] Integrated and comprehensive estimation of greenhouse gas emissions from land systems
    Brack, Cris
    Richards, Gary
    Waterworth, Robert
    [J]. SUSTAINABILITY SCIENCE, 2006, 1 (01) : 91 - 106
  • [3] The delineation of tree crowns in Australian mixed species forests using hyperspectral Compact Airborne Spectrographic Imager (CASI) data
    Bunting, P
    Lucas, R
    [J]. REMOTE SENSING OF ENVIRONMENT, 2006, 101 (02) : 230 - 248
  • [4] BUNTING PJ, 2006, P WORKSH 3D REM SENS, P287
  • [5] BUNTING PJ, 2006, P IUFRO LANDSC EC C, P457
  • [6] BUNTING PJ, 2007, THESIS U WALES ABERY
  • [7] A multi-scale segmentation/object relationship modelling methodology for landscape analysis
    Burnett, C
    Blaschke, T
    [J]. ECOLOGICAL MODELLING, 2003, 168 (03) : 233 - 249
  • [8] Allometric relationships and community biomass estimates for some dominant eucalypts in Central Queensland woodlands
    Burrows, WH
    Hoffmann, MB
    Compton, JF
    Back, PV
    Tait, LJ
    [J]. AUSTRALIAN JOURNAL OF BOTANY, 2000, 48 (06) : 707 - 714
  • [9] Growth and carbon stock change in eucalypt woodlands in northeast Australia: ecological and greenhouse sink implications
    Burrows, WH
    Henry, BK
    Back, PV
    Hoffmann, MB
    Tait, LJ
    Anderson, ER
    Menke, N
    Danaher, T
    Carter, JO
    McKeon, GM
    [J]. GLOBAL CHANGE BIOLOGY, 2002, 8 (08) : 769 - 784
  • [10] BURROWS WH, 2001, 33 NCAS, P17