Barbier - CBFP-PFBC COMIFAC Brazzaville... · Barbier et al. RSE (2010) Large scale application...

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Barbier Nicolas IRD - UMR AMAP ULB - FNRS

Transcript of Barbier - CBFP-PFBC COMIFAC Brazzaville... · Barbier et al. RSE (2010) Large scale application...

Page 1: Barbier - CBFP-PFBC COMIFAC Brazzaville... · Barbier et al. RSE (2010) Large scale application maps of apparent crown size and canopy heterogeneity Barbier et al. GEB (2010) Amazonia.

Barbier Nicolas

IRD - UMR AMAP

ULB - FNRS

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Programme Pilote de recherches: Biodiversité, Changements globaux et Santé dans les

forêts tropicales humides

• Part of a broader effort from IRD in central Africa:� Tropical forest as a focal object for interdisciplinary research ;

� Consequences of global change on biodiversity, resources and health;

� Possibly set up permanent research platforms.

• Yaoundé workshop 10/2009

�Call for partnerships…

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Need to quantify canopy structure

•Valuable for :

� Carbon dynamics and forest degradation

assessment;

� Forest ecology (allometry rules, gap dynamics, etc.);

Forest-climate interaction (gaz and vapor exchange);� Forest-climate interaction (gaz and vapor exchange);

� Forest types, etc.

•Difficult to measure in the field,

� Approached via indirect estimates (DBH);

� Limited representativity.

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Remote sensing methods

•Limitation of pixelwise optical and radar :

� Saturation for high biomass levels (>250 t/ha);

� Unable to detect degradation.

•High cost of airborne sensors (e.g. LiDAR).

•Potential of VHR imagery (Quickbird, Ikonos, etc.) but operational methodologies to be developed.

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RCA: GeoEye pansharpened G-NIR-B

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Peaks at

dominant frequencies

Fourier periodograms: quantification of image texture

10

0 m

10

0 m

Proisy et al. RSE (2007)French Guiana

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2D Fourier transform textural 2D Fourier transform textural ordination (FOTO)

• 2D Fourier transform

• Radial power spectrum (r-spectrum)

= Proportions of the image variance accounted for by successive frequencybins, across azimuthal orientations.

Imagery

(metric optical)

Forest cover

Unit-windows

100 - 150 m sides

Frequencies

Fourier analysis

r-spectracomputation

Separation into

Workflow:

• Principal components of image r-spectra dataset

= Identification of main axes of textural variation in the image dataset.

Table of

r-spectra

PCA ordination

Separation into

homogeneous acquisition

groups

Global

standardisation

Partitioned

standardisation

Texture indices (PCA 1, PCA 2)

Invertedforest

parameter

(e.g. meancrown size)

Relation of Texture indices with

forest parameters for a set of

(DART) stands

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10

0 m

Textural ordination: principal axes of variation

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Couteron et al. J Appl Ecol (2005)

FOTO analysis on aerial photographs in French Guiana

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Relationships with forest parameters

Couteron et al. J Appl Ecol (2005)Terra Firme forest; French Guiana

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Relationships with forest parameters

No saturation!

Proisy et al. RSE (2007)

Biomass prediction using Ikonos imagery in mangrove stands; French Guiana

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D1 D2 D3 D4

Q4 Q5 Q6 Q7

Q8 Q9 Q10 Q11

a

b

a b

a. Ikonos VHR.b. DART simulations

Radiative transfer modelsRadiative transfer models

• Testing the effect of acquisition conditions

• Mitigation : partitioning method

D5 D6 D7 D8

a. Ikonos VHR.b. LIDARc-d. Hillshade models

a b

c d

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Extreme configurations: typical examples

a b

c d

Фs-v

= 0°; θV = 9°; θS = 59° Фs-v

= 180°; θV = 9°; θS = 59°

Hillshade effects on

LiDAR surface models

e f

Фs-v = 80°; θV = 3°; θS = 59° Фs-v

= 80°; θV = 15°; θS = 59°

Фs-v = 80°; θV = 9°; θS = 47° Фs-v = 80°; θV = 9°; θS = 71°Barbier et al. RSE (2010)

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Bi-directional

texture distribution

� ‘Hotspot’ effect on texture,

� Alleviated by partitioningapproach.

-2-2-2-2

-2-2-2-2

-1-1-1-1

-1-1-1-1

-1-1-1-1 -1-1-1-1

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-1-1-1-1Sun Height = 47°

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Sun Height = 59°

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θ = 47° θ = 59° θ = 71°

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d e f

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Barbier et al. RSE (2010)

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Large scale application

maps of apparent crown size and canopy heterogeneity

Barbier et al. GEB (2010)

Amazonia

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Validation: the Canopy project

• Texture analysis: The FOTO method (IRD).

• Field validation: Large forest inventory database across

Central Africa (FRM).

• Software development: Convivial interface in ArcGis

(Nev@ntropic).

Laurent Dufy (FRM)

Nicolas Bayol (FRM)

Antoine Mugnier (FRM)

Couteron Pierre (IRD-AMAP)

Proisy Christophe (IRD-AMAP)

Barbier Nicolas (IRD-AMAP, ULB-FNRS)François Marques (Nev@ntropic)

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Large scale validation: test sites

FRM test sites

Possible PPR sites

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Imagery

• Planet Action: Spot 5, Formosat, Kompsat

• Others: Quickbird, Ikonos, GeoEye, Orbview

FOTO

analysis

Field Data

• Geolocalized plots of 0.5 ha

• Forest concessions above 50,000 ha

• Inventoried surface areas around 1%

• All trees above 10-20 cm diameter

• Destructive biomass sampling (upcoming)

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Perspectives

• Quantification of forest canopy structure.

• Valuable insights into :

�Degradation level ;

�Biomass and carbon, with no saturation ;

�Other forest structural attributes.�Other forest structural attributes.

• Large scale application and repeatable.

• Effect of acquisition conditions mitigated.

• Relative low cost.