Multisampling Compressive Video...

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Multisampling Compressive Video Spectroscopy

Daniel S. Jeon Inchang Choi Min H. KimKorea Advanced Institute of Science and Technology (KAIST)

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Hyperspectral Imaging

RGBImaging MultispectralImaging

HyperspectralImaging

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3channels <~30channels ≥~30channels

Spectroscopy Imaging

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Bandpass filter LCTF(liquidcrystaltunablefilter)

Pushbroom CASSI

[Mansouri etal.2007]

[Brusco etal.2006]

[Attas etal.2003]

[Wagadarikar etal.2008]

Multisampling CASSI

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Maskshiftingusing piezotranslationstage[Kittleetal.2010]

DMD(digital-micromirror-device)

LCoS (liquidcrystalonsilicon)

[Linetal.2014]

[Wuetal.2011]

MultisamplingCASSIsystemsrequiremultiplecaptures

Goal

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Singlecodedinput Hyperspectralvideo

• Multisamplingcompressiveimagingà Highspectralresolutionà Highspatialresolution

• Singlesnapshothyperspectralimagingà Videospectroscopy

Key Idea

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• Codedaperturesnapshotspectralcamera

• Multisamplingè Kaleidoscope

System Setup

objective lensimage multiplier relay lens collimating lens relay lenscoded

aperturedetector

prism

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diffuser

Examine Kaleidoscope

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View Multiplication

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1/ 1

bma a f

= =-

1 1 1a b f+ =a

f

b

al bl

: maginificationm

Lightdirection

Diffuser

Detector

Effect of Diffuser

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Withdiffuser Withoutdiffuser

Raw Input Video

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Geometric Calibration - Homography

1 2

3 4

2 1

4 3

2 1

4 3

3 4

1 2

3 4

1 2

4 3

2 1

4 3

2 1

4 3

2 1

4 3

2 1

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Geometric Calibration - Optical Flow

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Beforeapplyopticalflow Afterapplyopticalflow

Animated5views

Geometric Calibration - Dispersion Direction

Capturedimages Alignedimages

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Dispersiondirectionflipped

Image Reconstruction

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( ), ,f x y l

( )0 , ,kf x y l ( ),kT x y ( )2 , ,kf x y l( )1 , ,kf x y l

Prism

( ),kg x yA set of

first-surfacemirrors

( ), ,h x y l

0( , ) ( ( ), , , , ) ( , ) ( , , )k k k kg x y h x x y y T x y f x y dx dy df l l l lL

¢ ¢ ¢ ¢= -ò òòDispersion IncidentMask

Coded Aperture

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Codedaperturespecs• Randombinarypatterns• correspondstotwo-by-twopixels

,( , ) rect ,k ijk

i j

x yT x y i jæ ö= - -ç ÷D Dè øåT

1pxonsensor

Each9viewpassthroughdifferentcodedaperturepatternsà Enablemultisampling

Prism Dispersion

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0

10

20

30

40

50

60

450 550 650 750

Pixelshift[p

x]

Wavelength[nm]

Dispersioncalibration

2 1( , , ) ( ( ), , , , ) ( , , )k k kf x y h x x y y f x y dx dyl f l l l¢ ¢ ¢ ¢= -òòDispersion

500nm

600nm

700nm

Dispersedlight Codedlight

Reconstruction

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• Minimizinganobjectivefunctionwithtotalvariation[Bioucas-DiasandFigueiredo 2007]

2

2Detectorinput

(3D)Lightmodulation

(4D)Hyperspectal

Image(3D)

RegularizingSparsity(3D)

View Multiplication

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1 view 2 views 3 views

reference9 views5 views(syntheticimages)

Dispersion Direction

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PSNR:28.20SSIM:0.88

PSNR:30.45SSIM:0.91

5viewswithoutdispersioninversion

5viewswithdispersioninversion

(syntheticimages)

reference

Multiview Tradeoff

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1(full)

PSNR:27.84SSIM:0.88

1 2 34 5 67 8 9

PSNR:23.42SSIM:0.77

1 2 34 5 67 8 9

PSNR:31.29SSIM:0.92

(syntheticimages)

reference

Comparison

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0.00.10.20.30.40.50.60.70.80.91.0

450 500 550 600 650

refle

ctan

ce

wavelength [nm]

red patchReference

CASSI

Ours

TraditionalCASSI

OurmultisamplingCASSI

5views

1fullview

Results

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Input Reconstructedhyperspectral video

sRGB video Wavelengthat600nm

Results

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Input Reconstructedhyperspectral video

sRGB video Wavelengthat600nm

Results

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Input Reconstructedhyperspectral video

sRGB video Wavelengthat600nm

Results

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Input Reconstructedhyperspectral video

sRGB video Wavelengthat600nm

Discussion

• Tradeoff between spatial and spectral resolution

– Significantly enhance spectral resolution

– Sacrifice sensor resolution

• Misalignment of copied views gives a critical

reconstruction problem

• Alternatives for TV-L1 optimization

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Conclusion

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• Singlesnapshot-baseddesign

• Hyperspectral videoacquisition

• Highspectralresolution

• Bycouplingmultisamplingandcompressiveimaging

Acknowledgements

• Korea National Research Foundation (NRF) grants

(2013R1A1A1010165 and 2013-M3A6A6073718)

• Korea ICT R&D program of MSIP/IITP (10041313)

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Thankyou

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