Variational Separation of Light Field Layers (additional material)
Ole Johannsen, Antonin Sulc and Bastian Goldluecke
University of Konstanz
Figure 1: Raw disparity estimates of foreground from theTx2∗,s∗+Ty2∗,t∗ second order structure tensor. Image shows disparity estimate of foreground for the Tx2∗,s∗+Ty2∗,t∗ structure tensor on light field data captured with the Lytro Illum plenoptic camera.
Figure 2: Raw disparity estimates of reflection from the Tx2∗,s∗+Ty2∗,t∗ second order structure tensor. Image shows disparity estimate of reflection for the Tx2∗,s∗+Ty2∗,t∗ structure tensor on light field data captured with the Lytro Illum plenoptic camera.
Figure 3: Raw disparity estimates of foreground from the Tx2∗,s∗ second order structure tensor. Image shows disparity estimate of foreground for theTx2∗,s∗
structure tensor on light field data captured with the Lytro Illum plenoptic camera.
Figure 4: Raw disparity estimates of reflection from the Tx2∗,s∗ second order structure tensor. Image shows disparity estimate of reflection for the Tx2∗,s∗
structure tensor on light field data captured with the Lytro Illum plenoptic camera.
Figure 5: Raw disparity estimates of foreground from the Ty2∗,t∗ second order structure tensor. Image shows disparity estimate of foreground for the Ty2∗,t∗
structure tensor on light field data captured with the Lytro Illum plenoptic camera.
Figure 6: Raw disparity estimates of reflection from the Ty2∗,t∗ second order structure tensor. Image shows disparity estimate of reflection for the Ty2∗,t∗
structure tensor on light field data captured with the Lytro Illum plenoptic camera.
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Ground Truth Error
Groundtruth error 1 Groundtruth error 2
×105
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3.5 Primal Energy
Energy 1