Full Flow: Optical Flow Estimation By Global Optimization over Regular Grids
About
We present a global optimization approach to optical flow estimation. The approach optimizes a classical optical flow objective over the full space of mappings between discrete grids. No descriptor matching is used. The highly regular structure of the space of mappings enables optimizations that reduce the computational complexity of the algorithm's inner loop from quadratic to linear and support efficient matching of tens of thousands of nodes to tens of thousands of displacements. We show that one-shot global optimization of a classical Horn-Schunck-type objective over regular grids at a single resolution is sufficient to initialize continuous interpolation and achieve state-of-the-art performance on challenging modern benchmarks.
Qifeng Chen, Vladlen Koltun• 2016
Related benchmarks
| Task | Dataset | Result | Rank | |
|---|---|---|---|---|
| Optical Flow Estimation | MPI Sintel Final (train) | Endpoint Error (EPE)3.6 | 209 | |
| Optical Flow | MPI Sintel Clean (test) | AEE2.71 | 158 | |
| Optical Flow | MPI-Sintel final (test) | EPE5.9 | 137 | |
| Optical Flow | KITTI-15 (test) | Fl-all23.37 | 85 |
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