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Estimating Depth from RGB and Sparse Sensing

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arxiv 1804.02771 v2 pith:MHEKIEGS submitted 2018-04-08 cs.CV

classification cs.CV
keywords depthdenseimagemapspixelssparseindoormodel
verification ladder T0 review T1 audit T2 compute T3 formal

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We present a deep model that can accurately produce dense depth maps given an RGB image with known depth at a very sparse set of pixels. The model works simultaneously for both indoor/outdoor scenes and produces state-of-the-art dense depth maps at nearly real-time speeds on both the NYUv2 and KITTI datasets. We surpass the state-of-the-art for monocular depth estimation even with depth values for only 1 out of every ~10000 image pixels, and we outperform other sparse-to-dense depth methods at all sparsity levels. With depth values for 1/256 of the image pixels, we achieve a mean absolute error of less than 1% of actual depth on indoor scenes, comparable to the performance of consumer-grade depth sensor hardware. Our experiments demonstrate that it would indeed be possible to efficiently transform sparse depth measurements obtained using e.g. lower-power depth sensors or SLAM systems into high-quality dense depth maps.

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Cited by 1 Pith paper

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  1. Image-Guided Depth Sampling and Reconstruction

    cs.CV 2019-08 conditional novelty 6.0 of 10

    An RGB-superpixel-guided depth sampling and reconstruction method with one sample per segment plus bilateral filtering outperforms random and grid sampling on indoor and outdoor benchmarks.

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