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Manhattan Room Layout Reconstruction from a Single 360 image: A Comparative Study of State-of-the-art Methods

9 Oct 2019arXiv:1910.04099archive 2025-07-28

Chuhang Zou, Jheng-Wei Su, Chi-Han Peng, Alex Colburn, Qi Shan, Peter Wonka, Hung-Kuo Chu, Derek Hoiem

Recent approaches for predicting layouts from 360 panoramas produce excellent results. These approaches build on a common framework consisting of three steps: a pre-processing step based on edge-based alignment, prediction of layout elements, and a post-processing step by fitting a 3D layout to the layout elements. Until now, it has been difficult to compare the methods due to multiple different design decisions, such as the encoding network (e.g. SegNet or ResNet), type of elements predicted (e.g. corners, wall/floor boundaries, or semantic segmentation), or method of fitting the 3D layout. To address this challenge, we summarize and describe the common framework, the variants, and the impact of the design decisions. For a complete evaluation, we also propose extended annotations for the Matterport3D dataset [3], and introduce two depth-based evaluation metrics.

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Code

ericsujw/Matterport3DLayoutAnnotation officialmentioned in papermentioned on GitHub report
zouchuhang/LayoutNetv2 officialmentioned in papermentioned on GitHubpytorchMIT report
sunset1995/HorizonNet mentioned on GitHubpytorch report

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Semantic Segmentation

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MatterportLayout

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Batch NormalizationConvolutionKaiming InitializationMax PoolingReLUSegNetSoftmax

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