Method

Spatial-Attention Graph Convolution [S-AT GCN]


Submitted on 15 Jun. 2021 08:47 by
chenfei wang (Boston university)

Running time:0.02 s
Environment:GPU @ 2.0 Ghz (Python)

Method Description:
Spatial-Attention Graph Convolution
Parameters:
Spatial-Attention Graph Convolution
Latex Bibtex:
@article{DBLP:journals/corr/abs-2103-08439,
author = {Li Wang and
Chenfei Wang and
Xinyu Zhang and
Tianwei Lan and
Jun Li},
title = {{S-AT} {GCN:} Spatial-Attention
Graph Convolution Network based Feature
Enhancement for 3D Object
Detection},
journal = {CoRR},
volume = {abs/2103.08439},
year = {2021},
url = {https://arxiv.org/abs/2103.08439},
archivePrefix = {arXiv},
eprint = {2103.08439},
timestamp = {Tue, 23 Mar 2021 16:29:47 +0100},
biburl =
{https://dblp.org/rec/journals/corr/abs-2103-
08439.bib},
bibsource = {dblp computer science bibliography,
https://dblp.org}
}

Detailed Results

Object detection and orientation estimation results. Results for object detection are given in terms of average precision (AP) and results for joint object detection and orientation estimation are provided in terms of average orientation similarity (AOS).


Benchmark Easy Moderate Hard
Car (Detection) 95.06 % 92.44 % 90.78 %
Car (Orientation) 95.02 % 92.24 % 90.46 %
Car (3D Detection) 83.20 % 76.04 % 71.17 %
Car (Bird's Eye View) 90.85 % 87.68 % 84.20 %
Pedestrian (Detection) 62.01 % 52.30 % 50.10 %
Pedestrian (Orientation) 56.55 % 46.64 % 44.23 %
Pedestrian (3D Detection) 44.63 % 37.37 % 34.92 %
Pedestrian (Bird's Eye View) 50.63 % 43.43 % 41.58 %
Cyclist (Detection) 82.79 % 72.81 % 66.72 %
Cyclist (Orientation) 82.31 % 71.04 % 65.13 %
Cyclist (3D Detection) 75.24 % 61.70 % 55.32 %
Cyclist (Bird's Eye View) 78.53 % 66.71 % 60.19 %
This table as LaTeX


2D object detection results.
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Orientation estimation results.
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3D object detection results.
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Bird's eye view results.
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2D object detection results.
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Orientation estimation results.
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3D object detection results.
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Bird's eye view results.
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2D object detection results.
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Orientation estimation results.
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3D object detection results.
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Bird's eye view results.
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