Detail výsledku

Density-Based Vehicle Counting with Unsupervised Scale Selection

DOBEŠ, P.; ŠPAŇHEL, J.; BARTL, V.; JURÁNEK, R.; HEROUT, A. Density-Based Vehicle Counting with Unsupervised Scale Selection. In Digital Image Computing: Techniques and Applications 2020. Melbourne: Institute of Electrical and Electronics Engineers, 2020. p. 1-8. ISBN: 978-1-7281-9108-9.
Typ
článek ve sborníku konference
Jazyk
anglicky
Autoři
Abstrakt

A significant hurdle within any counting task is the variance in scale of the objects to be counted. While size changes of some extent can be induced by perspective distortion, more severe scale differences can easily occur, e.g. in case of images taken by a drone from different elevations above the ground. The aim of our work is to overcome this issue by leveraging only lightweight dot annotations and a minimum level of training supervision. We propose a modification to the Stacked Hourglass network which enables the model to process multiple input scales and to automatically select the most suitable candidate using a quality score. We alter the training procedure to enable learning of the quality scores while avoiding their direct supervision, and thus without requiring any additional annotation effort. We evaluate our method on three standard datasets: PUCPR+, TRANCOS and CARPK. The obtained results are on par with current state-of-the-art methods while being more robust towards significant variations in input scale.

Klíčová slova

Deep learning; Density estimation; Object counting; Traffic surveillance; Vehicle counting

URL
Rok
2020
Strany
1–8
Sborník
Digital Image Computing: Techniques and Applications 2020
Konference
Digital Image Computing: Techniques and Applications 2020
ISBN
978-1-7281-9108-9
Vydavatel
Institute of Electrical and Electronics Engineers
Místo
Melbourne
DOI
UT WoS
000935148000034
EID Scopus
BibTeX
@inproceedings{BUT168491,
  author="Petr {Dobeš} and Jakub {Špaňhel} and Vojtěch {Bartl} and Roman {Juránek} and Adam {Herout}",
  title="Density-Based Vehicle Counting with Unsupervised Scale Selection",
  booktitle="Digital Image Computing: Techniques and Applications 2020",
  year="2020",
  pages="1--8",
  publisher="Institute of Electrical and Electronics Engineers",
  address="Melbourne",
  doi="10.1109/DICTA51227.2020.9363401",
  isbn="978-1-7281-9108-9",
  url="http://www.dicta2020.org/wp-content/uploads/2020/09/22_CameraReady.pdf"
}
Projekty
IT4Innovations excellence in science, MŠMT, Národní program udržitelnosti II, LQ1602, zahájení: 2016-01-01, ukončení: 2020-12-31, ukončen
Moderní metody zpracování, analýzy a zobrazování multimediálních a 3D dat, VUT, Vnitřní projekty VUT, FIT-S-20-6460, zahájení: 2020-03-01, ukončení: 2023-02-28, ukončen
SMARTCarPark - Monitorování, analýza a re-identifikace dopravy pro pokročilé parkování vozidel, TAČR, Program na podporu aplikovaného výzkumu a experimentálního vývoje EPSILON (2015-2025), TH03010529, zahájení: 2018-01-01, ukončení: 2020-12-31, ukončen
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