Enhanced pedestrian detection using optimized deep convolution neural network for smart building surveillance
Author:
Publisher
Springer Science and Business Media LLC
Subject
Geometry and Topology,Theoretical Computer Science,Software
Link
https://link.springer.com/content/pdf/10.1007/s00500-020-04999-1.pdf
Reference68 articles.
1. Angelova A, Krizhevsky A, Vanhoucke V, Ogale A, Ferguson D (2015) Real-time pedestrian detection with deep network cascades
2. Bartlett MS, Littlewort G, Fasel I, Movellan JR (2003) Real time face detection and facial expression recognition: development and applications to human computer interaction. In: Proceedings of the conference on computer vision and pattern recognition workshop (CVPRW), IEEE, vol 5, p 53
3. Bayoumi A, Karkowski P, Bennewitz M (2019) Speeding up person finding using hidden Markov models. Robot Auton Syst 115:40–48
4. Becherer N, Pecarina J, Nykl S, Hopkinson K (2019) Improving optimization of convolutional neural networks through parameter fine-tuning. Neural Comput Appl 31:3469–3479
5. Beck LF, Dellinger AM, O’Neil ME (2007) Motor vehicle crash injury rates by mode of travel, United States: using exposure-based methods to quantify differences. Am J Epidemiol 166(2):212–218
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