Autobiasing Event Cameras

Fuente: arXiv
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Bibliographic Details
Main Authors: Dilmaghani, Mehdi Sefidgar, Shariff, Waseem, Ryan, Cian, Lemley, Joseph, Corcoran, Peter
Format: Preprint
Published: 2024
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author Dilmaghani, Mehdi Sefidgar
Shariff, Waseem
Ryan, Cian
Lemley, Joseph
Corcoran, Peter
author_facet Dilmaghani, Mehdi Sefidgar
Shariff, Waseem
Ryan, Cian
Lemley, Joseph
Corcoran, Peter
contents This paper presents an autonomous method to address challenges arising from severe lighting conditions in machine vision applications that use event cameras. To manage these conditions, the research explores the built in potential of these cameras to adjust pixel functionality, named bias settings. As cars are driven at various times and locations, shifts in lighting conditions are unavoidable. Consequently, this paper utilizes the neuromorphic YOLO-based face tracking module of a driver monitoring system as the event-based application to study. The proposed method uses numerical metrics to continuously monitor the performance of the event-based application in real-time. When the application malfunctions, the system detects this through a drop in the metrics and automatically adjusts the event cameras bias values. The Nelder-Mead simplex algorithm is employed to optimize this adjustment, with finetuning continuing until performance returns to a satisfactory level. The advantage of bias optimization lies in its ability to handle conditions such as flickering or darkness without requiring additional hardware or software. To demonstrate the capabilities of the proposed system, it was tested under conditions where detecting human faces with default bias values was impossible. These severe conditions were simulated using dim ambient light and various flickering frequencies. Following the automatic and dynamic process of bias modification, the metrics for face detection significantly improved under all conditions. Autobiasing resulted in an increase in the YOLO confidence indicators by more than 33 percent for object detection and 37 percent for face detection highlighting the effectiveness of the proposed method.
format Preprint
id arxiv_https___arxiv_org_abs_2411_00729
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Autobiasing Event Cameras
Dilmaghani, Mehdi Sefidgar
Shariff, Waseem
Ryan, Cian
Lemley, Joseph
Corcoran, Peter
Computer Vision and Pattern Recognition
This paper presents an autonomous method to address challenges arising from severe lighting conditions in machine vision applications that use event cameras. To manage these conditions, the research explores the built in potential of these cameras to adjust pixel functionality, named bias settings. As cars are driven at various times and locations, shifts in lighting conditions are unavoidable. Consequently, this paper utilizes the neuromorphic YOLO-based face tracking module of a driver monitoring system as the event-based application to study. The proposed method uses numerical metrics to continuously monitor the performance of the event-based application in real-time. When the application malfunctions, the system detects this through a drop in the metrics and automatically adjusts the event cameras bias values. The Nelder-Mead simplex algorithm is employed to optimize this adjustment, with finetuning continuing until performance returns to a satisfactory level. The advantage of bias optimization lies in its ability to handle conditions such as flickering or darkness without requiring additional hardware or software. To demonstrate the capabilities of the proposed system, it was tested under conditions where detecting human faces with default bias values was impossible. These severe conditions were simulated using dim ambient light and various flickering frequencies. Following the automatic and dynamic process of bias modification, the metrics for face detection significantly improved under all conditions. Autobiasing resulted in an increase in the YOLO confidence indicators by more than 33 percent for object detection and 37 percent for face detection highlighting the effectiveness of the proposed method.
title Autobiasing Event Cameras
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2411.00729