Abstract
In recent years, significant advances have been made in the development of Advanced Driver Assistance Systems (ADAS) and other technology for autonomous vehicles. Automated object detection is a crucial component of autonomous driving; however, there are still known issues that affect its performance. For automotive applications, object detection algorithms are required to perform at a high standard in all lighting conditions; however, a major problem for object detection is poor performance in low-light conditions due to objects being less visible. This study considers the impact of training data composition on object detection performance in low-light conditions. In particular, this study evaluates the effect of different combinations of images of outdoor scenes, from different times of day, on the performance of deep neural networks, and considers the different challenges encountered during the training of a neural network. Through experiments with a widely used public database, as well as a number of commonly used object detection architectures, we show that more robust performance can be obtained with an appropriate balance of classes and illumination levels in the training data. The results also highlight the potential of adding images obtained in dusk and dawn conditions for improving object detection performance in day and night.
| Original language | English (Ireland) |
|---|---|
| Article number | 153 |
| Journal | Journal of Imaging |
| Volume | 10 |
| Issue number | 7 |
| DOIs | |
| Publication status | Published - 1 Jan 2024 |
Keywords
- ADAS
- autonomous vehicles
- computer vision
- low-light conditions
- object detection
Authors (Note for portal: view the doc link for the full list of authors)
- Authors
- Lin, Hao and Parsi, Ashkan and Mullins, Darragh and Horgan, Jonathan and Ward, Enda and Eising, Ciaran and Denny, Patrick and Deegan, Brian and Glavin, Martin and Jones, Edward
- Hao Lin and Ashkan Parsi and Darragh Mullins and Jonathan Horgan and Enda Ward and Ciaran Eising and Patrick Denny and Brian Deegan and Martin Glavin and Edward Jones