目标检测
计算机科学
预处理器
人工智能
块(置换群论)
对象(语法)
还原(数学)
计算机视觉
测距
探测器
模式识别(心理学)
Viola–Jones对象检测框架
实时计算
数学
电信
面部识别系统
人脸检测
几何学
作者
A. Balasundaram,Anshuman Mohanty,Ayesha Shaik,K. Pradeep,Kedalu Poornachary Vijayakumar,Muthu Subash Kavitha
标识
DOI:10.32604/cmc.2023.044374
摘要
Automated object detection has received the most attention over the years.Use cases ranging from autonomous driving applications to military surveillance systems, require robust detection of objects in different illumination conditions.State-of-the-art object detectors tend to fare well in object detection during daytime conditions.However, their performance is severely hampered in night light conditions due to poor illumination.To address this challenge, the manuscript proposes an improved YOLOv5-based object detection framework for effective detection in unevenly illuminated nighttime conditions.Firstly, the preprocessing strategies involve using the Zero-DCE++ approach to enhance lowlight images.It is followed by optimizing the existing YOLOv5 architecture by integrating the Convolutional Block Attention Module (CBAM) in the backbone network to boost model learning capability and Depthwise Convolutional module (DWConv) in the neck network for efficient compression of network parameters.The Night Object Detection (NOD) and Exclusively Dark (ExDARK) dataset has been used for this work.The proposed framework detects classes like humans, bicycles, and cars.Experiments demonstrate that the proposed architecture achieved a higher Mean Average Precision (mAP) along with a reduction in model size and total parameters, respectively.The proposed model is lighter by 11.24% in terms of model size and 12.38% in terms of parameters when compared to baseline YOLOv5.
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