Sensor-based characterization of construction and demolition waste at high occupancy densities using synthetic training data and deep learning

拆迁垃圾 占用率 拆毁 深度学习 计算机科学 卷积神经网络 人工智能 目标检测 分类 推论 任务(项目管理) 合成数据 吞吐量 探测器 机器学习 工程类 模式识别(心理学) 土木工程 系统工程 算法 无线 电信
作者
Felix Kronenwett,Georg Maier,Norbert Leiss,Robin Gruna,Volker Thome,Thomas Längle
出处
期刊:Waste Management & Research [SAGE Publishing]
卷期号:42 (9): 788-796 被引量:8
标识
DOI:10.1177/0734242x241231410
摘要

Sensor-based monitoring of construction and demolition waste (CDW) streams plays an important role in recycling (RC). Extracted knowledge about the composition of a material stream helps identifying RC paths, optimizing processing plants and form the basis for sorting. To enable economical use, it is necessary to ensure robust detection of individual objects even with high material throughput. Conventional algorithms struggle with resulting high occupancy densities and object overlap, making deep learning object detection methods more promising. In this study, different deep learning architectures for object detection (Region-based CNN/Region-based Convolutional Neural Network (Faster R-CNN), You only look once (YOLOv3), Single Shot MultiBox Detector (SSD)) are investigated with respect to their suitability for CDW characterization. A mixture of brick and sand-lime brick is considered as an exemplary waste stream. Particular attention is paid to detection performance with increasing occupancy density and particle overlap. A method for the generation of synthetic training images is presented, which avoids time-consuming manual labelling. By testing the models trained on synthetic data on real images, the success of the method is demonstrated. Requirements for synthetic training data composition, potential improvements and simplifications of different architecture approaches are discussed based on the characteristic of the detection task. In addition, the required inference time of the presented models is investigated to ensure their suitability for use under real-time conditions.
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