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基于激光雷达的散粮装载状态识别方法研究

Research on the Method for Recognizing Bulk Grain-Loading Status Based on LiDAR.

作者信息

Hu Jiazun, Wen Xin, Liu Yunbo, Hu Haonan, Zhang Hui

机构信息

School of Intelligent Systems Engineering, Sun Yat-sen University, Shenzhen 518107, China.

出版信息

Sensors (Basel). 2024 Aug 6;24(16):5105. doi: 10.3390/s24165105.

Abstract

Grain is a common bulk cargo. To ensure optimal utilization of transportation space and prevent overflow accidents, it is necessary to observe the grain's shape and determine the loading status during the loading process. Traditional methods often rely on manual judgment, which results in high labor intensity, poor safety, and low loading efficiency. Therefore, this paper proposes a method for recognizing the bulk grain-loading status based on Light Detection and Ranging (LiDAR). This method uses LiDAR to obtain point cloud data and constructs a deep learning network to perform target recognition and component segmentation on loading vehicles, extract vehicle positions and grain shapes, and recognize and make known the bulk grain-loading status. Based on the measured point cloud data of bulk grain loading, in the point cloud-classification task, the overall accuracy is 97.9% and the mean accuracy is 98.1%. In the vehicle component-segmentation task, the overall accuracy is 99.1% and the Mean Intersection over Union is 96.6%. The results indicate that the method has reliable performance in the research tasks of extracting vehicle positions, detecting grain shapes, and recognizing loading status.

摘要

谷物是一种常见的散装货物。为确保运输空间的最佳利用并防止溢出事故,在装载过程中需要观察谷物的形状并确定装载状态。传统方法通常依赖人工判断,这导致劳动强度大、安全性差且装载效率低。因此,本文提出了一种基于激光雷达(LiDAR)识别散装谷物装载状态的方法。该方法利用激光雷达获取点云数据,并构建深度学习网络对装载车辆进行目标识别和部件分割,提取车辆位置和谷物形状,进而识别并明确散装谷物的装载状态。基于散装谷物装载的实测点云数据,在点云分类任务中,总体准确率为97.9%,平均准确率为98.1%。在车辆部件分割任务中,总体准确率为99.1%,平均交并比为96.6%。结果表明,该方法在提取车辆位置、检测谷物形状和识别装载状态的研究任务中具有可靠的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/397b/11359086/479fcba6179a/sensors-24-05105-g001.jpg

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