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Customized Mobile LiDAR System for Manhole Cover Detection and Identification

机译:定制的移动激光雷达系统用于人孔盖检测和识别

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摘要

Manhole covers, which are a key element of urban infrastructure management, have a direct impact on travel safety. At present, there is no automatic, safe, and efficient system specially used for the intelligent detection, identification, and assessment of manhole covers. In this work, we developed an automatic detection, identification, and assessment system for manhole covers. First, we developed a sequential exposure system via the addition of multiple cameras in a symmetrical arrangement to realize the joint acquisition of high-precision laser data and ultra-high-resolution ground images. Second, we proposed an improved histogram of an oriented gradient with symmetry features and a support vector machine method to detect manhole covers effectively and accurately, by using the intensity images and ground orthophotos that are derived from the laser points and images, respectively, and apply the graph segmentation and statistical analysis to achieve the detection, identification, and assessment of manhole covers. Qualitative and quantitative analyses are performed using large experimental datasets that were acquired with the modified manhole-cover detection system. The detected results yield an average accuracy of 96.18%, completeness of 94.27%, and F-measure value of 95.22% in manhole cover detection. Defective manhole-cover monitoring and manhole-cover ownership information are achieved from these detection results. The results not only provide strong support for road administration works, such as data acquisition, manhole cover inquiry and inspection, and statistical analysis of resources, but also demonstrate the feasibility and effectiveness of the proposed method, which reduces the risk involved in performing manual inspections, improves the manhole-cover detection accuracy, and serves as a powerful tool in intelligent road administration.
机译:人孔盖是城市基础设施管理的关键要素,对旅行安全有直接影响。当前,没有专门用于智能检测,识别和评估人孔盖的自动,安全和高效的系统。在这项工作中,我们开发了用于井盖的自动检测,识别和评估系统。首先,我们通过添加多个对称布置的摄像机来开发顺序曝光系统,以实现对高精度激光数据和超高分辨率地面图像的联合采集。其次,我们提出了一种改进的具有对称特征的定向梯度直方图和一种支持向量机方法,通过分别使用从激光点和图像得出的强度图像和地面正射像来有效,准确地检测人孔盖,并应用图形分割和统计分析可实现对人孔盖的检测,识别和评估。定性和定量分析是使用大型实验数据集进行的,该数据集是使用改进的人孔盖检测系统获取的。检测结果在沙井盖检测中产生的平均准确度为96.18%,完整性为94.27%,F测量值为95.22%。从这些检测结果中可以得到有缺陷的人孔盖监控和人孔盖所有权信息。结果不仅为道路管理工作提供了强有力的支持,例如数据采集,人孔盖查询和检查以及资源统计分析,而且证明了该方法的可行性和有效性,从而降低了进行人工检查的风险。 ,提高了人孔盖检测的准确性,并成为智能道路管理中的强大工具。

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