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首页> 外文期刊>Journal of Infrastructure Systems >Real-Time Automated Survey System of Pavement Cracking in Parallel Environment
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Real-Time Automated Survey System of Pavement Cracking in Parallel Environment

机译:并行环境下路面裂缝实时自动测量系统

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摘要

As a part of the digital highway data vehicle (DHDV), the automated survey system developed at the University of Arkansas is the implementation of a real-time system for pavement surface cracking survey. The researchers faced tremendous tasks in optimizing imaging algorithms to speed up the processing at the same time without sacrificing accuracy in identifying and classifying cracks. This paper introduces the automated real-time system and summarizes the experiences in developing parallel algorithms in imaging processing used in the real-time system. The hardware system for processing images is based on the ubiquitous multiple Central Processing Unit (CPU) X 86 platform that has the capability of two levels of parallel processing at multiple CPU level and within each CPU level. The former is commonly called Symmetrical Processing (SMP) and the latter is called Single Instruction Multiple Data (SIMD). The paper also presents results of a network level survey with the DHDV and the distress analyzer on a network of about 161 km (100 mil) of pavements. In addition, a manual survey was conducted on the same network of pavements. World Bank's universal cracking indicator (CI) is used in this study. Because the distress analyzer is fully automated and results of the analysis are provided in synch with image collection, the potential cost savings when compared with manual survey methods and other semiautomated survey technologies are tremendous.
机译:作为数字高速公路数据工具(DHDV)的一部分,阿肯色大学开发的自动测量系统是对路面裂缝检测实时系统的实现。研究人员在优化成像算法以加快处理速度的同时面临着艰巨的任务,同时又不降低裂纹识别和分类的准确性。本文介绍了自动化实时系统,并总结了开发用于实时系统的成像处理并行算法的经验。用于处理图像的硬件系统基于无处不在的多个中央处理器(CPU)X 86平台,该平台具有在多个CPU级别和每个CPU级别内的两个并行处理级别。前者通常称为对称处理(SMP),而后者则称为单指令多数据(SIMD)。本文还介绍了使用DHDV和遇险分析仪在大约161公里(1亿英里)的人行道网络上进行网络水平调查的结果。此外,在同一人行道网络上进行了人工调查。这项研究使用了世界银行的通用裂化指标(CI)。由于遇险分析仪是完全自动化的,并且分析结果与图像收集同步提供,因此与手动测量方法和其他半自动测量技术相比,潜在的成本节省是巨大的。

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