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Utilization of departmental computing GRID system for development of an artificial intelligent tapping inspection method, tapping sound analysis

机译:利用部门计算网格系统开发人工智能攻丝检查方法,攻丝分析

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Tapping Sound Analysis is a new NDE method, which determines the existence of subsurface defects by comparing the tapping sound of test structure and original healthy structure. The tapping sound of original healthy structure is named sound print of the structure and is obtained through high precision computation. Because many tapping points are required to obtain the exact sound print data, many times of tapping sound simulation are required. The simulation of tapping sound requires complicated numerical procedures. Departmental Computing GRID system was utilized to run numerical simulations. Three cluster systems and one PC-farm system comprise DCG system. Tapping sound simulations were launched and monitored through Globus and CONDOR. A total of 160 Tera floating-point (double-precision) operations was performed and the elapsed time was 41,880 sec. From the numerical experiments, Grid computing technology reduced the necessary time to make sound print database and made TSA a feasible and practical methodology.
机译:攻击声分析是一种新的NDE方法,通过比较测试结构和原始健康结构的攻丝声音来决定地下缺陷的存在。攻击原始健康结构的声音被命名为结构的声音打印,通过高精度计算获得。因为需要许多攻丝点来获得精确的声音打印数据,所以需要多次攻丝声音模拟。攻丝声音的模拟需要复杂的数值程序。部门计算网格系统用于运行数值模拟。三个集群系统和一个PC农场系统包括DCG系统。通过 globus 和 cond 通过 globus启动和监控攻丝声拟仿真。总共进行了160个TERA浮点(双精度)操作,经过的时间为41,880秒。从数值实验中,网格计算技术减少了制作声音打印数据库的必要时间,并使TSA成为可行和实用的方法。

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