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Hardware-In-The-Loop Simulations of Hole/Crack Identification in a Composite Plate

机译:复合板中孔/裂纹识别的在环仿真

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摘要

The technology of hardware-in-the-loop simulations (HILS) plays an important role in the design of complex systems, for example, the structural health monitoring (SHM) of aircrafts. Due to the high performance of personal computers, HILS can provide practical solutions to many problems in engineering and sciences, especially in the huge systems, giant dams for civil engineering, and aircraft system. This study addresses the HILS in hole/crack identification in composite laminates. The multiple loading modes method is used for hole/crack identification. The signals of strains measured from the data-acquisition (DAQ) devices are accomplished by the graphical software LabVIEW. The results represent the actual responses of multiple loading mode tests of real specimens. A personal computer is employed to execute the identification work according to the strain data from DAQ devices by using a nonlinear optimization approach. When all the criteria are satisfied, the final identification results will be obtained. HILS will achieve real time identification of hole/crack in the composite plate by using the actual response measured from the sensors. Not only the size, but also the location and orientation of the crack/hole in a composite plate are successfully identified herein.
机译:硬件在环仿真(HILS)技术在复杂系统的设计中起着重要作用,例如飞机的结构健康监测(SHM)。由于个人计算机的高性能,HILS可以为工程和科学中的许多问题提供实用的解决方案,特别是在大型系统,土木工程大坝和飞机系统中。这项研究解决了复合材料层压板中孔/裂纹识别方面的HILS问题。多种加载模式方法用于孔/裂纹识别。从数据采集(DAQ)设备测得的应变信号由图形软件LabVIEW完成。结果代表真实样品的多种加载模式测试的实际响应。通过非线性优化方法,根据来自DAQ设备的应变数据,使用个人计算机执行识别工作。当满足所有标准时,将获得最终的识别结果。 HILS将通过使用从传感器测得的实际响应来实时识别复合板上的孔/裂纹。在本文中不仅成功地确定了复合板中裂缝/孔的尺寸,而且还确定了裂缝/孔的位置和取向。

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