Use of lightweight FFT-based algorithms for remote measurements using DIC

Slávek Zbirovský, V. Nežerka
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引用次数: 0

Abstract

Abrupt collapse events that result in casualties due to failure of load-bearing structures have been reported in recent years. Continuous remote monitoring of these structures, assessing the behavior under operational load, could provide a reliable prevention, as the developing damage manifests itself through a loss of stiffness, and therefore excessive deflections. Digital image correlation (DIC) algorithms based on fast Fourier transform (FFT) were implemented in a small computer unit Raspberry Pi, capable of remote operation in a low-energy demand mode. The unit is fully autonomous, capable of localizing QR code targets and extracting encoded information. This strategy allows us to instantly evaluate displacements of QR codes attached to any surface and send the data to a server. The software was developed in Python, allowing for two modes: the online mode for current data evaluation with information transfer via the MQTT protocol and the offline mode used for retrospective evaluation.
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使用轻量级的基于fft的算法使用DIC进行远程测量
近年来,由于承重结构失效而导致人员伤亡的突然倒塌事件时有报道。对这些结构进行持续的远程监测,评估其在运行载荷下的行为,可以提供可靠的预防措施,因为不断发展的损伤表现为刚度损失,从而导致过度挠度。基于快速傅里叶变换(FFT)的数字图像相关(DIC)算法在一个小型计算机单元树莓派上实现,能够在低能耗模式下远程操作。该装置是完全自主的,能够定位QR码目标并提取编码信息。这种策略使我们能够立即评估附着在任何表面上的QR码的位移,并将数据发送到服务器。该软件是用Python开发的,允许两种模式:通过MQTT协议传输信息进行当前数据评估的在线模式和用于回顾性评估的离线模式。
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