Faculty of Electrical and Computer Engineering, Cracow University of Technology, Warszawska 24, 31-155 Cracow, Poland.
Sensors (Basel). 2023 Jan 22;23(3):1263. doi: 10.3390/s23031263.
In the current economic situation of many companies, the need to reduce production time is a critical element. However, this cannot usually be carried out with a decrease in the quality of the final product. This article presents a possible solution for reducing the time needed for quality management. With the use of modern solutions such as optical measurement systems, quality control can be performed without additional stoppage time. In the case of single-point measurement with the Laser Doppler Vibrometer, the measurement can be performed quickly in a matter of milliseconds for each product. This article presents an example of such quality assurance measurements, with the use of fully non-contact methods, together with a proposed evaluation criterion for quality assessment. The proposed quality assurance algorithm allows the comparison of each of the products' modal responses with the ideal template and stores this information in the cloud, e.g., in the company's supervisory system. This makes the presented 3D Laser Vibrometry System an advanced instrumentation and data acquisition system which is the perfect application in the case of a factory quality management system based on the Industry 4.0 concept.
在当前许多公司的经济形势下,减少生产时间是一个关键因素。然而,通常不能以降低最终产品的质量为代价来实现这一点。本文提出了一种可能的解决方案,用于减少质量管理所需的时间。通过使用光学测量系统等现代解决方案,可以在不增加额外停机时间的情况下进行质量控制。在使用激光多普勒测振仪进行单点测量的情况下,每个产品的测量可以在几毫秒内快速完成。本文介绍了使用完全非接触方法进行这种质量保证测量的一个示例,并提出了一种质量评估的评价标准。所提出的质量保证算法允许将每个产品的模态响应与理想模板进行比较,并将此信息存储在云中,例如存储在公司的监管系统中。这使得所提出的 3D 激光测振系统成为一种先进的仪器仪表和数据采集系统,非常适合基于工业 4.0 概念的工厂质量管理系统。