Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia, Batu Pahat, Malaysia.
Department of Industrial Engineering, College of Engineering Alfaisal University, Riyadh, Saudi Arabia.
PLoS One. 2023 Oct 13;18(10):e0292814. doi: 10.1371/journal.pone.0292814. eCollection 2023.
In the context of Industry 4.0, manufacturing metrology is crucial for inspecting and measuring machines. The Internet of Things (IoT) technology enables seamless communication between advanced industrial devices through local and cloud computing servers. This study investigates the use of the MQTT protocol to enhance the performance of circularity measurement data transmission between cloud servers and round-hole data sources through Open CV. Accurate inspection of circular characteristics, particularly roundness errors, is vital for lubricant distribution, assemblies, and rotational force innovation. Circularity measurement techniques employ algorithms like the minimal zone circle tolerance algorithm. Vision inspection systems, utilizing image processing techniques, can promptly and accurately detect quality concerns by analyzing the model's surface through circular dimension analysis. This involves sending the model's image to a computer, which employs techniques such as Hough Transform, Edge Detection, and Contour Analysis to identify circular features and extract relevant parameters. This method is utilized in the camera industry and component assembly. To assess the performance, a comparative experiment was conducted between the non-contact-based 3SMVI system and the contact-based CMM system widely used in various industries for roundness evaluation. The CMM technique is known for its high precision but is time-consuming. Experimental results indicated a variation of 5 to 9.6 micrometers between the two methods. It is suggested that using a high-resolution camera and appropriate lighting conditions can further enhance result precision.
在工业 4.0 的背景下,制造业计量学对于检查和测量机器至关重要。物联网 (IoT) 技术通过本地和云计算服务器实现先进工业设备之间的无缝通信。本研究探讨了使用 MQTT 协议通过 OpenCV 增强云服务器和圆孔数据源之间的圆度测量数据传输性能。准确检测圆度特征,特别是圆度误差,对于润滑剂分配、组件和旋转力创新至关重要。圆度测量技术采用最小区域圆度公差算法等算法。视觉检测系统利用图像处理技术,通过对模型表面进行圆形尺寸分析,快速准确地检测质量问题。这涉及将模型的图像发送到计算机,计算机使用 Hough 变换、边缘检测和轮廓分析等技术来识别圆形特征并提取相关参数。这种方法在相机行业和组件装配中得到了应用。为了评估性能,对非接触式 3SMVI 系统和广泛应用于各种行业的接触式 CMM 系统进行了基于接触的圆度评估之间的对比实验。CMM 技术以高精度而闻名,但耗时。实验结果表明,两种方法之间的差异在 5 到 9.6 微米之间。建议使用高分辨率相机和适当的照明条件可以进一步提高结果精度。