Edge Computing-Based Modular Control System for Industrial Environments

Processes Pub Date : 2024-06-06 DOI:10.3390/pr12061165
G. Gouveia, Jorge Alves, Pedro Sousa, Rui Araújo, Jérôme Mendes
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Abstract

This paper presents a modular hardware control system tailored for industrial applications. The system presented is designed with electrical protection, guaranteeing the reliable operation of its modules in the presence of various field noises and external disturbances. The modular architecture comprises a principal module (mP) and dedicated expansion modules (mEXs). The principal module serves as the network administrator and facilitates interaction with production and control processes. The mEXs are equipped with sensors, conditioning circuits, analog-to-digital converters, and digital signal processing capabilities. The mEX’s primary function is to acquire local processing field signals and ensure their reliable transmission to the mP. Two specific mEXs were developed for industrial environments: an electrical signal expansion module (mSE) and the vibration signals expansion module (mSV). The EtherCAT protocol serves as a means of communication between the modules, fostering deterministic and real-time interactions while also simplifying the integration and replacement of modules within the modular architecture. The proposed system incorporates local and distributed processing in which data acquisition, processing, and data analysis are carried out closer to where data are generated. Locally processing the acquired data close to the production in the mEX increases the mP availability and network reliability. For the local processing, feature extraction algorithms were developed on the mEX based on a Fast Fourier Transform (FFT) algorithm and a curve-fitting algorithm that accurately represents a given FFT curve by significantly reducing the amount of data that needs to be transmitted over the mP. The proposed system offers a promising solution to use computational intelligence methodologies and meet the growing need for a modular industrial control system with reliable local data processing to reach a smart industry. The case study of acquiring and processing vibration signals from a real cement ball mill showed a good capacity for processing data and reducing the amount of data.
基于边缘计算的工业环境模块化控制系统
本文介绍了一种专为工业应用定制的模块化硬件控制系统。所介绍的系统采用电气保护设计,可确保模块在各种现场噪音和外部干扰下可靠运行。模块化结构包括一个主模块(mP)和专用扩展模块(mEX)。主模块充当网络管理员,促进与生产和控制流程的互动。mEX 配备有传感器、调节电路、模数转换器和数字信号处理功能。mEX 的主要功能是获取本地处理现场信号,并确保将其可靠地传输到 mP。针对工业环境开发了两种特殊的 mEX:电信号扩展模块(mSE)和振动信号扩展模块(mSV)。EtherCAT 协议作为模块之间的通信手段,促进了确定性和实时互动,同时也简化了模块化架构内模块的集成和更换。拟议的系统包含本地和分布式处理,其中数据采集、处理和数据分析都在更靠近数据生成的地方进行。在 mEX 中就近处理采集的数据,可提高 mP 的可用性和网络可靠性。为进行本地处理,在 mEX 上开发了基于快速傅立叶变换 (FFT) 算法和曲线拟合算法的特征提取算法,通过大幅减少需要在 mP 上传输的数据量,准确呈现给定的 FFT 曲线。拟议的系统为使用计算智能方法提供了一个前景广阔的解决方案,满足了对具有可靠本地数据处理功能的模块化工业控制系统日益增长的需求,从而实现了智能工业。对实际水泥球磨机振动信号的采集和处理案例研究表明,该系统具有良好的数据处理能力,并能减少数据量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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