Emerging the real-time performance for the single axis slave controller in the decentralised network

IF 2.5 Q2 ENGINEERING, INDUSTRIAL IET Collaborative Intelligent Manufacturing Pub Date : 2023-10-05 DOI:10.1049/cim2.12086
The Tri Bui, Ha Quang Thinh Ngo
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Abstract

In the era of the fourth industrial revolution, many certain technologies such as Internet of Things (IoT) or Internet of Service (IoS) have been implemented for the improvement of current system. However, most of them did not ensure the real-time performance which is inevitable for modern motion systems. The implementation of Ethernet-based protocol, rapid data exchange and synchronised transmission are proper for the novelties of slave controller. An integration of the decentralised network into the motion control system is introduced firstly. To demonstrate the conceptual design, some descriptions of motivations and related definitions are explained. Then, the structure of hardware components and internal connections are mentioned. Later, the software architecture including the data exchange and flowchart of motion program, is described in detail. To verify the feasibility and effectiveness of the proposed approach, some technical analysis of timing synchronisation and tracking deviation between our method and the others are carried out. In addition, several practical validations are conducted in the same conditions. The contributions of the authors are (i) to firstly present the concept of controller design using the real-time technology, (ii) to illuminate both hardware design and software design of the proposed approach and (iii) to analyse the superior performance in delay time between our method and the others as well as validate the real-world results to prove the effectiveness and feasibility. From the authors’ achievement, it is observed that these results can be broadly purposeful to the sustainable development of Industry 4.0.

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分散网络中单轴从控制器的实时性能
在第四次工业革命时代,许多特定的技术,如物联网(IoT)或服务互联网(IoS),已经被用于改进现有系统。然而,它们中的大多数并没有确保实时性能,这对于现代运动系统来说是不可避免的。基于以太网协议的实现、快速的数据交换和同步传输适合于从控制器的新颖性。首先介绍了一种将分散网络集成到运动控制系统中的方法。为了展示概念设计,解释了一些动机和相关定义的描述。然后,介绍了硬件组件的结构和内部连接。随后,详细描述了软件体系结构,包括数据交换和运动程序的流程图。为了验证所提出方法的可行性和有效性,对我们的方法与其他方法之间的定时同步和跟踪偏差进行了一些技术分析。此外,在相同的条件下进行了几次实际验证。作者的贡献是:(i)首次提出了使用实时技术进行控制器设计的概念,(ii)阐明了所提出方法的硬件设计和软件设计,(iii)分析了我们的方法与其他方法在延迟时间方面的优越性能,并验证了实际结果,以证明其有效性和可行性。从作者的成果中可以看出,这些结果对工业4.0的可持续发展具有广泛的意义。
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来源期刊
IET Collaborative Intelligent Manufacturing
IET Collaborative Intelligent Manufacturing Engineering-Industrial and Manufacturing Engineering
CiteScore
9.10
自引率
2.40%
发文量
25
审稿时长
20 weeks
期刊介绍: IET Collaborative Intelligent Manufacturing is a Gold Open Access journal that focuses on the development of efficient and adaptive production and distribution systems. It aims to meet the ever-changing market demands by publishing original research on methodologies and techniques for the application of intelligence, data science, and emerging information and communication technologies in various aspects of manufacturing, such as design, modeling, simulation, planning, and optimization of products, processes, production, and assembly. The journal is indexed in COMPENDEX (Elsevier), Directory of Open Access Journals (DOAJ), Emerging Sources Citation Index (Clarivate Analytics), INSPEC (IET), SCOPUS (Elsevier) and Web of Science (Clarivate Analytics).
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