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首页> 外文期刊>Systems Journal, IEEE >Agent-Based Control Framework for Mass Customization Manufacturing With UHF RFID Technology
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Agent-Based Control Framework for Mass Customization Manufacturing With UHF RFID Technology

机译:基于代理的UHF RFID大规模定制制造控制框架

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摘要

Radio frequency identification (RFID) technology adoption in business environments has seen strong growth in recent years. Adopting an appropriate RFID-based information system has become increasingly important for enterprises making complex and highly customized products. However, most firms still use conventional barcode and run-card systems to manage their manufacturing processes. These systems often require human intervention during the production process. As a result, traditional systems are not able to fulfill the growing demand for managing dynamic process flows and are not able to obtain real-time work-in-process (WIP) views in mass customization manufacturing. This paper proposes an agent-based distributed production control framework with UHF RFID technology to help firms adapt to such a dynamic and agile manufacturing environment. This paper reports the design and development of the framework and the application of UHF RFID technology in manufacturing and logistic control applications. The framework's RFID event processing agent model is implemented in a smart end-point (SEP) device. A SEP can manage RFID readers, wirelessly communicate with shop-floor machines, make local decisions, and coordinate with other SEPs. A case study of a bicycle manufacturing company demonstrates how the proposed framework could improve a firm's mass customization operations. Results of experiments show the decentralized multiagent coordination scheme among SEPs outperformed the current practice of the firm in terms of reducing work-in-process and parts inventory.
机译:近年来,射频识别(RFID)技术在商业环境中的采用已获得强劲增长。对于制造复杂且高度定制化产品的企业而言,采用适当的基于RFID的信息系统变得越来越重要。但是,大多数公司仍使用常规条形码和运行卡系统来管理其制造过程。这些系统在生产过程中通常需要人工干预。结果,传统系统无法满足对管理动态流程的不断增长的需求,并且无法在大规模定制制造中获得实时的在制品(WIP)视图。本文提出了一种使用超高频RFID技术的基于代理的分布式生产控制框架,以帮助企业适应这种动态,敏捷的制造环境。本文报告了该框架的设计和开发以及UHF RFID技术在制造和物流控制应用中的应用。该框架的RFID事件处理代理模型是在智能端点(SEP)设备中实现的。 SEP可以管理RFID读取器,与车间机器进行无线通信,做出本地决策并与其他SEP进行协调。一家自行车制造公司的案例研究证明了所提出的框架如何改善公司的大规模定制业务。实验结果表明,在减少在制品和零件库存方面,标准必要专利之间的分散式多主体协调方案优于公司的现行做法。

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