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HIGH-FIDELITY RAPID PROTOTYPING OF THE REAL-TIME FAB OPERATIONS THROUGH DISCRETE EVENT SYSTEM MODELING

机译:通过离散事件系统建模实时FAB操作的高保真快速原型设计

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Traditionally, the semiconductor manufacturing industry has been driven by continuous technological advancement of the underlying production processes. Yet, as the industry matures, mere technology development is no longer sufficient. The effective deployment and exploitation of the system production capacity and operational capability become critical for competitive success. Hence, currently, there is an increasing interest towards the development of a control paradigm / framework that will allow the effective and efficient (re-)deployment and operation of contemporary fabs. The research program presented in this paper seeks to define a detailed modeling and control framework for the real-time fab operations, by exploiting and integrating emerging results in Discrete Event Systems theory. Furthermore, in addition to the development of the formal specification, the presented program will also implement the proposed fab modeling and control framework in a Web-based simulation platform, that will function as a fab (re-)configuration and control synthesis tool for the fab control engineer, and as an educational tool for manufacturing system modeling and control.
机译:传统上,半导体制造业已经通过潜在的生产过程的持续技术进步驱动。然而,随着业界的成熟,仅仅是技术发展不再足够了。对系统生产能力和运营能力的有效部署和开发对竞争成功至关重要。因此,目前,对发展控制范式/框架的发展越来越兴趣,这将允许有效和高效(重新)部署和运行当代Fab。本文提出的研究计划旨在通过利用离散事件系统理论的开发和集成新出现的结果来定义实时FAB操作的详细建模和控制框架。此外,除了正式规范的发展之外,所呈现的程序还将在基于Web的仿真平台中实现所提出的Fab建模和控制框架,它将用作FAB(重新)配置和控制合成工具FAB控制工程师,作为制造系统建模和控制的教育工具。

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