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Layout and process optimisation : using computer-aided design (CAD) and simulation through an integrated systems design tool

机译:布局和流程优化:使用计算机辅助设计(CAD)并通过集成的系统设计工具进行仿真

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摘要

The design of production and logistic systems is a process of managing both technical and organisational variants in order to identify the best solution for a given system. This paper discusses design issues of production systems that are applied to an internal logistic system in the automotive industry. As far as the production systems design (PSD) is concerned, three basic classes of software tools usually pertain: computer-aided design (CAD), process simulation, and information systems. However, these software tools have been used with low levels of integration. Vik et al. (2010b, 2010c) proposed integrating these software resources in production systems and developed an advanced tool called integrated design of systems (IDS). The proposed IDS tool involves a wide set of functions for the most common tasks of PSD, from conceptualisation to implementation, including systems analysis (P-Q, cluster, and material flow analysis), automatic generation of simulation models, generation of alternatives for the layout of facilities and factories, material flows display, transportation system design, and iterative buffer size specification. The IDS approach takes advantage of simulation, CAD systems, and their integration. This paper will demonstrate the concept and functionalities of the proposed tool in a real industrial case study.
机译:生产和物流系统的设计是管理技术和组织变体的过程,以便为给定系统确定最佳解决方案。本文讨论了应用于汽车行业内部物流系统的生产系统的设计问题。就生产系统设计(PSD)而言,通常涉及三类基本的软件工具:计算机辅助设计(CAD),过程仿真和信息系统。但是,这些软件工具使用的集成度较低。 Vik等。 (2010b,2010c)建议将这些软件资源集成到生产系统中,并开发了一种先进的工具,称为系统集成设计(IDS)。拟议的IDS工具涵盖了PSD的最常见任务的广泛功能,从概念化到实施,包括系统分析(PQ,群集和物料流分析),自动生成仿真模型,生成布局替代方案设施和工厂,物料流显示,运输系统设计以及迭代缓冲区大小规格。 IDS方法利用了仿真,CAD系统及其集成。本文将在实际的工业案例研究中演示该工具的概念和功能。

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