Simulation of Complex Manufacturing Systems via HLA-Based Infrastructure

Giulia Pedrielli, Paola Scavardone, T. Tolio, M. Sacco, W. Terkaj
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引用次数: 16

Abstract

Manufacturing systems can be thought as production networks nodes whose relations have a strong impact on design and analysis of each system. One of the most common techniques to support these tasks is Discrete-Event Simulation. The state-of-the art commercial simulators are already adopted to analyze complex networked systems, but the development of a monolithic simulation model can be too complex or even infeasible when a detailed description of the nodes is not available outside the "owner" of the node. In these cases the problem can be decomposed by modeling complex systems with various simulators that interoperate in a synchronized manner. Herein, the integration of simulators is addressed by taking as a reference the High Level Architecture (HLA) and the research carried out by Commercial-off-the-shelf Simulation Package Interoperability (CSPI) Product Development Group (PDG). This paper proposes modifications to CSPI-PDG protocols and to use patterns of how HLA can be effectively adopted to support CSP interoperability: a new solution for the synchronous entity passing problem and a modification to the Entity Transfer Specification are presented. The resulting infrastructure is validated and tested over a realistic industrial case.
基于hla的复杂制造系统仿真
制造系统可以被认为是生产网络节点,它们之间的关系对每个系统的设计和分析有很大的影响。支持这些任务的最常用技术之一是离散事件模拟。最先进的商业模拟器已经被用于分析复杂的网络系统,但是当节点的详细描述无法在节点的“所有者”之外获得时,开发单片仿真模型可能过于复杂甚至不可行。在这些情况下,可以通过使用以同步方式互操作的各种模拟器对复杂系统进行建模来分解问题。本文以高级体系结构(HLA)和商用现成仿真包互操作性(CSPI)产品开发小组(PDG)的研究为参考,解决了模拟器的集成问题。本文提出了对CSP - pdg协议的修改,并提出了如何有效地采用HLA来支持CSP互操作性的模式:对同步实体传递问题提出了一个新的解决方案,并对实体传输规范进行了修改。在实际的工业案例中验证和测试了所得到的基础设施。
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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