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A Framework for Modelling Reconfigurable Manufacturing Systems Using Hybridized Discrete-Event and Agent-based Simulation

机译:使用杂交的离散事件和基于代理的模拟建模可重构制造系统的框架

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Important objectives and challenges in today's manufacturing environment include the introduction of new products variants and the designing and developing of reconfigurable manufacturing systems. Due to changing customer requirements, products development time is shorter and manufacturing systems' ability to physically reconfigure is important. The objective of this research is to investigate and support the reconfigurability of a manufacturing system by applying hybridized Agent-based and Discrete-Event simulation modelling technique. Emergent behaviour of the simulation model, when various modifications take place in the system, is examined. The benefits of this framework are decentralized control and collaborative decision making using the UML object-oriented modelling technique, flexible reaction to system changes in terms of product variety and possible system disturbances, and system performance improvement. AnyLogic multi-method simulation modelling platform is utilized to design and create different types of agents. The proposed simulation model results are demonstrated and verified in a case study using the configurable assembly Learning Factory (iFactory) in the Intelligent Manufacturing Systems (IMS) Center at the University of Windsor. The benefits and limitations of the proposed framework are discussed.
机译:当今制造环境中的重要目标和挑战包括引入新产品变体和可重构制造系统的设计和开发。由于客户要求不断变化,产品开发时间较短,制造系统的物理重新配置的能力很重要。本研究的目的是通过应用杂交的代理和离散事件仿真建模技术来研究和支持制造系统的重新配置。检查了仿真模型的紧急行为,当系统中进行各种修改时,被检查。该框架的好处是使用UML面向对象的建模技术的分散控制和协作决策,灵活反应产品品种和可能的系统干扰,系统性能改进。 AnyLogic多方法仿真建模平台用于设计和创建不同类型的代理。在Windsor大学智能制造系统(IMS)中心的可配置组装学习工厂(IFactory)在一个案例研究中展示和验证了所提出的模拟模型结果。讨论了拟议框架的益处和限制。

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