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Software-in-the-loop testbed for multi-agent-systems in a discrete event simulation: Integration of the Java Agent Development Framework into Plant Simulation

机译:离散事件仿真中的多辅助系统软件 - 循环测试平台:Java代理开发框架集成到工厂模拟中

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Today's research projects propose a modular manufacturing environment for production sites, which adapt itself autonomously and makes manufacturing decisions without human interaction. Therefore, it is necessary that the next generations of production lines, especially the intralogistics transportation systems, are designed more adaptable and flexible. The object in this paper is a cyber-physical material flow system with flexible, autonomous and collaborative vehicles combined with centralized sensors to digitize the workspace. For this purpose, an interface was developed which allows a discrete event simulation tool to communicate with a Multi-Agent-System. Thereby, the decision-making of the agents is integrated directly into the simulation process of the discrete event simulation software. The architecture of this interface is presented as well as a test of its functionality. The architecture is implemented with the Java Agent Development Framework and Plant Simulation as the discrete event simulation tool. The result is an interface, which allows to transfer data from the simulation, in case of an event, to the agent platform. The Multi-Agent-System solves the event specific problem due to its ontology and responses it to the simulation. Therefore, it is possible to integrate the ontology implemented in the physical system as software-in-the-loop in the simulation environment. Furthermore, the possibility is given to improve the ontology iteratively based on historical production data. Different strategies of agents can be combined and improved through machine-learning algorithms by using real production data from the task specific hardware. This leads into a continuous improvement process.
机译:今天的研究项目提出了一种用于生产现场的模块化制造环境,自动适应自动,并使制造决策没有人为互动。因此,必须设计下一代生产线,尤其是蓄电池,尤其是更适应和灵活的设计。本文的目的是一种网络物理材料流量系统,具有柔性,自主和协作车辆,与集中传感器组合以数字化工作区。为此目的,开发了一个接口,其允许离散事件仿真工具与多助理系统通信。因此,代理的决策直接集成到离散事件仿真软件的模拟过程中。提出了此接口的体系结构以及其功能的测试。该体系结构是用Java代理开发框架和工厂仿真实现的,作为离散事件仿真工具。结果是一个接口,它允许在事件的情况下从模拟传输数据到代理平台。多代理系统由于其本体和对模拟而响应了事件特定问题。因此,可以将在物理系统中实现的本体集成为仿真环境中的循环中的软件。此外,基于历史生产数据迭代地提供了改善本体的可能性。通过使用任务特定硬件的实际生产数据,可以通过机器学习算法组合和改进代理的不同策略。这导致了一个连续的改进过程。

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