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首页> 外文期刊>Automation Science and Engineering, IEEE Transactions on >Intelligent Component-Based Automation of Baggage Handling Systems With IEC 61499
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Intelligent Component-Based Automation of Baggage Handling Systems With IEC 61499

机译:基于IEC 61499的行李处理系统基于组件的智能自动化

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摘要

Airport baggage handling is a field of automation systems that is currently dependent on centralized control systems and conventional automation programming techniques. In this and other areas of manufacturing and materials handling, these legacy automation technologies are increasingly limiting for the growing demand for systems that are reconfigurable, fault tolerant, and easy to maintain. IEC 61499 Function Blocks is an emerging architectural framework for the design of distributed industrial automation systems and their reusable components. A number of architectures have been suggested for multiagent and holonic control systems that incorporate function blocks. This paper presents a multiagent control approach for a baggage handling system (BHS) using IEC 61499 Function Blocks. In particular, it focuses on demonstrating a decentralized control system that is scalable, reconfigurable, and fault tolerant. The design follows the automation object approach, and produces a function block component representing a single section of conveyor. In accordance with holonic principles, this component is autonomous and collaborative, such that the structure and the behavior of a BHS can be entirely defined by the interconnection of these components within the function block design environment. Simulation is used to demonstrate the effectiveness of the agent-based control system and a utility is presented for real-time viewing of these systems. Tests on a physical conveyor test system demonstrated deployment to embedded control hardware.
机译:机场行李处理是自动化系统领域,当前依赖于集中控制系统和常规自动化编程技术。在制造和材料处理的这一领域以及其他领域,这些传统的自动化技术越来越受到对可重构,容错和易于维护的系统日益增长的需求的限制。 IEC 61499功能块是一个新兴的体系结构框架,用于设计分布式工业自动化系统及其可重复使用的组件。对于包含功能块的多主体和整体控制系统,已经提出了许多架构。本文提出了一种使用IEC 61499功能块的行李处理系统(BHS)的多主体控制方法。特别是,它着重于演示可扩展,可重新配置和容错的分散控制系统。该设计遵循自动化对象方法,并生成代表输送机单个部分的功能块组件。根据完整的原理,该组件是自治的和协作的,因此BHS的结构和行为可以通过功能块设计环境中这些组件的互连来完全定义。仿真用于证明基于代理的控制系统的有效性,并提供了用于实时查看这些系统的实用程序。在物理传送带测试系统上进行的测试表明已部署到嵌入式控制硬件。

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