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Design and Implementation of a Service-Oriented Architecture for the Optimization of Industrial Applications

机译:面向服务的工业应用优化体系结构的设计与实现

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摘要

A novel architecture for the field of industrial automation is described, the goals of which are: 1) computation of optimal production plans; 2) automated usage of the optimized plans; 3) flexibility and reusability at development and maintenance; and 4) seamless transition from current practice to the approach introduced herein. The architecture consists of three main components: 1) a set of OPC unified architecture (UA) servers, which are used to model the information from the device level; 2) a set of services organized into two layers (basic and complex services), which act as a link between the first and the third layer; and 3) a constraint satisfaction problem (CSP) layer for the computation of production plans. Extensive performance tests motivate the choice of the service development framework, and prove the effectiveness of the special adapter software solution for the integration of current devices and the ability of the UA server to manage a high number of UA connections. As a proof-of-concept, the architecture has been tested for a real manufacturing problem composed of four flexible manufacturing systems. The results show that the architecture is able to efficiently control and monitor a real manufacturing process according to an optimized schedule with over 99% of the time spent on the manufacturing.
机译:描述了一种用于工业自动化领域的新颖架构,其目标是:1)计算最佳生产计划; 2)自动使用优化计划; 3)开发和维护的灵活性和可重用性;和4)从当前实践到本文介绍的方法的无缝过渡。该体系结构由三个主要组件组成:1)一组OPC统一体系结构(UA)服务器,用于对设备级别的信息进行建模; 2)分为两层的服务集(基本服务和复杂服务),它们充当第一层和第三层之间的链接; 3)用于计算生产计划的约束满足问题(CSP)层。广泛的性能测试激励了服务开发框架的选择,并证明了用于当前设备集成的特殊适配器软件解决方案的有效性以及UA服务器管理大量UA连接的能力。作为概念验证,该体系结构已针对由四个灵活的制造系统组成的实际制造问题进行了测试。结果表明,该体系结构能够根据优化的计划表有效地控制和监视实际的制造过程,并花费了超过99%的制造时间。

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