Software-defined environment for reconfigurable manufacturing systems

N. Nayak, Frank Dürr, K. Rothermel
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引用次数: 44

Abstract

Conventional manufacturing systems like assembly lines cannot handle the constantly changing requirements of a modern-day manufacturer, which are driven by volatile market demands. In a bid to satisfy such requirements, modern manufacturing systems, comprising innumerable cyber-physical systems (CPS), aim to be reconfigurable. CPS implement production processes through an ICT infrastructure networked with sensors and actuators embedded in the shop floor. Reconfigurability, in context of manufacturing systems, must include the entire system of networked components and hence requires a flexible ICT infrastructure. Providing flexible ICT infrastructures, often, comes at the cost of diluted quality of service (QoS) guarantees. This, however, is not an option for manufacturing systems, most of which require strict QoS guarantees to function correctly. To overcome this obstacle, we propose a new software-defined environment (SDE) for reconfigurable manufacturing systems with real-time properties in this paper. Software-defined environment is an emerging technology that provides flexible ICT infrastructures modifiable using software. Our contributions include an SDE-based system architecture for dynamically configuring the underlying infrastructure for a manufacturing system. In particular, we focus on configuring the network for the time-sensitive communication flows essential for realising CPS. Moreover, we propose a pair of routing algorithms to calculate routes for these flows while configuring the network.
可重构制造系统的软件定义环境
像装配线这样的传统制造系统无法处理现代制造商不断变化的需求,这些需求是由不稳定的市场需求驱动的。为了满足这些要求,由无数网络物理系统(CPS)组成的现代制造系统旨在实现可重构。CPS通过与传感器和执行器联网的ICT基础设施实施生产流程,这些传感器和执行器嵌入车间。在制造系统的背景下,可重构性必须包括整个网络组件系统,因此需要灵活的ICT基础设施。提供灵活的信息通信技术基础设施,往往是以降低服务质量(QoS)保证为代价的。然而,这不是制造系统的选择,大多数制造系统需要严格的QoS保证才能正常工作。为了克服这一障碍,本文提出了一种新的软件定义环境(SDE),用于具有实时性的可重构制造系统。软件定义环境是一种新兴技术,它提供了可使用软件修改的灵活的ICT基础设施。我们的贡献包括一个基于sde的系统架构,用于动态配置制造系统的底层基础设施。特别是,我们专注于为实现CPS所必需的时间敏感通信流配置网络。此外,我们提出了一对路由算法,在配置网络时计算这些流的路由。
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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