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Network simulation models of lean manufacturing systems in digital factories and an intranet server balancing algorithm

机译:数字工厂中精益制造系统的网络仿真模型和Intranet服务器平衡算法

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摘要

Networking needs sound methods, new management style and practices that are based on cooperation, respect and trust This is fundamental because networking means sharing and exchanging quality information at all levels of the digital enterprise. In order to achieve the maximum benefits of lean manufacturing systems operating in digital factories, one of the most important eTransition rules to follow is to establish distributed, intranet networking between able people and machines - including the workstations, cells and manufacturing lines - within a line balanced client/server architecture. This meaningful exchange of quality information should happen between individual intranet-webenabled machines, devices, workstations, and robot controllers and their sensor-controlled auxiliary devices. Furthermore, cells need to communicate with each other, as well as with their cell/line control computer, as well as with the digital factory production control systems, with quality control systems - ensuring that quality is checked at the process level (i.e. in-process) - and even with the programming and design offices, in order to gain valuable feedback from the shop floor. In this paper we introduce some of the most important network planning and engineering management principles and rules, offer simulation examples, using the OPNET IT-Guru network simulation package, and a fast server balancing algorithm that manufacturing cell and system designers, and digital factory networkers should keep in mind when preparing for eTransition. (Note that our methods are generic, analytical and open-source computational, and therefore can be applied to a wide-range of application challenges.)
机译:联网需要基于合作,尊重和信任的合理方法,新的管理风格和做法。这是基本的,因为联网意味着在数字企业的各个级别上共享和交换质量信息。为了获得在数字工厂中运行的精益制造系统的最大收益,要遵循的最重要的eTransition规则之一是在一条生产线中的有能力的人员和机器(包括工作站,单元和生产线)之间建立分布式内部网联网。平衡的客户端/服务器架构。这种有意义的质量信息交换应该在启用了Intranet的单个计算机,设备,工作站,机器人控制器及其传感器控制的辅助设备之间进行。此外,各个单元之间需要相互通信,还需要与它们的单元/生产线控制计算机以及数字工厂生产控制系统以及质量控制系统进行通信-确保在过程级别(例如,流程)-甚至与编程和设计办公室,以从车间获得宝贵的反馈。在本文中,我们介绍了一些最重要的网络规划和工程管理原则和规则,提供了使用OPNET IT-Guru网络仿真程序包的仿真示例,以及制造单元和系统设计人员以及数字工厂联网人员的快速服务器平衡算法。在准备电子转帐时应牢记。 (请注意,我们的方法是通用的,分析的和开源的计算方法,因此可以应用于各种应用程序挑战。)

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