将现场测量集成到基于模型的工业通信网络模拟器中

Jing Geng, Honglei Li, M. Kashef, Yongkang Liu, R. Candell, S. Bhattacharyya
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引用次数: 1

摘要

高效、准确的仿真方法在工厂通信系统的设计和评估中变得越来越重要。基于模型的仿真方法基于控制被仿真系统中组件和子系统之间交互的形式化模型。形式化模型促进了跨系统的系统集成,并为系统性能的分析和优化提供了强大的方法。然而,传统的仿真方法利用的通信信道模型并不能完全反映工业通信信道的特性和多样性。为了帮助弥合这一差距,我们在本文中开发了用于链路层仿真的信道模型构建的新方法,该方法系统地结合了来自工业网络的无线通信信道的现场测量,并派生出相应的信道建模库组件。生成的库组件以查找表的形式捕获通道特征,可以灵活地集成到系统级模拟器或联合仿真工具中。我们将新的表生成方法集成到一个基于模型的联合模拟器中,该模拟器可以联合模拟与无线网络集成的工厂系统中的流程、工作单元的物理布局和通信通道之间的交互。使用我们的查找表增强联合模拟器的实验结果表明,所提出的方法可以灵活准确地将现实工业网络信道条件集成到仿真过程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating Field Measurements into a Model-Based Simulator for Industrial Communication Networks
Efficient and accurate simulation methods are of increasing importance in the design and evaluation of factory communication systems. Model-based simulation methods are based on formal models that govern the interactions between components and subsystems in the systems that are being simulated. The formal models facilitate systematic integration across the system, and enable powerful methods for analysis and optimization of system performance. However conventional simulation approaches utilize communication channel models that do not fully reflect the characteristics and diversity of industrial communication channels. To help bridge this gap, we develop in this paper new methods for channel model construction for link-layer simulation that systematically incorporate field measurements of wireless communication channels from industrial networks, and derive corresponding channel modeling library components. The generated library components capture channel characteristics in the form of lookup tables, which can be flexibly integrated into system-level simulators or co-simulation tools. We integrate our new table-generation methods into a model-based co-simulator that jointly simulates the interactions among process flows, physical layouts of workcells, and communication channels in factory systems that are integrated with wireless networks. Experimental results using our lookup-table-augmented co-simulator demonstrate the utility of the proposed methods for flexibly and accurately integrating realistic industrial network channel conditions into simulation processes.
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