KhronoSim:复杂系统仿真与测试平台

A. Chaves, Ricardo Maia, Carlos Belchio, R. Araújo, G. Gouveia
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引用次数: 5

摘要

目前的智能工厂,以及网络物理系统和物联网等技术已经改变了工作环境,现在将数字机器与信息技术结合起来。即使在不可预测的环境中运行,集成自动化系统也需要精确和可靠。对此类系统的测试、质量保证和维护的需求不断增加,测试框架通常用于在这些系统上执行自动化测试。为了在闭环中为测试网络物理系统提供支持和使能基础设施,设计并开发了KhronoSim测试平台。本文介绍了KhronoSim平台及其体系结构。它是模块化的,可扩展的,可用于多个应用程序领域。它具有实时控制的特点,能够将仿真模型与物理组件或子系统联合灵活集成,构建闭环测试环境。此外,本文还介绍了一个案例研究,展示了KhronoSim平台的灵活性和模块化,以及它集成外部来源、模拟器、通信协议、电源、电气输入/输出解决方案的能力,证明了它是一个强大的平台,可用于测试和模拟复杂系统,同时允许使用物理和虚拟系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
KhronoSim: A Platform for Complex Systems Simulation and Testing
Current smart factories, and technologies such as cyber-physical systems and Internet of Things have transformed the working environments, that now incorporate digital machines with information technology. Integrated automated systems require being accurate and dependable even though operating in a non-predictable environment. The needs for testing, quality assurance, and maintenance for such types of systems are continuously increasing, and testing frameworks are often used to execute automated tests on those systems. With the objective of providing a support and enabling infrastructure for testing cyber-physical systems in closed-loop, it was designed and developed the KhronoSim testing platform. This paper presents the KhronoSim platform and architecture. It is modular, extensible and usable in multiple application domains. It features real-time control and enables the joint and flexible integration of simulation models and physical components or subsystems to build a closed-loop test environment. Furthermore, the paper presents a case study, displaying the flexibility and modularity of the KhronoSim platform and its capacity of integrating solutions from external sources, simulators, communication protocols, power sources, electrical inputs/outputs, demonstrating that it is a robust platform that is useful for testing and simulation of complex systems, yet allowing the use of physical and virtual systems alike.
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