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On the Effectiveness of Communication-Centric Modelling of Complex Embedded Systems

机译:复杂嵌入式系统中以通信为中心的建模的有效性

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摘要

Performance anomaly detection and prevention in complex industrial systems, involving many distributed embedded computing nodes, is an ever-present challenge. Understanding such complex systems using purely analytical, or experimental techniques is neither sufficient, nor cost efficient. Efficient high-level models that allow the study of current system behaviour, predict performance trends and assess possible optimisation measures, are in demand. This paper presents an approach to automatically infer such high-level system models by using system-level tracing and to represent the current state of the system using Discrete Event Simulation (DES) techniques. The current behaviour pattern of the system is followed by replaying observations, while behavioural potentials under alternative sets of circumstances are considered by exploring what-if questions. Our results are applicable to anomaly detection and anomaly prevention solutions for complex systems. The main approach in keeping our workflow as efficient and as compact as possible is the use of a communication-centric modelling approach for complex embedded systems. As our use-case, we discuss the main challenges of modelling software processes and resource utilisation in semiconductor photolithography machines produced by ASML and how such complex systems can be mimicked with high-level event-based simulation. An automatically inferred OMNEST simulation model is presented and the different steps that were taken to simulate the behaviour of this production grade system are described. Initial evaluations show the maximum difference in application process lifetimes between real and simulated executions is less than 1%.
机译:在涉及许多分布式嵌入式计算节点的复杂工业系统中,性能异常检测和预防一直是一个挑战。使用纯粹的分析或实验技术来理解这样的复杂系统既不够,也没有成本效益。需要高效的高级模型,这些模型可以研究当前的系统行为,预测性能趋势并评估可能的优化措施。本文提出了一种使用系统级跟踪自动推断此类高级系统模型并使用离散事件模拟(DES)技术表示系统当前状态的方法。系统当前的行为模式之后是重放观察结果,而另类情况下的行为潜力则通过研究假设问题来考虑。我们的结果适用于复杂系统的异常检测和异常预防解决方案。保持工作流程尽可能高效和紧凑的主要方法是对复杂的嵌入式系统使用以通信为中心的建模方法。作为我们的用例,我们讨论了由ASML生产的半导体光刻机中的软件过程建模和资源利用建模的主要挑战,以及如何通过基于事件的高级仿真来模仿这种复杂的系统。提出了一个自动推断的OMNEST仿真模型,并描述了用来模拟该生产等级系统行为的不同步骤。初步评估显示,实际执行与模拟执行之间的应用程序生命周期最大差异小于1%。

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