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Time Granularity in System-of-Systems Simulation of Infrastructure Networks

机译:基础设施网络的系统仿真中的时间粒度

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Because of their extreme complexities, a system-of-systems (SoS) approach is often used for simulating infrastructure systems. This allows the user to integrate models of various systems into one simulation. However, this integration presents several issues because individual simulations are often designed for only a specific purpose and context. This leads to variations among space granularities and proposes a challenge when selecting an appropriate time granularity for the overall SoS simulation. To explore how this granularity might affect the outcome of simulations, we designed and developed a prototype system of three infrastructure simulation networks that were then combined into one SoS simulation using High Level Architecture (HLA) implementation. We then performed a series of experiments to investigate the response of the simulation to varying time granularities. Our examination included a propagation of disruptions among constituent simulations to estimate how this was affected by the frequency of updates between those simulations, i.e. time granularity. Our results revealed that the size of the simulated disruption decreased with in-creasing time granularity and that the simulated recovery time was also affected. In conducting this project, we also identified several ideas for future research that focus on a wider range of disruption generators and infrastructure systems in those SoS simulations.
机译:由于它们的极端复杂性,因此通常使用系统系统(SoS)方法来模拟基础结构系统。这使用户可以将各种系统的模型集成到一个仿真中。但是,这种集成带来了几个问题,因为单个仿真通常仅针对特定目的和环境而设计。这会导致空间粒度之间的差异,并在为整体SoS仿真选择合适的时间粒度时提出了挑战。为了探索这种粒度如何影响仿真结果,我们设计和开发了一个包含三个基础架构仿真网络的原型系统,然后使用高级体系结构(HLA)实施将其组合为一个SoS仿真。然后,我们进行了一系列实验来研究模拟对不同时间粒度的响应。我们的检查包括在组成模拟之间传播中断,以估计这些模拟之间的更新频率(即时间粒度)对中断的影响。我们的结果表明,模拟中断的大小随时间粒度的增加而减小,并且模拟恢复时间也受到影响。在进行该项目时,我们还确定了一些未来研究的想法,这些想法集中在这些SoS模拟中的更广泛的干扰源和基础设施系统上。

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