CPSSim:大规模信息物理系统的仿真框架

Chia-Tse Chu, C. Shih
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引用次数: 6

摘要

由于嵌入式、实时和控制系统在过去三十年中的积极发展,我们现在处于将这些经过充分研究/设计的系统集成为大规模和复杂系统的时代,称为信息物理系统,以提供上下文感知和以用户为中心的服务。在开发CPS的过程中,如何将不同社区开发的技术整合成一个连贯的系统是主要的挑战之一。本文介绍了CPSsim的设计和实现,CPSsim是一个框架,它集成了多个模拟器,每个模拟器可以模拟离散系统或连续系统,以模拟联邦系统。CPSsim使开发人员能够使用为CPS的子系统指定的模拟器,并了解集成系统的行为。因此,不需要从头构建新的模拟器。为了模拟网络物理系统,该框架同时模拟了以不同速率工作的子系统,并解决了可扩展性问题。此外,CPSsim针对的是仿真器之间的同步问题,每个仿真器可能采用不同的仿真模型,具有不同的时序特性。为了验证该方法的有效性,我们以主动列车控制为例,对其性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CPSSim: Simulation framework for large-scale Cyber-Physical Systems
Thanks to the active development on embedded, real-time, and control systems in last thirty years, we are now in the era of integrating these well-studied/designed systems as a large scale and complex systems, called Cyber-Physical Systems, to provide context-aware and user-centric services. In the processing of developing CPS, one of the major challenges is how to integrate the technologies developed by different communities into a coherent system. This paper presents the design and implementation of CPSsim, which is a framework to integrate several simulators, each of which simulates either discrete or continuous systems, to simulate the federated system. CPSsim enables the developers to use the simulators designated for the sub-systems of a CPS and to understand the behavior of the integrated system. Hence, there is no need to build a new simulator from scratch. In order to simulate the cyber-physical systems, the framework concurrently simulates the sub-systems working at different rates, and tackles the scalability issue. Furthermore, CPSsim targets the synchronization issue among simulators, each of which may adopt different simulation models and has different timing properties. To demonstrate the effectiveness, we use active train control as an example CPS and evaluate its performance.
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