Simulating Timing Behaviors for Cyber-Physical Systems Using Modelica

Hao Zhou, Mengyao Zhao, Linbo Wu, Xiaohong Chen
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Abstract

Cyber-physical systems (CPSs) connect the cyber world with the physical world through a network of interrelated elements, such as sensors and actuators, robots, and other computing devices. Timing constraints on the interactions (timing behaviors) should be modelled and verified as cyber-physical systems are becoming more and more complex. This article proposes modeling the typical timing behaviors according to their time characteristics, periodicity, multiform time, and synchronization, and verifies them against properties using simulations. Sequence diagrams are presented for the modeling, and modelica is used for simulation. In the simulation, the time dependence relations are defined, and used for simulation parameter data automatic generation, in addition to the paths from the sequence diagrams. Finally, a Parachute System is used as an example to show the feasibility and effectiveness of the approach.
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利用Modelica模拟信息物理系统的时序行为
网络物理系统(cps)通过传感器和执行器、机器人和其他计算设备等相互关联的元素组成的网络,将网络世界与物理世界连接起来。随着信息物理系统变得越来越复杂,需要对交互作用的时序约束(时序行为)进行建模和验证。本文根据典型的时序行为的时间特性、周期性、多形式时间和同步性,提出了典型时序行为的建模方法,并通过仿真对其特性进行了验证。时序图用于建模,modelica用于仿真。在仿真中,定义了时间依赖关系,并利用时序图中的路径自动生成仿真参数数据。最后,以某降落伞系统为例,验证了该方法的可行性和有效性。
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