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Modeling and Analysis of Network Control System Based on Hierarchical Coloured Petri Net and Markov Chain

机译:基于等级彩色Petri网和马尔可夫链的网络控制系统建模与分析

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This paper investigates a modified modeling of networked control systems (NCSs) with programmable logic controller (PLC). First, the controller-to-actuator and sensor-to-controller network-induced delays are investigated by a modeling tactics based on hierarchical coloured petri net (HCPN) in a structure-conserving way. Comparing with the recent result, the signal transmission delay is set in a random interval instead of a fixed mode; moreover, the data packet drop out and disorder are also taken into consideration. Second, delays captured form CPN tools are analyzed with a strategy based on Baum–Welch algorithm and statistics science. Besides, time delays are modeled as a Markov chain and the transition probabilities is calculated using the consequent from the previous operation. Finally, a comparison verification illustrates the equivalence property between proposed models.
机译:本文调查了具有可编程逻辑控制器(PLC)的网络控制系统(NCSS)的修改建模。 首先,通过基于分层彩色Petri网(HCPN)的结构保守方式,通过建模策略来研究控制器到致动器和传感器到控制器网络诱导的延迟。 与最近的结果相比,信号传输延迟以随机间隔而不是固定模式设置; 此外,还考虑了数据分组丢弃和紊乱。 其次,通过基于BAUM-Welch算法和统计科学的策略分析延迟捕获的表格CPN工具。 此外,时间延迟被建模为Markov链,并且使用前一个操作的结果计算过渡概率。 最后,比较验证说明了所提出的模型之间的等效属性。

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