Petri net implementation in programmable logic controllers: methodology for development and validation

Igor Azkarate Fernández, Juan Carlos Mugarza Cortabarría, Luka Eciolaza Echeverría
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引用次数: 1

Abstract

Lead times are key to good market positioning of providers of automated solutions based on a programmable logic controller (PLC). Testing control software against a digital twin (DT) of the process, any programming errors that may have incurred are detected before commissioning, which reduces project duration. This work raises the possibility of reducing that probability of error when programming discrete event dynamic systems (DEDS), by implementing a Petri net (PN) managing algorithm. A framework is presented which combines the use of this algorithm, by means of pre-incidence and post-incidence matrices and initial marking vector of a net, with code validation through emulation. A use case is brought forward in which the control program of a sequential process with parallel operations is implemented, with both virtual (VC) and real commissioning.
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可编程逻辑控制器中的Petri网实现:开发和验证的方法学
交货时间是基于可编程逻辑控制器(PLC)的自动化解决方案供应商良好市场定位的关键。针对过程的数字孪生(DT)测试控制软件,在调试之前检测到可能发生的任何编程错误,从而缩短了项目持续时间。这项工作通过实现Petri网(PN)管理算法,提高了在编程离散事件动态系统(DEDS)时减少错误概率的可能性。提出了一个框架,将该算法的使用结合起来,通过事前关联矩阵和事后关联矩阵以及网络的初始标记向量,并通过仿真验证代码。提出了一个用例,实现了具有并行操作的顺序过程的控制程序,并进行了虚拟调试和实际调试。
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