首页> 外文期刊>American journal of engineering and applied sciences >Petri Nets and Ladder Logic for Fully-Automating and Programmable Logic Control of Semi-Automatic Machines and Systems
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Petri Nets and Ladder Logic for Fully-Automating and Programmable Logic Control of Semi-Automatic Machines and Systems

机译:Petri网和梯形逻辑,用于半自动机器和系统的全自动和可编程逻辑控制

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摘要

Automating semi-automatic dynamic machines and complex systems, where some functionalities are already automated but the machine doesn't run fully in automatic mode, represents another challenge to automating dynamic and manual complex systems. This study deals with a special case of this general problem, where the system's semi-automatic and automatic functionalities run separately in a sequence with either automatic and/or semi-automatic functionality running at any point of time, but not both. Approach: Petri-nets can successfully represent the operations of both the semi-automated and fully-automated functionalities of such dynamic systems. Three roles for the programmable logic controllers were suggested: (a) Ignoring the presence of the semi-automatic part, (b) simulating the semi-automatic part and recognizing discrepancies and(c) simulating the semi-automatic functionalities and supporting it, where the last choice was most costly and most reliable. Results: This study presents a case study for a PVC mixing dynamic process to illustrate the three suggested controller design possibilities, where a Petri net model and related ladder logic program were developed to show these three controller design options. In this respect, the semiautomatic functionality is an intermediate step between the two automated functionalities, within which an important decision should be made to end the previous automatic step and to begin the next automatic step. Conclusion/Recommendations: The automation method that was introduced in this study is applicable to a large number of machines within industrial and mechanical systems that were built using older semi-automatic control systems. Various decision analyses {DAI, DA2, DA3} were shown to produce basic choices for such types of applications. Petri-nets and ladder logic in this respect can successfully represent the operations of both the semi-automated and fully-automated functionalities, where a Petri net model and the consequent ladder logic program, used to program the utilized programmable logic controller, are developed to show three possible controller designs, where the choice between three designs depend on the designers objective of cost, reliability and fault tolerance.
机译:自动化半自动动态机器和复杂系统(其中某些功能已经实现自动化,但机器无法在自动模式下完全运行)则是自动化动态和手动复杂系统的另一挑战。这项研究处理了这个一般问题的特例,其中系统的半自动和自动功能按顺序分别运行,而自动和/或半自动功能可以在任何时间点运行,但不能同时运行。方法:Petri网可以成功表示此类动态系统的半自动化和全自动功能的运行。提出了可编程逻辑控制器的三个角色:(a)忽略半自动部件的存在,(b)模拟半自动部件并识别差异,(c)模拟半自动功能并为其提供支持,其中最后的选择是最昂贵和最可靠的。结果:本研究提供了一个PVC混合动态过程的案例研究,以说明三种建议的控制器设计可能性,其中开发了Petri网模型和相关的梯形逻辑程序来显示这三种控制器设计方案。在这方面,半自动功能是两个自动功能之间的中间步骤,在此中间,应做出重要的决定以结束上一个自动步骤并开始下一个自动步骤。结论/建议:本研究中介绍的自动化方法适用于使用较旧的半自动控制系统制造的工业和机械系统中的大量机器。各种决策分析{DAI,DA2,DA3}被证明可以为此类应用提供基本选择。在这方面,Petri网和梯形逻辑可以成功地表示半自动化和全自动功能的操作,其中开发了用于对所用可编程逻辑控制器进行编程的Petri网模型和随之而来的梯形逻辑程序,用于显示了三种可能的控制器设计,其中三种设计之间的选择取决于设计者的成本,可靠性和容错性目标。

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