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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Discrete event control system design using automation Petri nets and their ladder diagram implementation
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Discrete event control system design using automation Petri nets and their ladder diagram implementation

机译:使用自动化Petri网的离散事件控制系统设计及其梯形图实现

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摘要

As automated manufacturing systems become more complex, the need for an effective design tool to produce both high-level discrete event control systems (DECS) and low-level implementations becomes more important. Petri nets represent the mosteffective method for both the design and implementation of DECSs. In this paper, automation Petri nets (APN) are introduced to provide a new method for the design and implementation of DECSs. The APN is particularly well suited to multiproduct systems and provides a more effective solution than Grafcet in this context. Since ordinary Petri nets do not deal with sensors and actuators of DECSs, the Petri net concepts are extended, by including actions and sensor readings as formal structures within the APN.Moreover, enabling and inhibitor arcs, which can enable or disable transitions through the use of leading-edge, falling-edge and level of markings, are also introduced. In this paper, the methodology is explained by considering a fundamental APNstructure. The conversion of APNs into the IEC1131-3 ladder diagrams (LD) for implementation on a PLC is also explained by using the token passing logic (TPL) concept. Finally, an illustrative example of how APNs can be applied to a discrete manufacturing problem is described in detail.
机译:随着自动化制造系统变得越来越复杂,对同时生产高级离散事件控制系统(DECS)和低级实现的有效设计工具的需求变得越来越重要。 Petri网是DECS设计和实现的最有效方法。本文介绍了自动化Petri网(APN),为DECS的设计和实现提供了一种新方法。在这种情况下,APN特别适合多产品系统,并且提供了比Grafcet更有效的解决方案。由于普通Petri网不处理DECS的传感器和执行器,因此通过将动作和传感器读数作为APN中的形式结构包括在内,扩展了Petri网的概念。此外,启用弧和禁止弧可以通过使用来启用或禁用过渡还介绍了标记的前沿,下降沿和水平。在本文中,通过考虑基本的APN结构来解释该方法。还通过使用令牌传递逻辑(TPL)概念说明了将APN转换为IEC1131-3梯形图(LD)以在PLC上实现的过程。最后,详细说明如何将APNs应用于离散制造问题的示例。

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