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Using a Petri-net-based approach for the real-time supervisory control of an experimental manufacturing system

机译:使用基于Petri网的方法对实验制造系统进行实时监控

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A new Petri-net-based design technique, called the inhibitor arc method, for the synthesis of compiled supervisors for discrete event systems is used to solve a forbidden state problem in an experimental manufacturing system. The technique used offers the following advantages: 1. The closed-loop (i.e. controlled) behaviours of the systems are non-blocking and do not contradict the forbidden state specifications. 2. The closed-loop behaviours of the systems are maximally permissive within the specifications. The supervisors to be synthesised consist of a controlled automation Petri net (APN) model of the system. Automation Petri nets include the following extensions to the ordinary Petri-net framework: sensor readings as firing conditions at transitions and actions assigned to places. Ladder logic diagram (LLD) code is used to implement the supervisors on programmable logic controllers (PLC). It is important to note that the supervisors obtained are correct by construction, therefore there is no need for verification. This paper particularly shows the applicability of previous results [1] to low-level real-time control where the role of the supervisor is to arrange low-level interaction between the control devices, such as motors, actuators, etc. This is done by considering an experimental manufacturing system.
机译:一种新的基于Petri网的设计技术(称为抑制弧方法),用于为离散事件系统合成已编译的管理程序,用于解决实验制造系统中的禁态问题。所使用的技术具有以下优点:1.系统的闭环(即受控​​)行为是非阻塞的,并且不与禁止状态规范相矛盾。 2.在规格范围内,系统的闭环行为是最大允许的。要综合的主管包括系统的受控自动化Petri网(APN)模型。自动化Petri网包括以下对普通Petri网框架的扩展:传感器读数作为过渡时的触发条件和分配给场所的动作。梯形逻辑图(LLD)代码用于在可编程逻辑控制器(PLC)上实现监控器。重要的是要注意,所获得的主管在结构上是正确的,因此无需进行验证。本文特别展示了先前结果[1]在低级实时控制中的适用性,其中管理者的职责是安排控制设备(例如电动机,执行器等)之间的低级交互。考虑一个实验性的制造系统。

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