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Design of industrial automated systems via relay ladder logic programming and Petri nets

机译:通过继电器梯形图逻辑编程和Petri网设计工业自动化系统

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For the past few decades, programmable logic controllers (PLCs) using relay ladder logic (RLL) programming have been the workhorse for controlling event-driven industrial automated systems. RLL proved to be flexible compared to the hardwired RLL control implementation, due to its feature of software implementation. As automated systems become more complex, they also become more difficult to understand and maintain. It takes tremendous effort to accommodate specification changes (which are becoming frequent) to meet today's flexible automation needs. Several methods are emerging to overcome the shortcomings of RLL. Petri nets (PNs), initially proposed as a modeling tool, have been developed as such a method. This paper adopts an industrial-scale system to compare RLL and PN design methods so that the advantages of PN-like approaches are fully recognized. The criteria are: (i) the understandability that relates to the ability to evaluate the programmed logic, to verify its correctness and to maintain the control system, and (ii) the flexibility that relates to the easy modification of logic when the specification changes. This network takes an existing industrial system, conducts discrete event control designs by using both RLL programming and PN methods, and performs a comparative study on them. Together with previous comparison results using small-scale systems, the results of this study support that PN-like advanced discrete event control design methods are better than RLL in terms of the understandability and flexibility of the resulting control design.
机译:在过去的几十年中,使用继电器梯形逻辑(RLL)编程的可编程逻辑控制器(PLC)一直是控制事件驱动的工业自动化系统的主力军。与硬连线的RLL控制实现相比,RLL被证明具有灵活性,这是由于其具有软件实现功能。随着自动化系统变得越来越复杂,它们也变得越来越难以理解和维护。为了适应当今不断变化的自动化需求,需要付出巨大的努力来适应规格变更(这种变更越来越频繁)。克服RRL缺点的几种方法正在出现。最初提出作为模型工具的Petri网(PNs)已被开发为这种方法。本文采用工业规模的系统来比较RLL和PN设计方法,从而充分认识到PN类方法的优势。标准是:(i)与评估编程的逻辑,验证其正确性和维护控制系统的能力有关的可理解性,以及(ii)与在规格变更时易于修改逻辑有关的灵活性。该网络采用现有的工业系统,同时使用RLL编程和PN方法进行离散事件控制设计,并对它们进行比较研究。结合先前使用小型系统的比较结果,该研究结果支持PN类高级离散事件控制设计方法在结果控制设计的可理解性和灵活性方面优于RLL。

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