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The application of dynamic virtual prototyping to the development of control systems

机译:动态虚拟样机在控制系统开发中的应用

摘要

A new method of developing control systems on the basis of dynamic virtual prototyping (DVP) has been proposed. The method facilitates the control system development process by means of (1) automating the transition from the conventional DVP of a plant to the dynamic model suitable for the control system design and (2) integrating the development process into the overall lifecycle.The method comprises the three principal stages: (1) representing the plant by its DVP; (2) simulating the DVP and generating the data-based model of the plant; (3) designing the control system using the generated data-based model. Stages 1 and 2 are supported by DVP systems (e.g. IGRIP, LMS/VirtualLab, MSC SimOffice), stage 3 is accomplished by CACSD.The proposed development method has been adapted to the class of plants that are linearizable, quasi-stationary, stable or stabilizable without using the analytical model and have lumped parameters. The specifics of applying the conventional methods of identification and control system design in the context of DVP have been revealed and analyzed.The engineering applicability of the method has been proved by means of developing the control system for fine positioning of a gantry crane load.
机译:提出了一种基于动态虚拟样机(DVP)开发控制系统的新方法。该方法通过(1)自动从工厂的传统DVP过渡到适合控制系统设计的动态模型,以及(2)将开发过程整合到整个生命周期中来简化控制系统的开发过程。三个主要阶段:(1)以其DVP代表工厂; (2)模拟DVP并生成工厂的基于数据的模型; (3)使用生成的基于数据的模型设计控制系统。第1和第2阶段由DVP系统(例如IGRIP,LMS / VirtualLab,MSC SimOffice)支持,第3阶段由CACSD完成。建议的开发方法已针对线性化,准平稳,稳定或稳定的工厂类别进行了调整。无需使用分析模型即可稳定并且具有集总参数。揭示并分析了在DVP情况下应用常规识别和控制系统设计方法的细节。通过开发用于龙门起重机负载的精确定位的控制系统,证明了该方法的工程适用性。

著录项

  • 作者

    Krassi Boris;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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