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An object-oriented architecture for combined simulation modeling with real-time capabilities for operator training.

机译:面向对象的体系结构,用于结合仿真建模和实时功能来进行操作员培训。

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摘要

Recently, there has been an increasing demand in the process industries for training simulations that allow operators to learn and practice normal, abnormal, and emergency operating procedures in a realistic setting. The major requirement of simulations used for training is the need to ensure that the timing of the execution of a simulation run corresponds to the timing of the operation of the real system and flexibility. This is necessary in order to offer the trainer the capability to rapidly reconfigure the simulation model as conditions warrant. This research presents an object-oriented real-time simulation architecture for operator training. The simulation allows the operators to train on an interactive system that offers the authentic look and feel of the plant's control, as well as accurate, real-time feedback on the result of their actions. The simulation architecture is based on the concept of having a virtual plant that is operated on by a combined simulation model. A virtual plant is a computer based representation of the actual plant. The virtual plant and the associated simulation is codified in an object oriented environment to maintain reusability, extensibility, and flexibility. A real-time simulation is maintained by using fixed time increment updates generated by the computer clock. This update scheme gives the user the ability to interact dynamically by evoking system events. With each time increment the calendar is also checked for scheduled random events. The simulation is modeled independent of any particular hardware controller. This permits connection of the simulation model to a variety of controllers. The simulation architecture is validated by creating a specific interface module for a Honeywell TDC 3000 controller. A questionnaire was developed and distributed to fellow colleagues in order to determine the effectiveness of the architecture for operator training. An overwhelming number of respondents felt that the architecture was appropriate for operator training. In conclusion, the simulation allows the operator to learn and practice with a process system that might otherwise be costly and dangerous, if not impossible in a real plant.
机译:最近,在过程工业中,对训练模拟的需求不断增长,以使操作员可以在现实的环境中学习和练习正常,异常和紧急操作程序。用于训练的模拟的主要要求是需要确保模拟运行的执行时间与实际系统的操作时间和灵活性相对应。为了使培训师有能力在条件允许的情况下快速重新配置仿真模型,这是必要的。这项研究提出了一种用于操作员培训的面向对象的实时仿真架构。通过仿真,操作员可以在交互式系统上进行训练,该系统提供了工厂控制的真实外观,并提供有关其操作结果的准确,实时的反馈。仿真架构基于具有由组合仿真模型操作的虚拟工厂的概念。虚拟工厂是实际工厂的基于计算机的表示。在面向对象的环境中将虚拟工厂及其关联的模拟编码,以保持可重用性,可扩展性和灵活性。通过使用计算机时钟生成的固定时间增量更新来维护实时仿真。此更新方案使用户能够通过引发系统事件进行动态交互。每增加一次,日历也会检查计划的随机事件。模拟的建模独立于任何特定的硬件控制器。这允许将仿真模型连接到各种控制器。通过为Honeywell TDC 3000控制器创建特定的接口模块来验证仿真体系结构。制定了调查表并将其分发给同事,以确定操作员培训体系结构的有效性。绝大多数的受访者认为该体系结构适合进行操作员培训。总之,该仿真使操作员可以学习和实践过程系统,否则该过程系统可能会非常昂贵且危险,即使在实际工厂中并非不可能。

著录项

  • 作者

    Dessouky, Yasser Mohamed.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 240 p.
  • 总页数 240
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;
  • 关键词

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