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Control structure selection and robust control system design for a high-purity distillation column

机译:高纯度蒸馏塔的控制结构选择和鲁棒控制系统设计

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A typical problem studied in the robust control literature involves design and analysis of a controller for a system with given actuators, sensors, and uncertainty description. On the other hand, most process control applications are more complex and less precisely defined, involving several additional tasks including development of an uncertainty description, control structure selection, and design of constraint/failure handling schemes. This paper introduces tools to handle such issues in the context of a case study involving a high purity distillation column. It is shown that the structured singular value theory is a convenient framework to develop an integrated control structure selection and design method. This is demonstrated on the sensor selection and inferential controller design problem for the distillation column. In addition, it is shown that on-line optimization can be incorporated into the designed controller for handling actuator constraints and failures efficiently. Simulation results based on the linearized model show the potential benefits of applying the robust control theories to these types of processes, and we highlight some of the problematic points that we encountered along the way.
机译:鲁棒控制文献中研究的一个典型问题涉及具有给定致动器,传感器和不确定性描述的系统控制器的设计和分析。另一方面,大多数过程控制应用程序更为复杂且定义较不精确,涉及一些其他任务,包括不确定性描述的开发,控制结构的选择以及约束/故障处理方案的设计。本文在涉及高纯度蒸馏塔的案例研究中介绍了解决此类问题的工具。结果表明,结构奇异值理论是开发集成控制结构选择与设计方法的便利框架。这在蒸馏塔的传感器选择和推理控制器设计问题上得到了证明。此外,还表明可以将在线优化合并到设计的控制器中,以有效地处理执行器约束和故障。基于线性化模型的仿真结果显示了将鲁棒控制理论应用于这些类型的过程的潜在好处,并且我们重点介绍了在此过程中遇到的一些问题点。

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