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Design of an Internal Model Controller for Binary Distillation Column

机译:二元精馏塔内模控制器的设计

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摘要

In this report Internal Model Control, Lead- Lag based Internal Model Control and modified Internal Model Control for distillation column has been proposed. The prime objective of any industrial process is to perform efficiently with optimum cost reduction. Internal Model Control (IMC) is a commonly used technique that provides a transparent mode for the designing and easy tuning of control structure . I have designed the internal model control for binary distillation column .The transfer function has been taken from Wood and Berry model. The internal model control has been designed considering three strategies namely, process perfect, process mismatch with disturbances and process model with considering only disturbance. It has also been tried to reduce the disturbance created in the system by varying tuning parameter (ë). In the second proposal, Lead-Lag based Internal Model Control method is proposed based on Internal Model Control (IMC) strategy. We have also designed the Lead-Lag based Internal Model Control for binary distillation column. We have found the composition control and disturbance rejection using Lead-Lag based IMC and comparing with the response of generalize Internal Model Controller. Finally we have design the Modified Internal Model Structure, and find the response for binary distillation column and compare with generalize Internal Model Controller response. This thesis presents an Internal Model Control, lead- lag based internal model control and modified internal model control strategy for binary distillation column and comparing the response with each other. The aim is to provide a best strategy to control the distillation column that is favourable in terms of industrial implementation. I have used matlab software to simulate the all process.
机译:在本报告中,提出了内部模型控制,基于Lead-Lag滞后的内部模型控制以及针对蒸馏塔的改进内部模型控制。任何工业过程的主要目标是在降低成本的同时有效地执行任务。内部模型控制(IMC)是一种常用的技术,它为控制结构的设计和调整提供了透明的模式。我设计了二元蒸馏塔的内部模型控制。传递函数取自伍德和贝里模型。设计内部模型控制时要考虑三种策略,即过程完美,带有干扰的过程不匹配和仅考虑干扰的过程模型。还尝试通过更改调整参数(ë)来减少系统中产生的干扰。在第二个提议中,提出了基于内部模型控制(IMC)策略的基于Lead-Lag的内部模型控制方法。我们还为二元蒸馏塔设计了基于Lead-Lag的内部模型控制。我们已经发现使用基于Lead-Lag的IMC进行成分控制和干扰抑制,并与广义内部模型控制器的响应进行比较。最后,我们设计了改进的内部模型结构,找到了二元蒸馏塔的响应,并与广义的内部模型控制器响应进行了比较。本文针对二元精馏塔提出了一种内部模型控制,基于超前滞后的内部模型控制和改进的内部模型控制策略,并将其响应进行了比较。目的是提供控制蒸馏塔的最佳策略,这在工业实施方面是有利的。我已经使用matlab软件来模拟所有过程。

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    Mishra Rakesh Kumar;

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  • 年度 2013
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