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首页> 外文期刊>Chemical and Biochemical Engineering Quarterly >Model Predictive Control of a Continuous Vacuum Crystalliser in an Industrial Environment: A Feasibility Study
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Model Predictive Control of a Continuous Vacuum Crystalliser in an Industrial Environment: A Feasibility Study

机译:工业环境中连续真空结晶器的模型预测控制:可行性研究

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Abstract Crystallisers are essentially multivariable systems with high interaction amongst the process variables. Model Predictive Controllers (MPC) can handle such highly interacting multivariable systems efficiently due to their coordinated approach. In the absence of a real continuous crystalliser, a detailed momentum-model was applied using the process simulator in Simulink. This process has been controlled by a model predictive controller widely used in industry. A new framework has been worked out for the incorporation of the Honeywell Profit? Suite controller to the simulator of the crystalliser. The engineering model and the controller were connected via OPC (OLE-Object Linking and Embedding for Process Control standard). Models were developed in Profit? Suite using the new fully-automated identification method. The feasibility study illustrated that the applied identification tool gave an accurate and robust model, and that the non-linear crystalliser may be controlled and optimised very well with the Honeywell Profit? Suite package. The developed system is proven to be useful in research and development.
机译:摘要结晶器本质上是在过程变量之间具有高度交互作用的多变量系统。模型预测控制器(MPC)由于采用了协调的方法,因此可以有效地处理这种高度交互的多变量系统。在没有真正的连续结晶器的情况下,使用Simulink中的过程模拟器应用了详细的动量模型。该过程已由行业中广泛使用的模型预测控制器控制。已经为合并霍尼韦尔利润计划制定了新框架。结晶器模拟器的套件控制器。工程模型和控制器通过OPC(过程控制标准的OLE对象链接和嵌入)连接。模型是在Profit中开发的?套件使用新的全自动识别方法。可行性研究表明,所应用的识别工具给出了准确而稳健的模型,并且使用Honeywell Profit?可以很好地控制和优化非线性结晶器。套件包。事实证明,开发的系统可用于研发。

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