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Retrofit self-optimizing control of Tennessee Eastman process

机译:田纳西州伊士曼过程的自优化优化控制

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摘要

This paper considers near-optimal operation of the Tennessee Eastman (TE) process by using a retrofit self-optimizing control (SOC) approach. Motivated by the factor that most chemical plants in operation have already been equipped with a workable control system for regulatory control, we propose to improve the economic performance by controlling some self-optimizing controlled variables (CVs). Different from traditional SOC methods, the proposed retrofit SOC approach improves economic optimality of operation through newly added cascaded SOC loops, where carefully selected SOC CVs are maintained at constant by adjusting set-points of the existing regulatory control loops. To demonstrate the effectiveness of the retrofit SOC proposed, we adopted measurement combinations as the CVs for the TE process, so that the economic cost is further reduced comparing to existing studies where single measurements are controlled. The optimality of the designed control architecture is validated through both steady state analysis and dynamic simulations.
机译:本文通过使用改进的自优化控制(SOC)方法来考虑田纳西伊士曼(TE)过程的最佳操作。考虑到大多数正在运行的化工厂已经配备了可行的控制系统来进行监管的因素,我们建议通过控制一些自优化控制变量(CV)来提高经济绩效。与传统的SOC方法不同,拟议的SOC改进方法通过新添加的级联SOC回路提高了运行的经济最优性,其中通过调整现有调节控制回路的设定点将精心选择的SOC CV保持恒定。为了证明所建议的改造SOC的有效性,我们采用了测量组合作为TE过程的CV,因此与控制单个测量的现有研究相比,经济成本进一步降低了。通过稳态分析和动态仿真,可以验证设计的控制体系结构的最优性。

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