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A Critical Comparison of Linear and Nonlinear Property Estimators in Inferential Control

机译:线性和非线性性能估计在推理控制中的关键比较

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In this paper, a comparison of linear and nonlinear estimators with particular emphasis to the closed-loop properties of the resulting inferential control scheme is presented. The concept of closed-loop "consistency" is introduced as an effective criterion for choosing the auxiliary variables. An estimator is consistent if it guarantees low closed-loop steady-state offset in the true unmeasured controlled variables. By means of a case study of a high purity distillation column, a number of issues that can arise in inferential control are emphasized, and their implications on the closed-loop stability are discussed. It is shown that the use of some nonlinear estimators, which in general guarantee a superior precision, may be inappropriate because of the presence of zero gains and gain inversions that can lead the closed-loop system to instability. Moreover, in multi-input multi-output (MIMO) systems it is possible that the estimator requires the auxiliary variables to reach values that are not reachable by the actual plant.
机译:在本文中,提出了线性和非线性估计的比较,特别强调了所得到的推理控制方案的闭环性能。闭环“一致性”的概念被引入为选择辅助变量的有效标准。如果在真正的未测量的受控变量中保证低闭环稳态偏移,则估算器是一致的。通过对高纯度蒸馏塔的案例研究,强调可以在推理控制中出现的许多问题,并且讨论了它们对闭环稳定性的影响。结果表明,使用一些非线性估计器,这通常保证了卓越的精度,因为存在零收益和增益逆转,这可能是不稳定的零增益和增益逆转。此外,在多输入多输出(MIMO)系统中,估算器可能需要辅助变量来达到实际工厂无法访问的值。

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