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Temperature Control Based on a Modified Smith Predictor for Injectable Drug Formulations

机译:基于改进的Smith预估器的可注射药物制剂的温度控制

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摘要

This paper proposes a modified Smith predictor scheme for temperature control during the formulation of injectable drugs in chemical reactors. The dynamic model of this process is obtained from an identification procedure applied in a real chemical reactor of the pharmaceutical industry. This identification procedure yields a second order with dominant time delay transfer function. A PI controller combined with a modified Smith predictor is therefore designed which behaves robustly against the effect of measured or unmeasured external disturbances. Simulated results compare the performance of the proposed controller with a standard PI controller, also combined with a conventional Smith predictor, and with Astrom modified Smith predictor. Four performance indexes have been used in this comparison: three related to the output performance (settling time, overshooting, and IAE), and a fourth one related to the control effort (EU). The analysis of these indexes shows that the proposed controller provides lower values of the compared indexes.
机译:本文提出了一种改进的Smith预估器方案,用于化学反应器中可注射药物配制过程中的温度控制。该过程的动态模型是从制药行业的实际化学反应器中应用的识别程序获得的。该识别过程产生具有主导时间延迟传递函数的二阶。因此,设计了与改良的Smith预估器结合的PI控制器,可以抵抗已测量或未测量的外部干扰的影响。仿真结果将建议的控制器与标准PI控制器的性能进行了比较,该控制器也与常规Smith预测器和Astrom修改后的Smith预测器相结合。在此比较中使用了四个性能指标:三个与输出性能(稳定时间,超调和IAE)有关,而第四个与控制工作量(EU)有关。这些指标的分析表明,所提出的控制器提供了较低的比较指标值。

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