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OPTIMAL ADAPTIVE-CONTROL OF FED-BATCH FERMENTATION PROCESSES

机译:美联储发酵过程的最佳自适应控制

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摘要

This paper presents a unifying methodology for optimization of biotechnological processes, namely optimal adaptive control which combines the advantages of both the optimal control and the adaptive control approaches. As an example, the design of a substrate feeding rate controller for a class of biotechnological processes in stirred tank reactors characterized by a decoupling between biomass growth and product formation is considered. More specifically, the most common case is considered of a process with monotonic specific growth rate and non-monotonic specific production rate as functions of substrate concentration. The main contribution is to illustrate how the insight, obtained by preliminary optimal control studies, leads to the design of easy-to-implement adaptive controllers. The controllers derived in this way combine a nearly optimal performance with good robustness properties against modeling uncertainties and process disturbances. Since they can be considered model-independent, they may be very helpful also in solving the model discrimination problem, which often occurs during biotechnological process modeling. To illustrate the method and the results obtained, simulation results are given for the penicillin G fed-batch fermentation process.
机译:本文提出了一种优化生物技术过程的统一方法,即最优自适应控制,它结合了最优控制和自适应控制方法的优点。作为一个例子,考虑了在搅拌釜反应器中用于一类生物技术过程的底物进料速率控制器的设计,其特征在于生物质生长和产物形成之间的解耦。更具体地说,认为最常见的情况是具有单调比生长速率和非单调比生产率作为底物浓度的函数的方法。主要贡献在于说明通过初步的最佳控制研究获得的见识如何导致易于实现的自适应控制器的设计。以这种方式得出的控制器将近乎最佳的性能与良好的鲁棒性相结合,可抵抗建模不确定性和过程干扰。由于可以将它们视为与模型无关,因此它们在解决模型区分问题(在生物技术过程建模过程中经常发生)方面也可能非常有帮助。为了说明该方法和获得的结果,给出了青霉素G补料分批发酵过程的模拟结果。

著录项

  • 作者

    Van Impe Jan; BASTIN G;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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