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Optimal control of switched autonomous systems in microbial fed-batch cultures

机译:微生物分批培养中切换自主系统的最优控制

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A switched autonomous system is proposed to formulate the fed-batch culture process by taking the switching instants between the feed and batch processes as control variables. To maximize the concentration of 1,3-propanediol (1,3-PD) at the terminal time, an optimal control model subject to our proposed switched autonomous system and continuous state inequality constraints is then presented. A computational approach is developed to find the optimal switching instants in two aspects. On the one hand, the constraint transcription and smoothing techniques are applied to dealing with the continuous state inequality constraints; on the other hand, the first and the second derivatives of the cost functional, where the transformed state constraints are treated as a penalty function, are derived by the calculus of variations. Numerical results show that, by employing the optimal switching instants, the concentration of 1,3-PD at the terminal time can be increased considerably.
机译:提出了一种切换式自主系统,通过将补料和分批过程之间的切换瞬间作为控制变量来制定补料分批培养过程。为了最大程度地提高1,3-丙二醇(1,3-PD)的浓度在终端时间,然后提出了一个最优控制模型,该模型受我们建议的切换式自治系统和连续状态不等式约束的约束。开发了一种计算方法来从两个方面找到最佳切换时刻。一方面,约束转录和平滑技术被用于处理连续状态不等式约束。另一方面,成本函数的一阶和二阶导数是通过变化的演算导出的,其中将转换后的状态约束视为惩罚函数。数值结果表明,通过采用最佳切换时刻,可以显着提高终端时间的1,3-PD浓度。

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