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A robust-adaptive control strategy for a continuous alcoholic fermentation process

机译:连续酒精发酵过程的鲁棒自适应控制策略

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This work presents the design and the analysis of a robust-adaptive control algorithm for an alcoholic fermentation process that takes place inside a Continuous Stirred Tank Reactor (CSTR). Initially, an adaptive controller is obtained by mixing a linearizing controller with a novel parameter estimator which is used for reconstruction of unknown kinetics. Afterwards, by considering the realistic assumption that the reaction kinetics are unknown, time-varying and moreover the influent flow rates are uncertain and time-varying (although with known lower and upper bounds), a new robust-adaptive control scheme is developed by mixing an exact linearizing controller with a parameter interval estimator capable to estimate the kinetics lower and upper bounds. The performance of the designed controllers is illustrated by computer simulations.
机译:这项工作介绍了在连续搅拌釜反应器(CSTR)内进行的酒精发酵过程鲁棒自适应控制算法的设计和分析。最初,通过将线性化控制器与新型参数估计器混合使用来获得自适应控制器,该参数估计器用于重构未知动力学。之后,通过考虑反应动力学未知,时变以及进水流量不确定和时变(尽管具有已知的上下限)的现实假设,通过混合开发了一种新的鲁棒自适应控制方案。一个带有参数间隔估计器的精确线性化控制器,能够估计动力学的上下限。通过计算机仿真来说明设计的控制器的性能。

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