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Adaptive control technique for a propagation bioprocess carried out inside a fixed bed reactor

机译:在固定床反应器内进行的增殖生物过程的自适应控制技术

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This paper presents the design and analysis of adaptive and robust-adaptive control strategies for a nonlinear propagation bioprocesses carried out inside a fixed bed reactor. The design schemes are developed under the realistic assumption that both bacterial growth rates and influent flow rates are time-varying and uncertain, but some lower and upper bounds of these uncertainties are known. The proposed control structures are achieved by combining a linearizing control law with an appropriately state asymptotic observer or an interval observer and with a parameter estimator used for on-line estimation of unknown kinetics. The effectiveness of the proposed algorithms is validated by numerical simulations applied in the case of a prototype fixed bed bioprocess.
机译:本文介绍了在固定床反应器内进行的非线性传播生物过程的自适应和鲁棒自适应控制策略的设计和分析。设计方案是在细菌生长速率和进水流速都是随时间变化且不确定的现实假设下制定的,但是这些不确定性的上下限是已知的。通过将线性化控制定律与适当的状态渐近观测器或区间观测器以及用于未知动力学在线估计的参数估计器相结合,可以实现所提出的控制结构。所提出算法的有效性通过在原型固定床生物过程中应用的数值模拟得到了验证。

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