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Robust Global Stabilization of Continuous Bioreactors

机译:鲁棒全球稳定的连续生物反应器

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This paper studies the problem of designing controllers for enlarging the stability region of continuous stirred microbial bioreactors. A specific application is in anaerobic digestion, where the stability region can be very small if the operating steady state is selected to maximize the methane production rate. A control Lyapunov function approach is followed to construct a globally stabilizing state feedback control law. This turns out to be proportional output feedback in the case of anaerobic digestion, where the measurement is the methane production rate. The robustness properties of the feedback controller are also investigated. For situations of large, measurable changes in the organic load of the bioreactor, a feedforward measurement is incorporated in the control law, leading to improved robustness margin.
机译:本文研究了设计控制器的问题,用于扩大连续搅拌微生物生物反应器的稳定性区域。特定应用是在厌氧消化中,如果选择操作稳态以最大化甲烷的产生速率,则稳定区域可以非常小。遵循控制Lyapunov功能方法,以构建全局稳定状态反馈控制法。在厌氧消化的情况下,这结果是比例输出反馈,其中测量是甲烷的生产率。还研究了反馈控制器的稳健性属性。对于生物反应器的有机载荷的大,可测量变化的情况,在对照法中结合了前馈测量,导致改善的鲁棒性裕度。

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