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Robust stabilization of a two-stage continuous anaerobic bioreactor system

机译:两阶段连续厌氧生物反应器系统的鲁棒稳定性

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This article studies the problem of stabilizing a two-stage continuous bioreactor system. A simple dynamic model of the system is first introduced based on a detailed mass balance model, and then used to derive a constant-yield controller to stabilize the system at given design steady state conditions. Using Lyapunov stability analysis, this control law is proved to guarantee stability of the closed loop system over the entire positive orthant. Simulation results show the successful performance of the controller. The control law is proved to be robust with respect to errors in the kinetic parameters and in the inlet feed concentration, in the sense of preserving its stability region. Performance of the control system can be enhanced if a feed-forward measurement of the inlet feed concentration can be incorporated in the control law. (c) 2017 American Institute of Chemical Engineers AIChE J, 64: 1295-1304, 2018
机译:本文研究了稳定两级连续生物反应器系统的问题。 首先基于详细的质量平衡模型首先引入系统的简单动态模型,然后用于导出恒定屈服控制器以在给定的设计稳态条件下稳定系统。 使用Lyapunov稳定性分析,证明该控制法保证了闭环系统在整个正面矫形器上的稳定性。 仿真结果显示了控制器的成功性能。 在保持其稳定区域的感觉中,证明了对照定律对动力学参数和入口进料浓度的误差是鲁棒的。 如果进料浓度的前馈测量可以包含在对照法中,则可以提高控制系统的性能。 (c)2017美国化学工程师学院Aiche J,64:1295-1304,2018

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