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Nonlinear observer-based control with application to an anaerobic digestion process

机译:基于非线性观测器的控制及其在厌氧消化过程中的应用

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This paper deals with the design of a new observer based control strategy for an Anaerobic Digestion (AD) process to track a desired reference trajectory. The target is to control the biogas production, and to subsequently integrate the biogas plants in a virtual power plant. The used model is a two-steps (acidogenesis-methanogenesis) mass balance nonlinear, which is a widely used AD process model. Since the AD processes experience a lack of physical sensors, an exponential nonlinear observer is designed to estimate and update the internal state of the process. Based on the estimated states, a state feedback controller is used to track any given and admissible desired trajectory with respect to an H-infinity-optimality criterion. The observer-based controller parameters are designed by solving two (implicitly)-independent LMI conditions obtained by rigorous mathematical arguments based on a judicious use of Young relation and a reformulation of the Lipschitz property. A simulation study is provided to illustrate the validity and effectiveness of the proposed theoretical results. (C) 2018 European Control Association. Published by Elsevier Ltd. All rights reserved.
机译:本文讨论了一种新的基于观察者的控制策略的设计,该策略用于厌氧消化(AD)过程以跟踪所需的参考轨迹。目标是控制沼气生产,然后将沼气厂整合到虚拟电厂中。使用的模型是两步(产酸-甲烷生成)质量平衡非线性,是广泛使用的AD过程模型。由于AD流程缺少物理传感器,因此设计了指数非线性观察器来估计和更新流程的内部状态。基于估计的状态,状态反馈控制器用于相对于H无限最优准则来跟踪任何给定的和可接受的期望轨迹。基于观察者的控制器参数通过求解两个(隐式)无关的LMI条件来设计,这些条件是基于对Young关系的明智使用和Lipschitz属性的重新公式化,通过严格的数学论证获得的。通过仿真研究来说明所提出理论结果的有效性和有效性。 (C)2018欧洲控制协会。由Elsevier Ltd.出版。保留所有权利。

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