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A Nonlinear observer-based trajectory tracking method applied to an anaerobic digestion process

机译:基于非线性观察者的轨迹跟踪方法应用于厌氧消化过程

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In this paper, we present a new systematic method to design observer-based tracking control for a class of linear parameter varying (LPV) systems in the presence of Lipschitz nonlinearities. The work has been motivated by the aim to integrate Biogas Plants (BPs) in the power grid. Hence, due to the lack of autonomous and reliable sensors for anaerobic digestion (AD) processes, an exponential nonlinear observer is incorporated in the control scheme. By using the Young's inequality in a judicious way, new and dilated linear matrix inequality (LMI) conditions are provided to ensure convergence of the tracking error. Due to the complexity of the considered LPV model, an H-infinity-optimality criterion is used to handle the uncertain tracking error dynamics. An extension to discrete-time systems is provided in order to widen the applicability of the proposed method to more general real-world models. Numerical simulations are provided to show the effectiveness of the proposed theoretical methodology. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种新的系统方法,用于在存在Lipschitz非线性的存在下设计基于观察者的跟踪控制。这项工作是通过将沼气植物(BPS)集成在电网中的旨在实现的。因此,由于缺乏对厌氧消化(AD)过程的自主和可靠的传感器,因此指数非线性观测器结合在控制方案中。通过以明智的方式使用年轻的不等式,提供新的和扩张的线性矩阵不等式(LMI)条件,以确保跟踪误差的收敛。由于考虑了LPV模型的复杂性,H-Infinity-Optimaly标准用于处理不确定的跟踪误差动态。提供了对离散时间系统的延伸,以扩大所提出的方法对更一般的真实模式的适用性。提供了数值模拟,以显示提出的理论方法的有效性。 (c)2018年elestvier有限公司保留所有权利。

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