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Integral Sliding Mode Control and Gain-Scheduled Modified Utkin Observer for an Underground Coal Gasification Energy Conversion Process

机译:集成式滑模控制和增益修正的Utkin观测器,用于地下煤气化能量转换过程

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One of the challenging control problems of an underground coal gasification (UCG) process involves maintaining a desired heating value from the extracted product gases. In this paper, a model-based control and state estimation of UCG process is described. For the purpose of control and state estimation, a sophisticated model of the UCG process using partial differential equations is approximated by a gain-scheduled nonlinear control-oriented model. Based on this approximated plant model, a robust integral sliding mode control is designed to track a desired trajectory of the heating value. Furthermore, for the estimation of unknown states of the system, a gain-scheduled modified Utkin observer is designed as well. The robustness of the nonlinear control and estimation techniques is assessed by introducing parametric uncertainties in the UCG plant. The simulation results highlight the effectiveness of the proposed nonlinear control and estimation techniques in comparison to a conventional PI controller.
机译:地下煤气化(UCG)过程的挑战性控制问题之一涉及从提取的产物气体中保持所需的热值。在本文中,描述了基于模型的UCG过程的控制和状态估计。出于控制和状态估计的目的,通过增益调度的非线性控制导向模型对使用偏微分方程的UCG过程的复杂模型进行了近似。基于这种近似的工厂模型,设计了一种鲁棒的整体滑模控制,以跟踪所需的发热量。此外,为了估计系统的未知状态,还设计了增益调度的改进的Utkin观测器。通过在UCG工厂中引入参数不确定性来评估非线性控制和估计技术的鲁棒性。与传统的PI控制器相比,仿真结果突出了所提出的非线性控制和估计技术的有效性。

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