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Evaluation Performance of IC Engine: Linear Tunable Gain Computed Torque Controller vs. Sliding Mode Controller

机译:内燃机的评估性能:线性可调增益计算转矩控制器与滑模控制器

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Design a nonlinear controller for second order nonlinear uncertain dynamical systems (e.g., internal combustion engine) is one of the most important challenging works. This paper focuses on the comparative study between two important nonlinear controllers namely; computed torque controller (CTC) and sliding mode controller (SMC) and applied to internal combustion (IC) engine in presence of uncertainties. In order to provide high performance nonlinear methodology, sliding mode controller and computed torque controller are selected. Pure SMC and CTC can be used to control of partly known nonlinear dynamic parameters of IC engine. Pure sliding mode controller and computed torque controller have difficulty in handling unstructured model uncertainties. To solve this problem applied linear error-based tuning method to sliding mode controller and computed torque controller for adjusting the sliding surface gain (λ ) and linear inner loop gain (K). Since the sliding surface gain (λ) and linear inner loop gain (K) are adjusted by linear error-based tuning method. In this research new λ and new K are obtained by the previous λ and K multiple gains updating factor(α). The results demonstrate that the error-based linear SMC and CTC are model-based controllers which works well in certain and uncertain system. These controllers have acceptable performance in presence of uncertainty.
机译:设计用于二阶非线性不确定动力系统(例如内燃机)的非线性控制器是最重要的挑战性工作之一。本文着重于两个重要的非线性控制器之间的比较研究。计算出的扭矩控制器(CTC)和滑模控制器(SMC),并在存在不确定性的情况下应用于内燃机(IC)。为了提供高性能的非线性方法,选择了滑模控制器和计算转矩控制器。纯SMC和CTC可用于控制部分已知的IC发动机非线性动态参数。纯滑模控制器和计算转矩控制器在处理非结构化模型不确定性方面存在困难。为了解决这个问题,将基于线性误差的调整方法应用于滑模控制器和计算转矩控制器,以调整滑动表面增益(λ)和线性内环增益(K)。由于通过基于线性误差的调整方法来调整滑动表面增益(λ)和线性内部环路增益(K)。在这项研究中,通过先前的λ和K倍数增益更新因子(α)获得新的λ和新的K。结果表明,基于误差的线性SMC和CTC是基于模型的控制器,在某些不确定的系统中都能很好地工作。这些控制器在存在不确定性的情况下具有可接受的性能。

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