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Dynamic anti-windup compensation of nonlinear time-delay systems using LPV approach

机译:使用LPV方法的非线性时滞系统的动态抗风补偿

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摘要

In this paper, a novel decoupled architecture-based anti-windup compensator (AWC) synthesis technique is presented for the constrained nonlinear time-delay systems. The proposed decoupling AWC architecture is applicable to both stable and unstable nonlinear time-delay systems and it simultaneously fulfills the requirements of attainment of stability and reasonable closed-loop performance. The proposed AWC architecture is modified with the aim to characterize the synthesis goals of the delayed nonlinear AWC by using the linear parameter varying model-based reformulation property of the Lipschitz nonlinearities. To compute the gain matrices for global or local stability through the proposed AWC, several sufficient conditions have been formulated using a Lyapunov-Krasovskii functional, the gain minimization, the generalized sector condition and the information of bounds of delay. The proposed approach is less conservative than the existing methods due to useful terms in handling the range of time-delay. Further, the resultant method is better than the conventional methods owing to the incorporation of reformulation property for efficient handling of the Lipchitz nonlinearities. The effectiveness of the proposed AWC schemes is demonstrated via simulation results.
机译:本文提出了一种新的基于架构的基于架构的防风补偿器(AWC)合成技术,用于受约束的非线性时延系统。建议的解耦AWC架构适用于稳定和不稳定的非线性时滞系统,同时满足稳定性和合理的闭环性能的要求。所提出的AWC架构被修改,该旨在通过使用LipsChitz非线性的基于线性参数变化模型的重构属性来表征延迟非线性AWC的合成目标。为了通过所提出的AWC计算全局或本地稳定性的增益矩阵,已经使用Lyapunov-Krasovskii功能,增益最小化,广义扇区状况和延迟界限的信息制定了几种充分的条件。由于处理时滞范围的有用术语,所提出的方法比现有方法更少。此外,由于掺入重构性质的常规方法,所得到的方法优于常规方法,以便有效地处理Lipchitz非线性。通过模拟结果证明了所提出的AWC方案的有效性。

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