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首页> 外文期刊>International journal of aerospace engineering >Adaptive Fault Compensation and Disturbance Suppression Design for Nonlinear Systems with an Aircraft Control Application
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Adaptive Fault Compensation and Disturbance Suppression Design for Nonlinear Systems with an Aircraft Control Application

机译:具有飞机控制应用的非线性系统的自适应故障补偿和扰动抑制设计

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摘要

A comprehensive adaptive compensation control strategy based on feedback linearization design is proposed for multivariable nonlinear systems with uncertain actuator fault and unknown mismatched disturbances. Firstly, the linear dynamic system is obtained through nonlinear feedback linearization, and the dynamic model of the mismatched disturbances as well as its relevance to the nonlinear system is given. The effect of disturbances on the system output is suppressed with the basic controller of the linearized system. Then, a direct adaptive controller is developed for the multiple uncertain actuator faults. Finally, an integrated algorithm based on adaptive weighted fusion could provide an effective compensation for the effect of multiple uncertain faults and mismatched disturbances. Thus, the stability and asymptotic tracking performance of the closed-loop system are ensured. The feasibility and performance of the proposed control strategy are validated by the numerical simulation results.
机译:提出了一种基于反馈线性化设计的全面的自适应补偿控制策略,用于具有不确定的执行器故障的多变量非线性系统和未知的不匹配干扰。首先,通过非线性反馈线性化获得线性动态系统,并给出了不匹配干扰的动态模型以及与非线性系统的相关性。用线性化系统的基本控制器抑制了系统输出对系统输出的影响。然后,为多个不确定的执行器故障开发直接自适应控制器。最后,基于自适应加权融合的集成算法可以提供多种不确定故障和错配干扰的效果的有效补偿。因此,确保了闭环系统的稳定性和渐近跟踪性能。通过数值模拟结果验证了所提出的控制策略的可行性和性能。

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