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Fast adaptive fault estimation for linear system with actuator effectiveness loss and unmatched unknown inputs

机译:具有执行器效率损失和未知输入不匹配的线性系统的快速自适应故障估计

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A fast adaptive fault estimation algorithm is proposed to enhance the performance of fault estimation in linear time invariant system with unmatched unknown input. An algebraic method based on the unknown input observer for perfect decoupling of unknown input and estimation, is implementable if matching condition is satisfied. Matching condition limits the practical application of these methods. In this article the method offered for fault estimation doesn't need matching condition. Unlike conventional methods studied in the litreture, this method doesn't require auxiliary output for fault estimation inpresence of unmatched unknown input. In the first step, the unknown input is divided into two parts: matched and unmatched unknown inputs. With an assumption that there exists a dynamic model for unmatched part, the new augmented system is constructed. for state estimation of augmented system, ordinary unknown input observer strategy employed. The observer can estimate all states of the system without being affected by the matched unknown input. Fast adaptive law is employed for fault estimation. Stability condition is derived and explored using LMI criteria. The effectiveness of the proposed method is shown by numerical simulation for a flexible joint example.
机译:提出了一种快速自适应故障估计算法,以提高未知输入不匹配的线性时不变系统的故障估计性能。如果满足匹配条件,则可以实现基于未知输入观察者的代数方法,以实现未知输入和估计的完美解耦。匹配条件限制了这些方法的实际应用。在本文中,为故障估计提供的方法不需要匹配条件。与文艺研究中的传统方法不同,此方法在不匹配未知输入的情况下不需要辅助输出来进行故障估计。第一步,未知输入分为两部分:匹配的和不匹配的未知输入。假设存在不匹配零件的动态模型,则构造新的增强系统。对于增强系统的状态估计,采用了普通的未知输入观察者策略。观察者可以估计系统的所有状态,而不受匹配的未知输入的影响。快速自适应定律用于故障估计。稳定性条件是使用LMI标准得出和探索的。数值仿真表明了所提出方法的有效性。

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