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A Continuous-Discrete Finite Memory Observer Design for a Class of Nonlinear Systems: Application to Fault Diagnosis

机译:一类非线性系统的连续分离子有限内存观测器设计:用于故障诊断的应用

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This paper aims to develop a continuous-discrete finite memory observer (CD-FMO) for a class of nonlinear dynamical systems modeled by ordinary differential equations (ODEs) with discrete measurements. The nonlinear systems under consideration are at least locally Lipschitz, which guarantees the existence and uniqueness of solution at each time instant. The proposed nonlinear observer uses a finite number of collected measurements to estimate the system state in the presence of measurement noise. Besides, a one-step prediction algorithm incorporated with an iterative-update scheme is performed to solve the integral problem caused by system nonlinearity, and an analysis of the numerical integration approximation error is given. The properties of estimation performance have been further proved in deterministic case and been analyzed by Monte Carlo simulation in stochastic cases. It is worth noting that the presented method has a finite-time convergence, while most nonlinear observers are usually asymptotically convergent. Another advantage of CD-FMO is that it has no initial value problem. For the application purpose, residuals are generated to implement fault detection cooperated with Cumulative Sum (CUSUM) control charts, while a bank of CD-FMOs is adopted to realize fault isolation for different sensor and actuator faults of the considered nonlinear robotic arm. The robustness and effectiveness of the proposed approach are illustrated via the simulation results.
机译:本文旨在开发一种用于一类由常微分方程(ODES)建模的一类非线性动力系统的连续分立的有限内存观测器(CD-FMO),具有离散测量。所考虑的非线性系统至少是局部Lipschitz,可确保在每次瞬间溶液的存在和唯一性。所提出的非线性观察者使用有限次数的收集测量来估计在存在测量噪声的情况下的系统状态。此外,执行包含与迭代更新方案的一步预测算法以解决由系统非线性引起的积分问题,并且给出了对数值积分近似误差的分析。在确定性案例中进一步证明了估计性能的性质,并在随机病例中进行了蒙特卡罗模拟分析。值得注意的是,所提出的方法具有有限时间的收敛,而大多数非线性观察者通常是渐近的收敛。 CD-FMO的另一个优点是它没有初始值问题。对于应用目的,生成残差以实现与累积和控制图协作的故障检测,而采用了一组CD-FMOS来实现所考虑的非线性机器人臂的不同传感器和执行器故障的故障隔离。通过模拟结果说明所提出的方法的鲁棒性和有效性。

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