首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >A HAMILTONIAN APPROACH TO FAULT ISOLATION IN A PLANAR VERTICAL TAKE-OFF AND LANDING AIRCRAFT MODEL
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A HAMILTONIAN APPROACH TO FAULT ISOLATION IN A PLANAR VERTICAL TAKE-OFF AND LANDING AIRCRAFT MODEL

机译:平面垂直起降飞机模型中故障隔离的哈密顿方法

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摘要

The problem of fault detection and isolation in a class of nonlinear systems having a Hamiltonian representation is considered. In particular, a model of a planar vertical take-off and landing aircraft with sensor and actuator faults is studied. A Hamiltonian representation is derived from an Euler-Lagrange representation of the system model considered. In this form, nonlinear decoupling is applied in order to obtain subsystems with (as much as possible) specific fault sensitivity properties. The resulting decoupled subsystem is represented as a Hamiltonian system and observer-based residual generators are designed. The results are presented through simulations to show the effectiveness of the proposed approach.
机译:考虑了具有哈密顿表示的一类非线性系统中的故障检测和隔离问题。特别地,研究了具有传感器和致动器故障的平面垂直起降飞机的模型。哈密​​顿表示是从所考虑的系统模型的欧拉-拉格朗日表示中得出的。以这种形式,应用非线性去耦以获得具有(尽可能)特定故障敏感性属性的子系统。最终的解耦子系统表示为哈密顿系统,并设计了基于观测器的残差生成器。仿真结果表明了该方法的有效性。

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