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首页> 外文期刊>International journal of systems science >Disturbance attenuation in observer design for linear systems - a new parametric approach
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Disturbance attenuation in observer design for linear systems - a new parametric approach

机译:线性系统观察者设计中的扰动衰减 - 一种新的参数方法

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摘要

In this paper, a new parametric approach is developed for disturbance attenuation in observer design of linear time-invariant systems. First, based on the general solution to a type of generalised Sylvester equations, a complete parametric form of the observer gain matrix is established. Secondly, a new disturbance attenuation index is introduced, and the parameters are further optimised to minimise the index. Under certain conditions, the optimal solution of this optimisation problem is obtained. Finally, the proposed method is used to design the robust observer for the yaw/roll channel attitude control system of a nonrotating missile. It is verified from the simulation results that the proposed method shows a stronger tolerance to disturbances compared with the traditional robust pole assignment method.
机译:本文开发了一种新的参数方法,用于线性时间不变系统观察者设计中的干扰衰减。 首先,基于通用Sylvester方程类型的一般解决方案,建立了观察者增益矩阵的完整参数形式。 其次,介绍了一种新的扰动衰减指数,并且进一步优化了参数以最小化索引。 在某些条件下,获得了该优化问题的最佳解决方案。 最后,所提出的方法用于设计非调节导弹的偏航/滚动通道姿态控制系统的鲁棒观察者。 与传统的鲁棒杆分配方法相比,从模拟结果验证了所提出的方法对扰动的耐受性更强。

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