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Reduced Order Observer for Linear Time-Invariant Multivariable Systems with Unknown Inputs

机译:输入未知的线性时不变多变量系统的降阶观测器

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This paper presents the design of a new reduced order observer to estimate the state for a class of linear time-invariant multivariable systems with unknown inputs. The proposed design approach is a combination of the approaches proposed by Hou and Muller (IEEE Trans. Autom. Control 37:871-875, 1992) and Boubaker (Int. J. Autom. Control Syst. Eng. 5:45-51, 2005); matrix decompositions, state transformations, and substitutions based on coordinate changes are used. It is shown that the problem of reduced order observers for linear systems with unknown inputs can be reduced to a standard one (the unknown input vector will not interfere in the observer equations). The effectiveness of the suggested design algorithm is illustrated by a numerical example (aircraft lateral motion), and, for the same aircraft dynamics, we compare our new observer with other already existing observers from the existence conditions and dynamic characteristics point of view; the superiority of the new designed observer is demonstrated.
机译:本文提出了一种新的降阶观测器的设计,以估计一类带有未知输入的线性时不变多变量系统的状态。提出的设计方法是Hou和Muller(IEEE Trans.Autom.Control 37:871-875,1992)和Boubaker(Int.J. Autom。Control Syst.Eng.5:45-51, 2005);使用矩阵分解,状态转换和基于坐标更改的替换。结果表明,具有未知输入的线性系统的降阶观测器问题可以简化为标准的(未知输入向量不会干扰观测器方程)。数值示例(飞机横向运动)说明了建议的设计算法的有效性,对于相同的飞机动力学,我们从存在条件和动态特性的角度将新观察者与其他已经存在的观察者进行比较;展示了新设计的观察者的优越性。

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