Abstract Design of a state observer to approximate signals by using the concept of fractional variable-order derivative
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Design of a state observer to approximate signals by using the concept of fractional variable-order derivative

机译:使用分数可变阶导数的概念设计近似信号的状态观察者

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Abstract This article proposes a state observer to find a model for a given signal, i.e. to approximate a treated signal. The design of the state observer is based on a dynamical system of equations which is generated from the increasing-order differentiation of a n-th order Fourier series. This dynamical system is set in state space representation by considering that the Fourier series is the first state and the rest of the states are the successive derivatives of the series. The purpose of the state observer is the recursive estimation of the states in order to recover the coefficients from them. This set of coefficients produces the best fit between the dynamical system and the signal. The dynamical system used for the observer conception shall be, together with the estimated coefficients, the model that will describe the signal behavior. The special feature of the proposed observer is the order of the differential equations of the model on which it is based, d α ( t ) ν ( t ) / d t α ( t ) , which can take integer and non-integer values, i.e. α ( t ) ( 0 , 1 ] . Even more important, α ( t ) can be a smooth function such that α ( t ) ( 0 ,
机译:<![cdata [ Abstract 本文提出了一个状态观察者,用于找到给定信号的模型,即近似处理的信号。状态观察者的设计是基于来自A n -th订单傅里叶系列的增加顺序分化产生的等式的动态系统。通过考虑傅里叶系列是第一个状态,并且州的其余部分是该系列的连续衍生产品,该动态系统在状态时表示中设置。国家观察者的目的是各国的递归估计,以便从它们中恢复系数。这组系数产生了动态系统和信号之间的最佳拟合。用于观察者概念的动态系统应与估计的系数一起,该模型将描述信号行为。所提出的观察者的特殊功能是它基于模型的微分方程的顺序, d < MML:MI>α t ν T / D. T α t ,它可以采用整数和非整数值,即 α t 0 1 ] 。更重要的是, α t )< / mml:mo> 可以是一个平滑的函数,使得 α t 0

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