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An SOS method for the design of continuous and discontinuous differentiators

机译:用于连续和不连续的差异化设计的SOS方法

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Given a (differentiable) signal, it is an important task for many applications to estimate on line its derivatives. Some well-known algorithms to solve this problem include the (continuous) high-gain observers and (discontinuous) Levant's exact differentiators. With exception of the linear high-gain observers, a systematic design of the gains of nonlinear differentiators is, in general, a difficult task and an open research field. In this work, we propose a novel method for the gain-tuning of a family of homogeneous differentiators which estimate the time-derivatives of a signal in finite-time. We show that the stability analysis and the gain-tuning of such differentiators can be done under a unified Lyapunov function framework, and it is converted to a sum of squares problem, that can be solved using LMIs, much in the same spirit of the linear systems.
机译:给定(可分辨率的)信号,对于许多估计线路衍生物来说,这是一个重要任务。 一些众所周知的解决这个问题的算法包括(连续)高增益观察者和(不连续)levant的精确差分。 除了线性高增益观察者之外,一般来说,非线性差分差管的增益的系统设计是一项艰巨的任务和开放的研究领域。 在这项工作中,我们提出了一种新的方法,用于调整一系列均匀差分系列,其估计有限时间中信号的时间衍生物。 我们表明,这种差分仪的稳定性分析和增益调整可以在统一的Lyapunov函数框架下进行,并且它被转换为方格问题的总和,可以使用LMI来解决,与线性的相同精神。 系统。

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