An arbitrary-order differentiator design paradigm with adaptive gains
An arbitrary-order differentiator design paradigm with adaptive gains
复制标题
具有自适应增益的任意阶微分器设计范例
DOI:
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发表时间:
2018
影响因子:
2.1
通讯作者:
S. Spurgeon
中科院分区:
文献类型:
--
作者:
M. Reichhartinger;S. Spurgeon
ABSTRACT Higher order sliding-mode differentiators have received a great deal of attention in the literature. For the case of reconstructing the first derivative, theoretical convergence conditions for the differentiator are available from which differentiator parameters may be selected. For the case of higher order derivatives, some parameter settings have been suggested for differentiators of certain order but there is no tuning algorithm available to determine convergent parameters for differentiators of arbitrary order. Whilst recognising the strong theoretical properties of sliding-mode differentiators, practitioners report difficulties in achieving wide envelope performance from a single set of differentiator parameters. This paper proposes a constructive design paradigm to generate differentiator parameters which is seen to provide a natural framework to facilitate simple online adaptation of the chosen gains. Simulation experiments as well as experimental results are presented to demonstrate the proposed approach.