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Unknown input observer design for one-sided Lipschitz nonlinear systems

delete2014-10-26
delete119
PRE
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张巍 (Wei Zhang)
H
Housheng Su *
F
Fanglai Zhu
G
Ghassan Azar
DOI:10.1007/s11071-014-1754-xdelete
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Abstract

Abstract

En 中文
This paper considers the observer design problem for one-sided Lipschitz nonlinear systems with unknown inputs. The systems under consideration are a larger class of nonlinearities than the well-studied Lipschitz systems and have inherent advantages with respect to conservativeness. For such systems, we first propose a full-order nonlinear unknown input observer (UIO) by using the linear matrix inequality (LMI) approach. Following a similar design procedure and using state transformation, the reduced-order nonlinear UIO is also constructed. Sufficient conditions to guarantee existence of full-order and reduced-order UIOs are established by carefully considering the one-sided Lipschitz condition together with the quadratic inner-bounded condition. Based on the matrix generalized inverse technique, the UIO conditions are formulated in terms of LMIs. Moreover, the proposed observers are applied to a single-link flexible joint robotic system with unknown inputs. Simulation results are finally given to illustrate the effectiveness of the proposed design.
Keywords:
Unknown input observer
One-sided Lipschitz nonlinear systems
Full-order observers
Reduced-order observers
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Journal

Nonlinear Dynamics cover
Nonlinear Dynamics
IF:
6
Papers:
1.4W
Citations:
4.1W

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Lawrence Technological University cover
Lawrence Technological University
Scholars:
203
Papers: 170
Citations: 171
S
Shanghai University of Engineering Science
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T
tongji university
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Papers: 5.9W
Citations: 98
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