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Fast Adaptive Robust Differentiator Based Robust-Adaptive Control of Grid-Tied Inverters with a New L Filter Design Method

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URI: http://hdl.handle.net/10498/22756

DOI: 10.3390/en13020360

ISSN: 1996-1073

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Author/s
Kamal, Tariq; Karabacak, Murat; Kilic, Fuat; Blaabjerg, Frede; Fernández Ramírez, Luis Miguel
Date
2020-01
Department
Ingeniería Eléctrica
Source
Energies 2020, 13(2), 360
Abstract
In this research, a new nonlinear and adaptive state feedback controller with a fast-adaptive robust differentiator is presented for grid-tied inverters. All parameters and external disturbances are taken as uncertain in the design of the proposed controller without the disadvantages of singularity and over-parameterization. A robust differentiator based on the second order sliding mode is also developed with a fast-adaptive structure to be able to consider the time derivative of the virtual control input. Unlike the conventional backstepping, the proposed differentiator overcomes the problem of explosion of complexity. In the closed-loop control system, the three phase source currents and direct current (DC) bus voltage are assumed to be available for feedback. Using the Lyapunov stability theory, it is proven that the overall control system has the global asymptotic stability. In addition, a new simple L filter design method based on the total harmonic distortion approach is also proposed. Simulations and experimental results show that the proposed controller assurances drive the tracking errors to zero with better performance, and it is robust against all uncertainties. Moreover, the proposed L filter design method matches the total harmonic distortion (THD) aim in the design with the experimental result.
Subjects
grid-tied inverter; adaptive control; robust di erentiator; L filter design; adaptive second order sliding mode
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  • Artículos Científicos [3034]
  • Articulos Científicos Ing. Elec. [7]
Atribución 4.0 Internacional
This work is under a Creative Commons License Atribución 4.0 Internacional

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