2019 IEEE PES Innovative Smart Grid Technologies Conference - Latin America (ISGT Latin America) 2019
DOI: 10.1109/isgt-la.2019.8895390
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Multiloop Current Control Strategy for a Grid-connected VSI with LCL Filter Using Backstepping and Proportional+Resonant Controller

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Cited by 4 publications
(2 citation statements)
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“…Subsequently, for each subsystem, using a control Lyapunov function that employs the states of the system as virtual inputs for the subsystems, it is possible to obtain the original control law for global stability and regulation. Recently, the backstepping technique has been applied also in the contest of SG control and stability to cope with non-linearity and uncertainties in the SG model [51][52][53]. However, when the order of the system increases, the number of states grows as well.…”
Section: M(s) = C(s) I + P(s) C(s)mentioning
confidence: 99%
“…Subsequently, for each subsystem, using a control Lyapunov function that employs the states of the system as virtual inputs for the subsystems, it is possible to obtain the original control law for global stability and regulation. Recently, the backstepping technique has been applied also in the contest of SG control and stability to cope with non-linearity and uncertainties in the SG model [51][52][53]. However, when the order of the system increases, the number of states grows as well.…”
Section: M(s) = C(s) I + P(s) C(s)mentioning
confidence: 99%
“…Since the fundamental PR controller acts on a very narrow band around its resonant frequency ω, the implementation of harmonic compensator for low-order harmonics is possible without affecting the PR controller behavior and dynamics [51,52]. In addition, single frequency compensation, selective harmonic compensation is proposed by cascading several resonant blocks tuned to resonate at the desired low-order harmonic frequencies to be compensated.…”
Section: Inner Grid Current Control Loopmentioning
confidence: 99%