Sliding Mode Controller in a Multiloop Framework for a Grid-Connected VSI With LCL Filter

This paper proposes a multiloop framework for current control of grid-connected voltage source inverters (VSIs) with LCL output filter. The discrete-time model is of third-order with a nonminimum phase zero when controlling the grid side current. This poses some difficulties on the design of most ty...

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Veröffentlicht in:IEEE transactions on industrial electronics (1982) 2018-06, Vol.65 (6), p.4714-4723
Hauptverfasser: Vieira, Rodrigo Padilha, Martins, Leandro Tome, Massing, Jorge Rodrigo, Stefanello, Marcio
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Sprache:eng
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Zusammenfassung:This paper proposes a multiloop framework for current control of grid-connected voltage source inverters (VSIs) with LCL output filter. The discrete-time model is of third-order with a nonminimum phase zero when controlling the grid side current. This poses some difficulties on the design of most types of controllers. Motivated by this problem, the inner loop is implemented by a discrete-time sliding mode control law to ensure the tracking of the converter side current. This can be achieved regardless the grid impedance and voltage, making the converter to behave like a current source inverter with a capacitive+inductive ( CL ) filter. Thus, the problem of current control falls from a third-order system to a second-order system. Several types of controllers can be designed to implement the outer loop based on the equivalent CL circuit. In this work, a resonant controller with a virtual resistor was applied. Simulations and experimental results are presented to validate the proposal.
ISSN:0278-0046
1557-9948
DOI:10.1109/TIE.2017.2772143