Power synchronization mechanism is coupled with the dc-link, since both synchronization and dc-link dynamics depend on the active power. The active power filter used in the frequency droop is correlated with inertia emulation, which affects the dc-link voltage. Furthermore, the coupling between active and reactive power in the low-voltage grid suggests a possible interaction between dc-link and reactive power control. The strong coupling between all the control loops and the dc-link in power synchronization-based converters represents a challenge both for the stability and for the controller tuning. This paper addresses the tuning of power synchronization-based converter with consideration of all the control loops interactions. A complete converter state-space model is derived, and a step-by-step tuning procedure based on eigenvalue analysis is proposed. Experimental results are provided to demonstrate the method.

Design Oriented Analysis of Control Loops Interaction in Power Synchronization-based Voltage Source Converter / Cecati, F.; Liserre, M.; Liao, Y.; Wang, X.; Blaabjerg, F.. - (2021), pp. 3282-3288. ( 13th IEEE Energy Conversion Congress and Exposition, ECCE 2021 Vancouver, Canada 10-14 Oct. 2021) [10.1109/ECCE47101.2021.9595531].

Design Oriented Analysis of Control Loops Interaction in Power Synchronization-based Voltage Source Converter

Cecati F.
Primo
;
2021-01-01

Abstract

Power synchronization mechanism is coupled with the dc-link, since both synchronization and dc-link dynamics depend on the active power. The active power filter used in the frequency droop is correlated with inertia emulation, which affects the dc-link voltage. Furthermore, the coupling between active and reactive power in the low-voltage grid suggests a possible interaction between dc-link and reactive power control. The strong coupling between all the control loops and the dc-link in power synchronization-based converters represents a challenge both for the stability and for the controller tuning. This paper addresses the tuning of power synchronization-based converter with consideration of all the control loops interactions. A complete converter state-space model is derived, and a step-by-step tuning procedure based on eigenvalue analysis is proposed. Experimental results are provided to demonstrate the method.
2021
2021 IEEE Energy Conversion Congress and Exposition (ECCE)
New York, USA
Institute of Electrical and Electronics Engineers Inc.
9781728151359
Cecati, F.; Liserre, M.; Liao, Y.; Wang, X.; Blaabjerg, F.
Design Oriented Analysis of Control Loops Interaction in Power Synchronization-based Voltage Source Converter / Cecati, F.; Liserre, M.; Liao, Y.; Wang, X.; Blaabjerg, F.. - (2021), pp. 3282-3288. ( 13th IEEE Energy Conversion Congress and Exposition, ECCE 2021 Vancouver, Canada 10-14 Oct. 2021) [10.1109/ECCE47101.2021.9595531].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/463732
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