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.| File | Dimensione | Formato | |
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Design_Oriented_Analysis_of_Control_Loops_Interaction_in_Power_Synchronization-based_Voltage_Source_Converter (1).pdf
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