LAPSE:2023.9451v1
Published Article

LAPSE:2023.9451v1
A Fast Power Calculation Algorithm for Three-Phase Droop-Controlled-Inverters Using Combined SOGI Filters and Considering Nonlinear Loads
February 27, 2023
Abstract
The power calculation is an indispensable element in droop-controlled inverters because the bandwidth of the measured power has a direct impact on the controller performance. This paper proposes a fast and accurate power calculation algorithm based on the combined Second Order Generalized Integrator (SOGI) filters in stationary coordinates for a three-phase system, which takes into consideration the use of nonlinear loads. The power calculation scheme is formed by the two-stage SOGI filters that are employed for obtaining the active and reactive powers required to perform a droop-based inverter operation, respectively. From the two-stage structure, the first SOGI is used as a band-pass filter (BPF) for filtering harmonics and obtaining the fundamental current of the nonlinear load; The second SOGI is used as a low-pass filter (LPF) for extracting the DC-component, which corresponds with the average power. A small-signal model of a two droop-controlled inverters system is built to obtain the dynamical response and stability margin of the system. And compared it with the dynamical behaviour of a standard droop-control method. Next, the proposed power calculation system is designed in order to achieve the same ripple amplitude voltage as that obtained with the standard droop-control method by adjusting the bandwidth gains. Through simulation and hardware in the loop (HIL) validation, the proposed approach presents a faster and more accurate performance when sharing nonlinear loads, and also drives the inverters’ output voltage with lower distortion.
The power calculation is an indispensable element in droop-controlled inverters because the bandwidth of the measured power has a direct impact on the controller performance. This paper proposes a fast and accurate power calculation algorithm based on the combined Second Order Generalized Integrator (SOGI) filters in stationary coordinates for a three-phase system, which takes into consideration the use of nonlinear loads. The power calculation scheme is formed by the two-stage SOGI filters that are employed for obtaining the active and reactive powers required to perform a droop-based inverter operation, respectively. From the two-stage structure, the first SOGI is used as a band-pass filter (BPF) for filtering harmonics and obtaining the fundamental current of the nonlinear load; The second SOGI is used as a low-pass filter (LPF) for extracting the DC-component, which corresponds with the average power. A small-signal model of a two droop-controlled inverters system is built to obtain the dynamical response and stability margin of the system. And compared it with the dynamical behaviour of a standard droop-control method. Next, the proposed power calculation system is designed in order to achieve the same ripple amplitude voltage as that obtained with the standard droop-control method by adjusting the bandwidth gains. Through simulation and hardware in the loop (HIL) validation, the proposed approach presents a faster and more accurate performance when sharing nonlinear loads, and also drives the inverters’ output voltage with lower distortion.
Record ID
Keywords
averaged power calculation, droop-control, nonlinear loads, small-signal model, SOGI filter, three-phase paralleled inverters
Subject
Suggested Citation
Li M, Matas J, Mariachet JE, Branco CGC, Guerrero JM. A Fast Power Calculation Algorithm for Three-Phase Droop-Controlled-Inverters Using Combined SOGI Filters and Considering Nonlinear Loads. (2023). LAPSE:2023.9451v1
Author Affiliations
Li M: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Matas J: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Mariachet JE: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Branco CGC: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Guerrero JM: Energy Teknik Department, Aalborg University (ET-AAU), 9220 Aalborg, Denmark [ORCID]
Matas J: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Mariachet JE: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Branco CGC: Electric Engineering Department, Politechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, Spain [ORCID]
Guerrero JM: Energy Teknik Department, Aalborg University (ET-AAU), 9220 Aalborg, Denmark [ORCID]
Journal Name
Energies
Volume
15
Issue
19
First Page
7360
Year
2022
Publication Date
2022-10-07
ISSN
1996-1073
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Original Submission
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PII: en15197360, Publication Type: Journal Article
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LAPSE:2023.9451v1
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Feb 27, 2023
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