A Novel Droop Control for Enhanced Performance of Grid-Forming Distributed Energy Resources
Author | Harasis, Salman |
Author | Khan, Irfan |
Author | Massoud, Ahmad |
Available date | 2024-10-17T07:05:34Z |
Publication Date | 2024-01-01 |
Publication Name | 4th International Conference on Smart Grid and Renewable Energy, SGRE 2024 - Proceedings |
Identifier | http://dx.doi.org/10.1109/SGRE59715.2024.10428956 |
Citation | Harasis, S., Khan, I., & Massoud, A. (2024, January). A Novel Droop Control For Enhanced Performance of Grid-Forming Distributed Energy Resources. In 2024 4th International Conference on Smart Grid and Renewable Energy (SGRE) (pp. 1-6). IEEE. |
ISBN | [9798350306262] |
Abstract | The growing demand for reliable distributed generation (DG) systems promoted multiple advancements in grid-forming (GFM) control strategies applied to distributed energy resources (DERs). This paper proposes a novel 'logistic function-based droop control', designed to improve the performance of GFM DERs. By utilizing the distinctive features of the logistic function that include an S-shaped curve, flexibility, and gradual ramp-down, the proposed control is designed to enable the flexible and reliable operation of DERs integrated into a microgrid. This control utilizes the inherent benefits of logistic functions to address the challenges associated with conventional droop control with minimal control complexity, particularly, during transient conditions and sudden load changes. Through comprehensive analysis and simulations, the efficacy of the proposed 'Logistic function-based droop control' is demonstrated in comparison to the traditional droop control. The results show the effectiveness of the proposed droop in substantially enhancing the operation of GFM DERs. |
Sponsor | This work was supported by Qatar University under the Post-Doc Initiative Program -Cycle 1 (Grant Number: POSTDOC-CENG-2022-554). The findings achieved herein are solely the responsibility of the authors. |
Language | en |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Subject | Droop frequency stability GFM grid forming inverter logistic function microgrid nonlinear |
Type | Conference Paper |
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Electrical Engineering [2649 items ]