LAPSE:2023.27356
Published Article

LAPSE:2023.27356
An Improved Inverse-Time Over-Current Protection Method for a Microgrid with Optimized Acceleration and Coordination
April 4, 2023
Abstract
This paper presents an improved inverse-time over-current protection method based on the compound fault acceleration factor and the beetle antennae search (BAS) optimization method for a microgrid. The proposed method can not only significantly increase the operation speed of the inverse-time over-current protection but also improve the protection coordination by considering the possible influential factors in terms of microgrid operation modes, distributed generation (DG) integration status, fault types, and positions, which are marked as the most challenging problems for over-current protection of a microgrid. In this paper, a new Time Dial Setting (TDS) of inverse-time protection is developed by applying a compound fault acceleration factor, which can notably accelerate the speed of protection by using low-voltage and short-circuit impedance during the fault. In order to improve the protection coordination, the BAS algorithm is then used to optimize the protection parameters of the pick-up current, TDS, and the inverse time curve shape coefficient. Finally, case studies and various evaluations based on DIgSILENT/Power Factory are carried out to illustrate the effectiveness of the proposed method.
This paper presents an improved inverse-time over-current protection method based on the compound fault acceleration factor and the beetle antennae search (BAS) optimization method for a microgrid. The proposed method can not only significantly increase the operation speed of the inverse-time over-current protection but also improve the protection coordination by considering the possible influential factors in terms of microgrid operation modes, distributed generation (DG) integration status, fault types, and positions, which are marked as the most challenging problems for over-current protection of a microgrid. In this paper, a new Time Dial Setting (TDS) of inverse-time protection is developed by applying a compound fault acceleration factor, which can notably accelerate the speed of protection by using low-voltage and short-circuit impedance during the fault. In order to improve the protection coordination, the BAS algorithm is then used to optimize the protection parameters of the pick-up current, TDS, and the inverse time curve shape coefficient. Finally, case studies and various evaluations based on DIgSILENT/Power Factory are carried out to illustrate the effectiveness of the proposed method.
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Keywords
coordination optimization, distributed generation, inverse-time over-current protection, microgrid
Subject
Suggested Citation
Ji L, Cao Z, Hong Q, Chang X, Fu Y, Shi J, Mi Y, Li Z. An Improved Inverse-Time Over-Current Protection Method for a Microgrid with Optimized Acceleration and Coordination. (2023). LAPSE:2023.27356
Author Affiliations
Ji L: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Cao Z: State Grid Fengyang County Power Supply Company, Fengyang 233100, China
Hong Q: Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1RD, UK
Chang X: State Grid Shanxi Electric Power Research Institute, Shanxi 030001, China
Fu Y: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Shi J: State Grid Shanghai Qingpu Power Supply Company, Shanghai 200090, China
Mi Y: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Li Z: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Cao Z: State Grid Fengyang County Power Supply Company, Fengyang 233100, China
Hong Q: Department of Electronic and Electrical Engineering, University of Strathclyde, Glasgow G1 1RD, UK
Chang X: State Grid Shanxi Electric Power Research Institute, Shanxi 030001, China
Fu Y: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Shi J: State Grid Shanghai Qingpu Power Supply Company, Shanghai 200090, China
Mi Y: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Li Z: School of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China
Journal Name
Energies
Volume
13
Issue
21
Article Number
E5726
Year
2020
Publication Date
2020-11-02
ISSN
1996-1073
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PII: en13215726, Publication Type: Journal Article
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LAPSE:2023.27356
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