Automated Settings of Overcurrent Relays Considering Transformer Phase Shift and Distributed Generators Using Gorilla Troops Optimizer
The relative protective devices are cascaded in a proper sequence with a proper min/max coordination time margin (CTM) to minimize the outage area of the network in case of fault condition. This manuscript addresses a new methodology based on the gorilla troops optimizer (GTO) to produce the best au...
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| Published in | Mathematics (Basel) Vol. 11; no. 3; p. 774 |
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| Main Authors | , , |
| Format | Journal Article |
| Language | English |
| Published |
Basel
MDPI AG
01.02.2023
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| Subjects | |
| Online Access | Get full text |
| ISSN | 2227-7390 2227-7390 |
| DOI | 10.3390/math11030774 |
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| Abstract | The relative protective devices are cascaded in a proper sequence with a proper min/max coordination time margin (CTM) to minimize the outage area of the network in case of fault condition. This manuscript addresses a new methodology based on the gorilla troops optimizer (GTO) to produce the best automated settings for overcurrent relays. In the GTO, the exploration and exploitation phases are realized using five methodologies. Three of them are used in the exploration phase and the other two in the exploitation phase. In the exploration phase, all gorillas are considered as candidate solutions and the best one is considered as the silverback gorilla. Then again, the exploitation phase comprises two steps: (i) the first one is the follow of silverback gorilla, and (ii) the second one is the competition for adult females. The latter mentioned offers an added advantage to the GTO framework to move forward steadily to global minima and to avoid trapping into local minima. Two test cases under numerous scenarios are demonstrated comprising an isolated real distribution network with distributed generations for the Agiba Petroleum company which is in the Western Desert of Egypt. The relay coordination problem is adapted as an optimization problem subject to a set of predefined constraints which is solved using the GTO including fixed and varied inverse IEC curves, in which the practical constraints including transformer phase shift and other scenarios for min/max fault conditions are dealt with. In due course, this current effort aims at proving the best strategy for achieving the smoothest coordination of overcurrent relays (OCRs), with the least obtained value of CTMs for the studied cases being established via the automated relay settings. At last, it can be pointed out that the GTO successfully dealt with this problem and was able to produce competitive answers compared to other competitors. |
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| AbstractList | The relative protective devices are cascaded in a proper sequence with a proper min/max coordination time margin (CTM) to minimize the outage area of the network in case of fault condition. This manuscript addresses a new methodology based on the gorilla troops optimizer (GTO) to produce the best automated settings for overcurrent relays. In the GTO, the exploration and exploitation phases are realized using five methodologies. Three of them are used in the exploration phase and the other two in the exploitation phase. In the exploration phase, all gorillas are considered as candidate solutions and the best one is considered as the silverback gorilla. Then again, the exploitation phase comprises two steps: (i) the first one is the follow of silverback gorilla, and (ii) the second one is the competition for adult females. The latter mentioned offers an added advantage to the GTO framework to move forward steadily to global minima and to avoid trapping into local minima. Two test cases under numerous scenarios are demonstrated comprising an isolated real distribution network with distributed generations for the Agiba Petroleum company which is in the Western Desert of Egypt. The relay coordination problem is adapted as an optimization problem subject to a set of predefined constraints which is solved using the GTO including fixed and varied inverse IEC curves, in which the practical constraints including transformer phase shift and other scenarios for min/max fault conditions are dealt with. In due course, this current effort aims at proving the best strategy for achieving the smoothest coordination of overcurrent relays (OCRs), with the least obtained value of CTMs for the studied cases being established via the automated relay settings. At last, it can be pointed out that the GTO successfully dealt with this problem and was able to produce competitive answers compared to other competitors. |
| Audience | Academic |
| Author | Elkholy, Mahmoud M. El-Fergany, Attia A. Draz, Abdelmonem |
| Author_xml | – sequence: 1 givenname: Abdelmonem orcidid: 0000-0002-3483-5685 surname: Draz fullname: Draz, Abdelmonem – sequence: 2 givenname: Mahmoud M. surname: Elkholy fullname: Elkholy, Mahmoud M. – sequence: 3 givenname: Attia A. surname: El-Fergany fullname: El-Fergany, Attia A. |
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| CitedBy_id | crossref_primary_10_1007_s10462_024_10838_8 crossref_primary_10_1007_s10462_023_10696_w crossref_primary_10_3934_energy_2024056 crossref_primary_10_1007_s11831_023_10007_0 crossref_primary_10_1038_s41598_024_57098_8 crossref_primary_10_1109_ACCESS_2024_3511698 crossref_primary_10_1016_j_ijepes_2024_109802 crossref_primary_10_1016_j_prime_2023_100248 crossref_primary_10_3390_su15097279 |
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| SubjectTerms | Automation Coordination Distributed generation Distributed generation (Electric power) Exploitation gorilla troops algorithm Linear programming Mathematical models Methods Minima Nominations optimal overcurrent relay coordination Optimization Optimization algorithms optimization methods Overcurrent Phase shift Relay smooth coordination transformer phase shift Transformers Variables |
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| Title | Automated Settings of Overcurrent Relays Considering Transformer Phase Shift and Distributed Generators Using Gorilla Troops Optimizer |
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