Home
  • English
  • ÄŒeÅ¡tina
  • Deutsch
  • Español
  • Français
  • Gàidhlig
  • LatvieÅ¡u
  • Magyar
  • Nederlands
  • Português
  • Português do Brasil
  • Suomi
  • Log In
    New user? Click here to register. Have you forgotten your password?
Home
  • Browse Our Collections
  • Publications
  • Researchers
  • Research Data
  • Institutions
  • Statistics
    • English
    • ÄŒeÅ¡tina
    • Deutsch
    • Español
    • Français
    • Gàidhlig
    • LatvieÅ¡u
    • Magyar
    • Nederlands
    • Português
    • Português do Brasil
    • Suomi
    • Log In
      New user? Click here to register. Have you forgotten your password?
  1. Home
  2. Resources
  3. Journals
  4. Applied Mathematics and Computational Intelligence (AMCI)
  5. Particle Swarm Optimization for Directional Overcurrent Relay Coordination with Distributed Generation
 
Options

Particle Swarm Optimization for Directional Overcurrent Relay Coordination with Distributed Generation

Journal
Applied Mathematics and Computational Intelligence (AMCI)
ISSN
2289-1315
Date Issued
2024-02
Author(s)
A. S. M. Adnan
Universiti Malaysia Perlis
Muhamad Hatta Hussain
Universiti Malaysia Perlis
Siti Rafidah Abdul Rahim
Universiti Malaysia Perlis
Azralmukmin Azmi
Universiti Malaysia Perlis
Musirin
Universiti Teknologi MARA
J. A. Radziyan
Warna RS Sdn. Bhd.
DOI
https://doi.org/10.58915/amci.v13iNo.1.560
Handle (URI)
https://ejournal.unimap.edu.my/index.php/amci/article/view/560/354
https://hdl.handle.net/20.500.14170/15117
Abstract
The Directional Overcurrent Relays (DOCRs) Coordination with Distributed Generation (DG) optimization problem is addressed in this study using the optimization method Particle Swarm Optimization (PSO). Changes in fault current, bus voltages, power flow, and reliability may result from DG integration. Thus, it might have an impact on the current protection coordination system. The formulation is built on a Mixed Integer Non-Linear Programming (MINLP) problem to address this DOCR issue. MATLAB was used to validate the technique on the IEEE-14 bus system, and Electrical Test Transient Analyzer Programming (ETAP) version 2021 software was used to model the test system. According to the simulation results, the suggested PSO with DG for Case 2 has reduced power loss by 6.24% and relay operating time by 46.79% when compared to PSO without the presence of DG.
Subjects
  • Particle swarm optimi...

  • Directional overcurre...

  • Distribution grid

File(s)
16-25+Particle+Swarm+Optimization+for+Directional+Overcurrent+Relay+Coordination+with+Distributed+Generation-30th+January+2024.pdf (374.08 KB)
Downloads
7
Acquisition Date
Mar 5, 2026
View Details
Views
1
Acquisition Date
Mar 5, 2026
View Details
google-scholar
  • About Us
  • Contact Us
  • Policies