Enhancing Power System Efficiency and Reliability ThroughComprehensive Load Flow Analysis

Authors

  • Engr. Innocent Enya Echeng Department of Electrical and Electronic Engineering, federal polytechnic Ugep, Cross River State Nigeria. Author
  • Engr. Prof. E. J . Akpama. Department, Electrical and Electronic Engineering University of Cross River State Author
  • Obani Ethelbert Akachukwu Department of Mechanical engineering, federal polytechnic Ugep Cross River State Author
  • Engr. Mede Emmanuel Iorkyaa Department of Electrical and Electronic Engineering, University of Cross River State Author
  • Evong Sunday Murdock Department of Mechanical engineering federal polytechnic Ugep Cross River State Author

Keywords:

Power Losses, Load Flow Analysis, Real and Reactive Power, Efficiency, Reliability

Abstract

This research presents a comprehensive load flow analysis of a power system to evaluate its electrical performance, efficiency, and reliability under operating conditions. The analysis focuses on determining real and reactive power flow, identifying system losses, and addressing challenges such as voltage instability and poor power quality. Electrical Transient Analyzer Program (ETAP) software was used to model and simulate the system using a single line diagram (SLD), with real operational data obtained from Port Harcourt Electrical Distribution Station and the Transmission Company of Nigeria, Niger Mill Station, Calabar. The research investigates critical issues affecting the network, including frequent power outages due to high transmission losses, under-voltage and over-voltage conditions, inactive buses, overloaded transformers, poor power factor, inadequate conductor sizing, and poor earthing practices. The system recorded a total load demand of 240.82 MW and 79.42 Mvar, while generators supplied 258.74 MW and 200.59 Mvar, indicating improved diversity under normal loading conditions. Initial analysis revealed significant power losses of 17.88 MW and 121.17 Mvar. Using the Fast Decoupled Newton-Raphson method in ETAP, corrective measures were applied by injecting 20 MW of real power into affected feeders. This resulted in a reduction of losses to 11.75 MW and 76.17 Mvar, achieving a 25.6% decrease in real power losses. Additionally, voltage profiles across buses were normalized, improving overall system stability. The study demonstrates the effectiveness of load flow analysis in optimizing power system performance and guiding future network expansion.

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Author Biographies

  • Engr. Innocent Enya Echeng, Department of Electrical and Electronic Engineering, federal polytechnic Ugep, Cross River State Nigeria.

    Engr. Prof. E. J. Akpama is affiliated with the University of Cross River State (UNICROSS), not the Federal Polytechnic, Ugep. Kindly correct his institutional affiliation accordingly.

  • Engr. Prof. E. J . Akpama., Department, Electrical and Electronic Engineering University of Cross River State

    Engr. Prof. Eko, James Akpama, is a senior lecturer in the Department of Electrical and Electronic Engineering, University of Cross River State 

  • Obani Ethelbert Akachukwu, Department of Mechanical engineering, federal polytechnic Ugep Cross River State

    Obani Ethelbert Akachukwu is a lecturer in the department of Mechanical Engineering, Federal Polytechnic Ugep Cross River State Nigeria

  • Engr. Mede Emmanuel Iorkyaa, Department of Electrical and Electronic Engineering, University of Cross River State

    Engr. Mede Emmanuel Iorkyaa is a senior engineer working with the Nigeria Export Free Trade Zone and a part-time lecturer at the University of Cross River State 

  • Evong Sunday Murdock, Department of Mechanical engineering federal polytechnic Ugep Cross River State

    Engr. Evong Sunday Modock is a lecturer in the Department of Mechanical Engineering, Federal Polytechnic Ugep, Cross River State, Nigeria 

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Published

2026-08-24

How to Cite

Enhancing Power System Efficiency and Reliability ThroughComprehensive Load Flow Analysis. (2026). Journal of Advanced Multidisciplinary Studies (JAMS), 1(1), Page 446-464. https://jamsjournal.org/JAMS/article/view/73

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