Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Analysis and Mitigation of Voltage Sag on Nigerian 330kv Power System Using PSO-Optimized STATCOM

Domain:

environment and energy

Record type:

paper
Creator:
MonRasOlaLam
Publisher:
Afe
Host:
Voltage sag is a significant power quality (PQ) issue in Nigeria's 330 kV transmission network, leading to equipment failures, data loss, and financial setbacks for both industrial and residential users. This paper dives deep into analysing and addressing voltage sag within Nigeria's 28-bus, 330 kV transmission system, alongside the standard IEEE 30-bus test network, utilizing a Particle Swarm Optimization (PSO)-based Static Synchronous Compensator (STATCOM). We conduct load flow analysis using the Newton Raphson (NR) iterative method, integrating the Power Injection Model (PIM) of STATCOM into the NR framework. PSO helps us optimally pinpoint the best locations and reactive power capacities for STATCOM units, effectively reducing voltage deviations across load buses. The simulations on the IEEE 30-bus system reveal that critical bus voltages improved from a low of 0.8963 p.u. to 0.9516 p.u. after compensation. In the Nigerian 28-bus system, buses 13, 16, 20, and 25, which initially showed sag voltages of 0.8905, 0.9230, 0.9648, and 0.9283 p.u., were restored to 0.9625, 0.9835, 1.0006, and 0.9824 p.u., respectively. The objective function, measured by the voltage deviation index, saw an impressive improvement of about 91.82%, highlighting the PSO-based STATCOM as a highly effective, cost-efficient, and computationally robust solution for mitigating voltage sag in complex transmission networks.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by-nc-sa/4.0

Similar

Voltage Stability Analysis of Nigerian 330kV Power Grid using Static P-V PlotsComparison of UPFC and TCFC for Optimal Power Loss Minimization on the Nigerian 330kv Power Transmission SystemReinforcement Learning-assisted Voltage Stability Analysis of the Nigerian Power Grid Using Dynamic Voltage Restorer (DVR) and Battery Energy Storage System (BESS)NEURAL NETWORK BASED VOLTAGE STABILITY IMPROVEMENT OF THE NIGERIAN 330KV POWER NETWORK USING UNIFIED POWER FLOW CONTROLLER (UPFC) AND HIGH VOLTAGE DIRECT CURRENT (HVDC) DURING CONTINGENCY OF LARGE LOAD GAIN.Development of a Model for Improving Power System Voltage Stability in Nigerian 330kv 48-Bus Network During Loss of Equivalent NetworkPower System Stability Enhancement Studies for Nigerian South-South Region 330kV Network using UPFC

Voltage Stability Analysis of Nigerian 330kV Power Grid using Static P-V Plots

Nigeria power system has been experiencing total or partial system failures in recent times and volt

Comparison of UPFC and TCFC for Optimal Power Loss Minimization on the Nigerian 330kv Power Transmission System

In this work neural network controlled UPFC
and TCSC device was used for the reduction of losses

Reinforcement Learning-assisted Voltage Stability Analysis of the Nigerian Power Grid Using Dynamic Voltage Restorer (DVR) and Battery Energy Storage System (BESS)

International audience This study proposed and validated a reinforcement learning (RL

NEURAL NETWORK BASED VOLTAGE STABILITY IMPROVEMENT OF THE NIGERIAN 330KV POWER NETWORK USING UNIFIED POWER FLOW CONTROLLER (UPFC) AND HIGH VOLTAGE DIRECT CURRENT (HVDC) DURING CONTINGENCY OF LARGE LOAD GAIN.

This paper presents the neural network-based voltage stability improvement of the Nigeria 330KV Powe

Development of a Model for Improving Power System Voltage Stability in Nigerian 330kv 48-Bus Network During Loss of Equivalent Network

This research work aims at improving the voltage stability of the Nigerian 330KV Power network using

Power System Stability Enhancement Studies for Nigerian South-South Region 330kV Network using UPFC

This paper presents the stability enhancement mechanisms for power transmission system through the a