A fault detection and protection scheme for a 200 mva transformer using fuzzy logic

 

Table Of Contents


Chapter ONE

INTRODUCTION

  • 1.1Introduction
  • 1.2Background of Study
  • 1.3Problem Statement
  • 1.4Objective of Study
  • 1.5Limitation of Study
  • 1.6Scope of Study
  • 1.7Significance of Study
  • 1.8Structure of the Research
  • 1.9Definition of Terms

Chapter TWO

LITERATURE REVIEW

  • 2.1Overview of Fuzzy Logic
  • 2.2Transformer Fault Detection Techniques
  • 2.3Fuzzy Logic Applications in Power Systems
  • 2.4Previous Studies on Transformer Protection
  • 2.5Importance of Fault Detection in Power Systems
  • 2.6Fuzzy Logic Control Systems
  • 2.7Challenges in Transformer Protection
  • 2.8Fuzzy Logic Algorithms
  • 2.9Case Studies on Transformer Fault Detection
  • 2.10Future Trends in Transformer Protection

Chapter THREE

RESEARCH METHODOLOGY

  • 3.1Research Methodology Overview
  • 3.2Selection of Research Design
  • 3.3Data Collection Methods
  • 3.4Sampling Techniques
  • 3.5Data Analysis Procedures
  • 3.6Implementation of Fuzzy Logic System
  • 3.7Testing and Validation Procedures
  • 3.8Ethical Considerations in Research

Chapter FOUR

DATA PRESENTATION AND ANALYSIS

  • 4.1Analysis of Research Findings
  • 4.2Performance Evaluation of Fuzzy Logic System
  • 4.3Comparison with Traditional Protection Schemes
  • 4.4Interpretation of Results
  • 4.5Discussion on Practical Implications
  • 4.6Future Research Directions
  • 4.7Limitations of the Study
  • 4.8Recommendations for Implementation

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • 5.1Summary of Findings
  • 5.2Conclusion
  • 5.3Contributions to the Field
  • 5.4Implications for Power System Protection
  • 5.5Reflection on Research Process
  • 5.6Areas for Future Research
  • 5.7Final Thoughts

Project Abstract

<p> Condition monitoring of Electrical power equipment has attracted considerable attention for years. The aim of this work is to use Fuzzy logic (FL) Tool Box in building a simulation system that will diagnose all kinds of incipient faults, phase to phase fault and overloading in a transformer and monitor its conditions. Current and rate of change of current with time have been identified as the input variables, duly represented in the programme as “Error” and “Error-Dot”. These variables have their universe of discourse from -1.5 to 1.5 and from -10 to 10 respectively. Fuzzy logic sensor is designed to monitor the current(i) conditions of the transformer at both ambient and full load. The results from the research show that whenever the output response is zero the current in transformer is normal. This is obtained when input values of [0] and [0] are injected into the system to produce a response of “6e-017” which is approximately zero. Whereas if the output response is greater than zero it implies that the transformer current is rising beyond normal and protection scheme should be alerted. This condition is achieved when input values of [-1.5] and [5] are used on the system to give a response of “+5”. However, if the response is less than zero then the transformer current is below normal, hence the protection scheme should be alerted. To investigate this, input values of [1.5] and [-5] give a response of “-5”. Fuzzy logic is used as an expert system that assesses all information keyed in at the front panel to analyze and predict the condition of the transformer at any time. <br></p>

Project Overview

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