Monitoring and control of 3-tier power supply | Blazingprojects Postgraduate Thesis
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Monitoring and control of 3-tier power supply

 

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 Power Supply Systems
  • 2.2Historical Perspectives on Power Monitoring
  • 2.3Importance of Monitoring and Control in Power Systems
  • 2.4Types of Power Supply Monitoring Technologies
  • 2.5Challenges in Monitoring and Control of Power Systems
  • 2.6Regulations and Standards in Power Supply Monitoring
  • 2.7Innovations in Power Monitoring Technologies
  • 2.8Case Studies on Effective Power Monitoring
  • 2.9Future Trends in Power Supply Monitoring
  • 2.10Gaps in Existing Literature

Chapter THREE

RESEARCH METHODOLOGY

  • 3.1Research Methodology Overview
  • 3.2Research Design and Approach
  • 3.3Data Collection Methods
  • 3.4Sampling Techniques
  • 3.5Data Analysis Tools
  • 3.6Ethical Considerations
  • 3.7Validity and Reliability
  • 3.8Limitations of the Methodology

Chapter FOUR

DATA PRESENTATION AND ANALYSIS

  • 4.1Data Analysis and Interpretation
  • 4.2Comparison of Findings with Existing Literature
  • 4.3Discussion on Key Findings
  • 4.4Implications of Results
  • 4.5Recommendations for Practice
  • 4.6Suggestions for Future Research
  • 4.7Strengths and Weaknesses of the Study
  • 4.8Contributions to Knowledge

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • 5.1Summary of Findings
  • 5.2Conclusions
  • 5.3Contributions to the Field
  • 5.4Practical Implications
  • 5.5Recommendations for Further Action
  • 5.6Reflection on Research Process
  • 5.7Areas for Future Research
  • 5.8Closing Remarks

Thesis Abstract

Reliable electricity supply is essential for development. As a result, demand for electricity has continued to increase globally, occasioned by the fact that electricity is highly portable and can be transformed from one form to another to meet needs. In Nigeria and most developing countries, electricity supply from the public utility is not only insufficient but highly erratic. The effect of this is adverse on critical and sensitive infrastructure that depend on uninterrupted power supply. Hence, many domestic, industrial and commercial consumers are compelled to acquire one form of alternative source of power supply or another. With this however, when different power schemes are interconnected, there arises the challenge of switching between the power sources not only smoothly, but in a manner that optimizes their use. Solving these challenges forms the focus of this work. This design monitors three independent power sources Utility Grid of Power Holding Company of Nigeria (PHCN), solar and generator and engages them following preset conditions in a microcontroller. A software program in assembly language drives the microcontroller. Preference is given to the PHCN line, but in the event of failure or abnormal conditions in the PHCN line, the system will effect a changeover automatically to the solar source through contactors, provided the output of the solar source is acceptable, else the system will initiate the starting of the generator and transfer of load to same. This system finds application wherever there is unreliable power supply and interconnected power schemes.

Thesis Overview

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