Design and construction of an automatic phase selector

 

Table Of Contents


  • <p> </p><p>Title Page &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp; i<br>Dedication – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;ii<br>Approval page &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;iii<br>Acknowledgement – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;iv<br>Abstract &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;v<br>Table of Contents – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;vi</p><p><b>

Chapter ONE

INTRODUCTION

  • <br>INTRODUCTION</b><br>
  • 1.1Background of the study &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;1<br>
  • 1.2Statement of problem &nbsp; &nbsp; &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;3<br>
  • 1.3Objectives of the study &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;3<br>
  • 1.4Scope and Limitation of the study &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;4<br>
  • 1.5Significance of the study &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;5<br>
  • 1.6Organization of the work &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;6</p><p><b>

Chapter TWO

LITERATURE REVIEW

  • <br>LITERATURE REVIEW</b><br>
  • 2.1History of automatic control &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;8<br>
  • 2.2Automatic phase selector (APS) &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;9</p><p><b>

Chapter THREE

RESEARCH METHODOLOGY

  • <br>METHODOLOGY, DESIGN AND IMPLEMENTATION</b><br>
  • 3.1Introduction &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;12<br>
  • 3.2Power Supply Unit – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;14<br>&nbsp;
  • 3.3Voltage Sensing Unit – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;17<br>&nbsp;
  • 3.4Switching Unit – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;19<br>
  • 3.5General Circuit Operation &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;21<br>
  • 3.6List of Components &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;24</p><p><b>

Chapter FOUR

DATA PRESENTATION AND ANALYSIS

  • <br>SYSTEM DESIGN ANALYSIS</b><br>
  • 4.1Power supply unit &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;25<br>
  • 4.2Voltage Sensing Unit – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;29<br>&nbsp;
  • 4.3Switching Unit – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;31</p><p><b>

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • <br>PACKAGING, TESTING, RESULT AND DISCUSSION</b><br>
  • 5.1Packaging &nbsp; &nbsp; &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;33<br>
  • 5.2Testing &nbsp; &nbsp; &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp; – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;34<br>
  • 5.3Result &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;35<br>
  • 5.4Discussion of result – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;35</p><p><b>CHAPTER SIX<br>CONCLUSION AND RECOMMENDATION</b><br>
  • 6.1Conclusion- &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;37<br>
  • 6.2Recommendation – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;38<br>&nbsp; &nbsp; &nbsp;<b>&nbsp;References – &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;– &nbsp; &nbsp;40</b></p> <br><p></p>

Project Abstract

<p> This is the design and construction of an Automatic Phase Selector. In the construction work, LM324 integrated circuit (comparator) and 2N2222 transistors were used as active components alongside other passive components. The circuit components were mounted on a Vero board. Result shows that, when the three phase A.C inputs Red phase (P1), yellow phase (P2) and blue phase (P3) from public utility supply was fed to the system, the system compared the inputs with regards to phase imbalances, and the input with the highest voltage appears across the output. It also changes over from one phase to anothe4r immediately the circuit senses further phase imbalance.<br>Keywords Relay, Switch, Comparator, Phase Selector, Automatic. <br></p>

Project Overview

Blazingprojects Mobile App

📚 Over 50,000 Project Materials
📱 100% Offline: No internet needed
📝 Over 98 Departments
🔍 Software coding and Machine construction
🎓 Postgraduate/Undergraduate Research works
📥 Instant Whatsapp/Email Delivery

Blazingprojects App

Related Research

Electrical electroni. 3 min read

Smart Grid Demand Response Control Using Edge Analytics and Renewable Integration N...

What This Project Is About A beginner-friendly explanation of how smart grids can adjust electricity use in real time by using local data and small edge devices...

BP
Blazingprojects
Read more →
Electrical electroni. 2 min read

Smart Grid Fault Detection and Localization Using Distributed Sensor Networks...

What This Project Is About A straightforward look at how smart grids can quickly detect faults and pinpoint where they occur by using a network of small, inexpe...

BP
Blazingprojects
Read more →
Electrical electroni. 2 min read

Smart Grid Fault Detection using IoT-based Sensor Network Note: If you want more op...

What This Project Is About Develop a system that can monitor the electrical grid in real time using small sensors and internet connectivity. The project investi...

BP
Blazingprojects
Read more →
Electrical electroni. 3 min read

Smart Low-Cost IoT-Based Energy Management System for Microgrids...

What This Project Is About A plain-language overview of how small energy systems can be monitored and controlled using affordable sensors and internet tools to ...

BP
Blazingprojects
Read more →
Electrical electroni. 4 min read

Smart Grid Fault Detection and Localization using Hybrid Fuzzy-Neural Network and Ph...

What This Project Is About This project explores how a smart electrical grid can automatically detect and locate faults using a combination of fuzzy logic (huma...

BP
Blazingprojects
Read more →
Electrical electroni. 3 min read

Smart LVDC Microgrid with Real-Time Energy Management and Batteryless Solar Inverter...

What This Project Is About This project explores a small-scale, low-voltage direct current (LVDC) microgrid that can manage energy in real time. It also investi...

BP
Blazingprojects
Read more →
Electrical electroni. 3 min read

Smart Grid Demand Response using IoT and Machine Learning for Energy Optimization...

What This Project Is About A practical study that looks at how a smart electrical grid can respond to changing electricity use in real-time. It combines Interne...

BP
Blazingprojects
Read more →
Electrical electroni. 4 min read

Smart Grid Fault Detection and Isolation Using IoT and Machine Learning...

What This Project Is About A plain-language overview of how smart grids, real-time monitoring, and learning algorithms work together to detect faults in electri...

BP
Blazingprojects
Read more →
Electrical electroni. 3 min read

Smart Grid Fault Detection and Isolation Using IoT-Enabled Phasor Measurement Units ...

What This Project Is About A plain-language overview of the topic and what the project investigates. The Problem It Addresses What problem or gap this project ...

BP
Blazingprojects
Read more →
WhatsApp Click here to chat with us