The design and construction of 1000 kwa stabilizer

 

Table Of Contents


  • <p> </p><p>TITLE PAGE</p><p>CERTIFICATION</p><p>DEDICATION</p><p>ACKNOWELDGEMENT</p><p>TABLE OF CONTENTS</p><p>LIST OF TABLE </p><p>ABSTRACT</p><p><b>

Chapter ONE

INTRODUCTION

  • </b></p><p>
  • 1.0INTRODUCTION</p><p>
  • 1.1THE TRANSFORMER UNIT</p><p>
  • 1.2THE CONTROL CIRCUITING</p><p><b>

Chapter TWO

LITERATURE REVIEW

  • </b></p><p><b>
  • 2.0LITERATURE REVIEW</b></p><p>
  • 2.1HISTORY OF THE PROJECT</p><p>
  • 2.2THE POWER SUPPLY</p><p>
  • 2.3THEORY OF TRANSFORMER</p><p>
  • 2.4OPERATION OF THE TRANSFORMER</p><p>
  • 2.5VOLTAGE TRANSFORMATION RATION </p><p>
  • 2.6TRANSFORMER LOSSES</p><p><b>

Chapter THREE

SYSTEM DESIGN AND IMPLEMENTATION

  • </b></p><p><b>
  • 3.0THE CONTROL CIRCUITING</b></p><p>
  • 3.1TRANSISTORS</p><p>
  • 3.2RELAY</p><p>
  • 3.3THE CONTROL UNIT</p><p>
  • 3.4THE POWER SUPPLY UNIT</p><p>
  • 3.5VOLTAGE DIVIDER</p><p><b>

Chapter FOUR

SYSTEM TESTING AND EVALUATION

  • </b></p><p><b>
  • 4.0DESIGN ANALYSIS</b></p><p>
  • 4.1DESIGN FO A TRANSFORMER</p><p>
  • 4.2DESIGN OF THE TRANSFORMER PROPER</p><p>
  • 4.3CONTROL CIRCUIT DESIGN</p><p>
  • 4.4DESIGN CALCULATION</p><p>
  • 4.5PRINCIPLE OF OPERATION</p><p><b>

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • </b></p><p><b>
  • 5.0CONSTRUCTION AND TESTING OF THE TRANSFORMER</b></p><p>
  • 5.1SHORT CIRCUIT TEST</p><p>
  • 5.2TESTING OF THE TRANSFORMER </p><p>
  • 5.3OPEN CIRCUIT TEST</p><p>
  • 5.4SUMMARY </p><p>
  • 5.5CONCLUSION</p><p>
  • 5.6RECOMMENDATIONS</p><p><b>
  • 5.7REFERENCES</b></p><p>LIST OF FIGURES</p><p>

Chapter ONE

INTRODUCTION

  • </p><p>
  • 1.0Block diagram representation of the voltage stabilizer</p><p>

Chapter TWO

LITERATURE REVIEW

  • </p><p>
  • 2.0The Sheel Type Transformer</p><p>

Chapter THREE

SYSTEM DESIGN AND IMPLEMENTATION

  • </p><p>
  • 3.0Circuit Diagram of
  • 1.5KVA Automatic Voltage Stabilizer</p><p>
  • 3.1Transistor Diagram</p><p>
  • 3.2Relay Diagram </p><p>
  • 3.3Block diagram for a typical power supply with corresponding Wve form for each stage</p><p>
  • 3.4Exact circuit diagram for the power supply stage have the automatic voltage stabilizer </p><p>
  • 3.5Block diagram of voltage divider</p><p>

Chapter FOUR

SYSTEM TESTING AND EVALUATION

  • </p><p>
  • 4.0Schematic representation of the transformer with different voltage level.</p><p>
  • 4.1Size of the lamination used for the design and construction of the transformer</p><p>
  • 4.2Graph of (Max) against VCB</p><p>
  • 4.3The comparator circuit diagram</p><p>

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • </p><p>
  • 5.0Short circuit test</p><p>
  • 5.1Open circuit test</p><p>
  • 5.2Casing diagram</p> <br><p></p>

Project Abstract

<p> </p><p>Despite all attempt of the federal government to have not only an uninterrupted power supply for all cities in Nigeria, but a voltage that is inconformity with the recommended 220/230v for domestic consumption for example. &nbsp;The NEPA Plc is facing some difficulties in generating, transmitting and distributing the required voltage stabilizer, which could be connected, to the main and then the load is in turn connected to it.</p><p> This automatic, AC voltage stabilizer has two major sections.</p><p>The transformer section, the control circuit unit the third section is the protective unit.</p><p>The output of this voltage stabilizer after series of test were performed on it &nbsp;has a voltage 228 + 12 at an overall output power of 1.5 KVA.</p> <br><p></p>

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