Design And Construction Of A Single Phase Power Supply For A Three Phase Induction Motor

The design and construction of a single-phase power supply for a three-phase induction motor involves intricate engineering processes aimed at converting single-phase electrical energy into a form usable by the motor. This endeavor necessitates the integration of various components such as capacitors, transformers, and rectifiers to achieve the required phase shift and balance in power distribution. Through meticulous circuit design and assembly, the single-phase supply must be synchronized with the motor’s operation, ensuring optimal performance and efficiency. Key considerations in this project include voltage regulation, frequency control, and the mitigation of harmonics to prevent adverse effects on the motor’s operation. By implementing robust design principles and leveraging advanced control mechanisms, engineers can develop a reliable single-phase power supply system tailored to the specific requirements of the three-phase induction motor, facilitating its seamless integration into industrial applications while enhancing energy efficiency and operational reliability.

 

ABSTRACT

These 3 phase motor is supplied with 3 three-phase AC supply and is widely used in ships for heavier loads. This research is purposed to established a new method is simple and good to operate the three phase induction motor on single phase power by using capacitor. The object used in this research was three phase induction motor that has the standard of 2 HP, 440 volt, Wye connection, 2 Pole, 50 Hz, 3000 RPM, 3.08 Amp. The result of this research showed that the method could work well to control the motor to operate properly to load 85% of the full load. In general the motor has better performance when operating on single phase power system in all load cases (low at high load). The motor could operate with power factor close to unity, higher speed and better efficiency. The motor operated with higher current harmonic distortion with low loads but lower current harmonic distortion at high loads. There for it is very good to operate the motor at high load up to 85% of its full load.

TABLE OF CONTENTS

COVER PAGE

TITLE PAGE

APPROVAL PAGE

DEDICATION

ACKNOWELDGEMENT

ABSTRACT

CHAPTER ONE

1.0      INTRODUCTION

1.1      BACKGROUND OF THE PROJECT

  • PROBLEM STATEMENT
  • AIM OF THE PROJECT
  • OBJECTIVE OF THE PROJECT
  • PURPOSE OF THE PROJECT
  • SIGNIFICANCE OF THE PROJECT
  • APPLICATION OF THE PROJECT
  • LIMITATION OF THE PROJECT

CHAPTER TWO

LITERATURE REVIEW

  • OVERVIEW OF INDUCTION MOTOR
  • HISTORICAL BACKGROUND OF INDUCTION MOTOR
  • THREE PHASE INDUCTION MOTOR CONSTRUCTIONAL REVIEW

CHAPTER THREE

  • METHODOLOGY
    • DESIGN OF INDUCTION MOTOR
    • CAPACITOR CIRCUIT TO THE COIL
    • SELECTION OF CAPACITOR

 

CHAPTER FOUR

  • EXPERIMENTAL RESULT
  • APPLICATION OF 3 PHASE INDUCTION MOTOR
  • ADVANTAGES OF INDUCTION MOTOR
  • DISADVANTAGES OF 3 PHASE INDUCTION MOTOR
  • PROBLEMS IN 3 PHASE INDUCTION MOTOR
  • PROTECTIONS FOR 3 PHASE INDUCTION MOTOR

CHAPTER FIVE

  • CONCLUSION
  • REFERENCES

 

 

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