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Design And Construction Of 1000kVA Stabilizer

5 Chapters
|
49 Pages
|
6,297 Words
|
Electrical Electronics Engineering

Complete Design And Construction Of 1000kVA Stabilizer Project Materials (Chapters 1 to 5):

ABSTRACT

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. 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.
This automatic, AC voltage stabilizer has two major sections.
The transformer section, the control circuit unit the third section is the protective unit.
The output of this voltage stabilizer after series of test were performed on it has a voltage 228 + 12 at an overall output power of 1.5 KVA.

TABLE OF CONTENT

Title Page
Certification
Dedication
Acknoweldgement
Table Of Contents
List Of Table
Abstract

 

Chapter One
1.0 Introduction

1.1 The Transformer Unit
1.2 The Control Circuiting

Chapter Two
2.0 Literature Review

2.1 History Of The Project
2.2 The Power Supply
2.3 Theory Of Transformer
2.4 Operation Of The Transformer
2.5 Voltage Transformation Ration
2.6 Transformer Losses

Chapter Three
3.0 The Control Circuiting

3.1 Transistors
3.2 Relay
3.3 The Control Unit
3.4 The Power Supply Unit
3.5 Voltage Divider

Chapter Four
4.0 Design Analysis

4.1 Design Fo A Transformer
4.2 Design Of The Transformer Proper
4.3 Control Circuit Design
4.4 Design Calculation
4.5 Principle Of Operation

Chapter Five
5.0 Construction And Testing Of The Transformer

5.1 Short Circuit Test
5.2 Testing Of The Transformer
5.3 Open Circuit Test
5.4 Summary
5.5 Conclusion
5.6 Recommendations
References

CHAPTER ONE

INTRODUCTION
There are many fundamental different types of stabilizers in use some of which are electron mechanically tap changer, solid state tap changer etc. voltage, stabilizer came into being not by normal design and plain, but as a means of solving electrical “Crisis” situation. This crisis situation does rarely occur in developed countries of the world such as Britain, American, Germany etc, why?
Their system of generation, transmission and distribution of electricity is such that a devoid of variation of fluctuation in the supplied voltage. Now, by the definition given by K.G Jackson and R. Feinberg, a voltage stabilizer is a piece device incorporated in a circuit to maintain a constant output voltage from a poorly generated power supply. A voltage stabilizer like any other piece of equipment is a combination of many electrical and like any other piece of equipment is a combination of many electrical and electronic and circuit with the aim of getting the assemble to perform a specified desired task or function.
Therefore a voltage stabilizer consist for four basic unit
1. The transformer unit
2. The control circuit
3. The protective system
4. The display of monitor (which is optional)

1.1 THE TRANSFORMER UNIT
Thereja B.L. defined a transformer as static piece of apparatus by means of which electric power is one circuit is transformed into power 7 some frequency in another circuit. The power can either be raised or covered. If it is referred to as a step-up transformer but if it is lowered, it is referred to as a step transformer being the one applicable to this project work.

1.2 THE CONTROL CIRCUITRY
This is bike an integrated circuit hat is made of microscopically small transistors, diodes, resistors and components connected together. It is used as complete and is amplifier, voltage amplifier is a comparators connected together. It is used as a complete audio amplifier, voltage amplifier is or comparators to mention just a few of its application. An operational amplifier (op. Amp) is widely sued type of IC, which is designed to manipulate very differences in voltage. The op-amp does the same work has comparator simply because it compares two voltages and provide and output signal when one is bigger.

1.3 AIM AND OBJECTIVE OF THE PROJECT
Most electrical appliance this day highly sophisticated to the entreated that cases of intermitted or regular power outages, under voltages or over voltages are not tolerate in them. The initial outlay and the cost or repair (in case of damage) are so economical that is means of maintain steady or regulated a.c power supply to these expensive appliance/equipment must sought for.
The cost of purchasing some already made imported voltage stabilizer is enormous. Not readily available in our local markets while importing them requires high foreign exchange, the sown tunes is also much before, there is need to embark on this project work the design and construction automatic voltage stabilizer any form of voltage fluctuating (under voltage or over voltage) from the NEPA mains supply to domestic and industrial consumer premise. It is also one of the objectives of this project work that cost comparison between the imported or factory assembled voltage stabilizer e.g SORTEX OR BINATONE products and a locally fabricated voltage stabilizer be embarked on and that work be done on this project in order to finally produce a device that would perform optimally and also relatively cheaper.

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Project Structure

The introduction of Design And Construction Of 1000kVA Stabilizer should start with the relevant background information of the study, clearly define the specific problem that it addresses, outline the main object, discuss the scope and any limitation that may affect the outcome of your findings

Literature Review of Design And Construction Of 1000kVA Stabilizer should start with an overview of existing research, theoretical framework and identify any gaps in the existing literature and explain how it will address the gaps

Methodology of Design And Construction Of 1000kVA Stabilizer should describe the overall design of your project, detail the methods and tools used to collect data explain the techniques used to analyse the collected data and discuss any ethical issues related to your project

Results should include presentation of findings and interpretation of results

The discussion section of Design And Construction Of 1000kVA Stabilizer should Interpret the implications of your findings, address any limitations of your study and discuss the broader implications of your findings

The conclusion of Design And Construction Of 1000kVA Stabilizer should include summarize the main results and conclusions of your project, provide recommendations based on your findings and offer any concluding remarks on the project.

References should List all the sources cited in Design And Construction Of 1000kVA Stabilizer project by following the required citation style (e.g., APA, MLA, Chicago).

The appendices section should Include any additional materials that support your project (Design And Construction Of 1000kVA Stabilizer) but are too detailed for the main chapters such as raw data, detailed calculations etc.