Construction Of A Stand Alone 2KVA Pure Sine Wave Inverter With Battery

ABSTRACT

This project is titled the design and construction of a 2Kva pure sine wave inverter system with battery. Pure sine wave inverters produce a pure sine wave output.  This means the power output from a pure sine wave inverter is the same as the mains supply.

A pure sine wave is not only critical for the correct functioning of high end electronic equipment, it will also ensure that appliances run more smoothly, producing less heat and noise.  A sine wave inverter circuit developed to run AC appliances at a low cost which high efficiency

Pure sine wave inverter take up 12v DC from battery and inverts it to an output of 220v, 50Hz AC. It makes no noise during operation and no hazardous carbon monoxide is generated in the surrounding.   In a pure wave inverter a low pass filter was used to filter out the high frequencies and thus isolate the harmonics so a 50 Hz fundamental frequency was retained. The main aim of this device is to build a 2kva pure sine wave inverter.

TABLE OF CONTENTS

TITLE PAGE

APPROVAL PAGE

DEDICATION

ACKNOWLEDGEMENT

ABSTRACT

TABLE OF CONTENT

CHAPTER ONE

1.0     INTRODUCTION

1.1     BACKGROUND OF THE STUDY

1.2     PROBLEM STATEMENT

1.3     AIM AND OBJECTIVE OF THE PROJECT

1.4     PURPOSE OF THE STUDY

1.5     SIGNIFICANCE OF THE PROJECT

1.6    APPLICATION OF THE PROJECT

1.7     LIMITATION OF THE PROJECT

1.8     SCOPE OF THE PROJECT

1.9     RESEARCH METHODOLOGY

1.10      PROJECT ORGANISATION

CHAPTER TWO

2.0     LITERATURE REVIEW

2.1     REVIEW OF THE RELATED STUDY

2.2     REVIEW OF HISTORY OF AN INVERTER

2.3     REVIEW OF HOW TO CHOOSING THE RIGHT INVERTER

2.4      REVIEW OF THE DIFFERENCE BETWEEN SINE WAVE AND MODIFIED SINE WAVE   INVERTER.

2.5     REVIEW OF INVERTER CAPACITY

2.6     SAFETY OF INVERTER

2.7     TYPES OF INVERTER

CHAPTER THREE

3.0     CONSTRUCTION

3.1     BASIC DESIGNS OF AN INVERTER

3.2      BLOCK DIAGRAM OF THE SYSTEM

3.3     SYSTEM OPERATION

3.4     CIRCUIT DIAGRAM

3.5     CIRCUIT DESCRIPTION

3.6DESCRIPTION OF COMPONENTS USED

3.7      HOW TO CHOOSE A RIGHT INVERTER AND BATTERY

3.8      HOW TO CHOOSE THE BEST INVERTER BATTERY

 

CHAPTER FOUR

RESULT ANALYSIS

4.0     CONSTRUCTION PROCEDURE AND TESTING

4.1     CASING AND PACKAGING

4.2     ASSEMBLING OF SECTIONS

4.3     TESTING OF SYSTEM OPERATION

4.4      COST ANALYSIS

 

CHAPTER FIVE

5.0     CONCLUSION

5.1     RECOMMENDATION

5.2     REFERENCES

CHAPTER ONE

1.0                                                      INTRODUCTION

1.1                                        BACKGROUND OF THE STUDY

A power inverter converts DC power (12VDC) to standard AC power (220 VAC). It is designed to meet up with the power demand in the offices and in homes in the absence of power supply from the power holding company of Nigeria, PHCN. In order words the device / item serves as a substitute for PHCN which almost monopolises electricity to people.

Electricity is one of the greatest inventions man has ever made, due to its very important role in socio-economic and technological development (Owen and Edward, 1996) [7]. Electricity can be transmitted in two different ways namely: alternating currents (AC) or Direct current (DC). Alternating current is the form obtained from power outlets in homes and offices. It consists of a sinusoidal voltage source in which a continuous change in the direction of flow of voltage (and current) can be used to employ magnetic components (Cooks et al., 2001) [1]. Direct current is electricity flowing in a constant direction, and/or possessing a voltage with constant polarity and is appropriate for short-range transmission. Direct current is the form stored up in batteries. It uses is limited and it depends on AC power (Owen et al, 1996) [7].

A common difference between AC and DC involves the amount of energy that each can carry. Direct current has a voltage level and cannot travel very far until it losses energy. Ac is safer to transmit over long distance (Nergaard et al., 2001) [5]. DC is preferred over AC because of its portability hence the introduction of the inverter that are mobile AC source from a portable DC battery. An inverter is an electrical device that converts DC to AC; the converted AC can be at any required voltage frequency with the use of appropriate transformers, switching and control circuits. There are three types of DC-AC inverters, the square wave, the modified sine wave and pure sine wave.

Pure sine wave inverters are the most affluent in terms of efficiency and accurate timing output. They use batteries to generate power and it’s important to have a means of recharging (Cunningham, 1999) [3]. Various methods can be adopted such as solar panels, wind turbine etc. Pure sine wave inversion is obtained by taking a DC voltage source and switching it across a load using an H-bridge. If this voltage needs to be boosted from the DC source in the inverter, it can be accomplished either before the AC stage by using a DC-DC boost converter, or after AC stage by using a Boost transformer (Crowley and Leung, 2001) [2]. The inverted signal is composed of a pulse width-modulated signal which encodes a sine wave. The duty cycle of the output is changed such that power transmitted is exactly that of a sine wave. This output can be used as it is or, alternatively, can be filtered easily into a pure sine wave (Nuzhat et al., 2010) [6]. The aim of this proposed study is to build a pure sine wave inverter which is an electronic device or circuitry that changes direct current (DC) to alternating current (AC). The input voltage, frequency and output voltage and overall power handling depend on the design of the specific device or circuitry. It allows to have a reliable source of electricity for various appliances even if they are off the power grid. Mode of operation of an inverter is divided in three stages: oscillator, amplifier, and output transformer stage.

1.2                                 PROBLEM STATEMENT

Recently it was discovered that Square wave inverter and modified sine wave inverter has high harmonic distortion and as result of that it does not have clean electricity. Inductive loads do not run faster or cooler, it produces noise and causes crash of appliances such as computer. To overcome these problems, pure sine wave was invented. A sine wave is a continuous wave that describes a smooth repetitive oscillation. It is the ideal waveform for the transfer of AC power with very low harmonic distortion. Pure sine wave inverters produce power which equals or better than the power in home. It uses sophisticated technology to protect even the most sensitive electronics. It can be used for digital microwaves ,televisions, fridges, laptops and other electronic equipment. Pure Sine inverters can power just about any AC appliance without risk of damage.

1.3                          OBJECTIVE OF THE PROJECT

The main aim of this device is to build a standalone 2kva pure sine wave inverter with 12v battery. The objectives of this project are:

  1. To build a pure sine wave inverter that can be used to power appliances both in house and industries.
  2. To safely operate any electronic devices (such as micro wave, drills, clock, speed motor) that require sensitive calibration.
  • To back-up the erratic power supply by PHCN.
  1. To ensure the protection of the back-up source consumer equipment and supply.

1.4                                           PURPOSE OF THE PROJECT

The purpose of this work is to produce power which equals or better than the power in home. It uses sophisticated technology to protect even the most sensitive electronics.

1.5                                       SIGNIFICANCE OF THE PROJECT

The output voltage of a sine-wave inverter has a sine wave-form like the sine wave-form of the mains / utility voltage. In a sine wave, the voltage rises and falls smoothly with a smoothly changing phase angle and also changes its polarity instantly when it crosses 0 Volts.

1.6                                              SCOPE OF THE PROJECT

A power inverter is a power conversion device. It converts fixed direct current (DC) voltage to frequency sinusoidal alternating current (AC) voltage output. This unit of the system is responsible for powering the entire system. The input voltage of the system is 12V, and the output voltage is 230VAC. The microcontroller is used to generate the required frequency ranging from 20 KHZ-500 KHz. The battery feed indicator indicates when the battery is connected to system.

1.7                                         LIMITATION OF THE PROJECT

  • Expensive when compared to traditional generators
  • The inverter can power a few appliances for a short period
  • The input is limited to 12VDC, output to 220VAC and the frequency to 50Hz
  • The power rating of the work is 2kva

1.8                                       APPLICATION OF THE PROJECT

various applications of the inverter are Wind/solar electrical systems, Back-up for power cells, Generator support systems, Remote homes, Telecommunications, Computers, Tools, Security applications, Mobile power, Boats and yachts, Airplane, Monitoring equipment, Emergency power and lighting etc.

1.9                                             RESEARCH METHODOLOGY

In the course of carrying this study, numerous sources were used which most of them are by visiting libraries, consulting journal and news papers and online research which Google was the major source that was used.

1.10                                     PROJECT ORGANISATION

The work is organized as follows: chapter one discuses the introductory part of the work,   chapter two presents the literature review of the study,  chapter three describes the methods applied, chapter four discusses the results of the work, chapter five summarizes the research outcomes and the recommendations.

2.0 INTRODUCTION:

This chapter provides the background and context of the research problems, reviews the existing literature on the Construction Of A Stand Alone 2KVA Pure Sine Wave Inverter With Battery, and acknowledges the contributions of scholars who have previously conducted similar research [REV4356] …

Document Information

  • Format: DOC/PDF
  • Title: Construction Of A Stand Alone 2KVA Pure Sine Wave Inverter With Battery:

YOU MAY LOVE THESE (Recommended)

How to write the “Installation Of Solar Battery” Project

Posted under:

To start a project on Installation Of Solar Battery, follow these guidelines: Batteries are what make a solar energy system an off-grid solar system. Without adequate storage, the energy generated is fed into the house and used or not used and wasted. Batteries enable you to take generated energy and store it for later use. The purpose of this study is to explain the insta…

48 Pages 1 - 5 Chapters 6,592 Words DOC/PDF Format Instant Download UPN4605

Understand how to write the “Design And Construction Of Battery Charger” Project

To develop a project on Design And Construction Of Battery Charger, follow these approaches: This project which consists of four chapters deals extensively with the design and construction of a battery charger which is capable charging a 12 volts, battery. The first chapter which is the introductory chapter goes a long way in defining the battery charger and explaining of the mode of ope…

35 Pages 1 - 5 Chapters 3,427 Words DOC/PDF Format Instant Download UPN2153

INTRODUCTION 1.1 THE BACKGROUND Welding is a way of heating pieces of metal using electricity or a flame so that they melt and stick together. It can simply be defined as the process of joining two or more pieces of metal to make the act as a single piece. This is often done by melting the work pieces and adding a filler material to form a pool of molten material that cools to become a strong joint. Because of its strength, welding is […]

45 Pages 1 - 6 Chapters 4,655 Words DOC/PDF Format Instant Download UPN2122

To undertake a project on Design And Construction Of An Intelligent 250 Volts Battery Charger With Micro Processor Using Seven Segment Display, follow these effective ways: Electronic Components require direct current (dc) for their effective operation. This direct current can be gotten either by rectifying an alternating current (ac) or Connecting the system to a direct current source which is usually a battery. It is observed that after some period of operation, …

32 Pages 1 - 5 Chapters 4,208 Words DOC/PDF Format Instant Download UPN22943

To write a project on Design And Construction Of An Automatic Battery Charger ABC, follow these structure: The practical importance of a battery charging unit in today’s world cannot be over emphasized. This is so since these batteries or accumulators are immensely needed by automobiles and in science laboratories. This thesis describes the methodical approach to the design and construction of any bat…

31 Pages 1 - 5 Chapters 3,237 Words DOC/PDF Format Instant Download UPN2137

Learn the structure to write the “Design And Construction Of A Stand Alone Solar System” Project

To carry out a project on Design And Construction Of A Stand Alone Solar System, follow these effective methods: Stand-Alone PV System (SAPVS) supply an alternative means of electrification in urban landscapes that are not connected to power utility grid and that have a high flow of visitors. People are constantly using their mobile devices and in open spaces, it is difficult to get access to a battery char…

61 Pages 1 - 5 Chapters 8,982 Words DOC/PDF Format Instant Download UPN2799

Posted under:

To start a project on Design And Construction Of A Solar Powered Automatic Battery Charger For 6 And 12V Lead Acid Battery, follow these guidelines: This project focuses on the design and construction of a solar battery charger, crafted to address the increasing need for a reliable power supply to keep batteries charged. A solar battery charger is an electrical device that harnesses the photovoltaic effect to convert light energy directly int…

47 Pages 1 - 5 Chapters 6,311 Words DOC/PDF Format Instant Download UPN4446

To develop a project on Design And Construction Of A Microcontroller Based 12V/30A Car Battery Charger, follow these approaches: This project is on a microcontroller based 12V/30A battery charger. The Automatic Battery Charger circuit presented in this work can automatically charge a 12V at a current of 30A. Special features of the charger are as follows. It automatically controls the charging current as per the status of …

49 Pages 1 - 5 Chapters 7,055 Words DOC/PDF Format Instant Download UPN4651

INTRODUCTION All modern engineering system include certain aspects of control systems at some point in their broadcast sense, control engineering and the associated theory are concerned with the means by which systems may be made to behave an a desired way. The system on this thesis is a DC – AC converter, which is an apparatus which is used for conversion of Direct Current to Alternating Current or signal. In our country, this equipme […]

31 Pages 1 - 5 Chapters 3,579 Words DOC/PDF Format Instant Download UPN2317

Discover how to write the “Design And Construction Of A Car Battery Monitoring System” Project

Posted under:

To undertake a project on Design And Construction Of A Car Battery Monitoring System, follow these effective ways: Car battery level monitor indicates the status of the battery just by glowing LED’s. This work explains you how to design battery level indicator. You can use this circuit to check car battery or inverter. So by using this circuit, we can increase the lifetime of battery. The heart of this batter…

49 Pages 1 - 5 Chapters 7,391 Words DOC/PDF Format Instant Download UPN4354

Live Chat