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GSM-Based Network System for Gas Level Detection
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GSM-Based Network System for Gas Level Detection


This page presents an excerpt of the research material, providing a comprehensive overview of the study. It includes the Preliminary Pages, Table of Contents, Abstract, Chapters One to Five, and References, making it accessible and informative for students, researchers, and other readers interested in the topic of this study. Acknowledgement is also included, expressing gratitude to the individuals, institutions, and resources that contributed to the successful completion of the research, with materials and information sourced from the online platform sparklyn.com.ng, which provided valuable academic support.



Material Excerpt on GSM-Based Network System for Gas Level Detection


PRELIMINARY PAGES

  • Title page
  • Approval page
  • Dedication
  • Acknowledgement
  • Table of Contents
  • Abstract

CHAPTER ONE

INTRODUCTION


    CHAPTER TWO

    LITERATURE REVIEW

    • 2.1 Introduction

    CHAPTER THREE

    SYSTEM ANALYSIS AND DESIGN

    • 3.1 Methodology Adopted
    • 3.1.1 Problem Identification Using SSADM
    • 3.2 Analysis of the Existing System
    • 3.2.1 Dataflow of the Existing System
    • 3.2.2 Disadvantages Of The Existing System
    • 3.2.3 Weakness of the existing System
    • 3.3 Feasibility Study
    • 3.3.1 Economic Feasibility
    • 3.3.2 Technical Feasibility
    • 3.3.3 Operational Feasibility
    • 3.4 Analysis of the Proposed System
    • 3.4.1 Data Flow Diagram of the Proposed System
    • 3.4.2 Advantages of the Proposed System
    • 3.4.3 Justification of the Proposed System
    • 3.5 Functional Requirements
    • 3.5.1 Use Case Diagram Of The Admin / User Privileges
    • 3.6 Data Requirements
    • 3.7 High Level Model of the Proposed System

    CHAPTER FOUR

    SYSTEM DESIGN AND IMPLEMENTATION

    • 4.1 Objectives of the Design
    • 4.2 Cohesion and Decomposition High level Model
    • 4.3 Control Center / Overall Dataflow Diagram
    • 4.3.1 Proposed System Operation Flowchart
    • 4.4 System Specification and Design
    • 4.4.1 Input and Output Specification
    • 4.4.2 Database Specification and Design
    • 4.4.3 Data Dictionary
    • 4.5 Choice and Justification of Programming Language
    • 4.6 Program Documentation
    • 4.7 Implementation Techniques
    • 4.7.1 System Testing
    • 4.8 Programming Module Specification
    • 4.8.1 Installation
    • 4.9 Computer Hardware Minimum Requirement
    • 4.10 Software Requirement
    • 4.11 Personnel / User Training
    • 4.12 File Maintenance Module

    CHAPTER FIVE

    SUMMARY, CONCLUSION AND RECOMMENDATION

    • 5.1 Introduction
    • 5.2 Summary
    • 5.3 Conclusion
    • 5.4 Recommendation

    REFERENCES

    APPENDIX A - “SOURCE CODE”

    APPENDIX B - “OBJECT PROGRAM”



    1.0 Introduction

    1.1 Background of Study

    This project presents the design and implementation of gas detection system using GSM network. The gas detection system using GSM network is a newly designed gas detector device using MQ-6 gas sensor and microcontroller. It is a sophisticated gas detection method different from the existing system due to its unique features. The use of gas detector started with a gas detector system from Mr. Naoyoshi Taguchiwhich can measure the concentration of a target gas by oxidizing or reducing the target gas at an electrode and measuring the resulting current. Beginning his research in 1962, Mr. Naoyoshi Taguchi became the first person in the world to succeed in the development of a semiconductor device which could detect low concentrations of combustible and reducing gases when used with a simple electrical circuit. This gas detector device based on this technology are often called “TGS” (Taguchi Gas Sensors).

    The sensors contain two or three electrodes, occasionally four, in contact with an electrolyte. The electrodes are typically fabricated by fixing a high surface area precious metal on to the porous hydrophobic membrane. The working electrode contacts both the electrolyte and the ambient air to be monitored usually via a porous membrane. The electrolyte most commonly used is a mineral acid, but organic electrolytes are also used for some sensors. The electrodes and housing are usually in a plastic housing which contains a gas entry hole for the gas and electrical contacts. The gas diffuses into the sensor, through the back of the porous membrane to the working electrode where it is oxidized or reduced.

    This electrochemical reaction results in an electric current that passes through the external circuit. In addition to measuring, amplifying and performing other signal processing functions, the external circuit maintains the voltage across the sensor between the working and counter electrodes for a two electrode sensor or between the working and reference electrodes for a three electrode cell. At the counter electrode an equal and opposite reaction occurs, such that if the working electrode is an oxidation, then the counter electrode is a reduction.

    Fig 1.1: An Automatic Gas Detector (available in the complete material)

    In this project, a gas detection system is designed and implemented using GSM network so that information or a call as alert will be sent to an authorized person's GSM mobile cell phone to inform him or her about the gas leakage.There are mainly three units in this system: the sensor unit, microcontroller unit and GSM modem. For detecting dangerous and flammable gas leaks in any closed environment such as a car, house, service station or storage tank, a gas sensor is used which detects natural gas, LPG and coal gas. The sensor is shown below:

    Fig 1.1: MQ-6 Gas Sensor (available in the complete material)

    This MQ-6 gas sensor can also be used to sense other gases like iso-butane, propane and even cigarette smoke. This unit can easily be incorporated into an alarm unit to sound an alarm.


    1.2 Statement of problem

    Gas leakages are a common problem in households and industries. If not detected and corrected at the right time, it can be lead to lost of lives and properties. Gas leakage can be life threatening. People who are working in hazardous atmospheres are in danger of open flame which causes fire outbreak. Fatalities and injuries are risk of their job. Potentially deadly carbon monoxide is also very dangerous to life.

    A leakage of natural gas can be dangerous because it increases the risk of fire or explosion. Local gas companies 'work hard to provide adequate warning in the event of a gas leak. Because methane–and therefore, natural gas–does not have any odour, the gas company adds a warning “rotten-egg” smell (mercaptan or a similar sulfur-based compound) that can be easily detected by most people. However, people who have a diminished sense of smell may not be able to rely upon this safety mechanism. Also the leak might occur at a time when no one is in the vicinity which increases the risk of an explosion.


    1.3 Aims and Objective

    The aim and objectives of this project is to design and implementation of gas detection system using GSM network.

    Other objectives of the project are as follows:

    1. To build a potable and lower cost gas detector to improve the feasibility of smart detection networks for health and safety.
    2. Unlike a traditional gas leakage alarm system which only senses a leakage and sounds an alarm, the idea and objective of our solution is to call the user via GSM when even gas leakage occurs.
    3. The user can pick the gas detector alert call to hear the conversation in the location.

    1.4 Scope of work

    The gas detection system uses GSM network and detects LPG from concentration of 200 parts per million to 10,000 parts per million in an area using microcontroller and MQ6 sensor.

    The gas detector is a battery operated device considered for detection of various gases within an area usually as part of a safety system/risk control.


    1.5 Significance of the Project

    This project can be used to detect gas leakages at home, in a car, storage tank environment or in a service station. It can be easily implemented to industrial level by upgrading its ranges. The implementation of this project is important in every home, office and industries because there are many gases that can be harmful to organic life, such as humans or animals. This project helps people to upgrade their safety standards, comply statutory even though it has small sensitivity to detect alcohol, it can be used as liquor tester.

    The project has excellent sensitivity combined with a quick response time. It's most important and basic function is to prevent accidents and protect life and property from disaster. It provides along lasting safety means for detecting the leakage of gas into the area of an appliance when the appliance is in a shutdown condition or not in operation. It provide a novel gas detection and monitoring system which is economical to manufacture and which may be readily installed in conventional trailers, boats or the like which are normally dependent upon a stored supply of pressurized gas.


    1.6 Overview of the Write-Up

    This project report is written in such a way that each chapter is related to the next as shown in the block diagram below.

    The organization of the project report is well detailed and vast in its coverage. It covers all the activities encountered during the research and construction work.


    CHAPTER TWO

    LITERATURE REVIEW


    2.1 Introduction

    This chapter focuses on the review of related literature. A literature review presents current knowledge, as well as theoretical and methodological contributions, related to GSM-Based Network System for Gas Level Detection. It documents the state of the art on the subject under study and provides a comprehensive survey of existing literature. In this research work the literature review includes the conceputal review, theoretical framework, the review of related literature …


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