Design And Construction Of A Baby-Pram Monitoring System

Enhancing safety and peace of mind for caregivers, the design and construction of a sophisticated baby-pram monitoring system represent a groundbreaking endeavor in child care technology. This comprehensive system integrates state-of-the-art sensors, wireless connectivity, and intuitive user interfaces to ensure real-time tracking of vital parameters such as temperature, humidity, and motion. Employing robust materials and ergonomic design principles, the system not only guarantees durability but also provides comfort and convenience for both the child and the caregiver. Through meticulous attention to detail and rigorous testing protocols, this pioneering project aims to revolutionize the childcare landscape by offering a seamless blend of security, functionality, and innovation.

ABSTRACT

This paper proposes a pram monitoring system which is an automatic caretaker room for a baby. The main motive of this idea is to save time and energy of very busy parents. Working people are very busy these days. They do not have enough time to properly take care of their babies. So, the whole room is set up as it can sense the activities of the baby and work according to requirement. Parents can save their time and energy as they don’t have to go and check their baby again and again until they don’t get any information about baby. Electric energy is also being saved because the devices will work only when they are needed. There will not be any wastage of electric energy. The idea of this scenario is accomplished by using sensors and a microcontroller. The sensors will sense the things happening and microcontroller will operate the devices under the conditions the parents set for these devices.

Key Words: Smart baby room, Arduino Uno Microcontroller, IOT, Acceleration sensor, Sound sensor, Light intensity, Position location.

 Cover page

  1. Certification

iii. Dedication

  1. Acknowledgement
  2. Abstract:

CHAPTER ONE

INTRODUCTION

  • Background of the Study
  • Problem Statement
  • Aim and Objectives of Study
  • Significance of Study
  • Scope of Study
  • Methodology

CHAPTER TWO

LITERATURE REVIEW

2.1    Introduction

2.2    Conceptual Review

2.2.1  Historical background of internet of things

2.2.2  Applications of IOT

2.3   Theoretical Review
2.4    Empirical Review
2.5    Project/Research Gap

CHAPTER THREE

DESIGN METHODOLOGY

3.1 System block diagram

3.2 System hardware description

3.3 Software details

3.5  Program code

CHAPTER FOUR

Results/Analysis

CHAPTER FIVE

CONCLUSION AND RECONMENDATIONS

5.1 Conclusion

5.2 Recommendation

References

 

 

CHAPTER ONE

1.0                                          INTRODUCTION

1.1                            BACKGROUND OF THE STUDY

This paper presents the Smart nursery room prototype model. There is huge problem the working parents are facing is proper take care of their babies or toddlers. They cannot pay proper time for their babies. Toddlers and babies need 24×7 observation of their parents, which is very difficult for working parents. This prototype model solves the problem of time and energy usage of such parents. The prototype model of the room contains a movement sensor, gas sensor, voice recognizer and other electronic devices connected to Arduino. The room appliances are working with coordination of sensors and Arduino. Parents can set the electronic devices work according to the conditions they have given and they can operate these devices by their mobile phones even when they are away from the baby room. There are many project works done for baby monitoring but they only works to monitor baby’s temperature, heartbeat and some other baby’s physical conditions. But there is no work done on the whole caretaker baby room. This room is multitasking.

IOT is the word of era. From Artificial Intelligence to networks IOT is playing a vital role. Everything is in the ease of hands. The Internet of Things (IOT) is defined in many different ways, and it encompasses many aspects of life from connected homes and cities to connected cars and roads, roads to devices that track an individual’s behavior and use the data collected for push services. So, Internet of things is a system of interrelated computing devices, digital machines, objects, animals or people that are provided with unique identifiers and the ability to transfer data from one place to another place over a network without requiring human to human or human to computer interaction. Internet of Things (IOT) is an ecosystem of connected physical objects that are accessible through the internet. The thing in IOT could be a person with a heart monitor or an automobile with built-in sensors, i.e. objects that have been assigned an IP address and have the ability to collect and transfer data over a network without manual assistance or intervention. The embedded technology in the objects helps them to interact with internal states or the external environment, which in turn affects the decisions taken. In today’s world things should be very fast and automatic. IOT is a very good platform which can make probably everything automatic.

A prototype is developed which gives a reliable and efficient baby monitoring system that can play a vital role in providing better infant care. This system monitor vital parameters like temperature, sound, acceleration, light intensity, position location and movement of an infant and using GSM network.

1.2                                   PROBLEM STATEMENT

Presently, female participation in the labour force in developing country such as Nigeria has greatly increased. Subsequently, infant care has become a challenge to many families in their daily life. Mother is always worries about the wellbeing of her baby (Garcia et al., 2013). As we seen in Nigeria both the parents need to work and look after their babies/infants, so more workload and stress is there on such families especially on female counterparts. This system is developed which continuously gives updates about their infants during illness or during normal routine then it will be of great help to such members as they can work in stress less environment giving more fruitful output. Also urgent situation condition can be quickly be noticed and handled within less time.

1.3                                    AIM AND OBJECTIVES OF THE STUDY

The main aim of this study is to a baby-pram monitoring system which is an automatic caretaker room for a baby. The objectives of the study are:

  1. To build the system prototype model
  2. To save time and energy of very busy
  • To ensure wellbeing of the infants in absents of their parents.

1.4                                           SIGNIFICANCE OF THE STUDY

This study shall serve as a means of taking care of urgent situation of infants by giving a quick notice that will cause the situation to be handled within less time. Usually, when a young baby cries, the cause is one of the following things i.e. they are hungry, tired, not feeling well or need their diaper changed. So we This proposed system serve as a means of generating a peace of mind to loved ones when they are away from their infant as they can get an update status of their wellbeing. The other advantage is the programmability of alarm conditions can alleviate any inaccuracy through a normal sensor.

1.5                                                   SCOPE OF THE STUDY

The scope of this work covers building a prototype which gives a reliable and efficient baby monitoring system that can play a vital role in providing better infant care. This system monitor vital parameters like temperature, sound, acceleration, light intensity, position location and movement of an infant and using GSM network this information is transferred to their parents. Measurements of vital parameters can be done and under risk situation conveyed to the parents with alarm triggering system to initiate the proper control actions.

1.6                                                        METHODOLOGY

To achieve the aim and objectives of this work, the following are the steps involved:

  1. Study of the previous work on the project so as to improve it efficiency.
  2. Draw a block diagram.
  • Test for continuity of components and devices,
  1. programming of microcontroller
  2. Design and calculation for the work was carried out.
  3. Studying of various component used in circuit.
  • Construct the whole circuit.
  • Finally, the whole device was cased and final test was carried out.
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