PUKYONG

A Study on Data Monitoring of Multiple Sensors and Internet Service

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Alternative Title
복수개의 센서 자료 모니터링과 인터넷 서비스 데이터에 대한 연구
Abstract
There are several sensors that are used to perform different activities in daily life whereby the DHT11 sensor is used to measure temperature and humidity. HC-SR04 sensor detects object and distance, Water Level sensors are able to measure the level of substances that can flow and MQ-5 sensors are used to build fire alarming systems. In this study, several sensors are used to monitor real-time situation of an experimental environment. The aim of this study is to develop a framework where able to interface multiple sensing elements that can collect data from the sensors connected through Arduino, software such as TeraTerm and Xampp. In previous studies, the use of sensors was minimal.
The proposed system has an ability to record temperature, humidity, distance, water level, smoke level and alarms when an abnormal situation appears. The developed framework will automatically save data into phpmyadmine web server using Tera term without any external physical module such as ethernet-shield. Furthermore, the built framework creates a database for each of the sensors. This study involves the use of multiple sensors to monitor physical properties as we represent different sensors and their use in normal life.
Author(s)
HOSSAIN MD NAJMUL
Issued Date
2021
Awarded Date
2021. 8
Type
Dissertation
Publisher
부경대학교
URI
https://repository.pknu.ac.kr:8443/handle/2021.oak/1068
http://pknu.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=200000508332
Affiliation
부경대학교 대학원
Department
대학원 IT융합응용공학과
Advisor
김정남
Table Of Contents
I. Introduction 1
1.1. Systematic Challenges 1
1.1.1. Data collection and analysis 2
1.1.2. Data Shearing 3
1.1.3. Research and Testing 3
1.2. Technological Challenges 4
1.2.1. System and Design 4
II. Related Works 6
2. Web-based data logging system 6
2.1. Lab View and Data Logger 7
2.2. Weather Monitoring 7
2.3. Student Record Management System (SRMS) 8
III. The Proposed Methods and Experimental Results 9
3. Architectural Design 9
Hardware part 9
3.1. Arduino Mega AT2560 9
3.2. Technical specification of Arduino mega AT2560 10
3.3. DHT11 Sensors 11
3.4. Ultrasonic Sensors 12
3.5. Water Level Sensor 13
3.6. Gas Sensor 13
3.7. Touch Sensor 14
3.8. Moisture Sensor 14
3.9. Arduino IDE 15
3.10.Xampp 15
3.11. Phpmyadmin 16
3.12. Tera Term 17
3.13. Python 17
4. Proposed Method 18
4.1. Experiment results and discussion 20
IV. Conclusion 25
References 26
Acknowledgment 28
Degree
Master
Appears in Collections:
대학원 > IT융합응용공학과
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