IOT Base Comma Patient Monitoring System
The IoT technology tremendously increases the data value, performance, efficiency, accuracy and the speed of the system operation, and the output results. The use of sensors has made data transmission, analytics and visualization efficient, as well as real-time processing. These functionalities sign
2025-06-28 16:28:02 - Adil Khan
IOT Base Comma Patient Monitoring System
Project Area of Specialization Internet of ThingsProject SummaryThe IoT technology tremendously increases the data value, performance, efficiency, accuracy and the speed of the system operation, and the output results. The use of sensors has made data transmission, analytics and visualization efficient, as well as real-time processing. These functionalities significantly changed the way we communicate within and outside organizations and industries. In addition, they have changed the way a huge volume of data is stored and retrieved from the cloud and data centers. For better patient monitoring, there is the need to have a medical specialist close to the comma patient for direct monitoring and control. However, having a specialist at all times to look after the comma patient for treatment, drug administration etc., is not possible these days due to covid-19 & their scarcity and very tight schedules. Therefore, remote comma patient monitoring and control is the best approach to take proper care of the comma patient. This approach will provide the physical parameters that are required by the medical specialist, and the data can be transmitted remotely through the internet.
Project ObjectivesThe use of sensors and internet of things (IoT) technology to produce an integrated prototype to ease monitoring and control of heart-related problems.
1. A working prototype to detect and monitor comma patient heartbeat rate in real-time.
2. The system displays the comma patient heartbeat rate on liquid crystal display (LCD) screen in real-time.
3. The system transmits the user’s sensed data to the internet for analytics and visualization.
4. Medical practitioners can monitor and control the comma patient remotely at any location.
Project Implementation MethodThe process that has been used for developing this project is agile methodology for developing a Heart+coma Patient Monitoring System. So, for developing a system, first gather the requirements and plan accordingly, then after formulating a design and implement it. After the implementation test the system and forms a result. If there are defects or challenges in the system, then changes can be made and fix the issues. This model helps ease the process of development through step by step approach rather than building a new product all at once.
for this we test every sonsor work seprately then combine them gradually to check work
Benefits of the ProjectIt will help in doctor patient interaction or providing live monitoring to doctor in this covid-19 situation and after it in long term it will give benefit to a patient of remote areas and doctor interaction in future we are also able to include oxygen saturation and pulse monitoring in it.
Technical Details of Final DeliverableThe list of project deliverables is:
? Project Management Plan
? Software Requirements Specification
? Software Design
? Mile-stones (coding and implementation)
? Fixing Bugs
? Testing
? Final Report
Final Deliverable of the Project HW/SW integrated systemCore Industry MedicalOther Industries Education , IT , Health , Telecommunication Core Technology Internet of Things (IoT)Other Technologies Artificial Intelligence(AI)Sustainable Development Goals Good Health and Well-Being for PeopleRequired Resources| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Total in (Rs) | 78860 | |||
| EYE BLINK | Equipment | 2 | 1000 | 2000 |
| MOTION SENSOR | Equipment | 2 | 700 | 1400 |
| ECG SENSOR | Equipment | 2 | 6000 | 12000 |
| TEMPERATURE SENSOR | Equipment | 4 | 400 | 1600 |
| PULSEOXIM SENSOR | Equipment | 3 | 2500 | 7500 |
| SONAR | Equipment | 4 | 400 | 1600 |
| IR | Equipment | 4 | 440 | 1760 |
| lCD | Equipment | 2 | 800 | 1600 |
| BUZZER | Equipment | 10 | 130 | 1300 |
| ARDUINO | Equipment | 2 | 3800 | 7600 |
| WIFI MODULE | Equipment | 2 | 4200 | 8400 |
| PROJEC BOARD | Equipment | 10 | 800 | 8000 |
| JUMP WIRES | Miscellaneous | 1000 | 5 | 5000 |
| CUTTERS | Miscellaneous | 3 | 450 | 1350 |
| BOLT KIT | Miscellaneous | 2 | 750 | 1500 |
| PROJECT BODY | Miscellaneous | 1 | 2150 | 2150 |
| EYE BLINK | Equipment | 2 | 1000 | 2000 |
| MOTION SENSOR | Equipment | 2 | 700 | 1400 |
| ECG SENSOR | Equipment | 0 | 0 | 0 |
| TEMPERATURE SENSOR | Equipment | 4 | 400 | 1600 |
| PULSEOXIM SENSOR | Equipment | 3 | 2500 | 7500 |
| SONAR | Equipment | 4 | 400 | 1600 |
| IR | Equipment | 0 | 0 | 0 |
| lCD | Equipment | 0 | 0 | 0 |
| BUZZER | Equipment | 0 | 0 | 0 |
| ARDUINO | Equipment | 0 | 0 | 0 |
| WIFI MODULE | Equipment | 0 | 0 | 0 |
| PROJEC BOARD | Equipment | 0 | 0 | 0 |
| JUMP WIRES | Miscellaneous | 0 | 0 | 0 |
| CUTTERS | Miscellaneous | 0 | 0 | 0 |
| BOLT KIT | Miscellaneous | 0 | 0 | 0 |
| PROJECT BODY | Miscellaneous | 0 | 0 | 0 |