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In today’s era, IoT is playing an important role in health care
systems. The prime aim of the project is to design and implement
effective health care monitoring dashboard. The proposed system
monitors the vital Temperature, BP, Heart rate etc and transmits
through IoT. The transmitted data is displayed in the PC based
application called the central nurse station. This data gets updated
into database continuously. This enables the doctor to receive the
current status of the patient in real time. If any parameter of a
particular patient goes beyond a pre-assigned threshold value, an
automated notification will enable a buzzer and display.
• To help fast communication and identifying
emergency and initiate communication with
• It also helps to initiate proactive and quick
Internet of things
The internet of things (IOT) is the network of physical objects or
things embedded with electronics, software, sensors and network
connectivity, which enables these objects to collect and exchange
Features of IOT :-
Embedded information processing
• ARDUINO MICRICONTROLLER
• HEART BEAT,BLOOD
• IOT INTERFACE
• LCD DISPLAY
• MPLAB X IDE
• ADRUINO IDE
• XC8 COMPILER
• PROTEUS 8.0 PROFESSIONAL
Arduino is an open source physical processing hardware, which is
based on a microcontroller board. Arduino can run on any platform that
includes Windows, Linux Operating System.
The Arduino can be used to develop an interactive interface, get inputs
from a diverse collection of switches as well as sensors, and
simultaneously control the output from various physical devices
including lights and other appliances.
Reasons for Choosing Arduino
Easy to program
There are some system present in market but
all are having some difficulties.
Lack of integration sensors
Takes time to analyze the manual
Complex system and difficult to
Single parameter monitoring system.
Advantages OF PROPOSED METHOD
Bridging the gap between the doctor
and the patients.
It is a multipurpose device, so that
overall conditions are easily
IOT, the cloud storage is more
reliable and does have minimal
chances of data loss.
The availability of low-cost single-chip
microcontrollers, and advances in wireless
communication technology has encouraged engineers
to design low-cost embedded systems for healthcare
• Mohammed, J., Lung, C.-H., Ocneanu, A., Thakral, A., Jones, C., Adler, A.:
Internet of Things remote patient monitoring using web services and cloud
computing. In: IEEE International Conference on Internet of Things
(iThings), pp. 256–263. IEEE (2017)
• Archip, A., Botezatu, N., Serban, E., Herghelegiu, P.-C., Zal, A.: An IoT
based system for remote patient monitoring. In: 17th International
Carpathian Control Conference (ICCC), pp. 1–6 (2016).
• Dhanaliya, U., Devani, A.: Implementation of e-health care system using
web services and cloud computing. In: International Conference on
Communication and Signal Processing - (ICCSP), pp. 1034–1036 (2016)