International Journal of Computer Applications |
Foundation of Computer Science (FCS), NY, USA |
Volume 177 - Number 12 |
Year of Publication: 2019 |
Authors: Pranali Patil, Udaykumar Naik, Vijay Rayar |
10.5120/ijca2019919525 |
Pranali Patil, Udaykumar Naik, Vijay Rayar . Implementation of Smart Health Care system using Zig-Bee enabled RFID and FPGA Technology. International Journal of Computer Applications. 177, 12 ( Oct 2019), 22-25. DOI=10.5120/ijca2019919525
In today’s healthcare domain Field Programmable Gate Array (FPGA) based platforms using Zig-bee based wireless network helps in medical diagnosis. This paper proposes a simplified real time FPGA system for human physiological purposes. Innovations like the output is observed at the transmitter side on LCD as well as at the receiver side on the display screen id done successfully. In the period of developing population, basic issues in medicinal services framework made the nation some way or the another battling against the wasteful medicinal services. The system provides a simplified testing platform for blood pressure and virtual signal measurements. With the progression of electronic industry, the chip out of date quality is a noteworthy concern. The versatile VLSI configuration is a developing pattern to move from bespoke custom chip based framework to the delicate center processor inserted inside FPGA due to the requesting favourable circumstances like low NRE cost, low time to advertise, less equipment, amazing structure adaptability and reinvent capacity, low power utilization and rapid execution. In electronic industry there are such a significant number of zones, similar to remote interchanges, mechanical autonomy and so forth, where versatile structure has been actualized. In this angle, an endeavour has been made to plan what's more, actualize a propelled human services framework in this article utilizing Zig-bee enabled RFID innovation as per the progressed VLSI plan of the processor. The framework is extremely quick and cost effective obtaining nearly 0% recognizable identification error. Xilinx ISE 14.3 simulator system has been utilized to simulate the processor module and so as to substantiate our structure we have utilized high performance Spartan 6 FPGA board.