A SIMPLE AND CONVENIENT SOLUTION FOR DATA ACQUISITION USING THE LABVIEW INTERFACE FOR ARDUINO VIA THE LINX MODULE
Abstract
This article focuses on utilizing the use of merging Labview software with Arduino via the LINX module in data acquisition from common sensors. First, a general overview of the process is offered with covering the connection between hardware components and software programs. The sensors’ data is sent into LabVIEW software through the Arduino board. The signal is processed, monitored, and recorded here. Following that, data acquisition programs from pressure sensors and ultrasonic sensors will be presented and evaluated in order to display and evaluate the data and visualization capabilities. The proposed solution is very suitable for small-scale applications with low-cost requirements in data acquisition.
References
Sivaranjani .T, Ramprasad. V, Sangavi. N , Poornachandran. G , Anitha. U. An Inexpensive Data Acquisition and Control for Level Process. International Journal of Applied Engineering Research, 2015, Volume 10, No 38.
Cristina . SC, Calin .C, Bogdan-Petru .B. An IoT-Based Smart Home Automation System. Sensors, 2021, 21(11), 3784.
Somesh .K, Gaurav .S, Ashavani .K. An Automated Control System: Using Lab VIEW, Android and Arduino. International Journal of Advanced Science and Technology, 2013.
Marco .S , Oliver .M. Programming Arduino with LabVIEW, 2015.
Tien. T.X, David .C. The effect of system improvement on regulation of pressure inside pneumatic spring element and on transmission of acceleration. Vibroengineering PROCEDIA, 2019, Vol. 27, pp. 49-54.
Ding, M., Liu, B. & Wang, L. Position control for ball and beam system based on active disturbance rejection control. Systems Science & Control Engineering, 2019, 7 (1), pp. 97-108.
Kiwon, Y., Intelligent controller modelling for steerable robotic bar using bio-inspired control synthesis. Microsystem Technologies, 2018.
. https://create.arduino.cc/projecthub/abdularbi17/ultrasonic-sensor-hc-sr04-with-arduino-tutorial-
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