References
[1]. Gupta, P. M., Salpekar, M., & Tejan, P. K. (2018,
January). Agricultural practices improvement using IoT
enabled SMART sensors. In 2018, International Conference on Smart City and Emerging Technology (ICSCET) (pp. 1-5).
IEEE. https://doi.org/10.1109/ICSCET.2018.8537291
[2]. Jaiganesh, S., Gunaseelan, K., & Ellappan, V. (2017,
March). IOT agriculture to improve food and farming
technology. In 2017, Conference on Emerging Devices
and Smart Systems (ICEDSS) (pp. 260-266). IEEE. https://doi.
org/10.1109/ICEDSS.2017.8073690
[3]. Joshi, P. P., Kanade, S. S., & Joshi, S. P. (2017). Wireless
sensor network and monitoring of crop field. IOSR Journal of
Electronics and Communication Engineering (IOSR-JECE),
12(1), 23-28.
[4]. Prathibha, S. R., Hongal, A., & Jyothi, M. P. (2017,
March). IoT based monitoring system in smart agriculture.
In 2017, International Conference on Recent Advances in
Electronics and Communication Technology (ICRAECT)
(pp. 81-84). IEEE. https://doi.org/10.1109/ICRAECT.2017.52
[5]. Ray, P. P. (2017). Internet of things for smart agriculture:
Technologies, practices and future direction. Journal of
Ambient Intelligence and Smart Environments, 9(4), 395-
420. https://doi.org/10.3233/AIS-170440
[6]. Shylaja, S. N., & Veena, M. B. (2017, August). Real-time
monitoring of soil nutrient analysis using WSN. In 2017,
International Conference on Energy, Communication,
Data Analytics and Soft Computing (ICECDS) (pp. 3059-
3062). IEEE. https://doi.org/10.1109/ICECDS.2017.8390018
[7]. Sreekantha, D. K., & Kavya, A. M. (2017, January).
Agricultural crop monitoring using IoT-A study. In 2017, 11th
International Conference on Intelligent Systems and
Control (ISCO) (pp. 134-139). IEEE. https://doi.org/10.1109/
ISCO.2017.7855968
[8]. Vadalia, D., Vaity, M., Tawate, K., Kapse, D., & Sem, S. V.
(2017). Real Time soil fertility analyzer and crop prediction.
International Research Journal of Engineering and
Technology (IRJET), 4(3), 3-5.