Open Access   Article Go Back

Real Time IoT Application of Urban Garden Design

Sindhu P.1 , Leena Giri G.2

Section:Research Paper, Product Type: Journal Paper
Volume-8 , Issue-9 , Page no. 106-109, Sep-2020

CrossRef-DOI:   https://doi.org/10.26438/ijcse/v8i9.106109

Online published on Sep 30, 2020

Copyright © Sindhu P., Leena Giri G. . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

View this paper at   Google Scholar | DPI Digital Library

How to Cite this Paper

  • IEEE Citation
  • MLA Citation
  • APA Citation
  • BibTex Citation
  • RIS Citation

IEEE Style Citation: Sindhu P., Leena Giri G., “Real Time IoT Application of Urban Garden Design,” International Journal of Computer Sciences and Engineering, Vol.8, Issue.9, pp.106-109, 2020.

MLA Style Citation: Sindhu P., Leena Giri G. "Real Time IoT Application of Urban Garden Design." International Journal of Computer Sciences and Engineering 8.9 (2020): 106-109.

APA Style Citation: Sindhu P., Leena Giri G., (2020). Real Time IoT Application of Urban Garden Design. International Journal of Computer Sciences and Engineering, 8(9), 106-109.

BibTex Style Citation:
@article{P._2020,
author = {Sindhu P., Leena Giri G.},
title = {Real Time IoT Application of Urban Garden Design},
journal = {International Journal of Computer Sciences and Engineering},
issue_date = {9 2020},
volume = {8},
Issue = {9},
month = {9},
year = {2020},
issn = {2347-2693},
pages = {106-109},
url = {https://www.ijcseonline.org/full_paper_view.php?paper_id=5220},
doi = {https://doi.org/10.26438/ijcse/v8i9.106109}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v8i9.106109}
UR - https://www.ijcseonline.org/full_paper_view.php?paper_id=5220
TI - Real Time IoT Application of Urban Garden Design
T2 - International Journal of Computer Sciences and Engineering
AU - Sindhu P., Leena Giri G.
PY - 2020
DA - 2020/09/30
PB - IJCSE, Indore, INDIA
SP - 106-109
IS - 9
VL - 8
SN - 2347-2693
ER -

VIEWS PDF XML
280 292 downloads 156 downloads
  
  
           

Abstract

Gardening is a common pastime for people who love nature. Plants always requires a careful and continues monitoring. Most of the time it will turn into a responsibility. Sometimes garden owner need to go out for a while, then garden may keep on unattended. Internet of thing can give a possible solution for this problem. Environmental condition of the garden can be monitored continuously by using an electronic technology in the garden. Using IoT (Internet of Things), environmental condition in the garden can be monitor through the internet. Gardening is a very exciting to do. So I was very interested in making a project related to it. Nowadays people will enjoy gardening by using an IoT application to it (smart Garden). Moreover the important task here is making the project very simple so that anybody can use this in their garden. In this proposed project garden monitoring system is developed. Here the multiple nodes are designed to collect data from garden and sent to the main node that will upload the data to server where people can assimilate all the condition of their garden.

Key-Words / Index Term

Raspberry Pi, Arduino board, Light sensor, Soil moisture sensor, Humidity and Temperature sensor

References

[1]. A. Imtiaz, S. G. Omar, and T. A. Ali, "Efficient Design of a LowCost Portable Weather Station," pp. 2–8, 2018.
[2] Wen-Tsai Sung, Jui-Ho Chen, Ching-Li Hsiao, Jia-Syun Lin, “Multi-Sensors Data Fusion Based on Arduino Board and XBee Module Technology”, Internatonal Symposium on Computers,Consumer and Control, International Conference, 2014
[3] Vinay Raghavan, Hamid Shahnasser, “Embedded Wireless Sensor Network for Environment Monitoring”, Journal of Advances in Computer Networks, 2015
[4] Andrey Somov, Alexander Baranov, Alexey Savkin, Denis Spirjakin, Andrey Spirjakin, Roberto Passerone, “Development of wireless sensor network for combustible gas monitoring”, Sensor and Actuators, pp. 398-405, 2011
[5] E.S. Nadimia, H.T. Sogaard, T. Bak, F.W. Oudshoorn, “ZigBee-based wireless sensor systems for monitoring creature presence and pasture time in a strip of new meadow”, Journal article from Elsevier science, pp. 79-87, 2008
[6] V. N. R. Gunturi, “Micro controller based automatic plant irrigation system”, International Journal of Advancements in Research & Technology, vol. 2, no. 4, pp. 194–198, 2013.
[7] Y. Chen, “IoT-based Green House System with Splunk Data Analysis”, IEEE Conf. Pap., no. iCAST, pp. 260–263, 2017.
[8] A. Imtiaz, S. G. Omar, and T. A. Ali, "Efficient Design of a LowCost Portable Weather Station", pp. 2–8, 2018.
[9] M. S. Ali, A. O. Akode, S. D. Awadalkareem, F. M. Ahmed, and W. Madani, “Monitoring System”, pp. 0–4, 2017.
[10] B. C. C. Gaja Priya, M. Abishek Pandu, “Automatic Plant Monitoring and Controlling System over GSM using sensors”, pp. 5–8, 2017.
[12] Maslennikov, "Hardware and software architecture of multi mems sensor inertial module", Int. Conf. Integr. Navig. Syst. ICONS 2017 - Proc., 2017.
[13] L. M. Thet, A. Kumar, N. Xavier, and S. K. Panda, "A Smart Lighting System using Wireless Sensor-Actuator Network", IEEE Conf. Pap., no. September, pp. 217–220, 2017.
[14] I. Srilikhitha, M. M. Saikumar, N. Rajan, M. L. Neha, and M. Ganesan, “Automatic irrigation system using soil moisture sensor and temperature sensor with microcontroller AT89S52”, 2017 Int. Conf. Signal Process. Commun., no. July, pp. 186–190, 2017.
[15] Mithya V, Aishwarya M, Gayathri S, Mahalakshmi L S, Pavitra S, “International Journal of Innovative Technology and Exploring Engineering” Vol-8, Issue-5S, March, 2019