Wireless Real-Time Monitoring System Applied in a Tomato Greenhouse

被引:0
作者
Morales-Morales, C. [1 ]
Najera-Medina, P. R. [1 ]
Castro-Bello, M. [1 ]
Morales-Morales, J. [2 ]
Hernandez-Romano, J. [3 ]
机构
[1] ITC, Inst Tecnol Cuautla, Dept Ingn Elect Mecatron, Yecapixtla, Morelos, Mexico
[2] Univ Autonoma San Luis Potosi, Coordinac Acad Reg Altiplano, Matehuala, San Luis Potosi, Mexico
[3] Univ Politecn Edo Morelos, Ingn Biotecnol, Jiutepec, Mexico
来源
PROCEEDINGS OF THE XXII 2020 IEEE INTERNATIONAL AUTUMN MEETING ON POWER, ELECTRONICS AND COMPUTING (ROPEC 2020), VOL 4 | 2020年
关键词
Data Acquisition; Graphical Interface; XBee;
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
The objective of this paper was to propose a real-time wireless monitoring system using the XBee connected with Arduino board, installed in a greenhouse with tomato plants, with dimensions of 12 meters long, 2.7 meters wide and three meters high. The proposed system helped to user to collect measurements from the sensors of temperature and humidity of the air, temperature and humidity of the substrate and amount of CO2, which facilitates keeping a record of the different states of the climate in the greenhouse. This, through a graphical interface that stores the data collected in real time in a .txt file. The results obtained from the proposed system were experimentally validated using commercial modules HOBO model U12, managing to show that with a low-cost wireless monitoring system the monitoring of physical variables within the greenhouse is viable, providing quality in the measurement and an alternative to tomato agricultural producers
引用
收藏
页数:6
相关论文
共 50 条
[31]   Applied Research of the Inner Timer of General Microcomputer in High-Speed and Real-Time Data Acquisition System [J].
苏红旗 ;
宁书年 ;
马小龙 .
JournalofChinaUniversityofMining&Technology, 1998, (02) :185-189
[32]   Raspberry Pi-based IoT for shrimp farms Real-time remote monitoring with automated system [J].
Capelo, Jesus ;
Ruiz, Erick ;
Asanza, Victor ;
Toscano-Quiroga, Tonny ;
Sanchez-Pozo, Nadia N. ;
Lorente-Leyva, Leandro L. ;
Peluffo-Ordonez, Diego Hernan .
2021 INTERNATIONAL CONFERENCE ON APPLIED ELECTRONICS, AE, 2021, :25-28
[33]   A Supervisory System for Real-Time Oscillography of Synchronous Generators [J].
Cruz, M. F. ;
Riechel, T. L. ;
Obadowski, V. N. ;
Ugoski, P. E. M. ;
Richter, C. M. ;
Severo, S. L. S. ;
Lerm, A. A. P. ;
Oliveira, M. O. ;
Paz, M. C. R. ;
Bretas, A. S. ;
Franco, D. T. ;
Ciarelli, W. de F. .
2012 SIXTH IEEE/PES TRANSMISSION AND DISTRIBUTION: LATIN AMERICA CONFERENCE AND EXPOSITION (T&D-LA), 2012,
[34]   Development of a real-time table tennis scoring system [J].
Li, WH ;
Liu, B ;
Kosasih, PB .
Proceedings of the International Conference on Mechanical Engineering and Mechanics 2005, Vols 1 and 2, 2005, :170-173
[35]   A Real-Time Flood Alert System for Parking Lots [J].
Baez, Homar ;
Vergara-Laurens, Idalides ;
Torres-Molina, Luz ;
Jaimes, Luis G. ;
Labrador, Miguel A. .
2017 IEEE 7TH ANNUAL COMPUTING AND COMMUNICATION WORKSHOP AND CONFERENCE IEEE CCWC-2017, 2017,
[36]   Ih real-time recording system for radio applications [J].
Ancona, F ;
Christensen, F ;
Nguyen, A .
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON PARALLEL AND DISTRIBUTED PROCESSING TECHNIQUES AND APPLICATIONS, VOLS I-V, 2000, :1531-1537
[37]   Real-time Linux experiment interface system: RTLab [J].
Culianu, CA ;
Christini, DJ .
PROCEEDINGS OF THE IEEE 29TH ANNUAL NORTHEAST BIOENGINEERING CONFERENCE, 2003, :51-52
[38]   Distributed Multi-Sensor Real-Time Building Environmental Parameters Monitoring System with Remote Data Access [J].
Beinarts, Ivars ;
Grunde, Uldis ;
Jakovics, Andris .
ELECTRICAL CONTROL AND COMMUNICATION ENGINEERING, 2014, 7 (01) :41-46
[39]   A Low-cost Stand-alone Real-time Multi-channel Frequency Monitoring System [J].
Abdallah, M. ;
Elkeelany, O. .
IEEE SOUTHEASTCON 2010: ENERGIZING OUR FUTURE, 2010, :1-4
[40]   IoT based Data Acquisition System for Real-Time Pressure Measurement of Sea Water [J].
Colaco, John ;
Lohani, Rajesh B. .
PROCEEDINGS OF THE 2020 FOURTH WORLD CONFERENCE ON SMART TRENDS IN SYSTEMS, SECURITY AND SUSTAINABILITY (WORLDS4 2020), 2020, :417-420