Design of ARM based Data Acquisition and Control using GSM and TCP\IP network
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Design of ARM based Data Acquisition and Control using GSM and TCP\IP network
Description
ABSTRACT
Automatic irrigation systems are convenient, especially for those who travel. If installed and programmed properly, automatic irrigation systems can even save your money and help in water conservation. Dead lawn grass and plants need to be replaced, and that can be expensive but the savings from automatic irrigation systems can go beyond that. Watering with a hose or with oscillator wastes water. !either method targets plant roots with any significant degreeof precision. Automatic irrigationsystems can be programmed to discharge more precise amounts of water in a targeted area, which promotes water conservation since the deployment and use of wired systems in remote areas is usually unfeasible due to high costs, wireless is the best solution.
Web server is used to transmit the information of these resources to users in an orderly and controlled manner using Ethernet protocol. The irrigation controller node is composed of a micro-processor, transceivers, analog to digital converters. Sensor nodes are deployed for field process monitoring and control. The sensing parameters can be displayed as values in PC.if there are any exceed condition of parameters (temperature, humidity, moisture) using mobile communication (GSM) it will send SMS. The proposed system makes remote monitoring possible in irrigation applications.
EXISTING SYSTEM
- Data not received accurately
- No protocol architecture
- No communication device
PROPOSED SYSTEM
- Data receiving is very high
- Ethernet protocol architecture is used
- Mobile communication is used
- Automatic control
BLOCK DIAGRAM
Irrigation control section
Monitoring section
HARDWARE REQUIREMENTS
- Microcontroller
- Temperature Sensor
- Humidity sensor
- GSM
- ETHERNET Protocol
- Moisture sensor
SOFTWARE REQUIREMENTS
- Keil
- VB6
- Orcad
- Flash Magic
- Proteus
ADVANTAGES
- Decreased field damaging conditions
- Improved safety and security
- High quality receiving data
- Less power consumption
- High speed data rate
APPLICATIONS
- Field Application
- Industrial Applications
- Protocol based Applications
- Communication applications
REFERENCES
[1] JinLin Hu and Zhengzhen Zhang, “The Design of Wireless Data Acquisition System Based on STM32 and virtual instrument,” 978-1-61284-683-5/12/$31.00 ©2012 IEEE.
[2] Daogang Peng, “Research and Development of the Remote I/O Data Acquisition System Based on Embedded ARM Platform”, International Conference on Electronic Computer Technology, 978-0-7695-3559-3/09 $25.00 © 2009 IEEE
[3] Gan-ping Li, “Design of an Embedded Control and Acquisition System for Industrial Local Area Networks Based on ARM”, The 5th International Conference on Computer Science & Education Hefei, 978-1-4244-6005-2/10/$26.00 ©2010 IEEE
[4] Zhao Ruimei, Wang Mei, “Design of ARM-based Embedded Ethernet Interface”, 978-1-4244-6349-7/10/$26.00 _c 2010 IEEE
[5] Mahboob Imran Shaik, “Design & Implementation of ARM-Based Data Acquisition System”, 978-1-4577-1894-6/11/$26.00©2011 IEEE 38.
Additional information
Weight | 1.000000 kg |
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