Zigbee Based Temperature Monitoring and Controlling in Matlab

Authors

  • Shilpa Chaman Assistant Professor, IPEC, Ghaziabad - 201 010, Uttar Pradesh, India

DOI:

https://doi.org/10.51983/ajes-2013.2.1.1858

Keywords:

Atmega16 Microcontroller,, Temperature Sensor, MATLAB, IEEE 802.15.4 standard-Zigbee Protocol

Abstract

Efficient design and implementation of wireless sensor network has become an emerging area of research in recent years, due to vast potential of sensor network enables application that connect the physical world to the virtual world. By networking large numbers of Zigbee sensor nodes, it is possible to obtain data about physical phenomena that was difficult or impossible to obtain in conventional ways. In this paper a wireless temperature sensing and controlling system for real time dynamics has been proposed. Variation in the temperature is recorded in the GUI window and proper controlling action is taken accordingly. An 8-bit Atmega16 [1] microcontroller has been used to interface the temperature sensor using the IEEE 802.15.4 standard, Zigbee protocol. Zigbee has the characteristics of low power consumption, low cost and self organizing features.

References

http://www.datasheetcatalog.com/datasheets_pdf/A/T/M/E/ ATMEGA16.shtml:Atmel’sMicrocontroller ATmega16 [2] David Egan, “The emergence of ZigBee in building automation and industrial controls”, IEEE Computing and Control Engineering. pp 14-19, April/May 2005.

S.S.Riaz Ahamed, “Role of Zigbee technology in future data communication system”, Journal of Theoretical and Applied Information Technology, Vol.5 No. 2, pp 129-135, 2005.

Elber CEO Jeff Grammer “ZigBee starts to buzz”, IEEE review, IET journal, Vol. 50, No. 11, pp-17, November 2004. [5] David Geer “Users make a Beeline for ZigBee Sensor Technology”, IEEE Computer Society, Vol. 38, No. 12, pp 16-19,December 2009.

Jaun A. Fraile, Javier Bajo, Juan M. Corchando and Ajith Abraham, “Applying wearable solutions in dependent environments”, IEEE Transaction on Information Technology in Biomedicine, Vol. 14, No. 6, pp 1459-1467, November 2010.

Sang-Joong Jung, Tae -Ha Kwon and Wan-Youn g Chung, “A New Approach to Design Ambient Sensor Network for Real Time Healthcare Monitoring System”, IEEE Sensors Conference, pp 576- 580, 2009.

LIU Yumei, ZHANG Changli and ZHU Ping, “Design and Implementation of nodes based on CC2430 for Agricultural Information Wireless Monitoring”, ICCAE 2nd International Conference of IEEE, Vol.5, pp 255-258, 2010. [9] Khushvinder Gill, Shuang-Hua Yang,Fang Yao and Xin Lu, “A ZigBee- Based Home Automation System”, IEEE Transactions on Consumers Electronics, Vol. 55, No. 2, May 2009.

Chagitha Ranhotigamage and Subhas Chandera Mukhopadhyay, “Field trials and performance monitoring of distributed solar panels using a low- cost wireless sensors network for domestic application”, IEEE Sensors Journal, Vol. 11, No.10, pp 2583-2590, October 2011.

Hainan Long, Leyang Zhang, Jiao Pang and aixia Li,Tierui Song, ”Design of Substation Temperature Monitoring System Based on Wireless Sensor Networks”, Advance Computer Control (ICACC), 2010 2nd International Conference on, Vol. 1, pp- 127-130, 2010.

http://www.fairchildsemi.com/ds/LM/LM317.pdf: LM317 Voltage Regulator

http://www.maxstream.net/products/xbee/datasheet_XBee_OEM_ RF-Modules.pdf: Maxtream’s Transceiver XBee

http://pdfserv.maxim-ic.com/en/ds/MAX220-MAX249.pdf: MAX232 Line Drivers/Recievers

http://winavr.sourceforge.net/:WinAVR Software Development Tool.

http://www.lancos.com/prog.html: PonyProg Serial Device Programmer

Downloads

Published

05-05-2013

How to Cite

Chaman, S. (2013). Zigbee Based Temperature Monitoring and Controlling in Matlab. Asian Journal of Electrical Sciences, 2(1), 1–4. https://doi.org/10.51983/ajes-2013.2.1.1858