Design of Data Acquisition Module Based on Power Line Carrier

Article Preview

Abstract:

With the development of electronic technology and network technology, the use of power line carrier as a signal for transmission by the people more and more attention has been increasingly widely used. In this paper, the design of data acquisition module is proposed based on the SSC P300 power line carrier communication. The overall design mainly includes four parts, that is, the main processor AT89C51, data acquisition chip TLC2543, SSC P300and the power line simulation .In order to achieve half-duplex data communication through the 220V power line, we use the more advanced spread spectrum technology, and select both Chip SSCP300 and P111 PL to meet the criteria of CEBus. The experiment results indicate that the design of data acquisition module can obtain much better quality of communication and much stronger anti-jamming.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 926-930)

Pages:

2301-2304

Citation:

Online since:

May 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] G. Bumiller, L. Lampe and Hrasnica H: Communications Magazine, IEEE, Vol. 48 (2010) No. 4, pp.106-113.

Google Scholar

[2] S. Chen, Y. L. Guan: Transactions on Power Delivery , Vol. 19 (2005) No. 3, p.1057–1064.

Google Scholar

[3] A. Majumder: Potentials, IEEE, Vol. 23 (2004) No. 4, p.4–8.

Google Scholar

[4] L.V. Yingjie, H.P., B. Zhao: Power System and Clean Enegry, Vol. 26 (2010) No. 4, p.39–42.

Google Scholar

[5] J. Zhuang, G. X. Yang: Journal of China University of Mining &Technology, Vol. 13 (2003) No. 2, p.174–178.

Google Scholar

[6] S. J. Liu, W. Wang, Y. G Feng: Electrical Measurement & Insrumention, Vol. 9 (2003) No. 12, p.37–41.

Google Scholar

[7] Y. Guo, M. G Wu, Y. R Zhang: Industrial Control Computer, Vol. 16 (2003) No. 6, p.14–16.

Google Scholar

[8] G. Wu, Y.L. Sun: RELAY, Vol. 33 (2005) No. 10, p.17–20.

Google Scholar