The use of "Echo model" in the design of data communication system on power supply networks

Authors

  • S. V. Onopa National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev
  • B. M. Bereziansky National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev

DOI:

https://doi.org/10.20535/RADAP.2014.56.121-128

Keywords:

echo model, PLC, data transmission, broadband systems, spectral response, phase response, power lines, attenuation, impedance

Abstract

Introduction. Analysis of power supply network and research parameters for possible use as an environment of data transfer which are considered in the broadband frequency range. The purpose of this work is the usage of "echo model" in research of features of electric grid.
Description of the modeling. To study the proposed model is necessary to research the parameters of the electric grid: capacitance, inductance, conductance and conductor resistance, which are the initial data for modeling. Consideration of the grid as multipath channel includes: a reflection signal which is present because of uncoordinated resistance and causes attenuation and signal delay. The transfer function of model considers to all listed above effects.
Conclusions. Modeling results, which are the graphical representation of the channel characteristics for copper and aluminum wires. Recommendations for the use of PLC technology the presences of spectral characteristic bay in which data transfer with errors.

Author Biographies

S. V. Onopa, National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev

B.S.

B. M. Bereziansky, National Technical University of Ukraine, Kyiv Politechnic Institute, Kiev

Березянський Б.М., асистент кафедри конструювання та виробництва радіоапаратури

References

Перелік посилань

Carcelle X. Power Line Communications in Practice / X. Carcelle – Boston, London, Artech House, 2006. – 330 p. – ISBN 13: 978–1–59693–335–4.

Hrasnica H. Broadband Powerline Communications / H. Hrasnica, A. Haidine, R. Lehnert. – Germany: Dresden University of Technology, 2004. – 275 p. – ISBN 0–470–85741–2.

Philipps H. Modelling of Powerline Communication Channels / H. Philipps // International Symposium on Power–line Communications and its Applications (ISPLC'99), 30 March – 1 April 1999, Lancaster UK, 1999. – P. 14-21.

Cheng D.K. Field and wave electromagnetics / D.K. Cheng. Addison, 1983. – 717p. – ISBN 0–201–01239–1.

Zuberi K.H. Powerline Carrier (PLC) Communication Systems / K.H. Zuberi. – Stockholm: Royal Institute of Technolog, 2003. – 108 p.

Cheng D.K. Fundamentals of Engineering Electromagnetics / D. K.Cheng. – Addison Wesley, 2003. – 501 p. – ISBN: 0–201–56611–7.

References

Carcelle X. (2006) Power Line Communications in Practice, London, Artech House, 2006, 330 p. ISBN 13: 978–1–59693–335–4.

Hrasnica H., Haidine A. and Lehnert R. (2004) Broadband Powerline Communications. Germany: Dresden University of Technology, 275 p. ISBN 0–470–85741–2.

Holger Philipps. Modelling of Powerline Communication Channels. International Symposium on Power–line Communications and its Applications (ISPLC'99). Lancaster UK, 1999, pp. 14- 21. ISBN 90–74249–22–1.

Cheng D.K. (1983) Field and wave electromagnetics. Addison, 717 p. ISBN 0–201–01239–1.

Zuberi K.H. (2003) Powerline Carrier (PLC) Communication Systems, Stockholm, Royal Institute of Technolog, 108 p.

Cheng D.K. (2003) Fundamentals of Engineering Electromagnetics. Addison Wesley, 501 p.

Published

2014-03-06

How to Cite

Онопа, С. and Березянський, Б. (2014) “The use of "Echo model" in the design of data communication system on power supply networks”, Visnyk NTUU KPI Seriia - Radiotekhnika Radioaparatobuduvannia, 0(56), pp. 121-128. doi: 10.20535/RADAP.2014.56.121-128.

Issue

Section

Designing of Radio Equipment