A capability of power line communication for HEMS of smart grid on traditional home power grid in Thailand

Author:

Pisapan Phatrakit1,Wongpanyo Watchara1ORCID

Affiliation:

1. Renewable Energy Department , School of Energy and Environment, University of Phayao , Maeka, Muang Phayao , Phayao 56000 , Thailand

Abstract

Abstract This research was conducted on the ability of Power Line Communication (PLC) technology to communicate data for home energy management system through the traditional home electrical grids in Thailand. The study found that the Narrow-Band Power Line Communication (NB-PLC) is most suitable for smart home applications and safe for health of the residents. The results showed that the efficacy of PLC is mostly dependent on the service life time factor of the cables. The regression rate of signal level for the newest electric wire (1–15 years) is 83% lower than the oldest (30–45 years) and 47% lower than the middle life time (16–30 years). Also, the regression rate of signal level for the middle life time was 69% lower than the oldest wire. Whereby we could predict the signal level according to the changing length and service life time of electric cable. In this research, it was found that the carrier frequencies also are influence on the signal level of the power line communication. The signal level of KNX PL110 standard which used the frequency range 105 and 115 kHz is higher than the signal level of IDIS that used the frequency range 63.3 and 74.5 kHz and the regression of signal level of KNX PL110 standard is 68% lower than the IDIS standard. The experimental results also showed that baud rate “2400” is the best for power line communication because it generates more stable signal levels.

Publisher

Walter de Gruyter GmbH

Subject

Energy Engineering and Power Technology

Reference10 articles.

1. Pisapan, P, Rakwichian, W, Wongpanyo, W, Vichanpol, B, Chailuecha, C. Principle of power line communications for home energy management system of smart grid technology in Thailand. J RAST 2018;13:102–13.

2. Caytiles, RD, Lee, S. A survey of recent power line communication technologies for smart micro grid. Int J Softw Eng Appl 2015;9:251–8. https://doi.org/10.14257/ijseia.2015.9.12.22.

3. Unsal, DB, Yalcinoz, T. Applications of new power line communication model for smart grids. Int J Electr Comput Eng 2015;7:168–78. https://doi.org/10.17706/ijcee.2015.7.3.168-178.

4. Berger, LT, Schwager, A, Joaquin Escudero Garzás, J. Power Line Communications for Smart Grid Applications. Int J Electr Comput Eng; 2012;2013:1–16. Art no. 712376. https://doi.org/10.1155/2013/712376.

5. Atayero, AA, Alatishe, AA, Ivanov, YA, Members IAENG. Power line communication technologies: modeling and simulation of PRIME physical layer. In: Proceedings of the World Congress on Engineering and Computer Science 2012 Vol.II. WCECS 2012 2012. ISBN: 978-988-19252-4-4, ISSN: 2078-0958 (Print); ISSN: 2078-0966 (Online).

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