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Year 2019, Volume: 2 Issue: 4, 102 - 110, 30.12.2019

Abstract

References

  • 1. Pavlidou, N., Vinck, A. H., Yazdani, J., & Honary, B. (2003). Power line communications: state of the art and future trends. IEEE Communications magazine, 41(4), 34-40.
  • 2. Ma, H., Lampe, L., & Hranilovic, S. (2013, March). Integration of indoor visible light and power line communication systems. In 2013 IEEE 17th International Symposium on Power Line Communications and Its Applications (pp. 291-296). IEEE.
  • 3. Amirshahi, P., & Kavehrad, M. (2006, January). Broadband access over medium and low voltage power-lines and use of white light emitting diodes for indoor communications. In IEEE Consumer Communications & Networking Conference.
  • 4. Ding, W., Yang, F., Yang, H., Wang, J., Wang, X., Zhang, X., & Song, J. (2015). A hybrid power line and visible light communication system for indoor hospital applications. Computers in Industry, 68, 170-178.
  • 5. Kahn, J. M., & Barry, J. R. (1997). Wireless infrared communications. Proceedings of the IEEE, 85(2), 265-298.
  • 6. Da Silva Costa, L. G., de Queiroz, A. C. M., Adebisi, B., da Costa, V. L. R., & Ribeiro, M. V. (2017). Coupling for power line communications: A survey. Journal of Communication and Information Systems, 32(1).
  • 7. Zimmermann, M., & Dostert, K. (1999, March). A multi-path signal propagation model for the power line channel in the high frequency range. In Proc. IEEE Int. Symp. Power Line Commun. Appl (pp. 45-51).
  • 8. Alavi, S. E., Supa'at, A. S. M., & Idrus, S. M. (2009, December). Integrated system of visible free space optic with PLC. In 2009 IEEE 9th Malaysia International Conference on Communications (MICC) (pp. 271-275). IEEE.
  • 9. Souissi, S., Benrhouma, O., & Rebai, C. (2014). Design of coupling interface for narrowband Power Line Communication channel characterization. IMEKO TC4, 483-488.
  • 10. Gotz, M., Rapp, M., & Dostert, K. (2004). Power line channel characteristics and their effect on communication system design. IEEE Communications Magazine, 42(4), 78-86.
  • 11. Sohail, M., Sterckx, K. L., & Saengudomlert, P. (2016, June). Linear current modulation with feedback on Light Emitting Diodes in Optical Wireless Communication. In 2016 13th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON) (pp. 1-5). IEEE.

Design of Power Line Modem for PLC Integrated with VLC

Year 2019, Volume: 2 Issue: 4, 102 - 110, 30.12.2019

Abstract

Power line communication (PLC) make use of
existing power line infrastructure to transmit data over power lines with
simultaneous transmission of electrical energy, a power line modem serves the
purpose by modulating data through some suitable modulation scheme and then
coupling it with power line. Power lines modem make use of existing power line
for high frequency, low voltage data communication faces some serious problems
like signal distortion, multipath fading, reflection and return loss and noise
to communication signal. We designed a power line modem for 220V 50 Hz power
line, which employ ASK modulation. Digital data of 9Kbps was modulated through
carrier of 1 MHz and sent through power line and subsequently transmitted
through VLC. 

References

  • 1. Pavlidou, N., Vinck, A. H., Yazdani, J., & Honary, B. (2003). Power line communications: state of the art and future trends. IEEE Communications magazine, 41(4), 34-40.
  • 2. Ma, H., Lampe, L., & Hranilovic, S. (2013, March). Integration of indoor visible light and power line communication systems. In 2013 IEEE 17th International Symposium on Power Line Communications and Its Applications (pp. 291-296). IEEE.
  • 3. Amirshahi, P., & Kavehrad, M. (2006, January). Broadband access over medium and low voltage power-lines and use of white light emitting diodes for indoor communications. In IEEE Consumer Communications & Networking Conference.
  • 4. Ding, W., Yang, F., Yang, H., Wang, J., Wang, X., Zhang, X., & Song, J. (2015). A hybrid power line and visible light communication system for indoor hospital applications. Computers in Industry, 68, 170-178.
  • 5. Kahn, J. M., & Barry, J. R. (1997). Wireless infrared communications. Proceedings of the IEEE, 85(2), 265-298.
  • 6. Da Silva Costa, L. G., de Queiroz, A. C. M., Adebisi, B., da Costa, V. L. R., & Ribeiro, M. V. (2017). Coupling for power line communications: A survey. Journal of Communication and Information Systems, 32(1).
  • 7. Zimmermann, M., & Dostert, K. (1999, March). A multi-path signal propagation model for the power line channel in the high frequency range. In Proc. IEEE Int. Symp. Power Line Commun. Appl (pp. 45-51).
  • 8. Alavi, S. E., Supa'at, A. S. M., & Idrus, S. M. (2009, December). Integrated system of visible free space optic with PLC. In 2009 IEEE 9th Malaysia International Conference on Communications (MICC) (pp. 271-275). IEEE.
  • 9. Souissi, S., Benrhouma, O., & Rebai, C. (2014). Design of coupling interface for narrowband Power Line Communication channel characterization. IMEKO TC4, 483-488.
  • 10. Gotz, M., Rapp, M., & Dostert, K. (2004). Power line channel characteristics and their effect on communication system design. IEEE Communications Magazine, 42(4), 78-86.
  • 11. Sohail, M., Sterckx, K. L., & Saengudomlert, P. (2016, June). Linear current modulation with feedback on Light Emitting Diodes in Optical Wireless Communication. In 2016 13th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON) (pp. 1-5). IEEE.
There are 11 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Original Research Articles
Authors

Sherzada Khan This is me

Muhammad Sohail This is me

Muzamil Bokhari This is me

Publication Date December 30, 2019
Acceptance Date December 30, 2019
Published in Issue Year 2019 Volume: 2 Issue: 4

Cite

APA Khan, S., Sohail, M., & Bokhari, M. (2019). Design of Power Line Modem for PLC Integrated with VLC. Scientific Journal of Mehmet Akif Ersoy University, 2(4), 102-110.