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Electromagnetic compatibility of PLC adapters for in-home/domestic networks


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[1] M. Orgoň, R. Róka and J. Mišurec, “Smart Grid and PLC communications”, STU Bratislava.Search in Google Scholar

[2] J. Krejči, T. Zeman and J. Hrad, “Impulse Noise Considerations Related to Data Transmission over High-Voltage Lines”, Elektronika ir Elektrotechnika, vol. 20, no. 8, 2014, http://dx.doi.org/10.5755/j01.eee.20.8.8444.10.5755/j01.eee.20.8.8444Search in Google Scholar

[3] P. Mlýnek, R. Fujdiak, J. Mišurec and J. Sláčik, “Experimental Measurements of Noise Influence on Narrowband Power Line Communication”, 8th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT) Lisabon: pp. 1–7, 2016.10.1109/ICUMT.2016.7765339Search in Google Scholar

[4] P. Mlýnek, J. Mišurec and M. Koutný, “Noise Modeling for Power Line Communication Model”, 35th International Conference on Telecommunications and Signal Processing (TSP), pp. 282–286, 2012.10.1109/TSP.2012.6256299Search in Google Scholar

[5] F. Hossner, J. Hallon, M. Orgoň and R. Róka, “Testing of Electromagnetic Compatibility of PLC Modems”, International Journal of Engineering Reearch & Technology (IJERT), vol. 5, no. 01, 2016.Search in Google Scholar

[6] J. Mišurec and M. Orgoň, “Modelling of Power Line Transfer of Data for Computer Simulation”, International Journal of Communication Networks and Information Security (IJCNIS) vol. 3, no. 2, pp. 104–111, Pakistan, 2011.Search in Google Scholar

[7] R. Róka, “The Environment of Fixed Transmission Media and Their Negative Influences the Simulation”, International Journal of Mathematics and Computers Simulation – IJMCS, vol. 9, pp. 190–205, 2015.Search in Google Scholar

[8] R. Róka, “Analysis of Advanced Modulation Techniques the Environment of Metallic Transmission Media”, TSP 2014 - 37th International Conference on Telecommunications and Signal Processing, Berlin (Germany), pp. 78–84, 2014.Search in Google Scholar

[9] R. Róka, “The Design of a PLC Modem and its Implementation Using FPGA Circuits”, Journal of Electrical Engineering, vol. 60, no. 1, pp. 43–47, 2009.Search in Google Scholar

[10] R. Róka and J. Urminský, “Experimental Measurements for Verification of the Parametric Model for Reference Channels the Real PLC Environment”, Journal of Electrical Engineering, vol. 59, no. 3, pp. 146–152, 2008.Search in Google Scholar

[11] P. Mlýnek, R. Fujdiak and J. Mišurec, “Power Line Topology Prediction Using Time Domain Reflectometry”, Proceedings of the 39th International Conference on Telecommunications and Signal Processing (TSP), pp. 199–202, 2016.10.1109/TSP.2016.7760859Search in Google Scholar

[12] P. Mlýnek, J. Mišurec, R. Fujdiak and Z. Hasirci, “Analysis of Channel Transfer Functions Power Line Communication System for Smart Metering and Home Area Network”, Advances Electrical and Computer Engineering, vol. 16, no. 4, pp. 51–56, 2016.10.4316/AECE.2016.04008Search in Google Scholar

[13] P. Mlýnek, J. Mišurec, M. Koutný, R. Fujdiak and T. Jedlička, “Analysis and Experimental Evaluation of Power Line Transmission Parameters for Power Line Communication”, Measurement Science Review, vol. 15, no. 2, pp. 64–71, 2015.10.1515/msr-2015-0010Search in Google Scholar

[14] P. Mlýnek, J. Mišurec, R. Fujdiak, Z. Kolka and L. Pospíchal, “Heterogeneous Networks for Smart Metering – Power Line and Radio Communication”, Elektronika Ir Elektrotechnika, vol. 21, no. 2, pp. 85–92, 2015.10.5755/j01.eee.21.2.11515Search in Google Scholar

[15] P. Mlýnek, J. Mišurec, M. Koutný and R. Fujdiak, “Transfer Function of Power Line Channel – Influence of Topology Parameters and Power Line Topology Estimation”, The 5th IEEE PES Innovative Smart Grid Technologies (ISGT) European 2014 Conference, pp. 1–5.10.1109/ISGTEurope.2014.7028845Search in Google Scholar

[16] P. Mlýnek, J. Mišurec and M. Koutný, “Measurement of Power Line Cable Parameters for PLC Model”, Proceedings of 15th International Conference on Research Telecommunication Technologies., pp. 1–3, 2013.Search in Google Scholar

[17] EN 55032, “Electromagnetic compatibility of multimedia equipment – Emission Requirements”, 2015.Search in Google Scholar

[18] S. Klucik, J. Taraba, I. Baronak and M. Orgon, “Quality of Service PLC Networks”, Low-Power Horizon magazine, 2012.Search in Google Scholar

[19] S. Klucik, E. Chromy and I. Baronak, “Model to Increase the Number of Output Sates of a Random Variable using a Histogram based PDF”, Wireless Personal Communications, vol. 85, no. 1, pp. 137–149, Springer, New York, 2015.10.1007/s11277-015-2731-5Search in Google Scholar

[20] CISPR 13, “Sound and Television Broadcast Receivers and Associated Equipment – Radio Disturbance Characteristics - Limits and Methods of Measurement”, 2009.Search in Google Scholar

[21] CISPR 20, “Sound and Television Broadcast Receivers and Associated Equipment – Immunity Characteristics – Limits and Methods of Measurement”, 2006.Search in Google Scholar

[22] CISPR 22, “Information Technology Equipment – Radio Disturbance Characteristics – Limits and Methods of Measurement”, 2008.Search in Google Scholar

[23] CISPR, 24 and, “Information technology equipment - Immunity characteristics - Limits and methods of measurement”, , 2010.Search in Google Scholar

[24] “Electromagnetic Compatibility (EMC), Directive 2014/30/EU of the European Parliament and of the Council of 26 February 2014 on the Harmonisation of the Laws of the Member States Relating to Electromagnetic Compatibility (recast)”, 2014.Search in Google Scholar

[25] “STN EN 301 489-4 V2.2.1: Electromagnetic Compatibility and Radio Spectrum Matters (ERM); ElectroMagnetic Compatibility (EMC) Standard for Radio Equipment and Services”, Part 4, Specific Conditions for Fixed Radio Links and Ancillary Equipment, 2016.Search in Google Scholar

[26] “STN EN 50160 (33 0121): Voltage Characteristics of Electricity Supplied by Public Electricity Networks”, 2015.Search in Google Scholar

[27] “STN EN 50160 (33 0121): Voltage Characteristics of Electricity Supplied by Public Electricity Networks”, 2015.Search in Google Scholar

[28] “STN EN 301 489-1 V1.9.2: Electromagnetic Compatibility and Radio Spectrum Matters”, (ERM); ElectroMagnetic Compatibility (EMC) Standard for Radio Equipment and Services; Part 1: Common Technical Requirements, 2012.Search in Google Scholar

[29] “STN EN 61000-6-4: Electromagnetic compatibility (EMC)”, Part 6-4: Generic standards – Emission standard for industrial environments, 2007.Search in Google Scholar

[30] “STN EN 61000-6-2: Electromagnetic compatibility (EMC)”, Part 6-2: Generic standards. Immunity for industrial environments, 2006.Search in Google Scholar

[31] “STN EN 61000-2-2: Electromagnetic compatibility (EMC)”, Part 2-2: Environment. Compatibility Levels for Low-Frequency Conducted Disturbances and Signaling Public Low-Voltage Power Supply Systems, 2004.Search in Google Scholar

[32] “STN EN 61000-2-4: Electromagnetic Compatibility (EMC)”, Part 2-4: Environment - Compatibility Levels Industrial Plants for Low-Frequency Conducted Disturbances, 2003.Search in Google Scholar

[33] R. Roka, “Modeling of Environmental Influences at the Signal Transmission by means of the VDSL and PLC Technologies”, International Journal of Electrical Communication Networks and Information Security - IJCNIS, vol. 1, no. 1, 2009, pp. 6–13.Search in Google Scholar

[34] https://www.zyxel.com/productsservices/1000-Mbps-Powerline-Gigabit-Ethernet-Adapter-PLA5206/specifications.Search in Google Scholar

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