Redes eléctricas de interiores como canal de comunicación
##plugins.themes.bootstrap3.article.main##
Enviado:
Aug 9, 2016
Publicado: Aug 9, 2016
Publicado: Aug 9, 2016
Resumen
Las comunicaciones a través de líneas de potencia (PLC) se han convertido en una tecnología de interés para tener acceso a la red de Internet y otros servicios de Comunicación. PLC está siendo altamente competitiva con otras tecnologías para la extensión geográfica que cubre en la mayoría de las zonas que generarán grandes demandas de transmisión de datos. Para incorporar sistemas PLC es necesario conocer las características del medio (lineas de potencia) como canal de comunicación. Este artículo brinda una descripción detallada acerca de las propiedades y características de las redes eléctricas e interiores en cuanto a sus topologías, escenario de ruido, comportamiento del canal y finalmente un análisis acerca de los estudios y modelos actuales para la caracterización del canal.
Palabras clave
caracterización del canal, modelo de canal, PLC, sistemas PLC de interioresDescargas
La descarga de datos todavía no está disponible.
##plugins.themes.bootstrap3.article.details##
Cómo citar
Velásquez, I., Zambrano, M., & Medina, C. (2016). Redes eléctricas de interiores como canal de comunicación. Prisma Tecnológico, 5(1), 39-42. Recuperado a partir de https://revistas.utp.ac.pa/index.php/prisma/article/view/522
Citas
[1] A. Cataliotti, A. Daidone, and G. Tine, “A medium-voltage cables model for power-line communication,” IEEE Transactions on Power Delivery, vol.1, no. 1, pp. 129- 135, Jan. 2009.
[2] M. Gotz, M. Rapp, and K. Dostert, “Power line channel characteristics and their effect on communication system design,” IEEE Communications Magazine, vol. 42, pp. 78-86, Apr. 2004.
[3] P.J. Langfeld, and K Dostert, “The capacity of typical powerline reference channels and strategies for system design,” in International Symposium on Power- Line Communications and its Applications (ISPLC), 2001, pp. 271-278.
[4] F. C. Corripio, J. C. Arrabal, L. D. del Río, and J. E. Muñoz, “Analysis of the cyclic short-term variation of indoor power line channels,” IEEE Journal on Selected Areas in Communications, vol. 4, no.7, pp. 1327-1338, Jul. 2006.
[5] J. A. Cortés, L. Díez, F. J. Cañete, J. J. Sánchez-Martínez, and J. T. Entrambasaguas, “Performance analysis of OFDM modulation on indoor broadband PLC channels,” EURASIP Journal on Advances in Signal Processing, vol.2011, pp. 1-12, 2011.
[6] J. Anatory, N. Theethayi, and R. Thottappillil, “Performance of underground cables that use OFDM systems for broadband power-line communications,” IEEE Transactions on Power Delivery, vol. 24, no. 4, pp. 1889-1897, Oct. 2009.
[7] H. Philipps, “Modelling of powerline communication channels,” in Proc. 3rd Int’l. Symp. Power-Line Commun. and its Applications,” 1999, pp. 14-21.
[8] M. Zimmermann, and Dostert, “ A multipath model for the powerline channel. IEEE Transactions on Communications,” vol. 50, no. 4, pp. 553-559, 2002.
[9] A. M. Tonello, F. Versolatto, and A. Pittolo, “In-Home Power Line Communication Channel: Statistical Characterization.” To appear in IEEE Transactions on Communications.
[10] F. J. Canete, J. A. Cortés, L. Diez, and J. T. Entrambasaguas, “ A channel model proposal for indoor power line communications,” IEEE Communications Magazine, vol. 49, no. 12, pp.166-174, Dec. 2011
[11] V. K. Chandna, and M. Zahida, “Effect of varying topologies on the performance of broadband over power line,” IEEE Transactions on Power Delivery, vol. 25, no. 4, pp. 2371-2375, Oct. 2010.
[12] J. Anatory, N. Theethayi, and R. Thottappillil, “Channel characterization for indoor power-line networks,” IEEE Transactions on Power Delivery, vol. 24 no. 4, pp. 1883-1888, Oct. 2009.
[2] M. Gotz, M. Rapp, and K. Dostert, “Power line channel characteristics and their effect on communication system design,” IEEE Communications Magazine, vol. 42, pp. 78-86, Apr. 2004.
[3] P.J. Langfeld, and K Dostert, “The capacity of typical powerline reference channels and strategies for system design,” in International Symposium on Power- Line Communications and its Applications (ISPLC), 2001, pp. 271-278.
[4] F. C. Corripio, J. C. Arrabal, L. D. del Río, and J. E. Muñoz, “Analysis of the cyclic short-term variation of indoor power line channels,” IEEE Journal on Selected Areas in Communications, vol. 4, no.7, pp. 1327-1338, Jul. 2006.
[5] J. A. Cortés, L. Díez, F. J. Cañete, J. J. Sánchez-Martínez, and J. T. Entrambasaguas, “Performance analysis of OFDM modulation on indoor broadband PLC channels,” EURASIP Journal on Advances in Signal Processing, vol.2011, pp. 1-12, 2011.
[6] J. Anatory, N. Theethayi, and R. Thottappillil, “Performance of underground cables that use OFDM systems for broadband power-line communications,” IEEE Transactions on Power Delivery, vol. 24, no. 4, pp. 1889-1897, Oct. 2009.
[7] H. Philipps, “Modelling of powerline communication channels,” in Proc. 3rd Int’l. Symp. Power-Line Commun. and its Applications,” 1999, pp. 14-21.
[8] M. Zimmermann, and Dostert, “ A multipath model for the powerline channel. IEEE Transactions on Communications,” vol. 50, no. 4, pp. 553-559, 2002.
[9] A. M. Tonello, F. Versolatto, and A. Pittolo, “In-Home Power Line Communication Channel: Statistical Characterization.” To appear in IEEE Transactions on Communications.
[10] F. J. Canete, J. A. Cortés, L. Diez, and J. T. Entrambasaguas, “ A channel model proposal for indoor power line communications,” IEEE Communications Magazine, vol. 49, no. 12, pp.166-174, Dec. 2011
[11] V. K. Chandna, and M. Zahida, “Effect of varying topologies on the performance of broadband over power line,” IEEE Transactions on Power Delivery, vol. 25, no. 4, pp. 2371-2375, Oct. 2010.
[12] J. Anatory, N. Theethayi, and R. Thottappillil, “Channel characterization for indoor power-line networks,” IEEE Transactions on Power Delivery, vol. 24 no. 4, pp. 1883-1888, Oct. 2009.