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REFERENCES

[1] S. Barmada, L. Bellanti ,“Analysis of Power-Line Communication Channels in Ships.”, IEEE Transactions on Vehicular Technology, Vol. 59, Issue 7, 2010

[2] L. Bellanti , M. Raugi, M. Tucci, ‘’Estimate of cyclostationary PLC channels by a modified Self-Organizing Map’’, ISPLC 2009, Dresden, Germany [3] Musolino, A.; Raugi, M.; Tucci, M., "Cyclic Short-Time Varying Channel

Estimation in OFDM Power-Line Communication," Power Delivery, IEEE Transactions on , vol.23, no.1, pp.157-163, Jan. 2008

[4] Avril, G.; Gauthier, F.; Moulin, F.; Zeddam, A.; Nouvel, F.,"Characterization of Time Variation of the Powerline Channel Frequency Response Simultaneously with Impulsive Noise," Power Line Communications and Its Applications, 2007. ISPLC '07. IEEE International Symposium on , vol., no., pp.330-335, 26-28 March 2007.

[5] Canete, F.J.; Diez, L.; Cortes, J.A.; Entrambasaguas, J.T., "Broadband modelling of indoor power-line channels," Consumer Electronics, IEEE Transactions on , vol.48, no.1, pp.175-183, Feb 2002.

[6] A. Antoniou, Digital Filters: Analysis, Design, and Applications (New York, McGraw-Hill, 1993).

[7] F.J. Cañete, J.A. Cortés, L. Díez, J.T. Entrambasaguas and J.L. Carmona, “Fundamentals of the Cyclic Short-Time Variation of Indoor Power-line Channels,” in Proc. International Symposium on Power-Line Communications and its Applications (ISPLC), 2005, Vancouver, Canada. [8] F. J. Canete, J. A. Cortes, L. Diez, and J. T. Entrambasaguas, “Analysis of the

cyclic short term variation of indoor power line channels,” IEEE J. Sel. Areas Commun., vol. 24, no. 7, pp. 1327–1338, Jul. 2006.

[9] T. Bostoen, O. Van de Wiel, “Modelling the low-voltage power distribution network in the frequency band from 0.5 MHz to 30 MHz for broadband powerline communications (PLC)” Broadband Communications, 2000. Proceedings. 2000 International Zurich Seminar on , vol., no., pp.176-181, 2-4 April 2008.

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[10] C. Assimakopoulos, F.-N. Pavlidou, ”Measurements and modelling of inhouse power lines installation for broadband communications,” in Proc. 5th ISPLC 2001, Malmo, Sweden, pp. 73-78, Apr. 2001.

[11] S. B. Weinstein and P. M. Ebert, “Data transmission by frequency division multiplexing using the discrete fourier transform,” IEEE Trans. Commun., vol. COMM-19, pp. 628–634, Oct. 1971.

[12] L. J. Cimini Jr., “Analysis and simulation of a digital mobile channel using orthogonal frequency division multiplexing,” IEEE Trans.Commun., vol. COMM-33, pp. 665–675, July 1985.

[13] H. Meng, S. Chen, Y. L. Guan, C. L. Law, P. L. So, E. Gunawan, T. T. Lie, “Modeling of Transfer Characteristics for the Broadband Power Line Communication Channel”, IEEE Trans. On Power Delivery, Vol. 19, No. 3, pp. 1057–1064, July 2003.

[14] T. Kohonen, Self-Organizing Maps, Third Edition, (Springer 2001)

[15] Tucci, M.; Raugi, M.; Musolino, A.; Barmada, S., "Blind Channel Estimation for Power-line Communications by a Kohonen Neural Network," Power Line Communications and Its Applications, 2007. ISPLC '07. IEEE International Symposium on , vol., no., pp.35-40, 26-28 March 2007. [16] Tucci, M.; Raugi, M.; Musolino, A.; Barmada, S., "Nonlinear decision

feedback estimation for multicarrier power line communication," Power Line Communications and Its Applications, 2008. ISPLC 2008. IEEE International Symposium on , vol., no., pp.176-181, 2-4 April 2008.

[17] M. Zimmermann, K. Dostert, "A multipath model for the powerline channel", IEEE Trans. Commun., vol. 50, pp. 553 - 559, Apr. 2002.

[18] S. Galli and T. Banwell, "A novel approach to the modeling of the indoor power line channel - Part I: Circuit analysis and companion model," IEEE Trans. Power Del., vol. 20, pp. 655-663, Apr. 2005.

[19] P. Amirshahi, M. Kaverhad, “High – Frequency Characteristics of Overhead Multiconductor Power Lines for Broadband Communications”, IEEE J. Sel. Areas in Commun., vol. 24, pp. 1292 –1303, Jul. 2006.

[20] S. Galli, T. C. Banwell, “A Deterministic Frequency Domain Model for the Indoor Power Line Transfer Function”, IEEE J. Sel. Areas in Commun., vol. 24, pp. 1304 – 1316, Jul. 2006.

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[21] D. Anastasiadou, T. Antonakopoulos, "Multipath characterization of indoor power-line networks," IEEE Trans. Power Del., vol. 20, pp. 90 –99, January 2005.

[22] Christopher J.C Burges, “A Tutorial on Support Vector Machines for Pattern Recognition”, Data Mining and Knowledge Discovery, 2, 121–167 (1998).

[23] J. Yazdani, M. Scott, and B. Honary, “Point to point multi-media transmission for marine application,” in Proc. Int. Symp. Power Line Commun., Athens, Greece, 2002, pp. 171–175.

[24] E. Liu, Y. Gao, G. Samdani, O. Mukhtar, and T. Korhonen, “Powerline communication over special systems,” in Proc. Int. Symp. Power Line Commun., Vancouver, BC, Canada, 2005, pp. 167–171.

[25] S. Tsuzuki, M. Yoshida, Y. Yamada, H. Kawasaki, K. Murai, K. Matsuyama, and M. Suzuki, “Characteristics of power-line channels in cargo ships,” in Proc. Int. Symp. Power Line Commun., Pisa, Italy, 2007, pp. 324–329. [26] S. Tsuzuki, M. Yoshida, Y. Yamada, K. Murai, H. Kawasaki, K. Matsuyama,

T. Shinpo, Y. Saito, and S. Takaoka, “Channel characteristic comparison of armored shipboard cable and unarmored one,” in Proc.

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