References

   


[1] T. Starr, J. M. Cioffi, and P. Silverman, Understanding Digital Subscriber Lines . Upper Saddle River, NJ: Prentice Hall, 1999.

[2] Asymmetric Digital Subscriber Lines Metallic Interface . American National Standards Institute, Alliance for Telecommunications Insititute Standards (ANSI/ATIS) North American Standard T1.413-1998 New York: ANSI, 1998.

[3] Digital Transmission System for ADSL on Metallic Local Lines, with Provisions for Operation in Conjunction with Other Services , International Telecommunications Union Standards G.992.1 and G.992.2 (G.lite), 1999, Geneva, Switzerland.

[4] H. Sadjadpour, "Encoder Structure of Multitone Turbo-Trellis Coded Modulation," ITU SG15/Q4 Contribution RN-027 , Red Bank, NJ, May 21, 2001.

[5] S. Olcer, "LDPC Coding Proposal for G.dmt.bis and G.lite.bis," ITU SG15/Q4 Contribution CF-061 , Clearwater, FL, January 8, 2001.

[6] W. Yu, J. Cioffi, D. Gardan, and F. Gauthier, "The Impact of Impulsive Noise on DMT ADSL," submitted to IEEE JSAC , April 2001.

[7] B. Rolland, D. Bardouil, F. Clerot, and D. Collobert, "Impulse Noise Classification by a Non-Supervised Training Method," France Telecom Research and Development Report, December 21, 2000.

[8] R. J. A. Tough and K. D. Ward, "The Correlation Properties of Gamma and Other Non-Gaussian Processes Generated by Memoryless Nonlinear Transformation," Journal of Applied Physics 32 (1999): 3075 “3084.

[9] J. Hagenauer and P. Hoeher, "A Viterbi Algorithm with Soft-Decision Outputs and Its Applications," Proceedings 1989 Global Telecommunications Conference (Globecom) (November 1989): 1680 “1686, Dallas, TX.

[10] H. Levin and N. Teitler, "Method for Reallocating Data in a DMT Communication System," U.S. Patent # 6,122,247, issued: September 19, 2000, filed November 24, 1997.

[11] H. Levin, "A Complete and Optimal Data Allocation Method for Practical DMT Systems," submitted IEEE JSAC , April 2001.

[12] H. Levin, J. Djordjevic, and J. Kosmach, "Real-Time Selection of Error-Control Codes for DMT Systems," submitted for publication, IEEE JSAC , April 2001.

[13] H. Levin and J. Kosmach, "Method of Identifying an Improved Configuration for a Communication System Using Coding Gain and an Apparatus Therefore," European Patent 1,094,629 A2, issued April 25, 2001, filed September 29, 2000.

[14] J. Campello de Sousa, Discrete Bit Loading for Multicarrier Modulation Systems , Ph.D. dissertation, Stanford University, 1999.

[15] S. Schelestrate, ed., "Very-High-Speed Digital Subscriber Line (VDSL) Metallic Interface, Part 3: Multicarrier Modulation (MCM) Specification," ANSI Draft Standard, T1E1.4/99-013R4 , February 19, 2001, Costa Mesa, CA.

[16] A. Carlson, "A Comparison of Q-Mode Proposals," ITU SG15/Q4 Contribution RN-024 , Red Bank, NJ, May 21, 2001.

[17] J. M. Cioffi and J. A. C. Bingham, "A Data-Driven Multitone Echo Canceller," IEEE Transactions on Communications 42, no. 10 (October 1994): 2853 “2869.

[18] T. N. Zogakis, P. T. Tong, and J. M. Cioffi, "Performance Comparison of FEC/Interleave Choices with DMT for ADSL," ANSI Contribution T1E1.4/93-091 , April 14, 1993, Chicago, IL.

[19] B. J. Frey, R. Koetter, G. D. Forney, F. R. Kschischang, R. J. McEliece, and D. A. Spielman, Special issue on Codes on Graphs and Iterative Algorithms, IEEE Transactions on Information Theory 47 no. 2 (February 2001).

[20] P. H. Siegel, D. Divsalar, E. Eleftheriou, J. Hagenauer, D. Rowitch, and W. H. Tranter, Special issue on Codes on the Turbo Principle: From Theory to Practice, IEEE Journal on Selected Areas in Communication 19 no. 5 (May 2001).

[21] J. M. Cioffi, Class Textbook, EE379C ”Advanced Digital Communications, http://www.stanford.edu/class/ee379c/.

[22] J. Lauer, "Turbo Coding for Discrete Multitone Transmission," Ph.D. dissertation, Stanford University, May 2000.

[23] B. Vucetic and J. Yuan, Turbo Codes: Principles and Applications . Boston: Kluwer, 2000.

[24] W. Henkel, T. Kessler, and H. Y. Chung, "Coded 64-CAP ADSL in an Impulse Noise Environment ”Modelling of Impulse Noise and First Simulation Results," IEEE Journal on Selected Areas in Communication 13, no. 9 (December 1995): 1611 “1621.

[25] I. Mann, S. McLaughlin, W. Henkel, R. Kirkby, and T. Kessler, "Impulse Generation with appropriate Length, Inter-arrival, and Spectral Characteristics," IEEE Journal on Selected Areas in Communications , May 2002, to appear. See also ETSI TM6 contribution TD20, Sophia Antipolis, France, February 2001, "Realistic Impulse Noise Model," by R. Kirkby of BTexact.

[26] ANSI/ATIS Draft In-Line Filter Standard, ANSI Contribution T1E1.4/2001-007R2 , D. Brooks, ed., May 2001, Tampa, FL.

[27] IEEE 802.11(a) Standard, Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications: High-Speed Physical Layer in the 5 GHz Band , September 16, 1999, IEEE, New York, NY.

[28] IEEE 802.11(b) Standard, Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications: High-Speed Physical Layer in the 2.4 GHz Band , September 16, 1999, IEEE, New York, NY.

[29] D. Toumpakaris, J. Cioffi, and D. Gardan, ANSI Contribution TIE1.4/2002-128, April 8, 2002, Atlanta, GA.


   
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DSL Advances
DSL Advances
ISBN: 0130938106
EAN: 2147483647
Year: 2002
Pages: 154

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