Scott L. Miller and Weerakhan Tantiphaiboontana, Code Division Multiplexing—Efficient Modulation for High Data Rate Transmission Over Wireless Channels, Proceedings of 2000 IEEE International Conference on Communications, pp. 1487-1491. |
Shigenobu Sasaki, Jinkang Zhu, and Gen Marubayashi, Performance of Parallel Combinatory Spread Spectrum Multiple Access Communication Systems, Proceedings of 1991 IEEE International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC), pp. 204-208. |
Jinkang Zhu and Gen Marubayashi, Properties and Application of Parallel Combinatory SS Communication System, IEEE Second International Symposium on Spread Spectrum Techniques and Applications (ISSSTA '92), Yokohama, Japan, pp. 227-230, Nov. 29-Dec. 2, 1992. |
K. Ben Letaief, J. C-I Chuang, and R.D. Murch, Multicode High-Speed Transmission for Wireless Mobile Communications, Proceedings of the 1995 IEEE Global Telecommunications Conference GLOBECOM'95, Singapore, pp. 1835-1839, Nov. 14-16, 1995. |
Jinkang Zhu, Hongbin Zhang, Yucong Gu, Principle and Performance of Variable Rate Multi-code CDMA Method, 1995 Fourth IEEE International Conference on Universal Personal Communications. Record. Gateway to the 21st Century (Cat. No. 95TH8128). IEEE, pp. 256-259, New York, NY, USA, 1995. |
J.G. Proakis, Digital Communication, Second Edition, Chapter 8, pp. 800-891, 1991. (This chapter of this book is cited in the disclosure of U.S. application No. 5,555,268.). |
Poletti, M.A. and R.G. Vaughan, “Reduction of Multipath Fading Effect in Single Variable Modulations,” ISSPA 90 Signal Processing Theories, Implementations and Applications, Gold Coast, Australia, pp. 672-676, Aug. 1990. |
Casas, E.F. and C. Leung, “OFDM for Data Communications Over Mobile Radio FM Channels; Part II: Performance Improvement,” University of British Columbia, 13 pages, 1991. |
Casas, E.F. and C. Leung, “OFDM for Data Communications Over Mobile Radio FM Channels; Part I: Analysis and Experimental Results,” IEEE Transactions on Communications, 39(5):783-793, May 1991. |
Hoeher, P., J. Hagenauer, E. Offer, Ch. Rapp, H. Schulze, “Performance of an RCPC-Coded OFDM-based Digital Audio Broadcasting (DAB) System,” Globecom '91, CH2980—1/91/0000-0040, pp. 0040-0046. |
Kalet, I., “The Multitone Channel,” IEEE Transactions on Communications, 37(2):119-124, Feb. 1989. |
Zervos, N.A. and I. Kalet, “Optimized Decision Feedback Equalization versus Optimized Orthogonal Frequency Division Multiplexing for High-Speed Data Transmission Over the Local Cable Network,” IEEE, CH2655-9/89/0000-1980, pp. 1080-1085, 1989. |
Hirosaki, B., S. Hasegawa, and A. Sabato, “Advanced Groupband Data Modem Using Orthogonally Multiplexed QAM Technique,” IEEE Transactions on Communications, vol. Com-34, No. 6, pp. 587-592, Jun. 1986. |
Hirosaki, B., A. Yoshida, O. Tanaka, S. Hasegawa, K. Inoue, and K. Watanabe, “A 19.2 Kpbs Voiceband Data Modem Based on Orthogonally Multiplexed QAM Techniques,” IEEE, CH2175-8/85/0000-0661, pp. 661-665, 1985. |
Cimini, L.J. Jr., “Analysis and Simulation of a Digital Mobile Channel Using Orthogonal Frequency Division Multiplexing,” IEEE Transactions on Communications, vol. Com-33, No. 7, pp. 665-675, Jul. 1985. |
Hirosaki, B., “An Orthogonally Multiplexed QAM System Using the Discrete Fourier Transform,” IEEE Transactions on Communications, vol. Com-294, No. 7, pp. 982-989, Jul. 1981. |
Hirosaki, B., “An Analysis of Automatic Equalizers for Orthogonally Multiplexed QAM Systems,” IEEE Transactions on Communications, vol. Com-28, No. 1, pp. 73-83, Jan. 1980. |
Maruta, R. and A. Tomozawa, “An Improved Method for Digital SSB-FDM Modulation and Demodulation,” IEEE Transactions on Communications, vol. Com-26, No. 5, pp. 720-725, May 1978. |
Weinstein, S.B., and P.M. Ebert, “Data Transmission by Frequency-Division Multiplexing Using the Discrete Fourier Transform,” IEEE Transactions on Communications Technology, vol. Com-19, No. 5, pp. 628-634, Oct. 1971. |
Salzberg, B.R., “Performance of an Efficient Parallel Data Transmission System,” IEEE Transactions on Communications Technology, vol. Com-15, No. 6, pp. 805-811, Dec. 1967. |
Chang, R.W. and R.A. Gibby, “A Theoretical Study of Performance of an Orthogonal Multiplexing Data Transmission Scheme,” IEEE Transactions on Communications Technology, vol. Com-16, No. 4, pp. 529-540, Aug. 1968. |
Chang, R.W., “Synthesis of Band-Limited Orthogonal Signals for Multichannel Data Transmission,” The Bell System Technical Journal,, pp. 1775-1796, Dec. 1966. |
Alard, M., et al., “A New System of Sound Broadcasting to Mobile Receivers,” IEEE, pp. 416-420, 1988. |
Ananasso, Fulvio, and Giovanni Pennoni, “Clock Synchronous Multicarrier Demodulator for Multi-Frequency TDMA Communication Satellites,” IEEE, pp. 1059-1063, 1990. |
Chow, Jacky S., et al., “A Discrete-Multitone Transceiver System for HDSL Applications,” IEEE J. Select. Areas Commun. 9(6):895-908, 1991. |
Chow, Peter S., et al., “Performance Evaluation of a Multichannel Transceiver System for ADSL and VHDSL Services,” IEEE J. Select Areas Commun. 9(6):909-919, 1991. |
Duch, Krzysztof M., “Baseband Signal Processing,” IEEE Network Magazine, pp. 39-43, Nov. 1991. |
Gledhill, J.J., et al., “The Transmission of Digital Television in the UHF Band Using Orthogonal Frequency Division Multiplexing,” National Transcommunications Ltd. UK, pp. 175-180, prior to Sep. 3, 1999. |
Pupolin, Silvano, et al., “Performance Analysis of Digital Radio Links With Nonlinear Transmit Amplifier and Data Predistorter With Memory,” IEEE, pp. 292-296, 1989. |
Saito, Masafumi, et al., “A Digital Modulation Method for Terrestrial Digital TV Broadcasting Using Trellis Coded OFDM and Its Performance,” IEEE, pp. 1694-1698, 1992. |