An efficient dynamic channel allocation method for down-link OFDM code-division multiplexing systems

Myeon Gyun Cho, Sangmin Ro, Hyunkyu Yu, Daesik Hong

Research output: Contribution to conferencePaper

Abstract

In this paper, orthogonal frequency division multiplexing - code division multiplexing (OFDM-CDM) using an efficient dynamic channel allocation (DCA) is proposed as a valid candidate for a next-generation multiple access scheme. Assuming perfect knowledge of the channel information for multiple users, a considerable amount of multi-user diversity gain can be obtained with OFDM-CDM through adaptation of DCA compared to multi-carrier CDMA (MC-CDMA). Comparing to conventional OFDMA using DCA, an additional frequency diversity gain also can be achieved by proposed system. In particular, computational complexity can be much alleviated by joint combination of the subband (SB) based DCA and the maximum ratio combining (MRC) instead of subcarrier based DCA and the minimum mean square error combining (MMSEC) method at the receiver. The simulation results show that proposed OFDM-CDM outperforms conventional MC-CDMA and OFDMA using DCA with respect to BER and computational complexity.

Original languageEnglish
Pages46-50
Number of pages5
Publication statusPublished - 2005 Jun 27
EventProceedings - 6th World Wireless Congress, WWC - San Francisco, CA, United States
Duration: 2005 May 252005 May 27

Other

OtherProceedings - 6th World Wireless Congress, WWC
CountryUnited States
CitySan Francisco, CA
Period05/5/2505/5/27

Fingerprint

Multiplexing
Orthogonal frequency division multiplexing
Telecommunication links
Code division multiple access
Computational complexity
Mean square error

All Science Journal Classification (ASJC) codes

  • Engineering(all)

Cite this

Cho, M. G., Ro, S., Yu, H., & Hong, D. (2005). An efficient dynamic channel allocation method for down-link OFDM code-division multiplexing systems. 46-50. Paper presented at Proceedings - 6th World Wireless Congress, WWC, San Francisco, CA, United States.
Cho, Myeon Gyun ; Ro, Sangmin ; Yu, Hyunkyu ; Hong, Daesik. / An efficient dynamic channel allocation method for down-link OFDM code-division multiplexing systems. Paper presented at Proceedings - 6th World Wireless Congress, WWC, San Francisco, CA, United States.5 p.
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abstract = "In this paper, orthogonal frequency division multiplexing - code division multiplexing (OFDM-CDM) using an efficient dynamic channel allocation (DCA) is proposed as a valid candidate for a next-generation multiple access scheme. Assuming perfect knowledge of the channel information for multiple users, a considerable amount of multi-user diversity gain can be obtained with OFDM-CDM through adaptation of DCA compared to multi-carrier CDMA (MC-CDMA). Comparing to conventional OFDMA using DCA, an additional frequency diversity gain also can be achieved by proposed system. In particular, computational complexity can be much alleviated by joint combination of the subband (SB) based DCA and the maximum ratio combining (MRC) instead of subcarrier based DCA and the minimum mean square error combining (MMSEC) method at the receiver. The simulation results show that proposed OFDM-CDM outperforms conventional MC-CDMA and OFDMA using DCA with respect to BER and computational complexity.",
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Cho, MG, Ro, S, Yu, H & Hong, D 2005, 'An efficient dynamic channel allocation method for down-link OFDM code-division multiplexing systems' Paper presented at Proceedings - 6th World Wireless Congress, WWC, San Francisco, CA, United States, 05/5/25 - 05/5/27, pp. 46-50.

An efficient dynamic channel allocation method for down-link OFDM code-division multiplexing systems. / Cho, Myeon Gyun; Ro, Sangmin; Yu, Hyunkyu; Hong, Daesik.

2005. 46-50 Paper presented at Proceedings - 6th World Wireless Congress, WWC, San Francisco, CA, United States.

Research output: Contribution to conferencePaper

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Cho MG, Ro S, Yu H, Hong D. An efficient dynamic channel allocation method for down-link OFDM code-division multiplexing systems. 2005. Paper presented at Proceedings - 6th World Wireless Congress, WWC, San Francisco, CA, United States.