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Intae Hwang, T. Jang, M. Kang, S. No, J. Son, Daesik Hong and Changeon Kang, "Performance analysis of adaptive modulation and coding combined with transmit diversity in next generation mobile communication systems", Elsevier Science FGCS, Feb 2004
[Other Journals]
조회 35506
Status : | Published |
---|---|
Date : | 2004-02 |
Title : | Performance analysis of adaptive modulation and coding combined with transmit diversity in next generation mobile communication systems |
Authors : | Intae Hwang, Taewon Jang, Mingoo Kang, Sangmin No, Jungyoung Son, Daesik Hong and Changeon Kang |
Journal : | Elsevier Science, Future Generation Computer Systems |
Abstract : | In this paper, we combine Adaptive Modulation and Coding (AMC) with Transmit Diversity (TD) to improve the performance of AMC in CDMA systems. An improved SNR increases a probability of selecting Modulation and Coding Scheme (MCS) level that supports higher data transfer rate. Therefore, higher average throughput can be achieved. As an open-loop TD, Space–Time block coding based Transmit antenna Diversity (STTD) is applied to AMC. For a closed-loop TD, Selection Transmit Diversity (STD) is combined with AMC. The results show that higher throughput is achieved by AMC–TD schemes. Compared to the conventional AMC, AMC–STTD scheme shows about 250 kbps increase in throughput. In addition, AMC–STD with two transmit antennas achieves about 420 kbps throughput improvement over the conventional AMC at 9 dB SNR in flat Rayleigh fading channel. |
URL : | http://www.sciencedirect.com/science/art...9X0300133X |
Intae Hwang, Taewon Jang, Mingoo Kang, Sangmin No, Jungyoung Son, Daesik Hong, Changeon Kang, Performance analysis of adaptive modulation and coding combined with transmit diversity in next generation mobile communication systems, Future Generation Computer Systems, Volume 20, Issue 2, 16 February 2004, Pages 189-196, ISSN 0167-739X, 10.1016/S0167-739X(03)00133-X.
(http://www.sciencedirect.com/science/article/pii/S0167739X0300133X)
Keywords: Adaptive Modulation and Coding; Transmit Diversity; Modulation and Coding Scheme
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