Please wait a minute...
 首页  期刊介绍 期刊订阅 联系我们
 
最新录用  |  预出版  |  当期目录  |  过刊浏览  |  阅读排行  |  下载排行  |  引用排行  |  百年期刊
Journal of Tsinghua University(Science and Technology)    2015, Vol. 55 Issue (5) : 485-490     DOI:
ELECTRONIC ENGINEERING |
Overlapped frequency/code division multiple access (O-FCDMA) system framework
GU Na1,2, KUANG Linling2, WU Sheng2, LU Jianhua1,2
1. Department of Electronic Engineering, Tsinghua University, Beijing 100084, China;
2. Tsinghua Space Center, Beijing 100084, China
Download: PDF(1103 KB)  
Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks    
Abstract  An overlapped frequency/code division multiple access (O-FCDMA) system framework was developed with the equivalent isotropic radiated power (EIRP) mask restraint to improve the spectral efficiency of multiple access systems for very small aperture terminals (VSATs) in the reverse link at the Ku band. Each user's information bits are spread by different sequences and then modulated on different subcarriers, with adjacent spectra partially overlapping. The system reduces the receiver complexity and improves the spectral efficiency. Simulations show that the reduced multiple access interference (MAI) improves the O-FCDMA system performance so that it outperforms the hybrid frequency/code division multiple access (H-FCDMA) system and approximates the optimal performance achieved by the belief propagation (BP) based joint iterative detection and decoding algorithm in direct-sequence code division multiple access (DS-CDMA) systems, with similar performance to single user systems. Moreover, the O-FCDMA system has a good compatibility with conventional DS-CDMA systems, so it can be easily implemented.
Keywords very small aperture terminal (VSAT)      direct-sequence code division multiple access (DS-CDMA)      hybrid frequency/code division multiple access (H-FCDMA)      overlapped frequency/code division multiple access (O-FCDMA)     
ZTFLH:  TN914.53  
Issue Date: 15 May 2015
Service
E-mail this article
E-mail Alert
RSS
Articles by authors
GU Na
KUANG Linling
WU Sheng
LU Jianhua
Cite this article:   
GU Na,KUANG Linling,WU Sheng, et al. Overlapped frequency/code division multiple access (O-FCDMA) system framework[J]. Journal of Tsinghua University(Science and Technology), 2015, 55(5): 485-490.
URL:  
http://jst.tsinghuajournals.com/EN/     OR     http://jst.tsinghuajournals.com/EN/Y2015/V55/I5/485
   
   
   
   
   
   
[1] Weerackody V, Gonzalez L. Mobile small aperture satellite terminals for military communications [J]. Communications Magazine, IEEE, 2007, 45(10): 70-75.
[2] ITU-R Rec. S.728-1, Maximum Permissible Level of Off-Axis E.I.R.P. Density from Very Small Aperture Terminals (VSATs) [S]. Geneva, Switzerland: International Telecommunication Union, 2004.
[3] FCC Part 25—Satellite Communications, Sec. 25.209 Antenna Performance Standards, Sec. 25.212 Narrowband Transmissions in the 12/14 GHz GSO Fixed-Satellite Service [S]. Washington DC, USA: Federal Communications Commission, 2002.
[4] Eng T, Milstein L B. Comparison of hybrid FDMA/CDMA systems in frequency selective Ray-leigh fading [J]. IEEE J Sel Areas Comm, 1994, 12 (5): 938-951.
[5] Eng T, Chockalingam A, Milstein L B. Capacities of FDMA/CDMA systems in the presence of phase noise and multipath Rayleigh fading [J]. Communications, IEEE Transactions on, 1998, 46(8): 997-999.
[6] Cho J H. Equivalence of CDMA, FDMA, and TDMA over Gaussian overloaded channels [C]//Wireless Communications and Networking Conference, IEEE 2004. Atlanta, GA, USA: IEEE Press, 2004, 1: 519-524.
[7] Verdu S. Minimum probability of error for asynchronous Gaussian multiple-access channels [J]. Information Theory, IEEE Transactions on, 1986, 32(1): 85-96.
[8] Michael L. Honig. Advances in Multiuser Detection [M]. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2009.
[9] Wang X, Poor H V. Iterative (turbo) soft interference cancellation and decoding for coded CDMA [J]. Communications, IEEE Transactions on, 1999, 47(7): 1046-1061.
[10] El Gamal H, Geraniotis E. Iterative multiuser detection for coded CDMA signals in AWGN and fading channels [J]. Selected Areas in Communications, IEEE Journal on, 2000, 18(1): 30-41.
[11] Tuchler M, Koetter R, Singer A C. Turbo equalization: Principles and new results [J]. Communications, IEEE Transactions on, 2002, 50(5): 754-767.
[12] Tüchler M, Singer A C. Turbo equalization: An overview [J]. Information Theory, IEEE Transactions on, 2011, 57(2): 920-952.
[13] Gu N, Wu S, Kuang L, et al. Belief propagation-based joint iterative algorithm for detection and decoding in asynchronous CDMA satellite systems [J]. EURASIP Journal on Wireless Communications and Networking, 2013, 234(1): 1-14.
[14] 顾娜, 匡麟玲, 陆建华. 动中通卫星通信中的扩频多址干扰消除技术[C]//第九届卫星通信学术年会. 北京: 中国通信学会卫星通信委员会, 2013: 192-200.GU Na, KUANG Lingling, LU Jianhua. Spread spectrum multiple access interference cancellation in satellite communication on-the-move system [C]//The 9th of China Institute of Communications. Beijing, China: Satellite Communications Commission of China Communications, 2013: 192-200.(in Chinese)
url:
No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
Copyright © Journal of Tsinghua University(Science and Technology), All Rights Reserved.
Powered by Beijing Magtech Co. Ltd