DOI QR코드

DOI QR Code

Two-way 증폭과 전송 릴레이 네트워크의 용량 최적화

Capacity Optimization of Two-way Amplify-and Forward Relay Networks

  • Hanif, Mohammad Abu (Division of Electronic Engineering, Chonbuk National University) ;
  • Lee, Moon Ho (Division of Electronic Engineering, Chonbuk National University) ;
  • Park, Ju Yong (Department of Internet Information and Communication, Shyngyeong University)
  • 투고 : 2012.06.25
  • 발행 : 2013.01.25

초록

본 논문에서는 two-way 릴레이 네트워크에서 파일롯(pilot)기반 채널 추정 기법과, 전송시 데이터 심볼과 함께 파일롯 심볼을 전송하는 기법을 제안한다. 채널상태정보(channel state information : CSI)가 없는 경우, destination은 파일롯 심볼을 사용해 채널을 추정한다. 이 시스템에서 릴레이는 파일롯 심볼과 데이터 심볼을 증폭하고 AF(amplify and forward)프로토콜을 사용하여 destination에 전송한다. 릴레이 이득이 고정되어 있어서 릴레이는 채널을 추정할 필요가 없기 때문에 destination이 채널을 추정한다. 이 채널 추정에는 이미 잘 알려진 LS(least-square)와 MMSE(minimum mean-square error)를 사용하였다.

In this paper, we propose a pilot based channel estimation technique in two-way relay networks. We propose to transmit a pilot symbol together with the data symbol during transmission. In absence of Channel State Information (CSI), destination uses the pilot symbol to estimate the channel. In this system, the relay amplifies the pilot and the data symbol then forward them to the destination using amplify and forward (AF) protocol. We assume that the relay gain is fixed, so the relay does not need to estimate the channel, the destination only estimate the channel. We apply well-known Least-square (LS) and minimum mean-square error (MMSE) channel estimation methods to estimate the channel.

키워드

참고문헌

  1. K. J. R. Liu, A. K. Sadek, W. Su and A. Kwasinski, Cooperative Communications and Networking, Cambridge Unicersity press.
  2. S. J. Haghighi, S. Primak and X. Wang, "Effcts of Side Information on Complexity Reduction in Superimposed Pilot Channel Estimation in OFDM Systems," Vehicular Technology Conference (VTC 2010-Spring), Page(s): 1 - 5, 24 June 2010.
  3. C. S. Patel, and G. L. Stüber, "Channel Estimation for Amplify and Forward Relay Based Cooperation Diversity Systems," IEEE Trans. on Wiress Communications, Vol. 6, no. 6, June 2007.
  4. S. Galih, R. Karlina, F. Nugroho, A. Irawan, T.Adiono, and A. Kurniawan, "High Mobility Data Pilot Based Channel Estimation for Downlink OFDMA System Based on IEEE 802.16e Standard," ICROS-SICE International Joint Conference 2009 August 18-21, 2009, Fukuoka International Congress Center, Japan.
  5. Y. Sung, L. Ton, and A. Swami, "Blind Channel Estimation for Space-Time Coded WCDMA," EURASIP Journal on Wireless Communications and Networking 2004:2, 322-334, 2004 Hindawi Publishing Corporation.
  6. S. Katti, S. Gollakota, and D. Katabi, "Embracing wireless interference: Analog network coding," Computer Science and Artificial Intelligence Laboratory Technical Report, MIT-CSAIL-TR-2007-012, Feb. 2007.
  7. F. S. Tabataba, P. Sadeghi, and M. R. Pakravan, "Outage Probability and Power Allocation of Amplify and Forward Relaying with Channel Estimation Errors," IEEE Trans. on Wiress Communications, vol. 10, NO. 1, Jan. 2011.
  8. S. Katti, S. Gollakota, and D. Katabi, "Embracing wireless interference: Analog network coding,"Computer Science and Artificial Intelligence Laboratory Technical Report, MIT-CSAIL-TR-2007-012, Feb. 2007.
  9. Y. S. Cho, J. Kim, and W. Y. Yang, MIMO-OFDM Wireless Commumication With Matlab, John Wiley & Sons (Adia) Pte. Ltd.
  10. F. Gao, T. Cui, and A. Nallanathan, "On Channel Estimation and Optimal Training Design for Amplify and Forward Relay Networks," IEEE Trans. on Wiress Communications, Vol. 7, no. 5, May 2008.
  11. J. J. V. Beek, O. Edfors, M. Sandell, S. K. Wilson, and P. O. Borjesson, "On Channel Estimation in OFDM System," In Proceedings of Vehicular Technology Conference (VTC O95), vol. 2, pp. 815-819, Chicago, USA, September 1995.
  12. Wooseok Nam, Sae-Young Chung, and Yong H. Lee, "Capacity Bounds for Two-Way Relay Channels," IEEE International Zurich Seminar on Communicaliton, 2008, page(s): 144-147.