MIMO Cooperative Diversity with Scalar-Gain Amplify-and-Forward Relaying

被引:54
|
作者
Song, Youngpil [1 ]
Shin, Hyundong [1 ]
Hong, Een-Kee [1 ]
机构
[1] Kyung Hee Univ, Dept Elect & Radio Engn, Yongin 446701, Gyeonggi Do, South Korea
关键词
Amplify-and-forward (AF) relaying; cooperative diversity; multiple-input multiple-output (MIMO); orthogonal space-time block code; symbol error probability; TIME BLOCK-CODES; PERFORMANCE; BOUNDS;
D O I
10.1109/TCOMM.2009.07.070099
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We analyze diversity performance of scalar fixed-gain amplify-and-forward (AF) cooperation in multiple-input multiple-output (MIMO) relay channels with n(S) source antennas, n(R) relay antennas, and n(D) destination antennas. We first derive the exact symbol error probability (SEP) for maximum likelihood decoding of orthogonal space-time block codes with M-ary phase-shift keying modulation over such channels and then characterize the effect of MIMO cooperative diversity on SEP behavior in a high signal-to-noise ratio regime. We show that the simple scalar-gain AF cooperation can create the diversity order d(AF) <= n(S)n(D) + n(S)n(R)n(D)/max{n(S), n(R), n(D)} with the equality if 2 max {n(S), n(R), n(D)} >= n(S) + n(R) + n(D) - 1. This finding reveals that the number of relay antennas greater than or equal to n(S) + n(D) - 1 is required to achieve the additional diversity order n(S)n(D) by scalar-gain AF relaying. We also present the asymptotic SEP as the number of relay antennas tends to infinity.
引用
收藏
页码:1932 / 1938
页数:7
相关论文
共 50 条
  • [11] Cooperative OFDM with Amplify-and-Forward Relaying with Timing Offset
    Raghunath, K.
    Chockalingam, A.
    GLOBECOM 2008 - 2008 IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, 2008,
  • [12] Maximum Achievable Diversity of Coded MIMO-OFDM Amplify-and-Forward Relaying Systems
    Song, Changick
    Lee, Inkyu
    2010 CONFERENCE RECORD OF THE FORTY FOURTH ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS AND COMPUTERS (ASILOMAR), 2010, : 913 - 917
  • [13] Diversity Analysis of Coded Beamforming in MIMO-OFDM Amplify-and-Forward Relaying Systems
    Song, Changick
    Lee, Inkyu
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2011, 10 (08) : 2445 - 2450
  • [14] On slotted amplify-and-forward cooperative diversity schemes
    Yang, Sheng
    Belfiore, Jean-Claude
    2006 IEEE INTERNATIONAL SYMPOSIUM ON INFORMATION THEORY, VOLS 1-6, PROCEEDINGS, 2006, : 2446 - +
  • [15] A General Diversity Gain Function and Its Application in Amplify-and-Forward Cooperative Networks
    Liu, Qijia
    Ma, Xiaoli
    Zhou, G. Tong
    IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2011, 59 (02) : 859 - 863
  • [16] Transmit Antenna Selection Strategy in Amplify-and-Forward MIMO Relaying
    Cao, Lei
    Zhang, Xin
    Wang, Yafeng
    Yang, Dacheng
    2009 IEEE WIRELESS COMMUNICATIONS & NETWORKING CONFERENCE, VOLS 1-5, 2009, : 23 - 26
  • [17] Successive relaying for large MIMO amplify-and-forward relay networks
    Peng, Hong
    Su, Changran
    Zhang, Yu
    INTERNATIONAL JOURNAL OF COMMUNICATION SYSTEMS, 2018, 31 (09)
  • [18] Multiuser MIMO Amplify-and-Forward Relaying Schemes with Vector Precoding
    Jimenez, Idoia
    Weiss, Stephan
    Mendicute, Mikel
    Arruti, Egoitz
    2011 IEEE INTERNATIONAL SYMPOSIUM ON SIGNAL PROCESSING AND INFORMATION TECHNOLOGY (ISSPIT), 2011, : 514 - 519
  • [19] Amplify-and-Forward Cooperative Relaying for a Linear Wireless Sensor Network
    El-Darymli, Khalid
    2010 IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN AND CYBERNETICS (SMC 2010), 2010,
  • [20] Performance Analysis of MIMO Cooperative Relaying System Based on Alamouti STBC and Amplify-and-Forward Schemes
    Abdaoui, Abderrazek
    Ikki, Salama S.
    Ahmed, Mohamed H.
    2010 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS, 2010,