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IEICE Transactions on Communications
Online ISSN : 1745-1345
Print ISSN : 0916-8516
Regular Section
Design and Analysis on Macro Diversity Scheme for Broadcast Services in Mobile Cellular Systems
Yang LIUHui ZHAOYunchuan YANGWenbo WANGKan ZHENG
Author information
  • Yang LIU

    Wireless Signal Processing and Network Lab, the Key Laboratory of Universal Wireless Communications, Ministry of Education, Beijing University of Posts and Telecommunications

  • Hui ZHAO

    Wireless Signal Processing and Network Lab, the Key Laboratory of Universal Wireless Communications, Ministry of Education, Beijing University of Posts and Telecommunications

  • Yunchuan YANG

    Wireless Signal Processing and Network Lab, the Key Laboratory of Universal Wireless Communications, Ministry of Education, Beijing University of Posts and Telecommunications

  • Wenbo WANG

    Wireless Signal Processing and Network Lab, the Key Laboratory of Universal Wireless Communications, Ministry of Education, Beijing University of Posts and Telecommunications

  • Kan ZHENG

    Wireless Signal Processing and Network Lab, the Key Laboratory of Universal Wireless Communications, Ministry of Education, Beijing University of Posts and Telecommunications

Corresponding author

ORCID
Keywords:broadcast,macro diversity,High-Dimension-Full-Rate-Quasi-Orthogonal STBC (HDFR-QOSTBC),equivalent channel
JOURNALRESTRICTED ACCESS

2010 Volume E93.BIssue 11Pages 3113-3120

DOIhttps://doi.org/10.1587/transcom.E93.B.3113
Details
  • Published: November 01, 2010Received: January 29, 2010Available on J-STAGE: November 01, 2010Accepted: -Advance online publication: -Revised: -
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Abstract
Recently, broadcast services are introduced in cellular networks and macro diversity is an effective way to combat fading. In this paper, we propose a kind of distributed space-time block codes (STBCs) for macro diversity which is constructed from the total antennas of multiple cooperating base stations, and all the antennas form an equivalent multiple input multiple output (MIMO) system. This code is termed High-Dimension-Full-Rate-Quasi-Orthogonal STBC (HDFR-QOSTBC) which can be characterized as: (1) It can be applied with any number of transmit antennas especially when the number of transmit antennas is large; (2) The code is with full transmit rate of one; (3) The Maximum Likelihood (ML) decoding complexity of this code is controllable and limited toNt/2-symbol-decodable for totalNt transmit antennas. Then, we completely analyze the structure of the equivalent channel for the kind of codes and reveal a property that the eigenvectors of the equivalent channel are constant and independent from the channel realization, and this characteristic can be exploited for a new transmission structure with single-symbol linear decoder. Furthermore, we analyze different macro diversity schemes and give a performance comparison. The simulation results show that the proposed scheme is practical for the broadcast systems with significant performance improvement comparing with soft-combination and cyclic delay diversity (CDD) methods.
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© 2010 The Institute of Electronics, Information and Communication Engineers
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