• DocumentCode
    1258692
  • Title

    Code-Rate-Optimized Differentially Modulated Near-Capacity Cooperation

  • Author

    Wang, Li ; Kong, Lingkun ; Ng, Soon Xin ; Hanzo, Lajos

  • Author_Institution
    Sch. of ECS, Univ. of Southampton, Southampton, UK
  • Volume
    59
  • Issue
    8
  • fYear
    2011
  • fDate
    8/1/2011 12:00:00 AM
  • Firstpage
    2185
  • Lastpage
    2195
  • Abstract
    It is widely recognized that half-duplex-relay-aided differential decode-and-forward (DDF) cooperative transmission schemes are capable of achieving a cooperative diversity gain, while circumventing the potentially excessive-complexity and yet inaccurate channel estimation, especially in mobile environments. However, when a cooperative wireless communication system is designed to approach the maximum achievable spectral efficiency by taking the cooperation-induced multiplexing loss into account, it is not obvious whether or not the relay-aided system becomes superior to its direct-transmission based counterpart, especially, when advanced channel coding techniques are employed. Furthermore, the optimization of the transmit-interval durations required by the source and relay is an open issue, which has not been well understood in the context of half-duplex relaying schemes. Hence, we first find the optimum transmission duration, which is proportional to the adaptive channel-code rate of the source and relay in the context of Code-Rate-Optimized (CRO) TDMA-based DDF-aided half-duplex systems for the sake of maximizing the achievable network throughput. Then, we investigate the benefits of introducing cooperative mechanisms into wireless networks, which may be approached in the context of the proposed CRO cooperative system both from a pure capacity perspective and from the practical perspective of approaching the Discrete-input Continuous-output Memoryless Channel (DCMC) capacity with the aid of the proposed Irregular Distributed Differential (IrDD) coding aided scheme. In order to achieve a near-capacity performance at a low-complexity, an adaptive-window-duration based Multiple-Symbol Differential Sphere Detection (MSDSD) scheme is employed in the iterative detection aided receiver. Specifically, upon using the proposed near-capacity system design, the IrDD coding scheme devised becomes capable of performing within about 1.8 dB from the corresponding single-relay-aid- - ed DDF cooperative system´s DCMC capacity.
  • Keywords
    channel coding; cooperative communication; decode and forward communication; time division multiple access; CRO cooperative system; DDF-aided half-duplex system; TDMA; adaptive channel-code rate; adaptive-window-duration; channel coding; channel estimation; code-rate-optimized differentially modulated near-capacity cooperation; cooperation-induced multiplexing loss; cooperative diversity gain; cooperative mechanism; cooperative wireless communication system; differential decode-and-forward cooperative transmission scheme; discrete-input continuous-output memoryless channel capacity; half-duplex relaying scheme; irregular distributed differential coding aided scheme; iterative detection aided receiver; mobile environment; multiple-symbol differential sphere detection scheme; near-capacity system design; spectral efficiency; transmit-interval duration optimization; wireless network; Cooperative systems; Diversity methods; Encoding; Fading; Relays; Signal to noise ratio; Wireless communication; Non-coherent communication; adaptive-rate channel coding; avoiding channel estimation; coded cooperation; cooperative communications; differential encoding; near-capacity wireless communication; relaying;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2011.061511.100115
  • Filename
    5931040