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Cooperative mobile-to-mobile communications over double Nakagami-m fading channels

机译:Nakagami-m双衰落信道上的协作式移动到移动通信

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摘要

Double Nakagami-m fading model can be used to provide a realistic description of the mobile-to-mobile (M2M) channel. The moment generating function (MGF)-based approach is used to derive the symbol error probability (SEP) expressions for the multiple-mobile-relay-based M2M system. Under the consideration of better performance and lower complexity, both decode-and-forward (DF) and amplify-and-forward (AF) protocols are addressed in this study. For adaptive DF (ADF) relaying, the asymptotic SEP at high signal-to-noise ratio regime in addition to the exact SEP formulations are derived. Furthermore, the impacts of channel estimation error for the insight of non-ideal channel estimation are analysed. For fixed-gain AF (FAF) relaying, the authors present approximate SEP and asymptotic SEP to indicate the cooperative gain. For L mobile relays and under the assumption of independent and identically distributed (i.i.d) source-relay channels and i.i.d Relay-destination channels, it is shown in this paper that asymptotic diversity orders of L ?? min(mRD,1, mRD,2) + min(mSD,1, MSD,2) and L ?? min(mSR,1, mSR,2, mRD,1, mRD,2) + min(mSD,1, mSD,2) can be achieved for ADF-M2M and FAF-M2M schemes, respectively. Simulations are performed to verify the analytical results.
机译:双Nakagami-m衰落模型可用于提供移动到移动(M2M)信道的真实描述。基于矩生成函数(MGF)的方法用于导出基于多移动中继的M2M系统的符号错误概率(SEP)表达式。考虑到更好的性能和更低的复杂性,本研究解决了解码转发(DF)和放大转发(AF)协议。对于自适应DF(ADF)中继,除了精确的SEP公式外,还获得了高信噪比条件下的渐近SEP。此外,分析了信道估计误差对非理想信道估计的影响。对于固定增益AF(FAF)中继,作者提出了近似SEP和渐近SEP来指示协作增益。对于L个移动中继,在独立且均等分布的(i.d.)源中继信道和i.i.d中继目的地信道的假设下,本文表明L?的渐近分集阶数min(m RD,1 ,m RD,2 )+ min(m SD,1 ,M SD,2 )和L ?? min(m SR,1 ,m SR,2 ,m RD,1 ,m RD,2 )对于ADF-M2M和FAF-M2M方案,分别可以实现+ min(m SD,1 ,m SD,2 )。进行仿真以验证分析结果。

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  • 来源
    《Communications, IET》 |2012年第18期|p.3165-3175|共11页
  • 作者

    Gong F.K.; Ye P.; Wang Y.; Zhang N.;

  • 作者单位

    The State Key Laboratory of ISN, Xidian University, Shaanxi Province, (710071), People's Republic of China;

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