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首页> 外文期刊>Communications, IEEE Transactions on >Performance Analysis over Slow Fading Channels of a Half-Duplex Single-Relay Protocol: Decode or Quantize and Forward
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Performance Analysis over Slow Fading Channels of a Half-Duplex Single-Relay Protocol: Decode or Quantize and Forward

机译:半双工单中继协议的慢衰落信道上的性能分析:解码或量化并转发

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摘要

In this work, a static relaying protocol, called Decode or Quantize and Forward (DoQF), is introduced for half duplex single-relay networks, and its performance is studied in the context of communications over slow fading wireless channels. The proposed protocol is inspired by the so-called Compress-and-Forward (CF) but only needs statistical Channel State Information at the Transmitter (CSIT). First, we analyze the behavior of the outage probability P_o of the proposed protocol as the SNR ?? tends to infinity. In this case, we prove that ??^2 P_o converges to a constant ??. We refer to this constant as the outage probability gain and we derive its closed-form expression for a general class of wireless channels that includes Rayleigh and Rice. We furthermore prove that the DoQF protocol has the best achievable outage gain in the wide class of half-duplex static relaying protocols and we minimize ?? w.r.t the power allocation to the source and the relay and the durations of the slots. Next, we focus on Rayleigh channels to derive the Diversity-Multiplexing Tradeoff (DMT) of the DoQF. Our results show that the DoQF achieves the 2 by 1 MISO DMT upper-bound for multiplexing gains r<0.25.
机译:在这项工作中,为半双工单中继网络引入了一种称为“解码或量化转发”(DoQF)的静态中继协议,并在慢速衰落的无线信道上进行通信时研究了其性能。所提出的协议受到所谓的压缩转发(CF)的启发,但仅需要发送器(CSIT)上的统计信道状态信息。首先,我们将建议协议的中断概率P_o的行为分析为SNR ??。趋于无穷大。在这种情况下,我们证明?? ^ 2 P_o收敛为常数??。我们将此常数称为中断概率增益,并针对包括Rayleigh和Rice在内的一般无线信道类别推导其封闭形式的表达式。我们进一步证明,在广泛的半双工静态中继协议中,DoQF协议具有可实现的最佳中断增益,并且我们将??没有给源和中继的功率分配以及时隙的持续时间。接下来,我们集中在瑞利信道上以得出DoQF的分集复用权衡(DMT)。我们的结果表明,对于多路复用增益r <0.25,DoQF达到2乘1 MISO DMT上限。

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