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Capacity of amplify-and-forward multi-hop relaying systems under adaptive transmission

机译:自适应传输下放大转发多跳中继系统的容量

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摘要

The capacity of amplify-and-forward multi-hop relaying systems under different adaptive transmission schemes over Nakagami-m fading channels is considered. Accurate theoretical approximations for the capacity of these systems are derived in terms of the characteristic function of the reciprocal of the instantaneous received signal-to-noise ratio. An accurate theoretical approximation for the probability of outage is also obtained. The accuracy of the expressions obtained is verified by Monte Carlo simulation. It is shown that a system with optimal power and rate adaptation outperforms the system with truncated channel inversion adaptive technique. Systems employing optimal rate adaptation with constant power achieve almost the same capacity as those with optimal rate and power adaptation at large values of signal-to-noise ratio. However, the capacity performance of a system with the truncated channel inversion adaptive technique is better than the corresponding system employing optimal rate adaptation with constant power for small values of signal-to-noise ratio.
机译:考虑了在Nakagami-m衰落信道上不同自适应传输方案下的放大转发多跳中继系统的容量。根据瞬时接收信噪比的倒数的特征函数,可以得出这些系统容量的精确理论近似值。还可以获得中断概率的精确理论近似值。得到的表达式的准确性通过蒙特卡洛模拟验证。结果表明,具有最佳功率和速率自适应能力的系统优于采用截短信道反转自适应技术的系统。在信噪比较大的情况下,采用具有恒定功率的最佳速率自适应的系统几乎可以获得与具有最佳速率和功率自适应的系统相同的容量。但是,采用截短的信道反转自适应技术的系统的容量性能要优于采用最佳速率自适应且功率恒定且信号信噪比较小的相应系统。

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