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Impact of Non-Linear High-Power Amplifiers on Cooperative Relaying Systems

机译:非线性大功率放大器对协作中继系统的影响

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In this paper, we investigate the impact of the high-power amplifier non-linear distortion on multiple relay systems by introducing the soft envelope limiter, traveling wave tube amplifier, and solid-state power amplifier to the relays. The system employs amplify-and-forward either fixed or variable gain relaying and uses the opportunistic relay selection with outdated channel state information to select the best relay. The results show that the performance loss is small at low rates; however, it is significant for high rates. In particular, the outage probability and the bit error rate are saturated by an irreducible floor at high rates. The same analysis is pursued for the capacity and shows that it is saturated by a detrimental ceiling as the average signal-to-noise ratio becomes higher. This result contrasts the case of the ideal hardware where the capacity grows indefinitely. Moreover, the results show that the capacity ceiling is proportional to the impairment’s parameter and for some special cases the impaired systems practically operate in acceptable conditions. Closed-forms and high SNR asymptotes of the outage probability, the bit error rate, and the capacity are derived. Finally, analytical expressions are validated by the Monte Carlo simulation.
机译:在本文中,我们通过将软包络限制器,行波管放大器和固态功率放大器引入继电器,来研究大功率放大器非线性失真对多个继电器系统的影响。该系统采用固定或可变增益中继放大转发,并使用机会性中继选择和过时的信道状态信息来选择最佳中继。结果表明,低速率时性能损失较小;但是,这对于高费率很重要。尤其是,中断率和误码率被不可还原的底线高速率饱和。对容量进行了相同的分析,结果表明,随着平均信噪比变高,它被有害的上限所饱和。此结果与容量无限增长的理想硬件的情况形成对比。此外,结果表明,容量上限与损伤参数成正比,在某些特殊情况下,受损系统实际上可以在可接受的条件下运行。得出了中断概率,误码率和容量的闭合形式和高SNR渐近线。最后,通过蒙特卡洛模拟验证了解析表达式。

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