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Adaptive transmission in MIMO AF relay networks with orthogonal space-time block codes over Nakagami-m fading

机译:Nakagami-m衰落下具有正交空时分组码的MIMO AF中继网络中的自适应传输

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In this article, we apply different adaptive transmission techniques to dual-hop multiple-input multiple-output amplify-and-forward relay networks using orthogonal space-time block coding over independent Nakagami- m fading channels. The adaptive techniques investigated are optimal simultaneous power and rate (OSPR), optimal rate with constant power (ORCP), and truncated channel inversion with fixed rate (TCIFR). The expressions for the channel capacity of OSPR, ORCP, and TCIFR, and the outage probability of OSPR, and TCIFR are derived based on the characteristic function of the reciprocal of the instantaneous signal-to-noise ratio (SNR) at the destination. For sufficiently high SNR, the channel capacity of ORCP asymptotically converges to OSPR while OSPR and ORCP achieve higher channel capacity compared to TCIFR. Although TCIFR suffers from an increase in the outage probability relative to OSPR, it provides the lowest implementation complexity among the considered schemes. Along with analytical results, we further adopt Monte Carlo simulations to validate the theoretical analysis.
机译:在本文中,我们在独立的Nakagamim衰落信道上使用正交空时分组编码,将不同的自适应传输技术应用于双跳多输入多输出放大转发中继网络。研究的自适应技术包括最佳同时功率和速率(OSPR),恒定功率的最佳速率(ORCP)和固定速率的截短信道反转(TCIFR)。根据目标处的瞬时信噪比(SNR)倒数的特征函数,得出OSPR,ORCP和TCIFR的信道容量以及OSPR和TCIFR的中断概率的表达式。对于足够高的SNR,ORCP的信道容量渐近收敛于OSPR,而OSPR和ORCP的信道容量则比TCIFR高。尽管相对于OSPR,TCIFR遭受中断的可能性有所增加,但它在所考虑的方案中提供了最低的实现复杂性。除了分析结果外,我们还采用蒙特卡洛模拟来验证理论分析。

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