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Energy-efficient outage-constrained power allocation based on statistical channel knowledge for dual-hop cognitive relay networks

机译:基于统计通道知识的双跳认知中继网络的高能效中断约束功率分配

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摘要

This paper investigates the power allocation problem in decode-and-forward cognitive dual-hop systems over Rayleigh fading channels. In order to optimize the performance of the secondary network in terms of power consumption, an outage-constrained power allocation scheme is proposed. The secondary nodes adjust their transmit power subject to an average interference constraint at the primary receiver and an outage probability constraint for the secondary receivers while having only statistical channel knowledge with respect to the primary nodes. We compare this approach with a power allocation scheme based on instantaneous channel state information under a peak interference constraint. Analytical and numerical results show that the proposed approach, without requiring the constant interchange of channel state information, can achieve a similar performance in terms of outage probability as that of power allocation based on instantaneous channel knowledge. Moreover, the transmit power allocated by the proposed approach is considerably smaller than the power allocated by the method based on instantaneous channel knowledge in more than 50% of the time. Copyright (c) 2015John Wiley & Sons, Ltd.
机译:本文研究了瑞利衰落信道上的解码和转发认知双跳系统中的功率分配问题。为了在功耗方面优化次级网络的性能,提出了一种中断受限的功率分配方案。在仅具有关于主节点的统计信道知识的同时,辅节点在主接收器处受到平均干扰约束和辅接收器的中断概率约束的情况下调整其发射功率。我们将这种方法与在峰值干扰约束下基于瞬时信道状态信息的功率分配方案进行比较。分析和数值结果表明,该方法不需要中断状态信息的不断交换,就可以在中断概率方面实现与基于瞬时信道知识的功率分配类似的性能。此外,在超过50%的时间内,所提出的方法分配的发射功率比基于基于瞬时信道知识的方法分配的功率小得多。版权所有(c)2015 John Wiley&Sons,Ltd.

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