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Multi-Carrier Asynchronous Bi-Directional Relay Networks: Joint Subcarrier Power Allocation and Network Beamforming

机译:多载波异步双向中继网络:联合子载波功率分配和网络波束成形

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摘要

We consider an asynchronous bi-directional relay network, consisting of two single-antenna transceivers and multiple single-antenna relays, where the transceiver-relay paths are subject to different relaying and/or propagation delays. Such a network can be viewed as a multipath channel which can cause inter-symbol-interference (ISI) in the signals received by the two transceivers. Hence, we model such a communication scheme as a frequency selective multipath channel which produces ISI at the two transceivers, when the data rates are high. To tackle ISI, the transceivers can employ an orthogonal frequency division multiplexing (OFDM) scheme to diagonalize the end-to-end channel. The relays use simple amplify-and-forward relaying, thereby materializing a distributed beamformer. For such a scheme, we propose two different algorithms, based on the max-min fair design approach, to calculate the subcarrier power loading at the transceivers as well as the relay beamforming weights. We develop computationally efficient solutions to these two approaches. Simulation results are presented to show that our proposed schemes outperform equal or maximum power allocation schemes.
机译:我们考虑一个异步双向中继网络,该网络由两个单天线收发器和多个单天线中继组成,其中,收发器中继路径受到不同的中继和/或传播延迟。可以将这样的网络视为多径信道,它会在两个收发器接收的信号中引起符号间干扰(ISI)。因此,当数据速率较高时,我们将这种通信方案建模为频率选择性多径信道,该信道在两个收发器处产生ISI。为了解决ISI,收发器可以采用正交频分复用(OFDM)方案对角化端到端信道。中继使用简单的放大转发中继,从而实现了分布式波束形成器。对于这种方案,我们基于最大-最小公平设计方法提出了两种不同的算法,以计算收发器处的子载波功率负载以及中继波束成形权重。我们针对这两种方法开发了计算有效的解决方案。仿真结果表明,我们提出的方案优于同等或最大功率分配方案。

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