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Sum-Rate Optimal Network Beamforming and Subcarrier Power Allocation for Multi-Carrier Asynchronous Two-Way Relay Networks

机译:多载波异步双向中继网络的总速率最优网络波束成形和子载波功率分配

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摘要

In this paper, we consider a multicarrier asynchronous bidirectional relay network, where different relay-transceiver links can cause different delays in the signals they convey, thereby producing inter-symbol-interference at the two transceivers. Such a two-way relay link can be modeled as a frequency selective channel with multiple taps, and thus, it can be equalized using orthogonal frequency division multiplexing (OFDM) transmission and reception schemes at the two transceivers, while the relays use simple amplify-and-forward relaying protocol. We prove rigorously that maximizing the sum-rate under a total power budget, through jointly optimal network beamforming at the relays and subcarrier power loading at the two transceivers, leads to a relay selection scheme, where only those relays which contribute to one tap of the end-to-end channel impulse response, have to be active and the remainder of the relays have to be switched off. The optimal tap can then be obtained using a simple search method. Moreover, we present semi-closed-form solutions for the optimal value of transceivers’ subcarrier powers as well as for the relay beamforming weights.
机译:在本文中,我们考虑了一个多载波异步双向中继网络,其中不同的中继收发器链路可以在它们传送的信号中引起不同的延迟,从而在两个收发器处产生符号间干扰。可以将这样的双向中继链路建模为具有多个抽头的选频信道,因此可以在两个收发器上使用正交频分复用(OFDM)发送和接收方案对其进行均衡,而中继使用简单的放大-和转发中继协议。我们严格地证明,通过在继电器处共同优化网络波束形成和两个收发器处的子载波功率负载,在总功率预算下最大化总和率,会导致一种继电器选择方案,其中只有那些对一个抽头做出贡献的继电器端到端通道脉冲响应必须处于活动状态,其余继电器必须关闭。然后可以使用简单的搜索方法获得最佳抽头。此外,我们针对收发器的子载波功率的最佳值以及中继波束成形权重提供了半封闭式解决方案。

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