Beamforming in wireless relay networks

Yindi Jing, H. Jafarkhani
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引用次数: 10

Abstract

This paper is on relay beamforming in wireless networks, in which the receiver has perfect information of all channels and each relay knows its own channels. Instead of the commonly used total power constraint on relays and the transmitter, we use a more practical assumption that every node in the network has its own power constraint. A two-step amplify-and-forward protocol with beamforming is used, in which the transmitter and relays are allowed to adaptively adjust their transmit power and directions according to available channel information. The optimal beamforming problem is solved analytically. The complexity of finding the exact solution is linear in the number of relays. Our results show that the transmitter should always use its maximal power and the optimal power used at a relay is not a binary function. It can take any value between zero and its maximum transmit power. Also, interestingly, this value depends on the quality of all other channels in addition to the relaypsilas own ones. Despite this coupling fact, distributive strategies are proposed in which, with the aid of a low-rate broadcast from the receiver, a relay needs only its own channel information to implement the optimal power control. Simulated performance shows that network beamforming achieves full diversity and outperforms other existing schemes.
无线中继网络中的波束形成
本文研究无线网络中的中继波束形成问题,在无线网络中,接收机拥有所有信道的完备信息,每个中继都知道自己的信道。我们没有使用通常使用的中继和发射机的总功率约束,而是使用了一个更实际的假设,即网络中的每个节点都有自己的功率约束。采用带波束成形的两步放大转发协议,允许发射机和中继根据可用信道信息自适应调整发射功率和方向。对最优波束形成问题进行了解析求解。找到精确解的复杂程度与继电器的数量成线性关系。结果表明,发射机应始终使用其最大功率,而继电器的最优功率不是二元函数。它可以取0和最大发射功率之间的任何值。此外,有趣的是,这个值取决于所有其他频道的质量,除了中继者自己的频道。尽管存在这种耦合,但本文提出了一种分配策略,在接收端低速率广播的帮助下,中继只需要自己的信道信息来实现最优功率控制。仿真结果表明,该网络波束形成方案实现了完全的分集,优于现有的其他方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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