Scalable feedback algorithms for distributed transmit beamforming in wireless networks

R. Mudumbai, P. Bidigare, Scott Pruessing, S. Dasgupta, Miguel Oyarzyn, David Raeman
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引用次数: 15

Abstract

We explore a class of techniques for distributed transmit beamforming where the beamforming target sends cumulative feedback that is broadcast to all of the beamforming nodes. The simplest technique in this class is a 1-bit RSS feedback algorithm that has been studied in detail in the literature. Under this 1-bit algorithm, transmitters make random phase perturbations and the receiver periodically sends 1 bit of feedback indicating whether the received signal strength has increased or not compared to what was observed in the past. While this simple algorithm has very attractive properties such as dynamic tracking of time-varying phases, robustness to noise and other disturbances and is also simple to implement, we show in this paper that it also has serious limitations such as slow convergence and poor tracking performance in the presence of frequency offsets between the transmitters. We then show that enhanced feedback algorithms where the receiver sends as feedback several bits of feedback indicating the amplitude and phase of the received signal over time, are able to achieve beamforming in the presence of frequency offsets and large feedback channel latencies, while retaining the scalability and robustness of the 1-bit algorithm.
无线网络中分布式发射波束形成的可扩展反馈算法
我们探索了一类分布式发射波束形成技术,其中波束形成目标发送累积反馈,该反馈被广播到所有波束形成节点。本课程中最简单的技术是文献中详细研究的1位RSS反馈算法。在这种1位算法下,发射器进行随机相位扰动,接收器周期性地发送1位反馈,表明接收到的信号强度与过去观察到的相比是否增加。虽然这种简单的算法具有非常吸引人的特性,例如对时变相位的动态跟踪,对噪声和其他干扰的鲁棒性,并且也易于实现,但我们在本文中表明,它也有严重的局限性,例如在发射机之间存在频率偏移时收敛缓慢和跟踪性能差。然后,我们展示了增强的反馈算法,其中接收器发送作为反馈的几位反馈,指示接收信号随时间的幅度和相位,能够在存在频率偏移和大反馈信道延迟的情况下实现波束形成,同时保留1位算法的可扩展性和鲁棒性。
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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