双向源同步的反向分布式发射波束形成

R. Preuss, D. Brown
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引用次数: 40

摘要

分布式发射波束形成是一种由多个单天线源合作形成虚拟天线阵列,并与相位对准载波同时发射的技术,从而使通带信号在预定目的地相干组合。分布式发射波束形成的功率增益可以提供更大的范围、速率、能源效率和/或安全性,以及减少干扰。然而,分布式发射波束形成通常需要在时间误差在皮秒量级的源之间精确同步。本文提出了一种新的双向同步协议,以实现精确的源同步和反向分布式发射波束形成。双向同步协议是在假设每个源节点的所有处理都是在本地时间使用本地观测值进行的情况下开发的。分析了双向同步协议中相位和频率估计误差的统计特性以及使用该协议的分布式发射波束形成器的功率增益。文中还用数值实例描述了双向源同步系统中分布式发射波束形成的性能。数值结果表明,在较低的同步开销下,可以获得接近理想的波束形成性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Retrodirective distributed transmit beamforming with two-way source synchronization
Distributed transmit beamforming has recently been proposed as a technique in which several single-antenna sources cooperate to form a virtual antenna array and simultaneously transmit with phase-aligned carriers such that the passband signals coherently combine at an intended destination. The power gains of distributed transmit beamforming can provide increased range, rate, energy efficiency, and/or security, as well as reduce interference. Distributed transmit beamforming, however, typically requires precise synchronization between the sources with timing errors on the order of picoseconds. In this paper, a new two-way synchronization protocol is developed to facilitate precise source synchronization and retrodirective distributed transmit beamforming. The two-way synchronization protocol is developed under the assumption that all processing at each source node is performed with local observations in local time. An analysis of the statistical properties of the phase and frequency estimation errors in the two-way synchronization protocol and the resulting power gain of a distributed transmit beamformer using this protocol is provided. Numerical examples are also presented characterizing the performance of distributed transmit beamforming in a system using two-way source synchronization. The numerical results demonstrate that near-ideal beamforming performance can be achieved with low synchronization overhead.
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