Multi-Objective Distributed Beamforming Using High-Accuracy Synchronization and Localization
Ahona Bhattacharyya, Jeffrey A. Nanzer

TL;DR
This paper demonstrates a multi-node distributed beamforming system using high-accuracy wireless synchronization and localization to achieve precise control of beam direction and null placement in near-field and far-field scenarios.
Contribution
It introduces a multi-objective distributed beamforming approach with centimeter-level localization accuracy using spectrally-sparse waveforms and centralized localization for array geometry estimation.
Findings
Achieved localization accuracy of less than 1 cm.
Successfully demonstrated simultaneous beam steering and null placement.
Validated system performance with moving nodes and targets.
Abstract
We present a multi-node, multi-objective open-loop microwave distributed beamforming system based on high-accuracy wireless synchronization and localization. Distributed beamforming requires accurate coordination of the spatial and electrical states of the individual elements within the array to achieve and maintain coherent beamforming at intended destinations. Of the basic coordination aspects, time synchronization and localization of the elements are among the most critical to support beamforming of modulated waveforms to destinations in both the near-field and far-field of the array. In this work, we demonstrate multi-objective distributed beamforming from a three-node distributed phased array consisting of software-defined radios that leverages high-accuracy wireless time coordination for both time synchronization and two-dimensional localization of the elements. We use a…
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Taxonomy
TopicsAntenna Design and Optimization · Speech and Audio Processing · Antenna Design and Analysis
