Automatic delay tuning of a novel ring resonator-based photonic beamformer for a transmit phased array antenna

Journal Article (2019)
Author(s)

Laurens Bliek (TU Delft - Team Raf Van de Plas, TU Delft - Algorithmics)

S. Wahls (TU Delft - Team Sander Wahls)

Ilka Visscher (LioniX International BV)

Caterina Taddei (LioniX International BV)

Roelof Bernardus Timens (LioniX International BV)

Ruud Oldenbeuving (LioniX International BV)

Chris Roeloffzen (LioniX International BV)

Michel Verhaegen (TU Delft - Team Michel Verhaegen)

Research Group
Team Sander Wahls
DOI related publication
https://doi.org/10.1109/JLT.2019.2926621
More Info
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Publication Year
2019
Language
English
Research Group
Team Sander Wahls
Issue number
19
Volume number
37
Pages (from-to)
4976-4984

Abstract

We present a novel photonic beamformer for a fully integrated transmit phased array antenna, together with an automatic procedure for tuning the delays in this system. Such an automatic tuning procedure is required because the large number of actuators makes manual tuning practically impossible. The antenna system is designed for the purpose of the broadband aircraft-satellite communication in the \mathrm{K_u}-band to provide satellite Internet connections on board the aircraft. The goal of the beamformer is to automatically steer the transmit antenna electronically in the direction of the satellite. This is done using a mix of phase shifters and tunable optical delay lines, which are all integrated on a chip and laid out in a tree structure. The \mathrm{K_u}-band has a bandwidth of 0.5 GHz. We show how an optical delay line is automatically configured over this bandwidth, providing a delay of approximately 0.4 ns. The tuning algorithm calculates the best actuator voltages based on past measurements. This is the first time that such an automatic tuning scheme is used on a photonic beamformer for this type of transmit phased array antenna. We show that the proposed method is able to provide accurate beamforming ({<}\text{11.25}^{\circ} phase error over the whole bandwidth) for two different delay settings.

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