Electromagnetic Analysis and Experimental Validation of the LOFAR Radiation Patterns

Author:

Di Ninni Paola1ORCID,Bolli Pietro1ORCID,Paonessa Fabio2ORCID,Pupillo Giuseppe3ORCID,Virone Giuseppe2ORCID,Wijnholds Stefan J.4

Affiliation:

1. Osservatorio Astrofisico di Arcetri, Istituto Nazionale di Astrofisica, Florence 50125, Italy

2. Istituto di Elettronica e di Ingegneria dell’Informazione e delle Telecomunicazioni, Consiglio Nazionale delle Ricerche, Turin 10129, Italy

3. Istituto di Radioastronomia, Istituto Nazionale di Astrofisica, Bologna 40129, Italy

4. Netherlands Institute for Radio Astronomy, Dwingeloo, 7991 PD, Netherlands

Abstract

Low-frequency (<300 MHz) aperture array systems are one of the new trends in modern radio astronomy. Among the challenges they pose, the instrumental calibration is a key aspect requiring an accurate and reliable model of each element of such electrically large array. A full-wave electromagnetic analysis has been carried out for the lower frequency (30–80 MHz) array of the low frequency array (LOFAR) radio telescope taking into account the presence of soil ground, the mutual coupling between the antennas and the relevant receiver impedance loading effects. The impact of mutual coupling effects on the embedded element and array patterns is assessed for two subarray configurations with different degrees of sparseness. A simplistic array factor approach has been implemented as well to determine the accuracy in the antenna pattern evaluation with respect to the full-wave approach. Finally, results from an experimental campaign conducted by means of a micro hexacopter system show the reliability of the developed array numerical model.

Funder

INAF - Osservatorio Astrofisico di Catania

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering

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1. Beam modelling accuracy for flux calibration of phased array radio telescopes;2023 International Conference on Electromagnetics in Advanced Applications (ICEAA);2023-10-09

2. Antenna Position Estimation Results from In-Situ Measurement Data;2023 International Conference on Electromagnetics in Advanced Applications (ICEAA);2023-10-09

3. Large Horizontal Near-Field Scanner Based on a Non-Tethered Unmanned Aerial Vehicle;IEEE Open Journal of Antennas and Propagation;2022

4. Low Discrepancy Sparse Phased Array Antennas;Sensors;2021-11-24

5. Measurement of the LOFAR-HBA beam patterns using an unmanned aerial vehicle in the near field;Journal of Astronomical Telescopes, Instruments, and Systems;2021-11-23

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