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  4. Numerical Analysis of Mask-Based Phase Reconstruction in Phaseless Spherical Near-Field Antenna Measurements
 
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2025
Journal Article
Title

Numerical Analysis of Mask-Based Phase Reconstruction in Phaseless Spherical Near-Field Antenna Measurements

Abstract
Phase-retrieval problems are employed to tackle the challenge of recovering a complex signal from amplitude-only data. In phaseless spherical near-field antenna measurements, the task is to recover the complex coefficients describing the radiation behavior of the antenna under test (AUT) from amplitude near-field measurements. The coefficients refer, for example, to equivalent currents or spherical modes, and from these, the AUT’s far-field characteristic, which is usually of interest, can be obtained. In this article, the concept of a mask-based phase recovery is applied to spherical near-field antenna measurements. First, the theory of the mask approach is described with its mathematical definition. Then, several mask types based on random distributions, (Formula presented.) -rotations, or probes are introduced and discussed. Finally, the performances of the different masks are evaluated based on simulations with multiple AUTs and with Wirtinger flow as a phase-retrieval algorithm. The simulation results show that the mask approach can improve the reconstruction error depending on the number of masks, oversampling, and the type of mask.
Author(s)
Guth, Adrien
Instituts für Hochfrequenztechnik der RWTH
Abdulsalaam, Sakirudeen
Ludwig-Maximilians-Universität München
Rauhut, Holger
Ludwig-Maximilians-Universität München
Heberling, Dirk  
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Journal
Sensors
Funder
Deutsche Forschungsgemeinschaft  
Open Access
DOI
10.3390/s25185637
Additional link
Full text
Language
English
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Keyword(s)
  • antenna measurements

  • phase recovery

  • phaseless spherical near-field measurements

  • spherical near-field–far-field transformation

  • spherical wave expansion

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