A generic antenna array design approach through multi-objective optimization is adopted to design a non-uniform optical thinned array (TA) satisfying a desired far-field pattern mask and minimizing the number of radiating elements. The proposed optical TA is integrated with a silicon photonic beam-forming network (BFN) made of a mesh of tuneable Mach-Zehnder interferometer to implement a self-adaptive beam transmitter/receiver for free-space optical (FSO) systems. Experimental results demonstrate the beam steering and shaping capability of the proposed architecture, which self-configures without any need for pre-calibration.
Adaptive Optical Thinned Antenna Array Controlled by an Integrated Photonic Processor / Seyedinnavadeh, Seyedmohammad; Anselmi, Nicola; Milanizadeh, Maziyar; Zanetto, Francesco; Martinez, Andres; Rocca, Paolo; Morichetti, Francesco; Massa, Andrea; Melloni, Andrea. - In: IEEE PHOTONICS TECHNOLOGY LETTERS. - ISSN 1041-1135. - STAMPA. - 2024, 36:17(2024), pp. 1037-1040. [10.1109/lpt.2024.3427413]
Adaptive Optical Thinned Antenna Array Controlled by an Integrated Photonic Processor
Anselmi, Nicola;Martinez, Andres;Rocca, Paolo;Massa, Andrea;
2024-01-01
Abstract
A generic antenna array design approach through multi-objective optimization is adopted to design a non-uniform optical thinned array (TA) satisfying a desired far-field pattern mask and minimizing the number of radiating elements. The proposed optical TA is integrated with a silicon photonic beam-forming network (BFN) made of a mesh of tuneable Mach-Zehnder interferometer to implement a self-adaptive beam transmitter/receiver for free-space optical (FSO) systems. Experimental results demonstrate the beam steering and shaping capability of the proposed architecture, which self-configures without any need for pre-calibration.File | Dimensione | Formato | |
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