A newly-developed deterministic numerical technique for the automated design of metasurface antennas is applied here for the first time to the design of a 1-D printed Leaky-Wave Antenna (LWA) for broadside radiation. The surface impedance synthesis process does not require any a priori knowledge on the impedance pattern, and starts from a mask constraint on the desired far-field and practical bounds on the unit cell impedance values. The designed reactance surface for broadside radiation exhibits a non conventional patterning; this highlights the merit of using an automated design process for a design well known to be challenging for analytical methods. The antenna is physically implemented with an array of metal strips with varying gap widths and simulation results show very good agreement with the predicted performance.
1-D broadside-radiating leaky-wave antenna based on a numerically synthesized impedance surface / Teodorani, Lucia; Zucchi, Marcello; Gaffoglio, Rossella; Vecchi, Giuseppe. - ELETTRONICO. - (2023). (Intervento presentato al convegno EuCAP 2023 - 17th European Conference on Antennas and Propagation tenutosi a Firenze (Italia) nel 26 - 31 March 2023).
1-D broadside-radiating leaky-wave antenna based on a numerically synthesized impedance surface
Teodorani, Lucia;Zucchi, Marcello;Vecchi, Giuseppe
2023
Abstract
A newly-developed deterministic numerical technique for the automated design of metasurface antennas is applied here for the first time to the design of a 1-D printed Leaky-Wave Antenna (LWA) for broadside radiation. The surface impedance synthesis process does not require any a priori knowledge on the impedance pattern, and starts from a mask constraint on the desired far-field and practical bounds on the unit cell impedance values. The designed reactance surface for broadside radiation exhibits a non conventional patterning; this highlights the merit of using an automated design process for a design well known to be challenging for analytical methods. The antenna is physically implemented with an array of metal strips with varying gap widths and simulation results show very good agreement with the predicted performance.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2977895