Constrained Deterministic Synthesis of Conformal Supershaped Antenna Arrays

Conformal array pattern synthesis represents a challenging problem for current state-of-the-art design techniques. To their detriment, these techniques typically suffer from a significant computational burden. A deterministic method for the synthesis of singly curved conformal antenna arrays based o...

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Published inIEEE transactions on antennas and propagation Vol. 71; no. 11; pp. 8726 - 8738
Main Authors Geerarts, Justin M. E., Theis, Guilherme, Smolders, A. Bart, Caratelli, Diego
Format Journal Article
LanguageEnglish
Published New York IEEE 01.11.2023
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Online AccessGet full text
ISSN0018-926X
1558-2221
1558-2221
DOI10.1109/TAP.2023.3310297

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Abstract Conformal array pattern synthesis represents a challenging problem for current state-of-the-art design techniques. To their detriment, these techniques typically suffer from a significant computational burden. A deterministic method for the synthesis of singly curved conformal antenna arrays based on the superformula and the auxiliary array pattern (AAP) formulation is presented. This method, being semianalytical in nature, is able to evaluate the location and excitation coefficients of each radiating element subject to different design constraints in a deterministic manner while utilizing multiple embedded element patterns. Therefore, this method is more computationally efficient than the state-of-the-art alternatives. The proposed synthesis technique has been validated through full-wave electromagnetic simulations and experimental measurements taken on physical demonstrators relevant to different applications within radar and communication systems. The obtained results show accurate agreement between simulations and measurements, requiring only seconds of computation on conventional hardware.
AbstractList Conformal array pattern synthesis represents a challenging problem for current state-of-the-art design techniques. To their detriment, these techniques typically suffer from a significant computational burden. A deterministic method for the synthesis of singly curved conformal antenna arrays based on the superformula and the auxiliary array pattern (AAP) formulation is presented. This method, being semianalytical in nature, is able to evaluate the location and excitation coefficients of each radiating element subject to different design constraints in a deterministic manner while utilizing multiple embedded element patterns. Therefore, this method is more computationally efficient than the state-of-the-art alternatives. The proposed synthesis technique has been validated through full-wave electromagnetic simulations and experimental measurements taken on physical demonstrators relevant to different applications within radar and communication systems. The obtained results show accurate agreement between simulations and measurements, requiring only seconds of computation on conventional hardware.
Author Theis, Guilherme
Geerarts, Justin M. E.
Smolders, A. Bart
Caratelli, Diego
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SubjectTerms Antenna arrays
Antenna radiation patterns
Antennas
array pattern synthesis
Communications systems
conformal arrays
Constraints
Dipole antennas
Electromagnetics
Geometry
Shape
State of the art
superformula
Synthesis
Three-dimensional displays
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Title Constrained Deterministic Synthesis of Conformal Supershaped Antenna Arrays
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