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The book addresses surrogate-assisted design of antenna arrays, in
particular, how surrogate models, both data-driven and
physics-based, can be utilized to expedite procedures such as
parametric optimization, design closure, statistical analysis, or
fault detection. Algorithms and design frameworks are illustrated
using a large variety of examples including real-world
printed-circuit antenna and antenna array structures.This unique
compendium contains introductory materials concerning numerical
optimization, both conventional (gradient-based and
derivative-free, including metaheuristics) and surrogate-based, as
well as a considerable selection of customized procedures developed
specifically to handle antenna array problems. Recommendations
concerning practical aspects of surrogate-assisted multi-objective
antenna optimization are also given. The methods presented allow
for cost-efficient handling of antenna array design problems
(involving CPU-intensive EM models) in the context of design
optimization and statistical analysis, which will benefit both
researchers, designers and graduate students.
This Brief reviews a number of techniques exploiting the
surrogate-based optimization concept and variable-fidelity EM
simulations for efficient optimization of antenna structures. The
introduction of each method is illustrated with examples of antenna
design. The authors demonstrate the ways in which practitioners can
obtain an optimized antenna design at the computational cost
corresponding to a few high-fidelity EM simulations of the antenna
structure. There is also a discussion of the selection of antenna
model fidelity and its influence on performance of the
surrogate-based design process. This volume is suitable for
electrical engineers in academia as well as industry, antenna
designers and engineers dealing with computationally-expensive
design problems.
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