AbstractSimulation-based optimization has become an important design tool in microwave engineering. Yet, employing electromagnetic (EM) solvers in the design process is a challenging task, primarily due to a high-computational cost of an accurate EM simulation. This paper is focused on efficient EM-driven design optimization techniques that utilize physically-based low-fidelity models, normally based on coarse-discretization EM simulations. The presented methods attempt to exploit as much of the knowledge about the system or device of interest embedded in the low-fidelity model as possible, so as to reduce the computational cost of the design process. Unlike many other surrogate-based approaches, the techniques discussed here are non-parame...
AbstractElectromagnetic (EM) simulation is ubiquitous in contemporary antenna design process. For ma...
In modern electronics, there are many inevitable uncertainties and variations of design parameters t...
Fabrication tolerances, as well as uncertainties of other kinds, e.g., concerning material parameter...
AbstractSimulation-based optimization has become an important design tool in microwave engineering. ...
Focused on efficient simulation-driven multi-fidelity optimization techniques, this monograph on sim...
AbstractIn this paper, a novel technique for cost-efficient design optimization of microwave structu...
AbstractHigh-fidelity electromagnetic (EM) simulation is a very accurate but computationally expensi...
AbstractContemporary engineering design relies heavily on computer simulations. The structures and s...
In this paper, we outline the historical evolution of RF and microwave design optimization and envis...
An effective CAD methodology to perform efficient EM-based design optimization of microwave circuits...
An approach to rapid optimization of antennas using the shape-preserving response-prediction (SPRP) ...
Feature-based electromagnetic (EM) optimization techniques can help avoid local minima in microwave ...
Funding Information: The authors would like to thank Dassault Systemes, France, for making CST Micro...
Abstract The operation of high-frequency devices, including microwave passive components, can be imp...
Abstract-This paper reviews the current state of the art in circuit optimization, emphasizing techni...
AbstractElectromagnetic (EM) simulation is ubiquitous in contemporary antenna design process. For ma...
In modern electronics, there are many inevitable uncertainties and variations of design parameters t...
Fabrication tolerances, as well as uncertainties of other kinds, e.g., concerning material parameter...
AbstractSimulation-based optimization has become an important design tool in microwave engineering. ...
Focused on efficient simulation-driven multi-fidelity optimization techniques, this monograph on sim...
AbstractIn this paper, a novel technique for cost-efficient design optimization of microwave structu...
AbstractHigh-fidelity electromagnetic (EM) simulation is a very accurate but computationally expensi...
AbstractContemporary engineering design relies heavily on computer simulations. The structures and s...
In this paper, we outline the historical evolution of RF and microwave design optimization and envis...
An effective CAD methodology to perform efficient EM-based design optimization of microwave circuits...
An approach to rapid optimization of antennas using the shape-preserving response-prediction (SPRP) ...
Feature-based electromagnetic (EM) optimization techniques can help avoid local minima in microwave ...
Funding Information: The authors would like to thank Dassault Systemes, France, for making CST Micro...
Abstract The operation of high-frequency devices, including microwave passive components, can be imp...
Abstract-This paper reviews the current state of the art in circuit optimization, emphasizing techni...
AbstractElectromagnetic (EM) simulation is ubiquitous in contemporary antenna design process. For ma...
In modern electronics, there are many inevitable uncertainties and variations of design parameters t...
Fabrication tolerances, as well as uncertainties of other kinds, e.g., concerning material parameter...