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Journal ArticleDOI

Space mapping: the state of the art

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TLDR
For the first time, a mathematical motivation is presented and SM is placed into the context of classical optimization to achieve a satisfactory solution with a minimal number of computationally expensive "fine" model evaluations.
Abstract
We review the space-mapping (SM) technique and the SM-based surrogate (modeling) concept and their applications in engineering design optimization. For the first time, we present a mathematical motivation and place SM into the context of classical optimization. The aim of SM is to achieve a satisfactory solution with a minimal number of computationally expensive "fine" model evaluations. SM procedures iteratively update and optimize surrogates based on a fast physically based "coarse" model. Proposed approaches to SM-based optimization include the original algorithm, the Broyden-based aggressive SM algorithm, various trust-region approaches, neural SM, and implicit SM. Parameter extraction is an essential SM subproblem. It is used to align the surrogate (enhanced coarse model) with the fine model. Different approaches to enhance uniqueness are suggested, including the recent gradient parameter-extraction approach. Novel physical illustrations are presented, including the cheese-cutting and wedge-cutting problems. Significant practical applications are reviewed.

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Citations
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Journal ArticleDOI

Role of constraints in surrogate-based design optimisation of microwave structures

TL;DR: An efficient method to alleviate this problem is discussed that exploits adaptively constrained parameter extraction and surrogate optimisation processes and improved convergence properties and overall performance of the SM algorithm are observed.
Proceedings ArticleDOI

Improved variable-fidelity optimization algorithm for simulation-driven design of antennas

TL;DR: An improved version of the variable-fidelity optimization technique for the simulation-driven design of microwave structures including antennas is presented, exploiting a set of electromagnetic(EM)-based models of increasing discretization density that are sequentially optimized with the optimum of the “coarser” being the initial design for the ‘finer’.
Journal ArticleDOI

Advanced filter design technique based on equivalent circuits and coupling matrix segmentation

TL;DR: A complex sixth-order dual-mode filter, implemented in all-inductive waveguide technology, is designed using the new coupling matrix segmentation technique, showing the effectiveness of the presented theory.
Journal ArticleDOI

Expedited Acquisition of Database Designs for Reduced-Cost Performance-Driven Modeling and Rapid Dimension Scaling of Antenna Structures

TL;DR: In this paper, a technique for automated, reliable and low-cost acquisition of the reference designs is proposed, which involves inverse sensitivities, iterative correction procedures, and accelerated feature-based gradient search with sparse Jacobian updates.
Proceedings ArticleDOI

Recent advances in parallel EM optimization approaches

TL;DR: This paper reviews the recent advanced parallel EM optimization approaches to microwave circuits and discusses techniques which include parallel EM optimized with coarse models and parallelEM optimization without available coarse models.
References
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Book

Practical Methods of Optimization

TL;DR: The aim of this book is to provide a Discussion of Constrained Optimization and its Applications to Linear Programming and Other Optimization Problems.
Book

Numerical Methods for Unconstrained Optimization and Nonlinear Equations (Classics in Applied Mathematics, 16)

TL;DR: In this paper, Schnabel proposed a modular system of algorithms for unconstrained minimization and nonlinear equations, based on Newton's method for solving one equation in one unknown convergence of sequences of real numbers.
Book

Numerical methods for unconstrained optimization and nonlinear equations

TL;DR: Newton's Method for Nonlinear Equations and Unconstrained Minimization and methods for solving nonlinear least-squares problems with Special Structure.
Book

Microstrip filters for RF/microwave applications

TL;DR: In this paper, the authors present a general framework for coupling matrix for Coupled Resonator Filters with short-circuited Stubs (UWB) and Cascaded Quadruplet (CQ) filters.
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