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eISSN: 2581-9615 || CODEN (USA): WJARAI || Impact Factor: 8.2 || ISSN Approved Journal

Advances in PDE-Constrained Optimization for Electromagnetic Field Control: A Review of Theory and Applications

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Isaac Amornortey Yowetu 1, * and Yaw Owusu-Agyemang 2 

1 Department of Mathematics, Kwame Nkrumah University of Science and Technology, Ghana.

2 Department of Mathematical Sciences, George Mason University, USA.

Review Article

World Journal of Advanced Research and Reviews, 2025, 28(03), 954-963

Article DOI: 10.30574/wjarr.2025.28.3.4117

DOI url: https://doi.org/10.30574/wjarr.2025.28.3.4117

Received on 02 November 2025; revised on 10 December 2025; accepted on 13 December 2025

Partial Differential Equation (PDE)-constrained optimization has emerged as a powerful framework for electromagnetic field control, enabling systematic design of devices and materials that meet stringent performance, efficiency, and reliability requirements. This review traces the development of PDE-based formulations grounded in Maxwell’s equations, highlighting discretization strategies, adjoint-state methods, and large-scale solvers that make high-dimensional optimization problems computationally tractable. Key applications are examined across antenna design, electromagnetic compatibility and shielding, nanophotonics, metamaterials, biomedical imaging, and emerging quantum technologies. These studies illustrate how PDE-constrained optimization bridges physics-based modeling with engineering innovation, achieving designs that were previously inaccessible through heuristic or trial-and-error approaches.

Despite rapid progress, challenges persist in scalability, nonconvex optimization landscapes, uncertainty quantification, and multiphysics integration. Recent advances in reduced-order modeling, surrogate-assisted optimization, and robust design strategies offer promising avenues to overcome these limitations. Furthermore, new computational paradigms, particularly high-performance computing and data-driven surrogates, are reshaping possibilities for solving complex, nonlinear electromagnetic problems at scale.

Overall, PDE-constrained optimization has matured into a versatile and rigorous approach with significant implications for next-generation communication, energy, biomedical, and quantum technologies. Continued methodological and computational advancements will be critical for realizing its full potential in real-world electromagnetic design.

PDE-constrained optimization; Computational electromagnetics; Electromagnetic field control; Maxwell's equation; Multiphysics modeling

https://journalwjarr.com/sites/default/files/fulltext_pdf/WJARR-2025-4117.pdf

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Isaac Amornortey Yowetu and Yaw Owusu-Agyemang. Advances in PDE-Constrained Optimization for Electromagnetic Field Control: A Review of Theory and Applications. World Journal of Advanced Research and Reviews, 2025, 28(03), 954-963. Article DOI: https://doi.org/10.30574/wjarr.2025.28.3.4117.

Copyright © 2025 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution Liscense 4.0

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