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Publications (2 of 2) Show all publications
Lu, P., Wadbro, E., Starck, J., Berggren, M. & Hassan, E. (2025). Topology optimization of decoupling feeding networks for antenna arrays. IEEE Transactions on Antennas and Propagation
Open this publication in new window or tab >>Topology optimization of decoupling feeding networks for antenna arrays
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2025 (English)In: IEEE Transactions on Antennas and Propagation, ISSN 0018-926X, E-ISSN 1558-2221Article in journal (Refereed) Accepted
Abstract [en]

Near-field and radiation coupling between nearby radiating elements is unavoidable, and it is considered a limiting factor for applications in wireless communications and active sensing. This article proposes a density-based topology optimization approach to design decoupling networks for such systems. The decoupling network is designed by formulating an optimization problem that considers both energy transmission and reflection at the network ports. We replace the radiating elements by their time-domain impulse response for efficient computations and to enable the solution of the design problem using gradient-based optimization methods. We use the adjoint-field method to compute the gradients of the optimization objectives. Additionally, nonlinear filters are applied during the optimization procedure to impose minimum-size control on the optimized designs. We demonstrate the concept by designing the decoupling network for a two-element planar antenna array; the antenna is designed in a separate optimization problem. The optimized decoupling networks provide a signal path that destructively interferes with the coupling between the radiating elements while preserving their individual matching to the feeding ports. Compact decoupling networks capable of suppressing the mutual coupling by more than 10 dB between two closely separated planar antennas operating around 2.45 GHz are presented and validated experimentally.

Keywords
Optimization, Antennas, Freeports, Topology, Time-domain analysis, Mutual coupling, Microstrip, Antenna arrays, Network topology, Microstrip antennas, Antenna system, decoupling network, finite difference time domain (FDTD), impulse response boundary condition, topology optimization
National Category
Electrical Engineering, Electronic Engineering, Information Engineering Other Engineering and Technologies
Research subject
Electronics
Identifiers
urn:nbn:se:umu:diva-246153 (URN)10.1109/TAP.2025.3621265 (DOI)2-s2.0-105019752937 (Scopus ID)
Available from: 2025-11-05 Created: 2025-11-05 Last updated: 2025-11-05
Lu, P., Wadbro, E., Berggren, M. & Hassan, E. (2025). Topology optimization of dualband metallic antennas with minimum-size control. In: 2025 19th European Conference on Antennas and Propagation (EuCAP): . Paper presented at 2025 19th European Conference on Antennas and Propagation (EuCAP), Stockholm, Sweden, April 4, 2025 (pp. 1-4). IEEE
Open this publication in new window or tab >>Topology optimization of dualband metallic antennas with minimum-size control
2025 (English)In: 2025 19th European Conference on Antennas and Propagation (EuCAP), IEEE, 2025, p. 1-4Conference paper, Published paper (Refereed)
Abstract [en]

We use a density-based topology optimization approach to design dualband planar metallic antennas. The design problem is formulated based on the time-domain Maxwell's equations, solved using the finite-difference timedomain (FDTD) method. The antenna design is formulated as an optimization problem where the received and reflected energy by the antenna in two frequency bands, centered around 2.5 GHz and 5.5 GHz, are optimized. Two design examples that exhibit outstanding performance are presented. In one design case, we employ a nonlinear filtering scheme to impose size control on the optimized design and ensure manufacturability.

Place, publisher, year, edition, pages
IEEE, 2025
Keywords
Uncertainty, Dual band, Receiving antennas, Nonlinear filters, Reflector antennas, Topology, Size control, Time-domain analysis, Optimization, Finite difference methods, antennas, electromagnetics, Maxwell’s equations, topology optimization, nonlinear filter
National Category
Communication Systems
Identifiers
urn:nbn:se:umu:diva-239304 (URN)10.23919/EuCAP63536.2025.10999941 (DOI)2-s2.0-105007513740 (Scopus ID)978-88-31299-10-7 (ISBN)979-8-3503-6632-7 (ISBN)
Conference
2025 19th European Conference on Antennas and Propagation (EuCAP), Stockholm, Sweden, April 4, 2025
Funder
eSSENCE - An eScience CollaborationSwedish Research Council, 2018-03546
Available from: 2025-05-27 Created: 2025-05-27 Last updated: 2025-07-03Bibliographically approved
Organisations
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0002-9128-4728

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