Design of Multimode Horn Feed for Parallel Plate Waveguide-Based Offset Dual-Reflector Antenna
Paper in proceeding, 2025

This paper presents the design of a W-band multimode horn feed (MHF) to illuminate an offset dual-reflector system in a parallel-plate waveguide (PPW), aiming to improve the antenna efficiency by achieving nearly uniform aperture illumination. While conventional horns typically achieve similar to 80% aperture efficiency in classical reflector systems, an open question is how closely multimode horn feeds can approach the theoretical efficiency limit in PPW-based architectures. The proposed MHF incorporates a horizontal stepped waveguide structure to excite higher-order modes, each with a specific complex coefficient, thereby producing a sub-reflector illumination pattern that closely approximates the ideal secant profile. The MHF design has been explored for both single-polarized and dual-polarized configurations, achieving a taper efficiency of 97% for the reflector system in PPW. The design trade-offs for achieving high taper efficiency and minimal spillover loss, while addressing challenges such as multiple sidewall reflections and phase aberrations in closed metallic structures, are also discussed.

parallel-plate waveguide (PPW)

Reflector antenna

mutimode horn

sub-THz antennas

mm-wave

Author

Thi-Kim-Ngan Nguyen

University of Renne

Artem R. Vilenskiy

XPANCEO Research On Natural Science

David Gonzalez-Ovejero

University of Renne

Ronan Sauleau

University of Renne

Marianna Ivashina

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

2025 55TH EUROPEAN MICROWAVE CONFERENCE, EUMC

965-968
979-8-3315-1260-6 (ISBN)

55th European Microwave Conference-EUMC-Annual
Utrecht, Netherlands,

Subject Categories (SSIF 2025)

Other Electrical Engineering, Electronic Engineering, Information Engineering

More information

Latest update

9/10/2026