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Gangil Byun

Ulsan National Institute of Science and Technology · 工学

研究室紹介

Professor Gangil Byun's research lab specializes in the design and optimization of advanced antenna systems for aerospace and defense applications, with a focus on compact, high-performance, and robust radiating structures. The lab emphasizes innovative array configurations—such as curved, circular, and arc-shaped arrays—combined with advanced signal processing techniques like LMS and MUSIC algorithms to enhance pattern directivity, null depth, and direction-finding accuracy. Key research directions include miniaturized dual-band antennas, embedded antennas for aircraft platforms, and electromagnetic optimization using genetic algorithms and full-wave simulation tools. The lab's work bridges electromagnetic theory, practical hardware fabrication, and real-world performance validation in anechoic and semi-anechoic chambers.

antenna designcontrolled reception pattern antennadirection findingarray optimizationembedded antennas

Research Overview

Papers
126
Total Citations
1,106
Papers (5y)
51
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
51total
2022
2023
2024
2025
2026
Citations per year (5y)
236total
20222023202420252026

Selected Papers

15
1
Article|62 citations·2015
Design of a Dual-Band Quadrifilar Helix Antenna Using Stepped-Width Arms
Gangil Byun, Hosung Choo, Sunwoo Kim
SJR Q1IEEE Transactions on Antennas and Propagation

This communication proposes the design of a quadrifilar helix antenna (QHA) with stepped-width arms and a meander feeding network. The stepped-width arms are applied to reduce the antenna size and adjust the frequency interval for dual-band operation. The feeding network includes a 90°-hybrid chip coupler and two meander lines that are designed to give a 180°-phase delay. The proposed QHA is optimized using a genetic algorithm (GA) and then fabricated to measure its performances in a full anecho

Aerospace EngineeringEngineering
2
Article|54 citations·2020
Molecular engineering of hydrocarbon membrane to substitute perfluorinated sulfonic acid membrane for proton exchange membrane fuel cell operation
Gangil Byun, Jiwon Kim, N.Y. Kim, Y.S. Cho, Chong Rae Park
SJR Q1Materials Today Energy
Electrical and Electronic EngineeringEngineering
3
Article|37 citations·2013
Optimum Placement of DF Antenna Elements for Accurate DOA Estimation in a Harsh Platform Environment
Gangil Byun, Hosung Choo, Hao Ling
SJR Q1IEEE Transactions on Antennas and Propagation

This paper presents a systematic approach to the optimum placement of direction finding (DF) antennas in a harsh platform environment. A circular array with omni-directional elements is considered for azimuthal direction of arrival (DOA) estimation based on the multiple signal classification (MUSIC) algorithm. The element positions are optimized by the use of a genetic algorithm (GA) in conjunction with the FEKO electromagnetic simulator. The proposed approach is first tested with a generic plat

Signal ProcessingComputer Science
4
Article|23 citations·2015
Improvement of Pattern Null Depth and Width Using a Curved Array With Two Subarrays for CRPA Systems
Gangil Byun, Hosung Choo, Sunwoo Kim
SJR Q1IEEE Transactions on Antennas and Propagation

This communication proposes a curved array split into two subarrays to improve the pattern null depth and width for controlled reception pattern antenna (CRPA) systems. The proposed array consists of a single reference element at the center and two subarrays that are arranged on a spherical coverture. To consider both signal processing and electromagnetic (EM) perspectives, array patterns are calculated by using a microstrip patch antenna in conjunction with a constraint least-mean-square (LMS)

Aerospace EngineeringEngineering
5
Article|21 citations·2016
Optimum Array Configuration to Improve Null Steering Time for Mobile CRPA Systems
Gangil Byun, Jong-Chul Hyun, Seung Mo Seo, Hosung Choo
SJR Q2Journal of electromagnetic engineering and scienceOA

This paper proposes an optimum array configuration to improve null steering time for mobile controlled reception pattern antenna (CRPA) systems. The proposed array consists of a single reference element at the center and nine auxiliary elements arranged in a circular array. The array radius and the vertical positions of the center element are optimized using a genetic algorithm in conjunction with a constrained least-mean-square algorithm. The results demonstrate that the proposed array is suita

Aerospace EngineeringEngineering
6
Article|20 citations·2012
Design of Aircraft On-Glass Antennas Using a Coupled Feed Structure
Gangil Byun, Chulhun Seo, Byung‐Jun Jang, Hosung Choo
SJR Q1IEEE Transactions on Antennas and Propagation

This communication proposes a glass-integrated antenna using a coupled feed structure for military FM radio communications on aircraft. The proposed antenna consists of a feed strip and two radiators, printed on the left-side window of the cockpit. The proposed antenna structure is optimized with the genetic algorithm in conjunction with the FEKO EM simulator. The optimized antenna is built and installed on a 1/10-sized KUH-Surion mock-up and antenna performance, such as reflection coefficient a

Aerospace EngineeringEngineering
7
Article|20 citations·2016
Design of a Small Arc-Shaped Antenna Array with High Isolation for Applications of Controlled Reception Pattern Antennas
Gangil Byun, Hosung Choo, Sunwoo Kim
SJR Q1IEEE Transactions on Antennas and Propagation

This communication proposes the design of an arc-shaped antenna array with high isolation to increase the null depth for controlled reception pattern antenna applications. The array is composed of three identical antennas, and each array element is transformed from a rectangular shape to an arc shape to maximize the distance between antenna edges for isolation improvement. The proposed array is fabricated on a 5.5-inch circular substrate to measure antenna characteristics in a full anechoic cham

Aerospace EngineeringEngineering
8
Article|15 citations·2015
Antenna polarisation adjustment for microstrip patch antennas using parasitic elements
Gangil Byun, Hosung Choo
SJR Q3Electronics Letters

A novel and simple approach to adjust the polarisation properties of a microstrip patch antenna in the entire axial ratio (AR) range is proposed. The proposed antenna consists of a radiating patch and a parasitic strip separated into two parts, and the separated strip is placed at the outer perimeter of the patch for capacitive coupling. This structure enables the antenna to induce opposite‐direction currents on the strip, which allows flexible polarisation adjustment by moving the separated pos

Aerospace EngineeringEngineering
9
Article|14 citations·2013
Design of a dual‐band GPS antenna using a coupled feeding structure for high isolation in a small array
Gangil Byun, Sunwoo Kim, Hosung Choo
SJR Q3Microwave and Optical Technology Letters

ABSTRACT This article proposes a novel feeding mechanism to improve the isolation characteristics in the GPS L1 and L2 bands for electromagnetically small arrays (aperture diameter < λ). In the mechanism, a feeding patch is sandwiched between two radiating patches and excited by two pins with a 90° phase difference. To improve the isolation, ceramic with a high dielectric constant is used as the antenna substrate, and then four identical antennas are mounted on the ground platform. The result

Aerospace EngineeringEngineering
10
Article|8 citations·2020
Tunable Resonance and Phase Vortices in Kirigami Fano‐Resonant Metamaterials
Hoon Yeub Jeong, Yeonsoo Lim, Soo‐Chan An, Thi Hai‐Yen Nguyen, Gangil Byun, Young Chul Jun
SJR Q1Advanced Materials Technologies

Abstract Emerging internet‐of‐things technologies require widespread antennas and sensors. They should be cheap enough to be widely deployed, but still should be highly functional and tunable. Here, a thorough, in‐depth study of spectral shifts and phase vortices in kirigami Fano‐resonant metamaterials is presented. Microwave metamaterials are printed on paper using metal inks. Then, the printed metamaterials are cut line‐by‐line and folded, so that a step height between neighboring unit cells c

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|8 citations·2014
Design of Small CRPA Arrays for Dual-Band GPS Applications
Gangil Byun, Seung Mo Seo, Ikmo Park, Hosung Choo
SJR Q4IEICE Transactions on Communications

This paper proposes the design of small CRPA arrays for dual-band Global Positioning System (GPS) applications. The array consists of five elements and is mounted on a circular ground platform with a diameter of 15-cm. Each antenna element has a coupled feed structure and consists of a feed patch and two radiating patches for dual-band operation. An external chip coupler is utilized for a broad circular polarization (CP) bandwidth, and its measured characteristics are taken into account in our s

Aerospace EngineeringEngineering
12
Article|7 citations·2019
Design of a Coupled Feed Structure With Cavity Walls for Extremely Small Anti-Jamming Arrays
Gangil Byun, Jun Hur, Seung‐Seok Kang, Seok Bo Son, Hosung Choo
SJR Q1IEEE AccessOA

This paper proposes a coupled-feed structure accompanied by cavity walls for an extremely small four-element array with an aperture size of less than 0.4 λ. The feeding loop of the proposed structure is connected to two output ports of a hybrid chip coupler, and the radiating loop is coupled to the feeding loop through near electromagnetic fields confined within the substrates. This structure allows to increasing the effective dielectric constant of the antenna, which helps to miniaturize the ap

Aerospace EngineeringEngineering
13
Article|5 citations·2017
A Novel Approach to Array Manifold Calibration Using Single-Direction Information for Accurate Direction-of-Arrival Estimation
Gangil Byun, Hosung Choo
SJR Q1IEEE Transactions on Antennas and Propagation

A method of array manifold calibration using one steering vector measured in a single direction is proposed. The phase information of the measured steering vector is used to derive a novel calibration matrix that is proposed to compensate for the relative phase distortion (RPD) at each antenna port. We also present a metric function defined as a standard deviation of the RPD to determine the optimum calibration angle, which provides intuition for the cause of the accuracy degradation in the dire

Signal ProcessingComputer Science
14
Article|5 citations·2015
Design of rear glass-integrated antennas with vertical line optimization for FM radio reception
Gangil Byun, Yeonseog Noh, I. M. Park, Hosung Choo
SJR Q2International Journal of Automotive Technology
Aerospace EngineeringEngineering
15
Article|4 citations·2018
Design of a planar periodic lossy magnetic surface to improve active array patterns with enhanced isolation
Jun Hur, Gangil Byun, Hosung Choo
SJR Q3IET Microwaves Antennas & Propagation

This study proposes the design of the periodic lossy magnetic (PLM) surface with a low profile for enhanced array characteristics. The proposed PLM surface consists of multiple rectangular grooves with equal spacing, and the grooves are filled with lossy magnetic materials to increase the surface impedance between array elements to mitigate the mutual coupling. To verify its feasibility, the authors fabricate a two‐element circularly‐polarised patch antenna array with the PLM surface inserted in

Aerospace EngineeringEngineering

Research Areas

Aerospace EngineeringElectrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsSignal ProcessingOcean EngineeringAtomic and Molecular Physics, and Optics

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