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In-Sang Yoo

Yonsei University · Engineering

About the Lab

Professor In-Sang Yoo's research lab specializes in advanced electromagnetic metasurface technologies for next-generation wireless communication systems. The lab focuses on designing reconfigurable, compact, and energy-efficient metasurface antennas that enable spatial multiplexing, beamforming, and MIMO operation in millimeter-wave and sub-THz bands. Key research directions include dynamic metasurface design, waveguide- and cavity-backed antenna architectures, and analytic modeling for radiation pattern synthesis with minimal reliance on time-consuming full-wave simulations. The lab also explores applications in massive MIMO, OFDM systems, and conformal arrays for 5G/6G and beyond.

metasurface antennasreconfigurable metasurfacesMIMO systemsbeamformingwaveguide-fed metasurfaces

Research Overview

Papers
37
Total Citations
397
Papers (5y)
14
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
14total
2022
2023
2024
2025
2026
Citations per year (5y)
52total
20222023202420252026

Selected Papers

15
1
Article|87 citations·2018
Enhancing Capacity of Spatial Multiplexing Systems Using Reconfigurable Cavity-Backed Metasurface Antennas in Clustered MIMO Channels
Insang Yoo, Mohammadreza F. Imani, Timothy Sleasman, Henry D. Pfister, David R. Smith
SJR Q1IEEE Transactions on Communications

We propose a spatial multiplexing system using reconfigurable cavity-backed metasurface antennas. The metasurface antennas consist of a printed cavity with dynamically tunable metamaterial radiators patterned on one side and fed by multiple radio frequency ports on the other side (each port representing one communication node), forming a shared aperture. By individual tuning of the radiators, the antennas can generate steerable, concurrent beams that can be adapted to the properties of multiple-

Aerospace EngineeringEngineering
2
Article|73 citations·2020
Dynamic Metasurface Antennas for MIMO-OFDM Receivers With Bit-Limited ADCs
Hanqing Wang, Nir Shlezinger, Yonina C. Eldar, Shi Jin, Mohammadreza F. Imani, Insang Yoo, David R. Smith
SJR Q1IEEE Transactions on Communications

The combination of orthogonal frequency modulation (OFDM) and multiple-input multiple-output (MIMO) techniques plays an important role in modern communication systems. In order to meet the growing throughput demands, future MIMO-OFDM receivers are expected to utilize a massive number of antennas, operate in dynamic environments, and explore high frequency bands, while satisfying strict constraints in terms of cost, power, and size. An emerging technology to realize massive MIMO receivers of redu

Aerospace EngineeringEngineering
3
Article|46 citations·2016
Efficient complementary metamaterial element for waveguide-fed metasurface antennas
Insang Yoo, Mohammadreza F. Imani, Timothy Sleasman, David R. Smith
SJR Q1Optics ExpressOA

We present a metamaterial element designed as an efficient radiator for waveguide-fed metasurface antennas. The metamaterial element is an electrically-small, complimentary electric-LC (cELC) resonator designed to exhibit large radiated power while maintaining low ohmic losses. The shape of the element is tapered to simultaneously achieve broadband operation and suppression of cross polarization radiation. Full-wave numerical studies at the K-band are conducted to examine its performance when et

Aerospace EngineeringEngineering
4
Article|27 citations·2019
Analytic Model of a Coax-Fed Planar Cavity-Backed Metasurface Antenna for Pattern Synthesis
Insang Yoo, Mohammadreza F. Imani, Laura Pulido-Mancera, Timothy Sleasman, David R. Smith
SJR Q1IEEE Transactions on Antennas and Propagation

We present an analytic model of a coax-fed planar cavity-backed metasurface antenna for radiation pattern synthesis. The metasurface antenna consists of a printed cavity loaded with metamaterial elements which is excited by a coaxial connector. Each metamaterial element radiates a portion of the reverberating fields in the cavity, contributing to an overall beam pattern. To synthesize a desired pattern, the elements need to be arranged in an aperture and radiate with proper weights at their loca

Aerospace EngineeringEngineering
5
Article|21 citations·2022
Design of Conformal Array of Rectangular Waveguide-Fed Metasurfaces
Insang Yoo, David R. Smith
SJR Q1IEEE Transactions on Antennas and PropagationOA

We present a systematic design method for a cylindrical conformal array of rectangular waveguide-fed metasurfaces. The conformal metasurface consists of multiple curved rectangular waveguides loaded with metamaterial elements—electrically small apertures—inserted into the upper conducting walls of the waveguides. Each element radiates energy into free space to contribute to an overall radiation pattern. Thus, the geometry or electrical configuration of each of the elements needs to be tailored t

Aerospace EngineeringEngineering
6
Article|16 citations·2019
Analytic Model of Coax-Fed Printed Metasurfaces and Analysis of Antenna Parameters
Insang Yoo, David R. Smith
SJR Q1IEEE Transactions on Antennas and Propagation

We present a model for waveguide-backed metasurface antennas fed by one or more coaxial ports and compute key antenna parameters using the model. The metasurface antenna consists of a coax-fed planar waveguide/cavity embedded with subwavelength-sized metamaterial radiators that convert energy from the guided mode into a radiated wave. Designing a metasurface requires tailoring the geometry of the individual metamaterial elements and arranging them over the aperture to achieve a desired radiation

Aerospace EngineeringEngineering
7
Article|14 citations·2020
Dynamic Metasurface Antennas for Higher-order MIMO Systems in Indoor Environments
Insang Yoo, David R. Smith
SJR Q1IEEE Wireless Communications Letters

We propose a MIMO system using a dynamic cavity-backed metasurface antenna (DMA) as a transmit antenna to improve the channel capacity of indoor MIMO channels. The DMA is a printed cavity loaded with tunable metamaterial radiators and fed by radio frequency ports. The DMA can generate radiation patterns that are adaptive to MIMO channels by individual tuning of the metamaterial radiators. In this letter, we study a 4 × 4 MIMO system operating at 5.9 GHz, consisting of a simulated DMA as transmit

Aerospace EngineeringEngineering
8
Article|11 citations·2022
Experimental Characterization of a Waveguide-Fed Varactor-Tuned Metamaterial Element Using the Coupled Dipole Framework
Insang Yoo, David R. Smith, Michael Boyarsky
SJR Q1IEEE Antennas and Wireless Propagation Letters

We confirm experimentally that the essential electromagnetic properties of a single, waveguide-fed, tunable metamaterial radiator can be described within a coupled dipole framework, providing a foundation for metasurface array antenna design. The metamaterial element considered here is an electrically small aperture consisting of a complementary electric-LC resonator with its resonance frequency controlled by a pair of varactor diodes. Using the dipole framework, we reduce the detailed propertie

Aerospace EngineeringEngineering
9
Article|11 citations·2023
Sub-6-GHz Uplink Massive MIMO System Using Holographic Beamforming Metasurfaces: A Conceptual Development
Insang Yoo, David R. Smith
SJR Q1IEEE Wireless Communications Letters

We propose an uplink massive MIMO system using an array of holographic metasurfaces as a sector antenna operating at 3.5 GHz. The antenna consists of a set of rectangular waveguide-fed metasurfaces combined along the elevation direction into a planar aperture, each with subwavelength-sized metamaterial elements as radiators. The metamaterial radiators are designed such that the waveguide-fed metasurface implements a holographic solution for the guided (or reference) mode, generating a directiona

Aerospace EngineeringEngineering
10
Article|6 citations·2014
Spatiotemporal path discontinuities of wavepackets propagating across a meta-atom
Insang Yoo, Chung Kyu Han, Dong‐Soo Shin, K. J. B. Lee, J. W. Wu, Han Seb Moon, Oliver B. Wright, Sam H. Lee
SJR Q1Scientific ReportsOA

The realization of phase discontinuities across metasurfaces has led to a new class of reflection and refraction. Here we present theory and experiment on the discontinuous propagation of wavepackets across subwavelength-thickness meta-atoms. Using acoustic waves, we observe the process of wavepackets traversing a meta-atom with abrupt displacements, which appear as path discontinuities on a space-time diagram. We construct a tunable meta-atom from two coupled resonators at ~500 Hz, map the spat

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Preprint|4 citations·2021
Holographic Metasurface Antennas for Uplink Massive MIMO Systems
Insang Yoo, David R. Smith
arXiv (Cornell University)OA

We propose an uplink massive MIMO system using an array of holographic metasurfaces as a sector antenna. The antenna consists of a set of rectangular waveguide-fed metasurfaces combined along the elevation direction into a planar aperture, each with subwavelength-sized metamaterial elements as radiators. The metamaterial radiators are designed such that the waveguide-fed metasurface implements a holographic solution for the guided (or reference) mode, generating a fan beam towards a prescribed d

Aerospace EngineeringEngineering
12
dissertation|4 citations·2020
Analytic Model, Design of Waveguide-fed Metasurface Antennas and Applications to MIMO Communication Systems
Insang Yoo
Aerospace EngineeringEngineering
13
Article|4 citations·2007
Study on Changes in Racehorses??Metabolites and Exercise-related Hormones before and after a Race
Insang Yoo, Hong‐Gu Lee, Sei-Young Yoon, Heeok Hong, Sang-Rak Lee
Asian-Australasian Journal of Animal SciencesOA

Physiological changes in thoroughbred racehorses during the race were investigated by measuring concentrations of metabolites and exercise-related hormones before and after a race. The conversion point from anaerobic to aerobic exercise during the race was estimated subsequently. Blood samples were taken from the jugular vein of 53 thoroughbreds at different times -three h before and 45 min after-for measuring the concentrations of glucose, non-esterified fatty acids (NEFA), lactate, uric acid,

Cell BiologyBiochemistry, Genetics and Molecular Biology
14
Article|1 citations·2023
Computation of Input Impedance of Rectangular Waveguide-backed Metasurface Arrays with Feed Networks using Coupled Dipole Framework
Insang Yoo, David R. Smith

We present a method for computing the input impedance of a rectangular waveguide-backed metasurface array excited by a common feed network. The metasurface array consists of rectangular waveguides loaded with subwavelength metamaterial radiators fed by the guided modes, excited with the feed. Thus, computation of the impedance at the input feed requires considering the electromagnetic interaction of the metasurfaces with its feed. Recently, semi-analytical models of metasurfaces using a coupled

Aerospace EngineeringEngineering
15
Article|1 citations·2019
Modeling Metamaterial Element in Dielectric-filled Waveguide-fed Metasurface Antennas
Insang Yoo, David R. Smith

We study the modeling of metamaterial elements etched into planar, dielectric-filled waveguides for metasurface antennas. Metamaterial elements in these devices are subwavelength-sized, resonant openings embedded in waveguide walls-that can be modeled as the electric and magnetic dipoles-and couple to waveguide modes and radiate into free space. Due to a dielectric filling the waveguide, the dipole moments representing the element can contribute unequally to the scattered fields into the wavegui

Electronic, Optical and Magnetic MaterialsMaterials Science

Research Areas

Aerospace EngineeringElectronic, Optical and Magnetic MaterialsElectrical and Electronic EngineeringMaterials ChemistryCell BiologySafety Research

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