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Woo Yul Choi

Seoul National University · 工学

研究室紹介

Professor Woo Yul Choi's research lab specializes in advanced wireless communication systems, with a focus on physical layer signal processing, multi-user detection, and energy-efficient network architectures. The lab explores cutting-edge topics such as multi-packet reception, in-band full-duplex communications, cloud radio access networks (C-RAN), flying ad-hoc networks (FANET), and high-frequency RF CMOS modeling. Key research directions include interference management, beamforming, power control, and the design of reconfigurable transceivers for next-generation wireless systems. The lab combines theoretical innovation with practical hardware implementation, particularly in millimeter-wave and sub-THz bands, to address real-world challenges in IoT, UAV networks, and 6G wireless systems.

multi-packet receptionfull-duplex communicationC-RANFANETRF CMOS modeling

Research Overview

Papers
140
Total Citations
1,745
Papers (5y)
38
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
38total
2021
2022
2023
2024
2025
Citations per year (5y)
136total
20212022202320242025

Selected Papers

15
1
Article|233 citations·2013
Coordinating transmit power and carrier phase for wireless networks with multi-packet reception capability
Wooyeol Choi, Taewoon Kim, Daeyoung Park, Heung-No Lee, Hyuk Lim
SJR Q2EURASIP Journal on Wireless Communications and NetworkingOA

Abstract Driven by advances in signal processing and multiuser detection (MUD) technologies, it has become possible for a wireless node to simultaneously receive multiple signals from other transmitters. In order to take full advantage of MUD in multi-packet reception (MPR) capable wireless networks, it is highly desirable to make the compound signals from multiple transmitters more separable on its constellation at the receiver by coordinating both the transmit power level and carrier phase off

Computer Networks and CommunicationsComputer Science
2
Article|104 citations·2015
Power-Controlled Medium Access Control Protocol for Full-Duplex WiFi Networks
Wooyeol Choi, Hyuk Lim, Ashutosh Sabharwal
SJR Q1IEEE Transactions on Wireless CommunicationsOA

Recent advances in signal processing have demonstrated in-band full-duplex capability at WiFi ranges. In addition to simultaneous two-way exchange between two nodes, full-duplex access points can potentially support simultaneous uplink and downlink flows. However, the atomic three-node topology, which allows simultaneous uplink and downlink, leads to inter-client interference. In this paper, we propose a random-access medium access control protocol using distributed power control to manage inter

Electrical and Electronic EngineeringEngineering
3
Article|42 citations·2010
A V -Band Switched Beam-Forming Antenna Module Using Absorptive Switch Integrated With 4 4 Butler Matrix in 0.13- m CMOS
Wooyeol Choi, Konggyun Park, Young‐Min Kim, Kihyun Kim, Youngwoo Kwon
SJR Q1IEEE Transactions on Microwave Theory and Techniques

A beam-forming antenna module is demonstrated using an integrated CMOS beam-former chip and a simple two-metal layer printed circuit board at <formula formulatype="inline" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"><tex Notation="TeX">$V$</tex></formula> -band. The beam-former circuit integrates an absorptive single-pole four-throw switch together with a 4 <formula formulatype="inline" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http

Electrical and Electronic EngineeringEngineering
4
Article|39 citations·2009
Scalable Small-Signal Modeling of RF CMOS FET Based on 3-D EM-Based Extraction of Parasitic Effects and Its Application to Millimeter-Wave Amplifier Design
Wooyeol Choi, Gwangrok Jung, Jihoon Kim, Youngwoo Kwon
SJR Q1IEEE Transactions on Microwave Theory and Techniques

<para xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"> An accurate scalable small-signal RF CMOS model applicable to high frequencies is developed using 3-D electromagnetic (EM)-based extraction of parasitic elements. Due to multimetal layers, vertical interconnects, substrate loss and substrate-contact rings, the extrinsic parasitic network of CMOS field-effect transistor (FET) is more complicated than GaAs FETs and does not follow simple scaling rules.

Electrical and Electronic EngineeringEngineering
5
Article|22 citations·2015
410-GHz CMOS imager using a 4<sup>th</sup> sub-harmonic mixer with effective NEP of 0.3 fW/Hz<sup>0.5</sup> at 1-kHz noise bandwidth
Wooyeol Choi, Zeshan Ahmad, Amit Jha, Ja‐Yol Lee, In-Soo Kim, Kenneth K. O

A 410-GHz imager consisting of a 4 <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">th</sup> sub-harmonic mixer formed with an anti-parallel diode-connected NMOS transistor pair, and an on-chip antenna with 4.4-dB simulated gain is demonstrated in 65-nm CMOS. At −1.6-dBm power delivered to the LO input bond pad, the imager achieves 16.8-dB voltage conversion loss and 34.1-dB DSB noise figure. When the noise bandwidth is 1 kHz, sensitivity is −110 dBm

Electrical and Electronic EngineeringEngineering
6
Article|16 citations·2017
Design and Implementation of a Full-Duplex Pipelined MAC Protocol for Multihop Wireless Networks
Wooyeol Choi, Jaehyoung Park, Yonggang Kim, Ashutosh Sabharwal, Hyuk Lim
SJR Q1IEEE AccessOA

In multihop wireless networks, data packets are forwarded from a source node to a destination node through intermediate relay nodes. With half-duplex relay nodes, the end-to-end delay performance of a multihop network degrades as the number of hops increases, because the relay nodes cannot receive and transmit at the same time. Full-duplex relay nodes can reduce their per-hop delay by starting to forward a packet before the whole packet is received. In this paper, we propose a pipelined medium a

Electrical and Electronic EngineeringEngineering
7
Article|16 citations·2018
450 × 580 µm 2 Pixel incorporating TX and coherent RX in CMOS for mm‐wave active imaging using a single reflector
Wooyeol Choi, Pranith R. Byreddy, Z. Chen, A.J. Chen, Alexander Newman, O K.K.
SJR Q3Electronics Letters

A transceiver pixel for active imaging incorporating a transmitter (TX) and a coherent receiver (RX) is demonstrated in 65 nm CMOS at 260 GHz. The pixel occupies an area of 450 × 580µm 2 and is the first demonstration of pixels incorporating a TX and a coherent RX which are smaller than λ /2 × λ /2. The pixel exhibits −21.3 dBm total radiated power and −79.5 dBm sensitivity at a 1 kHz noise bandwidth. This sensitivity is about 10 dB better than the state‐of‐the‐art pixel with only a coherent RX.

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|11 citations·2006
A V-band MMIC Self Oscillating Mixer Active Integrated Antenna Using a Push-Pull Patch Antenna
Wooyeol Choi, Changyul Cheon, Youngwoo Kwon

In this paper, a v-band MMIC self oscillating mixer active integrated antenna using a push-pull patch antenna is presented. The SOM AIA is based on the coupled active parallel feedback oscillator. By using a push-pull patch antenna, the isolation between balanced RF input and in-phase local oscillation is established. Furthermore, since the push-pull patch antenna has very low radiation efficiency for the in phase signal injection, the LO radiation was efficiently suppressed. The circuit is fabr

Aerospace EngineeringEngineering
9
Review|7 citations·2024
Enabling Applications of Electromagnetic Waves at 0.3–1.0 THz Using Silicon Electronic Integrated Circuits
Wooyeol Choi, Kenneth K. O
SJR Q1ACS PhotonicsOA

Over the past 15 years, the output power of silicon submillimeter-wave electronics has increased by a factor greater than 1000 reaching -3.9 dBm at 440 GHz for a single unit in CMOS and -10.7 dBm at 1.01 THz for a 42-element array in SiGe BiCMOS. The smallest power of a 1 kHz bandwidth signal at 420 GHz that can be detected has improved by 100 million times. These and the expected improvements from the ongoing activities should be sufficient to support high resolution imaging with a range of up

Electrical and Electronic EngineeringEngineering
10
Article|5 citations·2009
Power control for multiple access communication systems with multi-packet reception capability
Wooyeol Choi, Daewon Jung, Heung-No Lee, Hyuk Lim

This paper addresses the power control problem in wireless multiple access communication systems with a multi-packet reception (MPR) channel. Driven by advances in signal processing and multiuser detection (MUD) technologies such as UWB and MIMO, it has become possible for a wireless node to simultaneously receive several packets from other transmitters. In this case, the receiver node can determine the set of transmitters from which it wants to receive data and instruct them to adjust their tra

Computer Networks and CommunicationsComputer Science
11
Article|3 citations·2017
Antenna allocation scheme for full-duplex communication in IEEE 802.11ac WLAN
Wooyeol Choi, In‐Sung Jang, Taewoon Kim

We proposed an antenna allocation scheme for a full-duplex communication in IEEE 802.11ac WLAN. In the proposed scheme, an access point (AP) with multiple antennas finds the optimal number of the antennas for transmitting and receiving signals to maximize the sum capacity of the uplink and downlink transmissions. We carry out a simulation and show that the proposed scheme can improve the sum capacity in the full-duplex wireless networks.

Electrical and Electronic EngineeringEngineering
12
Article|3 citations·2010
Ultra-Low-Power Series-Feedback Frequency Divider Using 0.15-<formula formulatype="inline"><tex Notation="TeX"> m </tex> </formula> GaAs pHEMT's at W-Band
Wooyeol Choi, Kihyun Kim, Youngwoo Kwon
IEEE Microwave and Wireless Components Letters

A frequency divider with a very low dc power consumption of 3 mW is demonstrated using 0.15 <formula formulatype="inline" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"><tex Notation="TeX">$\mu{\rm m}$</tex></formula> GaAs pHEMT technology at W-band. The frequency divider is based on an injection lock topology using a cascode field effect transistor (FET) structure. For low-power operation, the oscillator is configured in series-feedback topology using

Electrical and Electronic EngineeringEngineering
13
Article|2 citations·2012
Immediate acknowledgement for single-channel full-duplex wireless networks
Wooyeol Choi, Hyuk Lim

Driven by advances in the signal processing and antenna technology, it has become possible for wireless nodes to simultaneously transmit and receive a packet through self-interference cancellation using multiple antennas. This is known as a full-duplex communication. In this paper, we propose a MAC protocol with immediate acknowledgement (ACK) for single-channel full-duplex wireless networks. The proposed scheme in a full-duplex communication can solve the hidden terminal problem by using the im

Electrical and Electronic EngineeringEngineering
14
Article|2 citations·2016
Kelvin inductance and resistance measurements using an AC source and DC voltmeters
Wooyeol Choi, Kenneth K. O

Kelvin measurements of series inductance and resistance of an on-chip inductor at frequencies from 5 to 10 GHz is demonstrated using a CMOS process. The measurements require 3 DC voltage meters, 3 DC current sources, an AC signal source, and one high frequency probe. The resistance is lower and within 0.5 O of that from a calibrated measurement using a vector network analyzer (VNA), while the inductance is 10% (50 pH) lower. Due to the reduction of the variability of contacts, the range of serie

Biomedical EngineeringEngineering
15
Article|1 citations·2003
A V-band single-chip MMIC oscillator array using a 4-port microstrip patch antenna
Wooyeol Choi, Changyul Cheon, Youngwoo Kwon

In this paper, a V-band strongly-coupled single-chip MMIC oscillator array is presented. To reduce the MMIC chip size and increase the output power of the millimeter-wave source module, the output powers of the four oscillators are combined in a single chip using a four-port patch antenna. A parallel combination of the two pairs of the oscillators operating in a push-pull mode was implemented using a single four-port patch antenna. When measured in a closed over-sized waveguide, the circuit show

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringComputer Networks and CommunicationsAerospace EngineeringBiomedical EngineeringAtomic and Molecular Physics, and OpticsWater Science and Technology

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