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Min-Young Jeong

Sungkyunkwan University · 工学

研究室紹介

Professor Min-Young Jeong's research lab specializes in next-generation wireless communication systems, with a focus on enhancing spectral efficiency, energy efficiency, and network capacity in emerging mobile and smart home environments. The lab explores advanced physical layer techniques such as power line communication, device-to-device (D2D) communication, massive MIMO, and millimeter-wave systems, alongside energy harvesting and intelligent resource allocation for IoT and 5G/6G networks. Key research directions include robust medium access control, beamforming, and relay protocols tailored for dynamic and constrained wireless environments.

5G mobile communicationsenergy harvestingdevice-to-device communicationpower line communicationmillimeter-wave

Research Overview

Papers
338
Total Citations
2,622
Papers (5y)
25
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
25total
2022
2023
2024
2025
2026
Citations per year (5y)
190total
20222023202420252026

Selected Papers

15
1
Article|63 citations·2006
Performance analysis of HomePlug 1.0 MAC with CSMA/CA
Min Young Chung, Myoung-Hee Jung, Tae‐Jin Lee, Yutae Lee
SJR Q1IEEE Journal on Selected Areas in Communications

As demands for data communications among home/personal devices in home environments increase, various types of home-networking technologies have appeared. Among them, power line communication is one of the most promising wired home-networking technologies, because the existing power line facilities can be utilized for data transmission without deploying any new physical links. HomePlug 1.0 is the most popular power line communication technology, which has been standardized by the HomePlug power

Electrical and Electronic EngineeringEngineering
2
Article|56 citations·2017
Device-to-Device Communications: A Contemporary Survey
Syed Tariq Shah, Syed Faraz Hasan, Boon‐Chong Seet, Peter Han Joo Chong, Min Young Chung
SJR Q2Wireless Personal CommunicationsOA
Electrical and Electronic EngineeringEngineering
3
Article|41 citations·2016
Energy harvesting and information processing in two‐way multiplicative relay networks
Syed Tariq Shah, Kae Won Choi, Syed Faraz Hasan, Min Young Chung
SJR Q3Electronics LettersOA

An energy harvesting (EH) and information processing network based on two‐way multiplicative relay is proposed. In the proposed scheme, two nodes communicate with each other via an energy constrained multiplicative relay node. The relay node uses power splitting‐based relaying protocol for EH and information processing. The numerical results show that the proposed scheme outperforms the legacy amplify‐and‐forward EH relaying technique.

Electrical and Electronic EngineeringEngineering
4
Article|38 citations·2015
SC-FDMA-based resource allocation and power control scheme for D2D communication using LTE-A uplink resource
Syed Tariq Shah, Jaheon Gu, Syed Faraz Hasan, Min Young Chung
SJR Q2EURASIP Journal on Wireless Communications and NetworkingOA

Abstract Device-to-device (D2D) communication-enabled cellular networks allow cellular devices to directly communicate with each other without any evolved NodeB (eNB). D2D communication aims to improve the spectral efficiency and increases the overall system capacity. For future mobile networks, intelligent radio resource allocation and power control schemes are required to accommodate the increasing number of cellular devices and their growing demand of data traffic. In this paper, a combined r

Electrical and Electronic EngineeringEngineering
5
Article|35 citations·2016
Throughput analysis of two-way relay networks with wireless energy harvesting capabilities
Syed Tariq Shah, Kae Won Choi, Syed Faraz Hasan, Min Young Chung
SJR Q1Ad Hoc Networks
Electrical and Electronic EngineeringEngineering
6
Article|22 citations·2014
Enhancement of LTE RACH through extended random access process
J.S. Kim, Daniyal Munir, Syed Faraz Hasan, Min Young Chung
SJR Q3Electronics LettersOA

Accommodating an increasing number of machine‐to‐machine (M2M) devices is one of the main issues faced by the cellular networks. In a typical M2M setup, several devices may try to connect to the network simultaneously. Long‐term evolution advanced (LTE‐A) networks use a random access procedure for this purpose, which is not sufficient to cater for a large number of devices. The conventional procedure is extended by allowing several devices to access the network with reduced collisions. Mathemati

Electrical and Electronic EngineeringEngineering
7
Article|21 citations·2015
A resource allocation scheme for device-to-device communications using LTE-A uplink resources
Jaheon Gu, Hee-Woong Yoon, Jungha Lee, Sueng Jae Bae, Min Young Chung
SJR Q1Pervasive and Mobile Computing
Electrical and Electronic EngineeringEngineering
8
Article|19 citations·2014
System Coverage and Capacity Analysis on Millimeter-Wave Band for 5G Mobile Communication Systems with Massive Antenna Structure
Jun Suk Kim, Jae Sheung Shin, Sung-Min Oh, Aesoon Park, Min Young Chung
SJR Q3International Journal of Antennas and PropagationOA

The use of a millimeter-wave band defined as a 30–300 GHz range is significant element for improving performance of 5th generation (5G) mobile communication systems. However, since the millimeter-wave signal has peculiar propagation characteristics especially toward non-line-of-sight regions, the system architecture and antenna structure for 5G mobile communications should be designed to overcome these propagation limitations. For realization of the 5G mobile communications, electronics and tele

Electrical and Electronic EngineeringEngineering
9
Article|15 citations·2020
Dynamic VNF Placement to Manage User Traffic Flow in Software-Defined Wireless Networks
Tahira Mahboob, Young Rok Jung, Min Young Chung
SJR Q1Journal of Network and Systems Management
Computer Networks and CommunicationsComputer Science
10
Article|10 citations·2003
HomePNA 2.0 - saturation throughput analysis
Min Young Chung, H.C. Kim, Tae‐Jin Lee
SJR Q1IEEE Communications Letters

The Home Phoneline Networking Alliance (HomePNA) 2.0 is an attractive proposition for home networking since it potentially allows transmission rates comparable to those of Ethernet, using existing installed telephone lines. This system adopts a CSMA/CD medium access control protocol with distributed fair priority queuing (DFPQ). We present a simple analytical model to compute the saturation throughput performance in the presence of a finite number of contending stations, which provides a guideli

Computer Networks and CommunicationsComputer Science
11
Article|9 citations·2015
Radio resource management for 5G mobile communication systems with massive antenna structure
Syed Tariq Shah, Jun Suk Kim, Eun Soo Bae, JungSook Bae, Min Young Chung
SJR Q2Transactions on Emerging Telecommunications Technologies

Abstract In order to accommodate for the emerging mobile data traffic, millimetre‐wave (mmWave) band in 30–300GHz range is being considered for the fifth generation (5G) mobile networks. This mmWave band can potentially fulfil the bandwidth requirement of the next generation mobile networks for the next few decades and beyond. In this article, we propose a novel resource allocation scheme for mmWave in 5G mobile networks. The concept of multi‐beam coordination is adopted to efficiently utilise t

Electrical and Electronic EngineeringEngineering
12
Article|7 citations·2012
Femtocell interference analysis based on the development of system-level LTE simulator
Sueng Jae Bae, Young Min Kwon, Mi-Young Lee, Bon Tae Koo, Min Young Chung
SJR Q2EURASIP Journal on Wireless Communications and NetworkingOA

Abstract Although femtocell can confer various benefits to both operators and users, many technical issues, such as interference coordination, network synchronization, self-configuration, and self-optimization must be considered to effectively deploy femtocells in real environments. In this article, we develop a system-level simulator in order to evaluate performance of long-term evolution (LTE)-femtocell systems. The simulator consists of five functional modules which realize packet scheduling

Electrical and Electronic EngineeringEngineering
13
Article|7 citations·2015
Reliable cooperative scheme for public safety services in LTE‐A networks
Daniyal Munir, Jaheon Gu, Syed Faraz Hasan, Min Young Chung
SJR Q2Transactions on Emerging Telecommunications Technologies

Abstract In order to enable effective public safety services in challenged environments, 3rd Generation Partnership Program is considering the use of device‐to‐device (D2D) communications. D2D communications can be ideal in various emergency situations where the conventional network services get suspended. We propose a D2D‐based user equipment (UE) relaying process to support the out‐of‐range isolated UEs. The main idea is to allow UEs that have active connections with eNB to exchange data with

Electrical and Electronic EngineeringEngineering
14
Article|7 citations·2019
Performance analysis of wireless-powered cognitive radio networks with ambient backscatter
Daniyal Munir, Syed Tariq Shah, Kae Won Choi, Tae‐Jin Lee, Min Young Chung
SJR Q2EURASIP Journal on Wireless Communications and NetworkingOA

Ambient backscatter is a promising wireless communication technique where low-power users communicate with each other without any dedicated power source. These communicating users transmit their information by reflecting ambient radio-frequency (RF) signals. In this paper, we propose an ambient backscatter communications-assisted wireless-powered underlay cognitive radio network (CRN). The proposed CRN consists of a single primary transmitter (PT) and multiple primary receivers (PRs), secondary

Electrical and Electronic EngineeringEngineering
15
Article|7 citations·2018
Time-division random-access scheme based on coverage level for cellular internet-of-things in 3GPP networks
Jun Suk Kim, Sungkil Lee, Min Young Chung
SJR Q1Pervasive and Mobile Computing
Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringComputer Networks and CommunicationsSurgeryArtificial IntelligenceOrthopedics and Sports MedicineHardware and Architecture

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