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Chi-Ha Kim

Pohang University of Science and Technology · Computer Science

About the Lab

Professor Chi-Ha Kim's research lab specializes in next-generation wireless networking and medium access control (MAC) protocols, with a strong focus on enhancing spectral efficiency, throughput, and reliability in dynamic and dense wireless environments. The lab explores cognitive radio networks, full-duplex communication, and hybrid multiple access schemes to optimize channel utilization and support high-performance, low-latency data transmission. Key research directions include distributed coordination, fast route recovery in mobile ad hoc networks, and innovative MAC protocols that leverage frequency-domain coordination and self-interference cancellation. The lab's work bridges theoretical protocol design with practical implementation challenges in real-world wireless systems.

full-duplex radiocognitive radioMAC protocolchannel utilizationdistributed coordination

Research Overview

Papers
97
Total Citations
576
Papers (5y)
22
Primary Field
Computer Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
22total
2013
2015
2016
2017
2019
Citations per year (5y)
108total
20132015201620172019

Selected Papers

15
1
Article|150 citations·2010
A Channel Rendezvous Scheme for Cognitive Radio Networks
Jongmin Shin, Dongmin Yang, Cheeha Kim
SJR Q1IEEE Communications Letters

Cognitive radio networks need to utilize available spectrum in a dynamic and opportunistic fashion without causing interference to co-located primary nodes. Before data transmission begins, secondary nodes must establish a link on a channel which is not occupied by primary nodes. Unfortunately, in cognitive radio networks, the set of available channels can be different for each node, since it is determined by the relative locations of nodes to primary nodes. We are the first to present a distrib

Computer Networks and CommunicationsComputer Science
2
Article|24 citations·2011
Fast route recovery scheme for Mobile Ad Hoc Networks
Jung-Hwi Jeon, Kiseok Lee, Cheeha Kim

A Mobile Ad Hoc Network (MANET) is a self-configuring network of mobile devices connected by a wireless link. In MANETs, the data packet may fail to be delivered for various reasons including nodes movement, packet collision and bad channel condition. Because re-route recovery of traditional on-demand routing protocols has high latency, several ideas have been proposed to solve this problems. AODV-BR and AODV-ABR schemes improve the AODV routing protocol by supplying multiple backup routes, but

Computer Networks and CommunicationsComputer Science
3
Article|23 citations·2016
An Efficient Multiple Access Coordination Scheme for OFDMA WLAN
Jiseon Lee, Cheeha Kim
SJR Q1IEEE Communications Letters

A new hybrid multiple access coordination scheme (HMAC) that increases channel utilization for orthogonal frequency-division multiple access wireless local area network is presented. This scheme is based on a mixture of centralized access control and distributed random access to maximize channel utilization. Remarkably, HMAC allows two schemes to function at the same time, not alternatively. Performance evaluation results show notable improvement on channel utilization, which is mainly based on

Computer Networks and CommunicationsComputer Science
4
Article|21 citations·1997
A total ordering protocol using a dynamic token-passing scheme
Jongsung Kim, Cheeha Kim
Distributed Systems EngineeringOA

Solutions to the total ordering problem can be used to maintain consistency in distributed system applications such as replicated databases. We propose a total ordering protocol based on a dynamic token-passing scheme which determines the next token holder dynamically, not in predetermined order. The proposed protocol provides fast stability time, uses a small buffer, and distributes evenly the load of ordering messages to accomplish a total message ordering. We present simulation results to ill

Computer Networks and CommunicationsComputer Science
5
Article|20 citations·2019
Frequency Domain Coordination MAC Protocol for Full-Duplex Wireless Networks
Hyeongtae Ahn, Jiseon Lee, Cheeha Kim, Young-Joo Suh
SJR Q1IEEE Communications Letters

A full-duplex radio allows packets to be transmitted and received simultaneously using self-interference cancellation technologies. Thus, it can double the channel capacity compared with the half-duplex radio. Since conventional medium access control (MAC) protocols were designed for the half-duplex radio, the potential capacity of the full-duplex radio cannot be utilized. In this letter, we propose a full-duplex MAC protocol using frequency domain coordination to fully utilize the full-duplex r

Electrical and Electronic EngineeringEngineering
6
Article|20 citations·2010
Dynamic timeout for data aggregation in wireless sensor networks
Soonmok Kwon, Jae Hoon Ko, Jeongkyu Kim, Cheeha Kim
SJR Q1Computer Networks
Computer Networks and CommunicationsComputer Science
7
Article|19 citations·2016
A full duplex MAC protocol for efficient asymmetric transmission in WLAN
Chulmin Kim, Cheeha Kim
2016 International Conference on Computing, Networking and Communications (ICNC)

As full duplex radio communication is introduced, it is expected to double the throughput theoretically over full duplex radio for one-to-one communication. However, in the practical environment, it is hard to find such an application that demands the same amount of traffic in the both directions at the same time. To enhance the throughput as much as possible, we need to arrange medium accesses in a different way, not like the contention-based MAC. In this paper, we propose an efficient MAC prot

Electrical and Electronic EngineeringEngineering
8
Article|17 citations·1997
Performance analysis of statistical multiplexing of heterogeneous discrete-time Markovian arrival processes in an ATM network
Koohong Kang, Cheeha Kim
SJR Q1Computer Communications
Management Information SystemsBusiness, Management and Accounting
9
Book Chapter|16 citations·2006
Optimal Transmission Range for Topology Management in Wireless Sensor Networks
Jongmin Shin, Miae Chin, Cheeha Kim
SJR Q2Lecture notes in computer science
Computer Networks and CommunicationsComputer Science
10
Book Chapter|16 citations·2005
S-RO: Simple Route Optimization Scheme with NEMO Transparency
Hanlim Kim, GeunHyung Kim, Cheeha Kim
SJR Q2Lecture notes in computer science
Computer Networks and CommunicationsComputer Science
11
Article|13 citations·2008
An Efficient Tree Structure for Delay Sensitive Data Gathering in Wireless Sensor Networks
Soonmok Kwon, Jeong‐Gyu Kim, Cheeha Kim

It is important to design an energy efficient data gathering tree structure for wireless sensor networks. As for the energy efficiency, network's overall energy consumption and per-node fairness have been studied. Note that the minimum degree spanning tree (MDST) is optimal in the sense of per-node fairness. We believe that the per-node fairness is of practical interest and that the delay bound associated with it must be investigated. Unfortunately, no such efforts have been made so far. In this

Computer Networks and CommunicationsComputer Science
12
Article|7 citations·2012
Fast Primary User Detection during Ongoing Opportunistic Transmission in OFDM-based Cognitive Radio
Jae‐Hoon Ko, Hyeonmok Ko, Cheeha Kim
SJR Q2Wireless Personal Communications
Computer Networks and CommunicationsComputer Science
13
Article|6 citations·2013
The Optimal Spectrum Sensing Time for Maximizing Throughput of 802.11-Based MAC Protocol for Cognitive Radio Networks Under Unsaturated Traffic Conditions
Hyeonmok Ko, Jiseon Lee, Cheeha Kim
SJR Q2Wireless Personal Communications
Computer Networks and CommunicationsComputer Science
14
Article|4 citations·1995
Allocation strategies of multimedia data on disk arrays
Maesil Seo, Cheeha Kim
SJR Q1Computer Communications
Computer Networks and CommunicationsComputer Science
15
Article|4 citations·2009
Distributed and localized construction of routing structure for sensor data gathering
Soonmok Kwon, Jongmin Shin, Jae‐Hoon Ko, Cheeha Kim
SJR Q2Telecommunication Systems
Computer Networks and CommunicationsComputer Science

Research Areas

Computer Networks and CommunicationsElectrical and Electronic EngineeringManagement Information SystemsHardware and ArchitectureArtificial IntelligenceComputational Theory and Mathematics

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