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Jae Hoon Jeong

Sungkyunkwan University · 工学

研究室紹介

Professor Jae Hoon Jeong's research lab specializes in intelligent vehicular networks and wireless communication systems, focusing on optimizing data delivery and traffic management in dynamic, high-mobility environments. The lab explores trajectory-based data forwarding, privacy-preserving navigation, and energy-efficient target tracking to enhance vehicular network performance. Key research directions include infrastructure-to-vehicle communication, self-adaptive navigation systems, and real-time road network optimization using vehicular cloud computing. The lab emphasizes practical, scalable solutions that leverage GPS trajectory data and vehicular kinematics for improved network efficiency and energy conservation.

vehicular networkstrajectory-based forwardingself-adaptive navigationenergy-efficient trackingvehicular cloud

Research Overview

Papers
371
Total Citations
2,921
Papers (5y)
78
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
78total
2022
2023
2024
2025
2026
Citations per year (5y)
129total
20222023202420252026

Selected Papers

15
1
Article|102 citations·2010
Trajectory-Based Data Forwarding for Light-Traffic Vehicular Ad Hoc Networks
Jaehoon Jeong, Shuo Guo, Yu Gu, Tian He, David Hung-Chang Du
SJR Q1IEEE Transactions on Parallel and Distributed Systems

This paper proposes a Trajectory-Based Data (TBD) Forwarding scheme, tailored for the data forwarding for roadside reports in light-traffic vehicular ad hoc networks. State-of-the-art schemes have demonstrated the effectiveness of their data forwarding strategies by exploiting known vehicular traffic statistics (e.g., densities and speeds). These results are encouraging, however, further improvements can be made by taking advantage of the growing popularity of GPS-based navigation systems. This

Electrical and Electronic EngineeringEngineering
2
Article|94 citations·2009
TBD: Trajectory-Based Data Forwarding for Light-Traffic Vehicular Networks
Jaehoon Jeong, Shuo Guo, Yu Gu, Tian He, David Hung-Chang Du

This paper proposes a trajectory-based data forwarding (TBD) scheme, tailored for the data forwarding in light- traffic vehicular ad-hoc networks. State-of-the-art schemes have demonstrated the effectiveness of their data forwarding strategies by exploiting known vehicular traffic statistics (e.g., densities and speeds) in these vehicular networks. These results are encouraging, however, further improvements can be made by taking advantage of the growing popularity of GPS-based navigation system

Computer Networks and CommunicationsComputer Science
3
Article|91 citations·2011
Trajectory-Based Statistical Forwarding for Multihop Infrastructure-to-Vehicle Data Delivery
Jaehoon Jeong, Shuo Guo, Yu Gu, Tian He, David Hung-Chang Du
SJR Q1IEEE Transactions on Mobile Computing

This paper proposes Trajectory-based Statistical Forwarding (TSF) scheme, tailored for the multihop data delivery from infrastructure nodes (e.g., Internet access points) to moving vehicles in vehicular ad hoc networks. To our knowledge, this paper presents the first attempt to investigate how to effectively utilize the packet destination vehicle's trajectory for such an infrastructure-to-vehicle data delivery. This data delivery is performed through the computation of a target point based on th

Electrical and Electronic EngineeringEngineering
4
Article|82 citations·2010
TSF: Trajectory-Based Statistical Forwarding for Infrastructure-to-Vehicle Data Delivery in Vehicular Networks
Jaehoon Jeong, Shuo Guo, Yu Gu, Tian He, David Hung-Chang Du
OA

This paper proposes a data forwarding scheme called Trajectory-based Statistical Forwarding (TSF), tailored for the data delivery from infrastructure nodes (e.g., Internet access points) to moving vehicles in vehicular networks. To our knowledge, this paper presents the first attempt to investigate how to effectively utilize the packet destination vehicle's trajectory for such an infrastructure-to-vehicle data delivery. This data delivery is performed through the computation of a target point ba

Computer Networks and CommunicationsComputer Science
5
Article|80 citations·2021
A comprehensive survey on data dissemination in Vehicular Ad Hoc Networks
Hamayoun Shahwani, Syed Attique Shah, Muhammad Ashraf, Muhammad Akram, Jaehoon Jeong, Jitae Shin
SJR Q1Vehicular Communications
Electrical and Electronic EngineeringEngineering
6
Article|78 citations·2021
A comprehensive survey on vehicular networking for safe and efficient driving in smart transportation: A focus on systems, protocols, and applications
Hwanseok Jeong, Yiwen Shen, Jaehoon Jeong, Tae Oh
SJR Q1Vehicular Communications
Electrical and Electronic EngineeringEngineering
7
Article|72 citations·2007
MCTA: Target Tracking Algorithm Based on Minimal Contour in Wireless Sensor Networks
Jaehoon Jeong, Taehyun Hwang, T. He, David H. C. Du

This paper proposes a minimal contour tracking algorithm (MCTA) that reduces energy consumption for tracking mobile targets in wireless sensor networks in terms of sensing and communication energy consumption. MCTA conserves energy by letting only a minimum number of sensor nodes participate in communication and perform sensing for target tracking. MCTA uses the minimal tracking area based on the vehicular kinematics. The modeling of target's kinematics allows for pruning out part of the trackin

Electrical and Electronic EngineeringEngineering
8
Article|61 citations·2021
A comprehensive survey on vehicular networks for smart roads: A focus on IP-based approaches
Jaehoon Jeong, Yiwen Shen, Tae Hwan Oh, Sandra Céspedes, Nabil Benamar, Michelle Wetterwald, Jérôme Härri
SJR Q1Vehicular Communications
Electrical and Electronic EngineeringEngineering
9
Article|60 citations·2015
SAINT: Self-Adaptive Interactive Navigation Tool for Cloud-Based Vehicular Traffic Optimization
Jaehoon Jeong, Hohyeon Jeong, Eunseok Lee, Tae Oh, David Hung-Chang Du
SJR Q1IEEE Transactions on Vehicular Technology

This paper proposes a self-adaptive interactive navigation tool (SAINT), which is tailored for cloud-based vehicular traffic optimization in road networks. The legacy navigation systems make vehicles navigate toward their destination less effectively with individually optimal navigation paths rather than network-wide optimal navigation paths, particularly during rush hours. To the best of our knowledge, SAINT is the first attempt to investigate a self-adaptive interactive navigation approach thr

Electrical and Electronic EngineeringEngineering
10
Article|41 citations·2006
Ad Hoc IP Address Autoconfiguration
Jaehoon Jeong

This document specifies the steps which a mobile node in the ad hoc network takes in deciding how to autoconfigure its IPv4 or IPv6 address in its network interface. Because the ad hoc IP address autoconfiguration in this document considers the ad hoc network's partition and mergence, the address duplication caused by the ad hoc network's mergence can be resolved through an address resolution protocol. Also, this document specifies how to resolve the address duplication in order to guarantee the

Electrical and Electronic EngineeringEngineering
11
Article|37 citations·2013
TMA: Trajectory-based Multi-Anycast forwarding for efficient multicast data delivery in vehicular networks
Jaehoon Jeong, Tian He, David Hung-Chang Du
SJR Q1Computer Networks
Electrical and Electronic EngineeringEngineering
12
report|29 citations·2017
IPv6 Router Advertisement Options for DNS Configuration
Jaehoon Jeong, S. Park, L. Beloeil, S. Madanapalli

This document specifies IPv6 Router Advertisement options to allow IPv6 routers to advertise a list of DNS recursive server addresses and a DNS Search List to IPv6 hosts.

Electrical and Electronic EngineeringEngineering
13
Article|28 citations·2009
VISA: Virtual Scanning Algorithm for Dynamic Protection of Road Networks
Jaehoon Jeong, Yu Gu, Tian He, David H. C. Du
OA

This paper proposes a virtual scanning algorithm (VISA), tailored and optimized for road network surveillance. Our design uniquely leverages upon the facts that (i) the movement of targets (e.g., vehicles) is confined within roadways and (ii) the road network maps are normally known. We guarantee the detection of moving targets before they reach designated protection points (such as temporary base camps), while maximizing the lifetime of the sensor network. The main idea of this work is virtual

Computer Networks and CommunicationsComputer Science
14
Article|26 citations·2018
A framework for DNS naming services for Internet-of-Things devices
Keuntae Lee, Seokhwa Kim, Jaehoon Jeong, Se‐Jun Lee, Hyoungshick Kim, Jungsoo Park
SJR Q1Future Generation Computer Systems
Electrical and Electronic EngineeringEngineering
15
report|26 citations·2010
IPv6 Router Advertisement Options for DNS Configuration
Jaehoon Jeong, S. Park, L. Beloeil, S. Madanapalli
OA

This document specifies IPv6 Router Advertisement options to allow IPv6 routers to advertise a list of DNS recursive server addresses and a DNS Search List to IPv6 hosts.

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringComputer Networks and CommunicationsSignal ProcessingArtificial IntelligenceInformation SystemsMarketing

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