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Uichin Lee

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Uichin Lee's research lab specializes in mobile underwater networking and intelligent sensor systems, focusing on underwater mobile sensor networks, geographic and anycast routing protocols, and real-time data collection in dynamic ocean environments. The lab develops energy- and bandwidth-efficient communication protocols such as DOTS and HydroCast to address challenges like long propagation delays, node mobility, and 3D voids in sparse underwater networks. Their work also extends to innovative applications such as SEA Swarms—drifting sensor clouds for 4D environmental monitoring—combined with autonomous underwater vehicles and surface sonobuoys for real-time event reporting. The lab integrates signal processing and machine learning techniques to enhance routing reliability and prediction accuracy in underwater and biological systems.

underwater sensor networksgeographic routinghydrocastdots protocolsea swarm

Research Overview

Papers
31
Total Citations
1,713
Papers (5y)
7
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
7total
2019
2020
2021
2022
2025
Citations per year (5y)
195total
20192020202120222025

Selected Papers

15
1
Article|288 citations·2012
VAPR: Void-Aware Pressure Routing for Underwater Sensor Networks
Youngtae Noh, Uichin Lee, Paul Wang, Brian Sung Chul Choi, Mário Gerla
SJR Q1IEEE Transactions on Mobile Computing

Underwater mobile sensor networks have recently been proposed as a way to explore and observe the ocean, providing 4D (space and time) monitoring of underwater environments. We consider a specialized geographic routing problem called pressure routing that directs a packet to any sonobuoy on the surface based on depth information available from on-board pressure gauges. The main challenge of pressure routing in sparse underwater networks has been the efficient handling of 3D voids. In this respec

Ocean EngineeringEngineering
2
Article|247 citations·2010
Pressure Routing for Underwater Sensor Networks
Uichin Lee, Paul Wang, Youngtae Noh, Luiz F. M. Vieira, Mário Gerla, Jun‐Hong Cui

A SEA Swarm (Sensor Equipped Aquatic Swarm) is a sensor "cloud" that drifts with water currents and enables 4D (space and time) monitoring of local underwater events such as contaminants, marine life and intruders. The swarm is escorted at the surface by drifting sonobuoys that collect the data from underwater sensors via acoustic modems and report it in real-time via radio to a monitoring center. The goal of this study is to design an efficient anycast routing algorithm for reliable underwater

Ocean EngineeringEngineering
3
Article|187 citations·2015
HydroCast: Pressure Routing for Underwater Sensor Networks
Youngtae Noh, Uichin Lee, Saewoom Lee, Paul Wang, Luiz F. M. Vieira, Jun‐Hong Cui, Mário Gerla, Kiseon Kim
SJR Q1IEEE Transactions on Vehicular Technology

A Sensor Equipped Aquatic (SEA) swarm is a sensor cloud that drifts with water currents and enables 4-D (space and time) monitoring of local underwater events such as contaminants, marine life, and intruders. The swarm is escorted on the surface by drifting sonobuoys that collect data from the underwater sensors via acoustic modems and report it in real time via radio to a monitoring center. The goal of this study is to design an efficient anycast routing algorithm for reliable underwater sensor

Ocean EngineeringEngineering
4
Article|113 citations·2019
Understanding smartphone usage in college classrooms: A long-term measurement study
Inyeop Kim, Rihun Kim, Heepyung Kim, Duyeon Kim, Kyungsik Han, Paul H. Lee, Gloria Mark, Uichin Lee
SJR Q1Computers & Education
Sociology and Political ScienceSocial Sciences
5
Article|107 citations·2014
DOTS: A Propagation Delay-Aware Opportunistic MAC Protocol for Mobile Underwater Networks
Youngtae Noh, Uichin Lee, Seongwon Han, Paul Wang, Dustin Torres, Jinwhan Kim, Mário Gerla
SJR Q1IEEE Transactions on Mobile Computing

Mobile underwater networks with acoustic communications are confronted with several unique challenges such as long propagation delays, high transmission power consumption, and node mobility. In particular, slow signal propagation permits multiple packets to concurrently travel in the underwater channel, which must be exploited to improve the overall throughput. To this end, we propose the delay-aware opportunistic transmission scheduling (DOTS) protocol that uses passively obtained local informa

Ocean EngineeringEngineering
6
Article|90 citations·2006
Analysis of Aloha Protocols for Underwater Acoustic Sensor Networks
Luiz F. M. Vieira, Jiejun Kong, Uichin Lee, Mário Gerla

The average three-state prediction accuracy per protein (Q(3)) is estimated by cross-validation to be 77.07 +/- 0.26% with a segment overlap (Sov) score of 73.32 +/- 0.39%. The SVM performs similarly to the 'state-of-the-art' PSIPRED prediction method on a non-homologous test set of 121 proteins despite being trained on substantially fewer examples. A simple consensus of the SVM, PSIPRED and PROFsec achieves significantly higher prediction accuracy than the individual methods.

Ocean EngineeringEngineering
7
Article|82 citations·2018
Intelligent positive computing with mobile, wearable, and IoT devices: Literature review and research directions
Uichin Lee, Kyungsik Han, Hyunsung Cho, Kyong‐Mee Chung, Hwajung Hong, Sung-Ju Lee, Youngtae Noh, Soo‐Young Park, John M. Carroll
SJR Q1Ad Hoc Networks
Applied PsychologyPsychology
8
Article|72 citations·2010
Phero-trail: a bio-inspired location service for mobile underwater sensor networks
Luiz F. M. Vieira, Uichin Lee, Mário Gerla
SJR Q1IEEE Journal on Selected Areas in Communications

A SEA Swarm (Sensor Equipped Aquatic Swarm) is a collection of mobile underwater sensors that moves as a group with water current and enables 4D (space and time) monitoring of local underwater events such as contaminants and intruders. For prompt alert reporting, mobile sensors routes events to mobile sinks (i.e., autonomous underwater vehicles) via geographic routing that is known to be most efficient under mobility and scarce acoustic bandwidth. In order for a packet to be routed to the destin

Ocean EngineeringEngineering
9
Article|70 citations·2010
DOTS: A propagation Delay-aware Opportunistic MAC protocol for underwater sensor networks
Youngtae Noh, Paul Wang, Uichin Lee, Dustin Torres, Mário Gerla

Underwater Acoustic Sensor Networks (UW-ASNs) use acoustic links as a means of communications and are accordingly confronted with long propagation delays, low bandwidth, and high transmission power consumption. This unique situation, however, permits multiple packets to concurrently propagate in the underwater channel, which must be exploited in order to improve the overall throughput. To this end, we propose the Delay-aware Opportunistic Transmission Scheduling (DOTS) algorithm that uses passiv

Ocean EngineeringEngineering
10
Article|66 citations·2007
A Mobile Delay-Tolerant Approach to Long-Term Energy-Efficient Underwater Sensor Networking
Eugenio Magistretti, Jiejun Kong, Uichin Lee, Mário Gerla, Paolo Bellavista, Antonio Corradi

Underwater environment represents a challenging and promising application scenario for sensor networks. Due to hard constraints imposed by acoustic communications and to high power consumption of acoustic modems, in underwater sensor networks (USN) energy saving becomes even more critical than in traditional sensor networks. In this paper the authors propose delay-tolerant data dolphin (DDD), an approach to apply delay-tolerant networking in the resource-constrained underwater environment. DDD e

Ocean EngineeringEngineering
11
Article|56 citations·2008
Bio-inspired multi-agent data harvesting in a proactive urban monitoring environment
Uichin Lee, Eugenio Magistretti, Mário Gerla, Paolo Bellavista, Píetro Lió, Kang‐Won Lee
SJR Q1Ad Hoc Networks
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|51 citations·2018
Optical-acoustic hybrid network toward real-time video streaming for mobile underwater sensors
Seongwon Han, Youngtae Noh, Uichin Lee, Mário Gerla
SJR Q1Ad Hoc Networks
Ocean EngineeringEngineering
13
Article|46 citations·2007
Time-critical underwater sensor diffusion with no proactive exchanges and negligible reactive floods
Uichin Lee, Jiejun Kong, Mário Gerla, Joon‐Sang Park, Eugenio Magistretti
SJR Q1Ad Hoc Networks
Ocean EngineeringEngineering
14
Article|45 citations·2020
Temporal association between objectively measured smartphone usage, sleep quality and physical activity among Chinese adolescents and young adults
Paul H. Lee, Andy C. Y. Tse, Cynthia Sau Ting Wu, Yim Wah Mak, Uichin Lee
SJR Q1Journal of Sleep Research

We studied the association between objectively measured smartphone usage and objectively measured sleep quality and physical activity for seven consecutive days among Hong Kong adolescents and young adults aged 11-25 years (n = 357, 67% female). We installed an app that tracked the subjects' smartphone usage and had them wear an ActiGraph GT3X accelerometer on their wrist to measure their sleep quality and physical activity level. Smartphone usage data were successfully obtained from 187 partici

Sociology and Political ScienceSocial Sciences
15
Article|42 citations·2013
M-FAMA: A multi-session MAC protocol for reliable underwater acoustic streams
Seongwon Han, Youngtae Noh, Uichin Lee, Mário Gerla

Mobile underwater networking is a developing technology for monitoring and exploring the Earth's oceans. For effective underwater exploration, multimedia communications such as sonar images and low resolution videos are becoming increasingly important. Unlike terrestrial RF communication, underwater networks rely on acoustic waves as a means of communication. Unfortunately, acoustic waves incur long propagation delays that typically lead to low throughput especially in protocols that require rec

Ocean EngineeringEngineering

Research Areas

Ocean EngineeringSociology and Political ScienceMolecular BiologyDevelopmental and Educational PsychologyApplied PsychologyMarketing

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