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Young-Tae Noh

Hanyang University · Engineering

About the Lab

Professor Young-Tae Noh's research lab specializes in underwater mobile sensor networks, focusing on innovative routing protocols and communication strategies for 4D (space and time) ocean monitoring. The lab addresses critical challenges such as void recovery in 3D underwater environments, energy-efficient anycast routing, and delay-aware transmission scheduling to enhance reliability and throughput in acoustic-based underwater networks. Their work also extends to mobile health applications, leveraging smartphone sensors for real-time mental health assessment using behavioral patterns. The lab integrates interdisciplinary approaches combining underwater acoustics, mobile networking, and pervasive sensing for real-world deployment.

underwater sensor networksanycast routingacoustic communication4D monitoringmobile health sensing

Research Overview

Papers
92
Total Citations
2,134
Papers (5y)
33
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
33total
2022
2023
2024
2025
2026
Citations per year (5y)
210total
20222023202420252026

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|109 citations·2020
STDD: Short-Term Depression Detection with Passive Sensing
Nematjon Narziev, Hwarang Goh, Kobiljon Toshnazarov, Seung Ah Lee, Kyong‐Mee Chung, Youngtae Noh
SJR Q1SensorsOA

It has recently been reported that identifying the depression severity of a person requires involvement of mental health professionals who use traditional methods like interviews and self-reports, which results in spending time and money. In this work we made solid contributions on short-term depression detection using every-day mobile devices. To improve the accuracy of depression detection, we extracted five factors influencing depression (symptom clusters) from the DSM-5 (Diagnostic and Stati

Applied PsychologyPsychology
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|93 citations·2019
An Overview of Next-Generation Underwater Target Detection and Tracking: An Integrated Underwater Architecture
Huma Ghafoor, Youngtae Noh
SJR Q1IEEE AccessOA

Military forces of every country are trying their best to protect their motherland from the attackers. With advancement in marine technology, it has become critical to detect and track the target by obtaining active measurements before it is close enough to attack. The utilization of unmanned underwater vehicles for target tracking behavior is gaining great attention due to continuous advancement of underwater vehicular technology. Nevertheless, safe and stable communications issues among differ

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|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
9
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
10
Article|40 citations·2016
Infrastructure-Free Collaborative Indoor Positioning Scheme for Time-Critical Team Operations
Youngtae Noh, Hirozumi Yamaguchi, Uichin Lee
SJR Q1IEEE Transactions on Systems Man and Cybernetics Systems

Indoor localization is the key infrastructure for indoor location-aware applications. In this paper, we consider an emergency scenario, where a team of soldiers or first responders perform time-critical missions in a large and complex building. In particular, we consider the case where infrastructure-based localization is not feasible for various reasons such as installation/management costs, a power outage, and terrorist attacks. We design a novel algorithm called the collaborative indoor posit

Electrical and Electronic EngineeringEngineering
11
Article|34 citations·2015
Software-defined underwater acoustic networking platform and its applications
Dustin Torres, Jonathan Friedman, Thomas Schmid, Mani Srivastava, Youngtae Noh, Mário Gerla
SJR Q1Ad Hoc Networks
Ocean EngineeringEngineering
12
Article|31 citations·2013
CLIPS: Infrastructure-free collaborative indoor positioning scheme for time-critical team operations
Youngtae Noh, Hirozumi Yamaguchi, U. Lee, P. Vij, J. Joy, Mário Gerla

Indoor localization has attracted much attention recently due to its potential for realizing indoor location-aware application services. This paper considers a time-critical scenario with a team of soldiers or first responders conducting emergency mission operations in a large building in which infrastructure-based localization is not feasible (e.g., due to management/installation costs, power outage, terrorist attacks). To this end, we design and implement a collaborative indoor positioning sch

Electrical and Electronic EngineeringEngineering
13
Article|28 citations·2018
Smombie Guardian: We watch for potential obstacles while you are walking and conducting smartphone activities
Dong-Hee Kim, Kyungsik Han, Jeong Seop Sim, Youngtae Noh
SJR Q1PLoS ONEOA

With the growing dependence on smartphones for everyday activities, a large number of pedestrians nowadays are constantly fixated on their smartphone screens, and hence are susceptible to walking off pavements or colliding with other pedestrians. Reduced attention and situational awareness can render smartphone-occupied users, or smombies, oblivious to potential risks when using their smartphones while walking or driving. In this paper, we introduce a smartphone application, called Smombie Guard

Computer Vision and Pattern RecognitionComputer Science
14
Article|27 citations·2023
MAC: multimodal, attention-based cybersickness prediction modeling in virtual reality
Dayoung Jeong, Seungwon Paik, Youngtae Noh, Kyungsik Han
SJR Q1Virtual Reality
Computer Vision and Pattern RecognitionComputer Science
15
Article|15 citations·2014
Survey on MAC protocols in Underwater Acoustic Sensor Networks
Youngtae Noh, Seokjoo Shin

With the advances in technology, Underwater Acoustic Sensor Networks (UW-ASNs) will make it possible to explore and observe the ocean, which covers two-thirds of the Earth's surface. Unlike terrestrial sensor networks, UW-ASNs use acoustic links to explore natural undersea resources and gather scientific data in collaborative monitoring missions. By using the acoustic wave as a means of communication, UW-ASNs are inherently confronted with long and variable propagation delay and high transmissio

Ocean EngineeringEngineering

Research Areas

Ocean EngineeringComputer Networks and CommunicationsElectrical and Electronic EngineeringApplied PsychologyInformation Systems and ManagementComputer Vision and Pattern Recognition

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