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Dongjun Lee

Seoul National University · Engineering

About the Lab

Professor Dongjun Lee's research lab specializes in cooperative control, haptic teleoperation, and networked robotic systems, with a strong emphasis on passivity-based control, distributed coordination, and stability under communication delays. The lab develops advanced control frameworks for multi-agent systems—such as UAVs and mobile robots—enabling stable, safe, and intuitive human-robot interaction through force reflection and energy-shaping techniques. Core research directions include flocking and consensus control on dynamic graphs, passive modulation for set-position control, and bilateral teleoperation with time delays, all grounded in rigorous passivity and energy-shaping principles. The lab also focuses on practical implementation, often validating theoretical frameworks through simulations and semi-experimental setups involving real human operators and simulated or real robotic platforms.

bilateral teleoperationpassivity-based controlmulti-agent systemscooperative controlhaptic teleoperation

Research Overview

Papers
411
Total Citations
12,245
Papers (5y)
79
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
79total
2022
2023
2024
2025
2026
Citations per year (5y)
487total
20222023202420252026

Selected Papers

15
1
Article|272 citations·2007
Stable Flocking of Multiple Inertial Agents on Balanced Graphs
Dongjun Lee, Mark W. Spong
SJR Q1IEEE Transactions on Automatic Control

In this note, we consider the flocking of multiple agents which have significant inertias and evolve on a balanced information graph. Here, by flocking, we mean that all the agents move with a common velocity while keeping a certain desired internal group shape. We first show that flocking algorithms that neglect agents' inertial effect can cause unstable group behavior. To incorporate this inertial effect, we use the passive decomposition, which decomposes the closed-loop group dynamics into tw

Computer Networks and CommunicationsComputer Science
2
Article|214 citations·2010
Passive-Set-Position-Modulation Framework for Interactive Robotic Systems
Dongjun Lee, Huang Ke
SJR Q1IEEE Transactions on Robotics

In this paper, we propose a novel framework, passive set-position modulation (PSPM), which enables us to connect a (continuous-time) robot's position to a sequence of slowly updating/sparse (discrete-time) set-position signal via the simple (yet frequently used in practice) spring coupling with damping injection, while enforcing passivity of the closed-loop robotic system. The PSPM modulates the original set-position signal in such a way that the modulated signal is as close to the original sign

Mechanical EngineeringEngineering
3
Article|189 citations·2013
Semiautonomous Haptic Teleoperation Control Architecture of Multiple Unmanned Aerial Vehicles
Dongjun Lee, Antonio Franchi, Hyoung Il Son, Changsu Ha, HH Bülthoff, Paolo Robuffo Giordano
SJR Q1IEEE/ASME Transactions on Mechatronics

We propose a novel semiautonomous haptic teleoperation control architecture for multiple unmanned aerial vehicles (UAVs), consisting of three control layers: 1) UAV control layer, where each UAV is abstracted by, and is controlled to follow the trajectory of, its own kinematic Cartesian virtual point (VP); 2) VP control layer, which modulates each VP's motion according to the teleoperation commands and local artificial potentials (for VP-VP/VP-obstacle collision avoidance and VP-VP connectivity

Mechanical EngineeringEngineering
4
Article|165 citations·2006
Bilateral Teleoperation of Multiple Cooperative Robots over Delayed Communication Networks: Theory
Dongjun Lee, Mark W. Spong

We propose a control framework for the bilateral teleoperation between a single master robot and multiple cooperative slave robots with communication-delay in the master-slave communication channel. Using passive decomposition, we first decompose the dynamics of multiple slaves into two decoupled systems while preserving energetic passivity: the shape system describing cooperative grasping aspect, and the locked system representing overall behavior of the multiple slaves. Then, by locally contro

Mechanical EngineeringEngineering
5
Article|163 citations·2006
Agreement with non-uniform information delays
Dongjun Lee, Mark W. Spong

We propose a novel agreement framework for multiple (possibly heterogeneous) agents evolving on a directed information graph with non-uniform delays. Our proposed framework can ensure agreement of a certain scalar quantity among the agents, as long as 1) for each agent, we can design a local control s.t. its closed-loop transfer function has unit gain at dc and gain strictly less than unity elsewhere; 2) the information graph has a globally reachable node (i.e. there exists a path from it to eve

Computer Networks and CommunicationsComputer Science
6
Article|118 citations·2014
Passivity-based adaptive backstepping control of quadrotor-type UAVs
Changsu Ha, Zhiyuan Zuo, Francis B. Choi, Dongjun Lee
SJR Q1Robotics and Autonomous Systems
Mechanical EngineeringEngineering
7
Article|110 citations·2006
Bilateral teleoperation of a wheeled mobile robot over delayed communication network
Dongjun Lee, Oscar Martinez-Palafox, Mark W. Spong

We consider bilateral teleoperation of a wheeled mobile robot over communication channels with constant delays. Our main objective is to enable humans to control the mobile robot much as they drive a car: i.e. by operating a master haptic joystick, they can control the linear velocity and heading angle of the mobile robot, much like they do so with the gas pedal and steering wheel. Passivity of the closed-loop system is also enforced so that, even with communication delays, humans can stably and

Mechanical EngineeringEngineering
8
Article|107 citations·2005
Passive bilateral control and tool dynamics rendering for nonlinear mechanical teleoperators
Dongjun Lee, Perry Y. Li
SJR Q1IEEE Transactions on Robotics

We propose a passive bilateral teleoperation control law for a pair of n-degree-of-freedom (DOF) nonlinear robotic systems. The control law ensures energetic passivity of the closed-loop teleoperator with power scaling, coordinates motions of the master and slave robots, and installs useful task-specific dynamics for inertia scaling, motion guidance, and obstacle avoidance. Consequently, the closed-loop teleoperator behaves like a common passive mechanical tool. A key innovation is the passive d

Mechanical EngineeringEngineering
9
Article|98 citations·2011
Pulsed light sintering characteristics of inkjet-printed nanosilver films on a polymer substrate
Dong Jun Lee, Sung Hyeon Park, Shin Jang, Hak‐Sung Kim, Je Hoon Oh, Yong Won Song
SJR Q2Journal of Micromechanics and Microengineering

In this work, the microstructures of inkjet-printed nanosilver films sintered by intense pulsed light (IPL) were systematically analyzed and correlated with the electrical properties. Nanosilver films with various dimensions were inkjet-printed and sintered at different light intensities to investigate the effects of the film dimension and light intensity on the sintering characteristics. For comparison purposes, the same inkjet-printed films were also thermally sintered at 210 °C for 1 h. Conse

Electrical and Electronic EngineeringEngineering
10
Article|89 citations·2003
Passive bilateral feedforward control of linear dynamically similar teleoperated manipulators
Dongjun Lee, Perry Y. Li
IEEE Transactions on Robotics and Automation

Presents a passive bilateral feedforward control scheme for linear dynamically similar (LDS) teleoperated manipulators with kinematic scaling and power scaling. The proposed control law renders the teleoperator as a passive rigid mechanical tool with programmable apparent inertia to the human operator and the work environment by utilizing bilateral force feedforward and kinematic feedback control. The passivity of the closed-loop system is robust to force measurement inaccuracies and model uncer

Mechanical EngineeringEngineering
11
Article|81 citations·2009
A One-Pot Approach to Neoglycopeptides using Orthogonal Native Chemical Ligation and Click Chemistry
Dong Jun Lee, Kalyaneswar Mandal, Paul W. R. Harris, Margaret A. Brimble, Stephen B. H. Kent
SJR Q1Organic Letters

The powerful combination of native chemical ligation and click chemistry has been used to affect a one-pot synthesis of neoglycopeptides from propargyl-containing peptides using GalNAc-N(3) as the glycan component. A versatile chemical toolkit for the fully convergent synthesis of neoglycoproteins using click chemistry, native chemical ligation, and kinetically controlled ligation is thus demonstrated.

Organic ChemistryChemistry
12
Article|77 citations·2021
Visual-inertial hand motion tracking with robustness against occlusion, interference, and contact
Yongseok Lee, Wonkyung Do, Hanbyeol Yoon, Jinuk Heo, WonHa Lee, Dongjun Lee
SJR Q1Science Robotics

State-of-the-art technologies for hand (and finger) motion tracking do not always provide accurate and robust tracking. For example, severe occlusions can affect tracking with vision sensors, electromagnetic interference affects tracking with inertial measurement units (IMUs) and compasses, and ambiguous mechanical contact can affect tracking with soft sensors (i.e., the inability to distinguish motion-induced deformation). Here, we report a visual-inertial skeleton tracking (VIST) framework tha

Human-Computer InteractionComputer Science
13
Article|66 citations·2011
Haptic teleoperation of multiple unmanned aerial vehicles over the internet
Dongjun Lee, Antonio Franchi, Paolo Robuffo Giordano, Hyoung Il Son, HH Bülthoff

We propose a novel haptic teleoperation control framework for multiple unmanned aerial vehicles (UAVs) over the Internet, consisting of the three control layers: 1) UAV control layer, where each UAV is abstracted by, and is controlled to follow the trajectory of, its own kinematic virtual point (VP); 2) VP control layer, which modulates each VP's motion according to the teleoperation commands and local artificial potentials (for inter-VP/VP-obstacle collision avoidance and inter-VP connectivity

Mechanical EngineeringEngineering
14
Article|63 citations·2017
Multi-rotor drone tutorial: systems, mechanics, control and state estimation
Hyunsoo Yang, Yongseok Lee, Sang-Yun Jeon, Dongjun Lee
SJR Q1Intelligent Service Robotics
Aerospace EngineeringEngineering
15
Article|62 citations·2015
Mechanics, control and internal dynamics of quadrotor tool operation
Hai-Nguyen Nguyen, Changsu Ha, Dongjun Lee
SJR Q1Automatica
Control and Systems EngineeringEngineering

Research Areas

Mechanical EngineeringControl and Systems EngineeringComputer Networks and CommunicationsElectrical and Electronic EngineeringMaterials ChemistryBiomedical Engineering

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