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Chan Lee

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5 papers
2 author rows

Possible papers

5

AAAI Conference 2025 Conference Paper

Multispectral Pedestrian Detection with Sparsely Annotated Label

  • Chan Lee
  • Seungho Shin
  • Gyeong-Moon Park
  • Jung Uk Kim

Although existing Sparsely Annotated Object Detection (SAOD) approches have made progress in handling sparsely annotated environments in multispectral domain, where only some pedestrians are annotated, they still have the following limitations: (i) they lack considerations for improving the quality of pseudo-labels for missing annotations, and (ii) they rely on fixed ground truth annotations, which leads to learning only a limited range of pedestrian visual appearances in the multispectral domain. To address these issues, we propose a novel framework called Sparsely Annotated Multispectral Pedestrian Detection (SAMPD). For limitation (i), we introduce Multispectral Pedestrian-aware Adaptive Weight (MPAW) and Positive Pseudo-label Enhancement (PPE) module. Utilizing multispectral knowledge, these modules ensure the generation of high-quality pseudo-labels and enable effective learning by increasing weights for high-quality pseudo-labels based on modality characteristics. To address limitation (ii), we propose an Adaptive Pedestrian Retrieval Augmentation (APRA) module, which adaptively incorporates pedestrian patches from ground-truth and dynamically integrates high-quality pseudo-labels with the ground-truth, facilitating a more diverse learning pool of pedestrians. Extensive experimental results demonstrate that our SAMPD significantly enhances performance in sparsely annotated environments within the multispectral domain.

IROS Conference 2021 Conference Paper

Development of Rotating Workspace Ground Contact Force Observer for Legged Robot

  • Woosong Kang
  • Chan Lee
  • Sehoon Oh

Legged robots have opened their way to more stable and practical mobile robot applications. However, their locomotion strategies are limited to similar patterns, and dynamic running at high speed still is not successfully realized. One of the key technology required for the realization of the dynamic running of the legged robot is to estimate the ground contact force and control it in real-time. This paper tackles this problem in two ways: the derivation of the observer algorithm based on the leg dynamics and the simplification of the observer design using the Rotating Workspace motion description. To this end, two novel coordinate systems are introduced to describe the joint space motion and the workspace differently, and the ground contact force observer is designed in the novel coordinate systems. The performance of the proposed observer is verified through experimental results.

IROS Conference 2018 Conference Paper

Dynamic Dumbbell - Novel Muscle Training Robot with Programmable Exercise Load

  • Chan Lee
  • Sehoon Oh

In this paper, Dynamic Dumbbell, a novel robotic device for advanced muscular exercise of upper limb is presented. The type of exercise load is classified and designed in terms of mechanical engineering to be implemented in Dynamic Dumbbell. The exercise load model, which is named as programmable exercise load, is realized by Dynamic Dumbbell. To generate the programmable exercise load, two of compact Planetary-geared Elastic Actuator, which is a rotary Series Elastic Actuator (SEA), are utilized in Dynamic Dumbbell. The SEAs are controlled using high performance force control algorithm. Experimental results verifies the effectiveness of the proposed Dynamic Dumbbell and programmable exercise load.

ICRA Conference 2017 Conference Paper

Interactive force control of an elastically actuated bi-articular two-link manipulator

  • Chan Lee
  • Sehoon Oh

In this paper, elastically actuated bi-articular manipulator is developed using a novel compact planetary geared elastic actuator. The newly developed SEA, which is compact and has little backlash, can achieve high force control performance. The configuration of the developed manipulator is designed based on the bi-articular muscle coordination, which can simplify the kinematics of the manipulator. The SEA and bi-articular actuator configuration of the developed manipulator can achieve high performance force control in the workspace, and thus can be utilized for various applications related to the service robot. The mechanism and control algorithm of the novel SEA, and the novel kinematics and dynamics of the developed manipulator are introduced in this paper. Impedance controller is designed based on the kinematics and dynamics of the manipulator and its performance is verified through experiments.

ICRA Conference 2017 Conference Paper

Wire-tension control using Compact Planetary geared Elastic Actuator

  • Jihoo Kwak
  • Chan Lee
  • Junyoung Kim 0003
  • Shinyoon Kim
  • Sehoon Oh

The tension control of wires can benefit from Series Elastic Actuator (SEA), which is a potential emerging actuator system. In this paper, it is verified that the tension of wires can be successfully controlled by a novel SEA, called Compact Planetary-geared Elastic Actuator (cPEA), which incorporates a planetary gear and a spring to achieve precise force sensing and compactness at the same time. The design of model-based tension control and impedance compensator using cPEA is introduced, and the experiments that show the effectiveness of the proposed control are provided.

v2026.09.13