Suk-Joon Moon
Yonsei University · Engineering
About the Lab
Professor Suk-Joon Moon's research lab specializes in dynamic systems and vibration control, with a strong focus on shipboard structural dynamics, shock mitigation, and precision equipment isolation. The lab investigates advanced passive and active vibration control technologies—such as mass-damper anti-rolling systems, hybrid mounts combining passive and active elements, and signal processing filters for wind turbines—to enhance the safety, performance, and reliability of marine and mechanical systems. Research also extends to multi-level analysis of human health outcomes, particularly depression in Korean populations, integrating individual and regional socioeconomic factors. The lab emphasizes experimental validation, accurate dynamic characterization of components, and practical implementation of control systems in real-world engineering applications.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Reduction of a ship's rolling is the most important performance requirement for improving the safety of the crew on board and preventing damage to cargos as well as improving the comfort of the ride. A mass driving anti-rolling system (MO-ARS) might be one candidate of several systems against the ship's rolling. In this paper, three types of MD-ARS, two passive and one active devices, are developed for small ships. After they are installed on the cabin of the small leisure boat, respectively, a
Background: This study is aimed to verify individual and regional-level factors affecting the depression of Koreans and to develop social programs for improving the depressive status. Methods: This study used individual-level variables from the Korean Community Health Survey (2018) and used the e-regional index of the Korean Statistical Information Service as the regional-level variable. A multi-level logistic regression was executed to identify individual and regional-level variables that were
An underwater shock test on the naval ship can be performed to investigate the overall shock performance for launched ships equipped with all of the equipment at sea. In general, in an underwater shock test, the input to the naval ship is the shock pressure generated by the explosive, and output is the structural responses of the ship, such as acceleration, velocity, displacement, etc. It is therefore very important to accurately measure the shock pressure level produced by the explosives. In th
Passive-type control devices such as resilient mounts and wire rope isolators are generally used for protecting the shipboard equipment from shock loading and for suppressing the mechanical vibration of the equipment in naval ships. To improve the performance of the control device, a new hybrid mount is under development in this study. This mount consists of a passive-type rubber element and an active-type piezo-stack element. It can be expected that the mount has enhanced performance of about 2
In variable-speed variable-pitch wind turbines, the conventional approach for controlling power-production operation relies on a generator-torque controller and a rotor-collective blade-pitch controller. Both controllers use the generator speed measurement as the sole feedback input. In order to mitigate unwanted excitation of the control system, many filters are adopted. In this study, the characteristics of some filters for signal processing are investigated based on frequency response functio
Research Areas
Dive deeper into Suk-Joon Moon's research on Nubint
Open this lab's papers in the app to read with AI, summarize, and cite in your writing.