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소형 모사 장비의 데이터를 이용한 선박용 전기 추진 모터의 고장 유형별 진동 신호의 분류Classification of Vibration Signals for Different Types of Failures in Electric Propulsion Motors for Ships Using Data from Small-Scale Apparatus

Other Titles
Classification of Vibration Signals for Different Types of Failures in Electric Propulsion Motors for Ships Using Data from Small-Scale Apparatus
Authors
유승열장준교전민성이재철강동훈이순섭
Issue Date
Dec-2023
Publisher
대한조선학회
Keywords
Electric propulsion ship(전기추진선박); Vibration failure(진동 고장); Unbalance(불평형); Misalignment(축정렬 불량); Bearing failure(베어링 고장); Classification(계열화)
Citation
대한조선학회 논문집, v.60, no.6, pp 441 - 449
Pages
9
Indexed
KCI
Journal Title
대한조선학회 논문집
Volume
60
Number
6
Start Page
441
End Page
449
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/69241
DOI
10.3744/SNAK.2023.60.6.441
ISSN
1225-1143
2287-7355
Abstract
With the enforcement of environmental regulations by the International Maritime Organization, the market for eco-friendly ships is expanding, and ships using electric propulsion devices are emerging as a promising solution. Many studies have been conducted to predict the failure of ships, but most of them are mainly research on the main diesel engine of ships. As the ship's propulsion method changes, new data is needed to predict the failure of electric propulsion ships. In this paper aims to analyze the failure characteristics of the electric propulsion system in consideration of the difference in the type of failure between the internal diesel engine and the electric propulsion system. The ship's propulsion unit assumed a DC motor and a signal pattern for normal conditions and general failure modes, but the failure record of the electric propulsion device operated on the actual ship was not available, so it generated a failure signal for small electric motor equipment to identify the failure signal. Assuming unbalance, misalignment, and bearing failure, which are the primary failure modes of the ship's electric motor, a failure signal was generated using a "rotator vibration data generator," and the frequency band, size, and phase difference of the measured vibration signal were analyzed to analyze the characteristics of each failure condition. Finally, the characteristics of each failure condition were identified so that the signals according to the failure type could be classified.
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해양과학대학 > 조선해양공학과 > Journal Articles
학과간협동과정 > 해양시스템공학과 > Journal Articles

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Lee, Soon Sup
해양과학대학 (조선해양공학과)
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