주성분 분석을 통한 선박 기관 상태의 차수 축소 모델링

The present study concerns reduced order modeling of a marine diesel engine, which can be used for outlier detection in status monitoring and carbon intensity index calculation. Principal Component Analysis (PCA) is introduced for the reduced order modeling, focusing on the feasibility of detecting...

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Published in大韓造船學會 論文集 Vol. 61; no. 1; pp. 8 - 18
Main Authors 이승범(Seungbeom Lee), 서정화(Jeonghwa Seo), 김동환(Dong-Hwan Kim), 한상민(Sangmin Han), 김관우(Kwanwoo Kim), 정성욱(Sungwook Chung), 유병우(Byeongwoo Yoo)
Format Journal Article
LanguageKorean
Published 대한조선학회 2024
Subjects
Online AccessGet full text
ISSN1225-1143
2287-7355
DOI10.3744/SNAK.2024.61.1.8

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Abstract The present study concerns reduced order modeling of a marine diesel engine, which can be used for outlier detection in status monitoring and carbon intensity index calculation. Principal Component Analysis (PCA) is introduced for the reduced order modeling, focusing on the feasibility of detecting and treating nonlinear variables. By cross-correlation, it is found that there are seven non-linear data channels among 23 data channels, i.e., fuel mode, exhaust gas temperature after the turbocharger, and cylinder coolant temperatures. The dataset is handled so that the mean is located at the nominal continuous rating. Polynomial presentation of the dataset is also applied to reflect the linearity between the engine speed and other channels. The first principal mode shows strong effects of linearity of the most data channels to show the linearity of the system. The non-linear variables are effectively explained by other modes. second mode concerns the temperature of the cylinder cooling water, which shows small correlation with other variables. The third and fourth modes correlates the fuel mode and turbocharger exhaust gas temperature, which have inferior linearity to other channels. PCA is proven to be applicable to data given in binary type of fuel mode selection, as well as numerical type data.
AbstractList The present study concerns reduced order modeling of a marine diesel engine, which can be used for outlier detection in status monitoring and carbon intensity index calculation. Principal Component Analysis (PCA) is introduced for the reduced order modeling, focusing on the feasibility of detecting and treating nonlinear variables. By cross-correlation, it is found that there are seven non-linear data channels among 23 data channels, i.e., fuel mode, exhaust gas temperature after the turbocharger, and cylinder coolant temperatures. The dataset is handled so that the mean is located at the nominal continuous rating. Polynomial presentation of the dataset is also applied to reflect the linearity between the engine speed and other channels. The first principal mode shows strong effects of linearity of the most data channels to show the linearity of the system. The non-linear variables are effectively explained by other modes. second mode concerns the temperature of the cylinder cooling water, which shows small correlation with other variables. The third and fourth modes correlates the fuel mode and turbocharger exhaust gas temperature, which have inferior linearity to other channels. PCA is proven to be applicable to data given in binary type of fuel mode selection, as well as numerical type data. KCI Citation Count: 0
The present study concerns reduced order modeling of a marine diesel engine, which can be used for outlier detection in status monitoring and carbon intensity index calculation. Principal Component Analysis (PCA) is introduced for the reduced order modeling, focusing on the feasibility of detecting and treating nonlinear variables. By cross-correlation, it is found that there are seven non-linear data channels among 23 data channels, i.e., fuel mode, exhaust gas temperature after the turbocharger, and cylinder coolant temperatures. The dataset is handled so that the mean is located at the nominal continuous rating. Polynomial presentation of the dataset is also applied to reflect the linearity between the engine speed and other channels. The first principal mode shows strong effects of linearity of the most data channels to show the linearity of the system. The non-linear variables are effectively explained by other modes. second mode concerns the temperature of the cylinder cooling water, which shows small correlation with other variables. The third and fourth modes correlates the fuel mode and turbocharger exhaust gas temperature, which have inferior linearity to other channels. PCA is proven to be applicable to data given in binary type of fuel mode selection, as well as numerical type data.
Author 이승범(Seungbeom Lee)
유병우(Byeongwoo Yoo)
김관우(Kwanwoo Kim)
서정화(Jeonghwa Seo)
정성욱(Sungwook Chung)
김동환(Dong-Hwan Kim)
한상민(Sangmin Han)
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DocumentTitleAlternate Reduced Order Modeling of Marine Engine Status by Principal Component Analysis
DocumentTitle_FL Reduced Order Modeling of Marine Engine Status by Principal Component Analysis
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Keywords Singular value decomposition(특이값 분해)
Principal component analysis(주성분 분석)
Marine engine(선박 기관)
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Title 주성분 분석을 통한 선박 기관 상태의 차수 축소 모델링
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