Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component
碩士 === 國立臺灣科技大學 === 營建工程系 === 95 === This research develope a novel model, called the Poisson deterioration model, for the deterioration of the components in the hydraulic gates of the Shih-men dam. A real-time Bayesian algorithm, called the particle filter algorithm, is proposed is to estimate the...
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ndltd-TW-095NTUS55120632019-05-15T19:48:56Z http://ndltd.ncl.edu.tw/handle/z7kjjn Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component 基於水工元件的檢查資料估算水工閘門的生命週期並即時更新可靠度 Hung-Bin Chen 陳宏彬 碩士 國立臺灣科技大學 營建工程系 95 This research develope a novel model, called the Poisson deterioration model, for the deterioration of the components in the hydraulic gates of the Shih-men dam. A real-time Bayesian algorithm, called the particle filter algorithm, is proposed is to estimate the unknown parameters and obtain the real-time failure probability, failure rate, and life-time estimates. The fault-tree model is then employed to estimate the real-time failure probability, failure rate, and life-time of the entire system. In order to verify the proposed model and algorithm, several numerical examples are taken to demonstrate their consistency. Finally, real inspection data from the hydraulic gates in the Shih-Men dam is analyzed to estimate real-time component and system failure probability, failure rate, and life-time. Jian-Ye Ching 卿建業 2007 學位論文 ; thesis 99 zh-TW |
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碩士 === 國立臺灣科技大學 === 營建工程系 === 95 === This research develope a novel model, called the Poisson deterioration model, for the deterioration of the components in the hydraulic gates of the Shih-men dam. A real-time Bayesian algorithm, called the particle filter algorithm, is proposed is to estimate the unknown parameters and obtain the real-time failure probability, failure rate, and life-time estimates. The fault-tree model is then employed to estimate the real-time failure probability, failure rate, and life-time of the entire system. In order to verify the proposed model and algorithm, several numerical examples are taken to demonstrate their consistency. Finally, real inspection data from the hydraulic gates in the Shih-Men dam is analyzed to estimate real-time component and system failure probability, failure rate, and life-time.
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Jian-Ye Ching |
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Jian-Ye Ching Hung-Bin Chen 陳宏彬 |
author |
Hung-Bin Chen 陳宏彬 |
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Hung-Bin Chen 陳宏彬 Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component |
author_sort |
Hung-Bin Chen |
title |
Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component |
title_short |
Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component |
title_full |
Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component |
title_fullStr |
Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component |
title_full_unstemmed |
Updating Real-Time Reliability and Life-Cycle Estimates of Water Gate Based on Qualitative Inspection Data of Water Gate Component |
title_sort |
updating real-time reliability and life-cycle estimates of water gate based on qualitative inspection data of water gate component |
publishDate |
2007 |
url |
http://ndltd.ncl.edu.tw/handle/z7kjjn |
work_keys_str_mv |
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1719095666028838912 |