Safety evaluation for bridge crane based on FTA and AHP

Starting from the development status of the lifting machinery industry, this paper analyzes the data about safety accidents of bridge cranes, and identifies the assessment indicators affecting the safety performance of bridge cranes based on fault tree analysis (FTA), including fatigue factors, huma...

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Main Authors: Fei Shuai, Li Xiangdong, Fan Yali
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201820703014
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author Fei Shuai
Li Xiangdong
Fan Yali
author_facet Fei Shuai
Li Xiangdong
Fan Yali
author_sort Fei Shuai
collection DOAJ
description Starting from the development status of the lifting machinery industry, this paper analyzes the data about safety accidents of bridge cranes, and identifies the assessment indicators affecting the safety performance of bridge cranes based on fault tree analysis (FTA), including fatigue factors, human factors, environmental factors, and management factors. Then, the weights of safety evaluation indicators are determined based on analytic hierarchy process (AHP). Finally, the safety evaluation system is established and demonstrated with use case diagram and role flow chart.
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spelling doaj.art-285aa9f3fd2d4b0db3fd8613abda172d2022-12-21T22:24:54ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012070301410.1051/matecconf/201820703014matecconf_icmmpm2018_03014Safety evaluation for bridge crane based on FTA and AHPFei Shuai0Li Xiangdong1Fan Yali2Jiangsu Province Special Equipment Safety Supervision Inspection InstituteJiangsu Province Special Equipment Safety Supervision Inspection InstituteNanjing University of Science and TechnologyStarting from the development status of the lifting machinery industry, this paper analyzes the data about safety accidents of bridge cranes, and identifies the assessment indicators affecting the safety performance of bridge cranes based on fault tree analysis (FTA), including fatigue factors, human factors, environmental factors, and management factors. Then, the weights of safety evaluation indicators are determined based on analytic hierarchy process (AHP). Finally, the safety evaluation system is established and demonstrated with use case diagram and role flow chart.https://doi.org/10.1051/matecconf/201820703014
spellingShingle Fei Shuai
Li Xiangdong
Fan Yali
Safety evaluation for bridge crane based on FTA and AHP
MATEC Web of Conferences
title Safety evaluation for bridge crane based on FTA and AHP
title_full Safety evaluation for bridge crane based on FTA and AHP
title_fullStr Safety evaluation for bridge crane based on FTA and AHP
title_full_unstemmed Safety evaluation for bridge crane based on FTA and AHP
title_short Safety evaluation for bridge crane based on FTA and AHP
title_sort safety evaluation for bridge crane based on fta and ahp
url https://doi.org/10.1051/matecconf/201820703014
work_keys_str_mv AT feishuai safetyevaluationforbridgecranebasedonftaandahp
AT lixiangdong safetyevaluationforbridgecranebasedonftaandahp
AT fanyali safetyevaluationforbridgecranebasedonftaandahp