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題名:航空公司飛航運作系統安全分析模式之建立
作者:葉文健
作者(外文):Wen-Chien Yeh
校院名稱:國立交通大學
系所名稱:交通運輸研究所
指導教授:汪進財
學位類別:博士
出版日期:2004
主題關鍵詞:航空公司飛航運作安全管理系統安全安全分析AirlineFlight OperationSafety ManagementSystem SafetySafety Analysis
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航空公司位於飛航安全的第一線,飛航安全亦是航空業經營成功與否的重要關鍵,而飛安管理的主要核心便是預防事件的發生。然而,航空運輸為一複雜系統,其涉及個人、機器、設備、組織與環境等諸多因素,而且其交互間之影響關係相當密切,欲確切發掘問題之核心,以杜絕事件之發生,實非易事。因此,必須建立完善之飛安風險分析系統,協助飛安管理者系統性地深入剖析複雜之飛安體系,探索所有潛在飛安危險因子,發掘一切導致問題發生之可能環節,以改善根本缺失並提升飛安系統運作之績效。基於上述原因,本研究由失事肇因、系統組成、事件形成與系統運作等觀點之釐清,以及飛安管理理念與機制之探討著手,掌握飛航安全系統之內涵與本質,進而構建完整性與層級性的航空公司飛安系統架構。本研究以結構化方程模式作為方法論之基礎,為能確實反應飛安系統之架構且有效發掘系統問題之根本,進而研擬模式構建、系統解析與問題改善之方式。接著,依據本研究所研提之模式構建方式,一一探討各系統層級之飛安影響因素,研擬對應之績效品質評量指標,以確立飛安系統之衡量模式;透過系統各層級與各活動關係之釐清,系統性串連各飛安系統環節,以確立飛安系統之結構模式。最後,基於完整之系統模式架構與給定之假設性線性參數,進一步透過數值案例,應用與呈現本研究所研提之系統解析與問題改善方式;結果顯示,本研究所研提之系統安全分析模式確能運作,而且可作為診斷航空公司安全品質與健康之有效工具。
Airlines are on the forefront to deal with the aviation safety which is crucial for success. The core of the aviation safety management is to prevent the occurrence of accidents. However, air transportation is a complex system involving closely related factors such as humans, machines, facilities, organizations and environments, and it is hard to discover the causes to prevent accidents from the system. Therefore, it is necessary to develop a system safety analysis model to assist the safety managers dissecting and analyzing the system, exploring the hazard factors and discovering the critical problems with a systemically approach. For this reason, this study begins with clarifying the characteristics of aviation safety system through different viewpoints— accident causes, system components, accident formations and system operations; and then, exploring the concepts and essences of safety management. Thus, a comprehensive and hierarchical framework of airline safety system could be constructed. In order to clearly represent the framework and effectively discover the root cause of the system, the methodology of Structural Equation Model (SEM) is adopted, and the processes of model construction, safety analysis and problem improvement are brought up. According to the proposed model construction process, the study follows with specifying the frameworks of measurement model and structure model of the system. The effecting factors of each system level are explored one by one, and their corresponding indicators and measurements are drawn up respectively. The relationship between levels and activities of the system are identified, and all the system components can be methodically connected. In the final, basis on the constructed model frameworks and given linear parameters, a numerical case is further illustrated by applying the proposed processes of safety analysis and problem improvement. The demonstration reveals that the proposed system safety analysis model works well and can be a useful tool for airlines to diagnose the quality and health of their safety systems.
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