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Change-Oriented Risk Management in Civil Aviation Operation: A Case Study in China Air Navigation Service Provider

机译:民航业务的改变风险管理:中国航空航行服务提供商的案例研究

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Change-oriented risk management is the key content of civil aviation safety management. Hazard identification is considered as one of the most difficult and flexible parts. To address the risk management due to changes introduced in existing systems, in this paper, a system change-oriented hazard identification (SCOHI) model is firstly proposed. The SCOHI model identifies hazards by integrating “5M” (mission-man-machine-management-medium), and hazard and operability (HAZOP) techniques specify changes in a system and the associated impacts on the surrounding environment. Compared with the traditional brainstorm process, the SCOHI model provides an explicit way for hazard identification in a dynamic environment. Then, taking an air navigation service provider (ANSP) in Northwest China as an example, a case study of system changes from nonradar control operations to radar control operations is analyzed. The effectiveness and applicability of the SCOHI model are tested with a risk assessment. The results from the preliminary evaluation show that the four key system change-oriented hazards are air traffic control (ATC) skills, staff capacity, control procedures, and airspace structure. In addition, the “Man” category accounts for around 55% of the total risk, ranking number 1, followed by “Management,” “Medium,” and “Machine” categories. Finally, a sound risk control strategy is provided to the ANSP to help in controlling the risk and maintaining an acceptable level of safety during system changes.
机译:导向的风险管理是民用航空安全管理的关键内容。危险识别被认为是最困难和灵活的部分之一。为了解决由于现有系统中引入的变化而导致的风险管理,本文首先提出了一种以系统改变为导向的危害识别(SCOHI)模型。 SCOHI模型通过集成“5M”(任务 - 人机管理 - 媒体)来识别危险,以及危险和可操作性(HAZOP)技术指定系统的变化以及对周围环境的相关影响。与传统的头脑风暴过程相比,SCOHI模型为动态环境中的危险识别提供了明确的方式。然后,在中国西北地区拍摄空中航行服务提供商(ANSP)作为一个例子,分析了对来自非radar控制操作到雷达控制操作的系统变化的案例研究。 SCOHI模型的有效性和适用性进行了风险评估。初步评价结果表明,面向四个关键系统改变的危险是空中交通管制(ATC)技能,员工容量,控制程序和空域结构。此外,“MAN”类别占总风险的55%,排名1,然后是“管理”,“中等”和“机器”类别。最后,向ANSP提供了一种声音风险控制策略,以帮助控制系统变化期间的风险并保持可接受的安全水平。

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