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Development of a Multi-Factorial Instrument for Accident Analysis Based on Systemic Methods

机译:基于系统方法的多功能事故分析仪的研制

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The present research is built on three major pillars, commencing by making some considerations on accident investigation methods and pointing out both defining aspects and differences between linear and non-linear analysis. The traditional linear focus on accident analysis describes accidents as a sequence of events, while the latest systemic models outline interdependencies between different factors and define the processes evolution related to a specific (normal) situation. Linear and non-linear accident analysis methods have specific limitations, so the second point of interest is mirrored by the aim to discover the drawbacks of systemic models which becomes a starting point for developing new directions to identify risks or data closer to the cause of incidents/accidents. Since communication represents a critical issue in the interaction of human factor and has been proved to be the answer of the problems made by possible breakdowns in different communication procedures, from this focus point, on the third pylon a new error-modeling instrument suitable for risk assessment/accident analysis will be elaborated.
机译:本研究基于三个主要支柱,首先对事故调查方法进行了一些考虑,并指出了线性分析和非线性分析之间的定义方面和差异。传统的线性关注于事故分析,将事故描述为一系列事件,而最新的系统模型则概述了不同因素之间的相互依存关系,并定义了与特定(正常)情况相关的过程演变。线性和非线性事故分析方法具有特定的局限性,因此第二个关注点就是旨在发现系统模型的弊端,从而成为开发新方向以识别更接近事故原因的风险或数据的起点/意外。由于沟通是人为因素相互作用中的一个关键问题,并且已被证明是解决不同沟通程序中可能发生故障的问题的答案,因此从这一重点出发,在第三塔上,一种适用于风险的新型错误建模工具将详细说明评估/事故分析。

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