Accidents in Engineering and Socio-technical Systems: The Science and Recent Advances

Z. I. Awal, M. Seraj, K. Hasegawa
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Abstract

Since the invention of the steam engine, many engineering innovations have propelled the human civilization forward and the society has changed dramatically. At the same time, accidents of various kinds (e.g. car, rail, aircraft, ships, industrial, etc.) have never stopped taking place. Hence, for any engineering and socio-technical system, safety has become one of the most important concerns in modern society. In order to understand the science of accidents, some notable accident theories and models were reviewed in this paper and their relative merits and demerits were discussed as well. The study finds that accident models and theories are diversified and different from each other. Therefore, the science behind accident cannot be unified into a single discipline. Also, changes in human civilization over the years have given birth to new modes of accidents (such as automobile, aircraft, spacecraft and etc.). This study, thus, searches the unified science of accidents and therefore, discusses the newly developed accident analysis technique called the Logic Programming Technique (LPT). It is expected that this new domain of safety engineering may contribute to achieving safety in the future automobile industry.
工程与社会技术系统中的事故:科学与最新进展
自蒸汽机发明以来,许多工程创新推动了人类文明的进步,社会发生了巨大的变化。与此同时,各种各样的事故(如汽车、铁路、飞机、船舶、工业等)从未停止发生。因此,对于任何工程和社会技术系统,安全已成为现代社会最重要的问题之一。为了更好地理解事故科学,本文对一些著名的事故理论和模型进行了综述,并对它们的优缺点进行了讨论。研究发现,事故模型和理论多种多样,各不相同。因此,事故背后的科学不能统一为一门学科。此外,多年来人类文明的变化也催生了新的事故方式(如汽车、飞机、航天器等)。因此,本研究寻求事故的统一科学,并讨论了新发展的事故分析技术,即逻辑规划技术(LPT)。预计这一新的安全工程领域将有助于实现未来汽车工业的安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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