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Toward quantifying metrics for rail-system resilience: identification and analysis of performance weak resilience signals

机译:迈向量化铁路系统弹性的指标:性能弱的弹性信号的识别和分析

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This paper aims to enhance tangibility of the resilience engineering concept by facilitating understanding and operationalization of weak resilience signals (WRSs) in the rail sector. Within complex socio-technical systems, accidents can be seen as unwanted outcomes emerging from uncontrolled sources of entropy (functional resonance). Various theoretical models exist to determine the variability of system interactions, the resilience state and the organization's intrinsic abilities to reorganize and manage their functioning and adaptive capacity to cope with unexpected and unforeseen disruptions. However, operationalizing and measuring concrete and reliable manifestations of resilience and assessing their impact at a system level have proved to be a challenge. A multi-method, ethnographic observation and resilience questionnaire, were used to determine resilience baseline conditions at an operational rail traffic control post. This paper describes the development, implementation and initial validation of WRSs identified and modeled around a 'performance system boundary.' In addition, a WRS analysis function is introduced to interpret underlying factors of the performance WRSs and serves as a method to reveal potential sources of future resonance that could comprise system resilience. Results indicate that performance WRSs can successfully be implemented to accentuate relative deviations from resilience baseline conditions. A WRS analysis function can help to interpret these divergences and could be used to reveal (creeping) change processes and unnoticed initiating events that facilitate emergence that degrades rail-system resilience. Establishing relevant change signals in advance can contribute to anticipation and awareness, enhance organizational learning and stimulate resilient courses of action and adaptive behavior that ensures rail operation reliability.
机译:本文旨在通过促进铁路部门中弱弹性信号(WRS)的理解和操作,来增强弹性工程概念的切实性。在复杂的社会技术系统中,事故可以看作是不受控制的熵源(功能共振)产生的不良后果。存在各种理论模型来确定系统交互的可变性,弹性状态以及组织重组和管理其功能的内在能力以及应对意外和不可预见的中断的适应能力。然而,事实证明,操作和衡量弹性的具体而可靠的表现形式并评估其在系统级别的影响是一个挑战。使用多种方法,人种学观察和复原力问卷来确定运营铁路交通管制站的复原力基线条件。本文介绍了围绕“绩效系统边界”进行识别和建模的WRS的开发,实施和初始验证。此外,引入了WRS分析功能来解释性能WRS的潜在因素,并用作揭示可能包含系统弹性的未来潜在谐振源的方法。结果表明,性能WRS可以成功实施,以增强与弹性基准条件的相对偏差。 WRS分析功能可帮助解释这些差异,并可用于揭示(蠕变)变化过程和未注意到的引发事件,这些事件会促进铁路系统弹性的出现。提前建立相关的变化信号可以有助于人们的预期和认识,增强组织学习能力,并激发有弹性的行动路线和适应性行为,从而确保铁路运营的可靠性。

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