基于全局系统模型的复杂系统简化风险分析方法

T. Kohda, K. Inoue
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引用次数: 0

摘要

事故序列条件是进行风险分析和安全措施设计的必要条件。故障树分析通常用于获取系统的故障情况。然而,依赖于系统分析人员的判断和经验的故障树可能会忽略严重的故障条件。此外,FTA没有明确地考虑事件序列。针对这些问题,本文提出了一种基于全局系统模型的复杂系统简化风险分析方法。其基本思想是,干扰路径及其有效安全动作的失效导致系统事故。在此基础上,该方法利用物理行为的键合图和计算机行为或人类行为的信息流建立了一个全局系统模型,推导出潜在的干扰路径,根据安全行动的有效性获得系统故障条件,推导和评估事故序列条件,并在必要时修改安全行动。该方法可以直接从全局系统模型中获得所有可能的事故序列条件,并显式地处理事件序列和安全动作的依赖关系。只要设计假设和安全措施评价正确,就可以保证事故序列条件的一致性。一个实例说明了所提方法的细节和优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simplified risk analysis method of complex systems using the global system model
For the risk analysis and the design of safety actions, accident sequence conditions are necessary. FTA (fault tree analysis) is usually used to obtain system failure conditions. However, a fault tree, which depends on the system analyst's judgment and experience, may omit serious failure conditions. Further, FTA does not consider event sequences explicitly. To solve these problems, this paper proposes a simplified risk analysis method of complex systems using the global system model. The basic idea is that a disturbance path combined with the failure of its effective safety actions causes a system accident. Based on this, the proposed method develops a global system model using bond graphs for physical behavior and information flow for computerized actions or human behaviors, derives potential disturbance paths, obtains system failure condition based on the effectiveness of safety actions, and derives and evaluates accident sequence conditions, and modifies safety actions if necessary. The proposed method can obtain all possible accident sequence conditions directly from the global system model and deal with event sequences and the dependency of safety actions explicitly. As long as the design assumptions and the evaluation of the safety actions are correct, the consistency of accident sequence conditions can be guaranteed. An illustrative example shows the details and merits of the proposed method.
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