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System Theoretic Approach for Determining Causal Factors of Quality Loss in Complex System Design

机译:系统理论方法,用于确定复杂系统设计中质量损失因果区因素

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Identifying the factors that could lead to the loss of quality is difficult for large complex product systems. Traditional design methods such as Failure Modes and Effects Analysis (FMEA), Fault Tree Analysis (FTA), and Robust Design have been proven effective at identifying component failures, but are less effective for causes of quality loss that involve interactions between components, software flaws, or external noises. This research applied System Theoretic Process Analysis (STPA) to a case study at Cummins, Inc. The case study was a technology change to a subsystem in a new product development project. The intent of this case was to determine if STPA, developed for safety engineering and hazard analysis, would be effective in identifying causes of quality losses. The results of the case study were compared to the traditional design methods. STPA allowed design teams to identify more causal factors for quality losses than FMEA or FTA, especially those involving component interactions, software flaws, and external noises. STPA was also found to be complementary to Robust Design methods.
机译:识别可能导致质量损失的因素难以对大型复杂产品系统难以实现的。在识别组件故障时,已经有效地证明了传统的设计方法,如失败模式和效果分析(FMEA),故障树分析(FTA)和强大的设计,但对涉及组件之间的相互作用,软件缺陷的质量损失的原因,对涉及组件之间的相互作用的原因较小或外部噪音。本研究应用了系统理论过程分析(STPA)在Cummins,Inc。案例研究中的案例研究是在新产品开发项目中对子系统的技术变化。这种情况的目的是确定为安全工程和危害分析而开发的STPA是否有效地识别质量损失的原因。将案例研究的结果与传统的设计方法进行比较。 STPA允许设计团队来确定质量损失的更多因果因素,而不是FMEA或FTA,尤其是涉及组件相互作用,软件缺陷和外部噪声的因素。 STPA也被发现与强大的设计方法互补。

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