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Fuzzy Analytic Hierarchy Process for Risk Assessment to General-assembling of Satellite

机译:卫星总装风险评估的模糊层次分析法

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With a fuzzy analytic hierarchy process, the hierarchy of risk factors in satellite general-assembling process is established, based on which, the weights of various risk factors are determined one by one. Furthermore, the risk factors are quantitatively analyzed, and the comprehensive risk assessment model is established in the end. Taking a satellite model as an example, the risks in the satellite general-assembling process are assessed comprehensively, and the risk levels are quantitatively measured. The factors are sorted according to their impact capabilities to the overall risk level, and the key points of risk control for satellite general-assembling process is clarified. Results obtained from the analysis to risk sub-factors suggested that experience and techniques, narrow space and production rhythm are more detrimental to process risk than any other sub-factors. The results also show that the risk could be mitigated, provided that the effectiveness of engineering measures against deficiencies in the most influential (sub-)factors is maintained. The rationality and feasibility of the proposed method model is proved by the engineering application, which provide the effective technical support for the risk control in satellite general-assembling process.
机译:通过模糊层次分析法,建立了卫星总装过程中危险因素的层次结构,在此基础上,确定了各个危险因素的权重。此外,对风险因素进行了定量分析,最后建立了综合风险评估模型。以卫星模型为例,对卫星总装过程中的风险进行了综合评估,并对风险水平进行了定量测量。根据这些因素对总体风险水平的影响能力对这些因素进行分类,并阐明了卫星总装过程的风险控制要点。通过对风险子因素的分析得出的结果表明,经验和技术,狭窄的空间和生产节奏比其他任何子因素对过程风险的危害更大。结果还表明,只要保持针对最有影响力的(子)因素的缺陷的工程措施的有效性,就可以减轻风险。工程应用证明了所提方法模型的合理性和可行性,为卫星总装过程中的风险控制提供了有效的技术支持。

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