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A systems engineering approach to quantitative comparison of molecular instruments for use on the International Space Station

机译:国际空间站使用分子器的定量比较的系统工程方法

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The presence of microorganisms on the International Space Station (ISS) poses a threat to the health and safety of the ISS crew. Currently the ISS utilizes culture-based methods to detect and identify microorganisms. These methods are out dated and time-consuming. Molecular methods can deliver accurate results and require less processing time. This article details an approach to determine which molecular methods instrument most closely meets the Microbial Monitoring System (MMS) requirements for use on the ISS. We utilize the decision-theoretic Analytical Hierarchy Process and Quality Function Deployment while aligning the systems requirements vs. instrument capabilities in a Pugh Matrix to perform a quantitative assessment of six candidate systems, with the analysis yielding a single recommended instrument for use on the ISS. We demonstrate our techniques to be very effective for selection of the best instrument - the recommended system is currently under consideration for use on the ISS.
机译:国际空间站(ISS)对微生物的存在构成了威胁人员的健康和安全。目前,ISS利用基于文化的方法来检测和识别微生物。这些方法出现了日期和耗时。分子方法可以提供准确的结果并需要更少的处理时间。本文详细说明了一种方法来确定哪种分子方法仪器最符合Microbial监测系统(MMS)在ISS上使用的要求。我们利用决策 - 理论分析层次结构和质量函数部署,同时对齐系统要求与PUGH矩阵中的仪器能力对六个候选系统进行定量评估,分析产生了用于ISS的单一推荐仪器。我们展示了我们对选择最佳仪器非常有效的技术 - 推荐的系统目前正在考虑在ISS上使用。

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