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The Spitzer Science Center Using Metrics Analysis to Improve System Stability

机译:Spitzer科学中心使用度量分析来提高系统稳定性

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The Spitzer Science Center (SSC) Software Science Operations System (SOS) is a large, complex software system. Over 1.2 million lines of code had been written for the SOS by time of launch (August 2003). The SSC uses a defect tracking tool called GNATS to enter defect reports and change requests. GNATS has been useful beyond just tracking defects to closure. Prior to launch a number of charts and graphs were generated using metrics collected from GNATS. These reports demonstrated trends and snapshots of the state of the SOS and enabled the SSC to better identify risks to the SOS and focus testing efforts. This paper will focus primarily on the time period of Spitzer's launch and In Orbit Checkout. It will discuss the metrics collected, the analyses done, the format the analyses was presented in, and lessons learned. This work was performed at the California Institute of Technology under contract to the National Aeronautics and Space Administration.
机译:Spitzer科学中心(SSC)软件科学运营系统(SOS)是一个大型,复杂的软件系统。到发布时(2003年8月),已经为SOS编写了超过120万行代码。 SSC使用称为GNATS的缺陷跟踪工具来输入缺陷报告和更改请求。 GNATS除了跟踪缺陷到关闭之外,还非常有用。在启动之前,使用从GNATS收集的指标生成了许多图表。这些报告展示了SOS状态的趋势和快照,并使SSC能够更好地识别SOS的风险并进行重点测试。本文将主要关注Spitzer发射和In Orbit Checkout的时间段。它将讨论收集的指标,完成的分析,呈现分析的格式以及汲取的教训。这项工作是根据美国国家航空航天局的合同在加利福尼亚理工学院进行的。

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