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Comparison Tools for Assessing the Microgravity Environment of Space Missions, Carriers and Conditions

机译:评估太空任务,运载工具和条件的微重力环境的比较工具

摘要

The microgravity environment of the NASA Shuttles and Russia's Mir space station have been measured by specially designed accelerometer systems. The need for comparisons between different missions, vehicles, conditions, etc. has been addressed by the two new processes described in this paper. The Principal Component Spectral Analysis (PCSA) and Quasi-steady Three-dimensional Histogram QTH techniques provide the means to describe the microgravity acceleration environment of a long time span of data on a single plot. As described in this paper, the PCSA and QTH techniques allow both the range and the median of the microgravity environment to be represented graphically on a single page. A variety of operating conditions may be made evident by using PCSA or QTH plots. The PCSA plot can help to distinguish between equipment operating full time or part time, as well as show the variability of the magnitude and/or frequency of an acceleration source. A QTH plot summarizes the magnitude and orientation of the low-frequency acceleration vector. This type of plot can show the microgravity effects of attitude, altitude, venting, etc.
机译:NASA航天飞机和俄罗斯Mir空间站的微重力环境已通过专门设计的加速度计系统进行了测量。本文描述的两个新过程解决了不同任务,车辆,状况等之间进行比较的需求。主成分谱分析(PCSA)和准稳态三维直方图QTH技术提供了一种手段,可以在单个图上描述长时间数据跨区的微重力加速环境。如本文所述,PCSA和QTH技术允许在单个页面上以图形方式表示微重力环境的范围和中值。使用PCSA或QTH曲线可以使各种工作条件变得显而易见。 PCSA图可以帮助区分设备是全时还是部分时工作,以及显示加速源的大小和/或频率的可变性。 QTH曲线总结了低频加速度矢量的大小和方向。这种类型的图可以显示姿态,高度,通风等的微重力效应。

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