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Validating Coherence Measurements Using Aligned and Unaligned Coherence Functions

机译:使用对齐和未对齐相干函数验证相干测量

摘要

This paper describes a novel approach based on the use of coherence functions and statistical theory for sensor validation in a harsh environment. By the use of aligned and unaligned coherence functions and statistical theory one can test for sensor degradation, total sensor failure or changes in the signal. This advanced diagnostic approach and the novel data processing methodology discussed provides a single number that conveys this information. This number as calculated with standard statistical procedures for comparing the means of two distributions is compared with results obtained using Yuen's robust statistical method to create confidence intervals. Examination of experimental data from Kulite pressure transducers mounted in a Pratt & Whitney PW4098 combustor using spectrum analysis methods on aligned and unaligned time histories has verified the effectiveness of the proposed method. All the procedures produce good results which demonstrates how robust the technique is.
机译:本文介绍了一种基于相干函数和统计理论的新颖方法,用于在恶劣环境下进行传感器验证。通过使用对齐和不对齐的相干函数和统计理论,可以测试传感器的退化,总的传感器故障或信号变化。讨论的这种先进的诊断方法和新颖的数据处理方法提供了传达此信息的单个数字。使用标准统计程序计算出的用于比较两个分布均值的数字与使用Yuen鲁棒统计方法创建置信区间所获得的结果进行比较。使用频谱分析方法对对准和不对准的时间历史记录从安装在Pratt&Whitney PW4098燃烧室中的Kulite压力传感器进行的实验数据验证了该方法的有效性。所有程序都产生了良好的结果,表明了该技术的鲁棒性。

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  • 作者

    Miles Jeffrey Hilton;

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  • 年度 2006
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