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Characterization and utilization of noisy displacement signals from simple shear device using linear and kernel regression methods

机译:利用线性和核回归方法表征和利用简单剪切装置产生的噪声位移信号

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摘要

Small strain testing of dynamic soil properties such as threshold strains, γtv, are often conducted using specialized devices such as dual-specimen simple-shear, as devices configured for large strain testing produce noisy signals in the small strain range. Working with a simple shear device originally developed for large-strain testing, we extend its low-strain capabilities by characterizing noisy signals and utilizing several statistical methods to extract meaningful responses in the small strain range. We utilize linear regression of a transformed variable to estimate the cyclic shear strain from a noisy signal and the confidence interval on its amplitude. We utilize Kernel regression with the Nadaraya-Watson estimator and a Gaussian kernel to evaluate vertical strain response. A practical utilization of these techniques is illustrated by evaluating threshold shear strains for volume change with a procedure that takes into account uncertainties in the measured shear and vertical strains.
机译:动态土属性的小应变测试(例如阈值应变γtv)通常使用专门的设备(例如双样本简单剪切)进行,因为配置用于大应变测试的设备会在小应变范围内产生噪声信号。通过使用最初为大应变测试开发的简单剪切设备,我们通过表征噪声信号并利用多种统计方法来提取小应变范围内有意义的响应,从而扩展了其低应变能力。我们利用变换变量的线性回归从噪声信号及其幅度的置信区间估计循环剪切应变。我们利用Nadaraya-Watson估计量和高斯核利用核回归来评估垂直应变响应。这些技术的实际应用通过评估体积变化的阈值剪切应变来说明,该过程考虑了所测剪切应变和垂直应变的不确定性。

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  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2011年第1期|p.25-32|共8页
  • 作者单位

    University of California Los Angeles Department of Civil and Environmental Engineering 5731 Boelter Hall Los Angeles CA 90095 USA;

    University of California Los Angeles Department of Statistics 8125 Mathematical Sciences Building Los Angeles CA 90095 USA;

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  • 入库时间 2022-08-18 04:33:49

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