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A METHOD FOR RECEIVED WAVEFORM RECONSTRUCTION BASED ON BENDER ELEMENT TEST USING FREQUENCY-SWEPT SIGNAL

机译:基于频率扫描信号的基于弯矩元素测试的波形重构方法

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References(15) Cited-By(1) An experimental technique for reconstructing the received wave of bender element tests based on linear system theory is shown in this paper. In order to identify the frequency response of testing apparatus, bender element tests using frequency-swept signals are performed. Received waves for one-period sine pulse transmitting with various frequencies are calculated and compared with observed waves in several kinds of soil samples and testing apparatuses. The linearity of the testing system is also confirmed by coherence function. It is shown that calculated data are less affected by random noise and show good agreement with observed data in regards to not only waveform itself but also resulting shear wave velocity. It is mentioned that this technique can provide simulations for arbitrary transmitted waveform with high signaloise ratio after laboratory tests are performed. It is also mentioned that this technique is advantageous when sufficient amplitude of received wave cannot be ensured or shear wave velocity must be verified, for example, due to uncertainty of arrival time by near-field effect.
机译:参考文献(15)Cyted-By(1)提出了一种基于线性系统理论重构弯曲单元测试接收波的实验技术。为了识别测试设备的频率响应,执行了使用频率扫描信号的弯曲元件测试。计算在不同频率下的一周期正弦脉冲传输的接收波,并将其与几种土壤样品和测试设备中的观测波进行比较。测试系统的线性也由相干函数确定。结果表明,所计算的数据受随机噪声的影响较小,不仅在波形本身,而且在剪切波速方面都与观测数据吻合良好。值得一提的是,这项技术可以在执行实验室测试后为具有高信噪比的任意传输波形提供仿真。还提到了这种技术是有利的,例如当由于近场效应的到达时间的不确定性而不能确保接收波的足够振幅或必须验证剪切波速度时。

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