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HYBRID OPTIMUM SIGNAL PROCESSING FOR A STRAIN SENSOR

机译:应变传感器的混合最优信号处理

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摘要

Recently there has been a shift in material sciences towards the use of non contacting laser optical methods to characterize material behaviour. This development has been driven by the need to test specimens at relatively high temperatures. We present a hybrid system for tracking laser speckles consisting of a Fourier-optical preprocessor followed by a digital signal processing unit that is able to determine engineering strain within specimen at viewing distances of several hundred millimeters. We will show in this paper that advanced digital signal processing using a polarity coincidence correlation method allows for an increase of the processing speed without undue degrading of system performance. We will further show that an optimum analog to digital conversion characteristic exists which if applied results in displacement estimates with almost ideal variances.
机译:最近,材料科学向使用非接触激光光学方法表征材料行为的方向转变。这种发展是由于需要在相对较高的温度下测试样品而推动的。我们提出了一种用于跟踪激光散斑的混合系统,该系统由傅立叶光学预处理器和随后的数字信号处理单元组成,该数字信号处理单元能够确定数百毫米观察距离内样品中的工程应变。我们将在本文中证明,使用极性一致相关方法进行的高级数字信号处理可以提高处理速度,而又不会过度降低系统性能。我们将进一步表明,存在最佳的模数转换特性,如果应用该特性,其位移估计几乎具有理想的方差。

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