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Titlebook: Advancements in Optical Methods & Digital Image Correlation in Experimental Mechanics, Volume 3; Proceedings of the 2 Ming-Tzer Lin,Cesar S

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Blind Equalization and System Identificationiment so that the whole surface can be imaged during the rotation. The new DIC system was able to track the area of interest and measure the deformation till the specimen failure. Shear strain at failure location can be measured and related to the global loading condition.
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Blind Equalization and System Identificationl Image Correlation technique (RG-DIC). There exists a good agreement between the contact (strain gauge) and noncontact based approaches (DIC) for static loading condition. So, Digital Image Correlation (DIC) can also be a reliable strain measuring approach for investigating for earth materials.
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Blind Equalization and System Identificationl as strain concentrations. Full field TSA and fiber optic Bragg strain gages (FBSG) were used to determine the overall stress field (TSA) as well hot spot strain evolution (FBSG) along the loading cycles. Strain fields determined from the experimental measurements and from finite element analysis (
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Blind Equalization and System Identificationespect to the original values and the u- and v-displacement field become flat as compared to the original one but the mean displacement is 10% larger than the nominal displacement determined by a precision linear stage.
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Blind Identification of SIMO FIR Systemsing a single laser tuning ramp, tens of rapid optical phase samplings are acquired, each describing the phase of the object with slightly varied illumination wavelengths (i.e., <0.1 nm). In the holographic reconstruction step, a database consisting of hundreds of phase maps with different synthetic
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Conference Proceedings of the Society for Experimental Mechanics Serieshttp://image.papertrans.cn/a/image/146488.jpg
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