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In this paper, a single-shot period-coded fringe pattern is proposed for depth sensing.
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In recent years, several approaches have been proposed for "depth-sensitive" fiber-based spectroscopy including the use of ball lens coupled fiber optic-probes [ 19], angled illumination [ 20], multiple point signal collection away from excitation probe [ 24], and differential path-length spectroscopy [ 21].
A conceptual framework for estimating the required jetting flow rate applied at the spudcan base to enable successful extraction from soft clay soil has previously been proposed for embedment depths of up to 1.5 diameters.
Subsequently, some non-empirical models have been proposed for groundwater table depth modelling (Bras and Rodriguez-Iturbe 1985; Lin and Lee 1992; Brockwell and Davis 2010; Doglioni et al. 2010).
In relation with the described phenomena, a temperature-controlled plasma-immersion ion-implantation system is proposed for tailoring in-depth stable/metastable ceramic structures such as nitrides, oxides and carbides.
Deep phenotyping will be proposed for more in-depth SME involvement.
Different view partitioning schemes are proposed for imagery and dense depth maps.
A modified design of the 'Counihan' vortex generator was proposed for purposes of part-depth atmospheric boundary layer (ABL) wind-tunnel simulations.
The concept of insight depth is proposed for measuring the influential extent of insights.
A new crack detection method is proposed for detecting crack location and depth in a shaft.
A new spatial filtering technique is proposed for improving image contrast and depth of focus in projection photolithography.
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