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Associated errors are evaluated analytically and numerically and a clear improvement of the results is demonstrated with the new expressions.
Systematic, random and total errors are evaluated in measurements by conventional accelerometers and by proposed strain gauge techniques.
To cover wide range of applications, the set of isotropic, quasi-isotropic and extended benchmark tasks are considered and relevant compliance errors are evaluated taking into account the end-effector deflections caused by the external forces.
For the static error analysis, the power spectra of the finite-differencing and aliasing errors are evaluated in the discrete Fourier space, and for the dynamic error analysis LES of isotropic turbulence is performed with various dissipative and non-dissipative schemes.
Parameter estimates and standard errors are evaluated.
Intermittent hardware errors are evaluated in [37].
Similar(44)
Shape Matching errors were evaluated in relation to tag geometry.
Errors were evaluated with statistical and geoinformation techniques.
For each gear design analyzed, the robustness to manufacturing errors is evaluated by performing Monte Carlo simulations for a thousand random manufacturing errors samples.
Effectiveness of the optimization model approach to reduce the step errors was evaluated by comparing the DSM before and after adjustment.
Systematic and random errors were evaluated based on replicate analyses.
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CEO of Professional Science Editing for Scientists @ prosciediting.com