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Finally, traditional optimal control and input shaping are compared, and it is shown that under certain conditions optimal discrete-time input shaping and discrete time-optimal control are equivalent.
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A benchmark collector shape, against which the optimized shapes are compared, is identified.
Six different object shapes are compared and critical design elements are identified.
Compounded profiles of parabolic (PB) and involute (IN) shapes are compared for the secondary reflector geometry.
The contours of the displacement and strain mode shapes are compared.
The 3D facial shapes are compared and the residual error after 3D matching is used as a first similarity measure.
Finite element analysis results from different tooth shapes are compared to show the effectiveness of the proposed method.
Predefined and freeform parametric shapes are compared in terms of compliance, strength, stress concentration factors and parasitic shifts.
Radiation patterns of the three shapes are compared at three resonance frequencies, 435 MHz, 620 MHz and 755 MHz.
Furthermore, the mode shapes are compared with those obtained from finite element models using a Modal Assurance Criterion (MAC).
The process conditions are investigated in terms of drawbead penetration and blankholder force setting, and the predicted part shapes are compared with CMM measurements of the manufactured parts.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com