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The experiment results are shown in Table 5, from which it can be concluded that the recommended solutions can reduce the accuracy of the identity recognition below 18% and improve the accuracy of the activity recognition above 67%, with the discrepancy around 55%, which is much better than the previous learning model based solutions and the mutual information based solution.
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For nonlinear parameter estimation iterative solution and linear model based solution, for nonlinear observation and state estimation iterative method is shown.
An analytical model based upon solution of Maxwell equations was developed to estimate the attracting forces for low frequency discharges.
A numerical model based on solution-diffusion theory was developed in Matlab Simulink and used to analyse the design and performance of an RO system.
These parameter values can be hard to estimate exactly (e.g., thermal conductivity) or vary over time (e.g., due to fouling) potentially leading to hazardous situations when applying a model based optimal solution.
A mathematical model based on the solutions of two fundamental EO flows is introduced to explain how the choice of the fin vane width may optimize the EO pumping rate in the general case.
New numerical model based on accurate solutions of Maxwell's equations is developed in order to elucidate the impact of the metallic sub-layers on the UV-PD optical performance.
In this context, a numerical model based on accurate solutions of Maxwell's equations is developed in order to study the impact of both interface texturization morphologies (triangular and grooves) on the optical absorbance and electrical performance.
Here, the binding affinities of seven aliphatic cyclic ureas to HIV-1 protease are calculated using a predominant states method and an implicit solvent model based upon finite difference solutions of the Poisson-Boltzmann equation.
The analytical model based upon the solution of Maxwell equations explains that magnetic forces are prevailing over the Lorentz forces for low frequency discharges.
Then, RANS results were adopted in a more detailed numerical model based on the solution of the filtered Navier Stokes equations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com