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The obtained errors confirm that the used method permits us to improve the order of convergence.
The used method is based on water sampling and Riparian, Channel and Environmental Inventory.
The used method of solution is the differential quadrature method (DQM).
The used method exploits Model Predictive Control (MPC) framework and the flexible NCS architecture which allows for distributed computation.
The used method for gathering the models is a regression process on data obtained by finite element simulations.
However, predicted settlements of footings are highly dependent on the chosen elastic modulus and the used method.
The main idea of the used method consists in a minimization of the tracking error at the end of the prediction horizon.
The used method is suitable for real engineering rotor system, because arbitrary configuration of rotors can be modeled by 3D finite element.
Moreover, algorithms are proposed to obtain a stabilizer such that the stability domain of the closed loop systems is maximized with respect to the used method.
As one main conclusion, we show that the used method leads to a stand-off bow shock position which in good agreement with observations.
Hence, it guarantees both that (1) the used method of integration operates inside of its stability region and (2) the time integration procedure is computationally efficient.
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CEO of Professional Science Editing for Scientists @ prosciediting.com