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The algorithm is realized in the novel parallel docking SOL-P program and results of its performance for a set of 30 protein-ligand complexes are presented.
The functional design of the algorithm is realized in a single field programmable gate array (FPGA) by using modular design method, substituting some harewares in signal processing circuit, and system speed is very fast.
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The algorithms are realized in the program software for simulation of optimal investment plans.
Full adaptivity of the proposed algorithm is realized by combining embedded time discretization and multilevel finite element space discretization.
The suggested algorithm is realized as a computer program and it is applied to an example.
The consensus control algorithm is realized in a continuous time frame.
The system simulation for PFS algorithm is realized and the results are analyzed in Section 5.
Note that 68 and 76% of the gain from using COPMA algorithm is realized within the first 59 and 83 iterations, respectively.
The verification of each control algorithm is realized by computer simulation of a control system that includes the structured process (reactor) model.
Moreover, using a concept of variable structure control theory, a smooth robust control algorithm is realized in the form of proportional control plus an integration term.
A simulation is firstly conducted to validate the feasibility of the system, and then the system construction, including optical design, circuit design, and software algorithm, is realized.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com