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The article presents an application of dynamic programming method for solving an optimal allotment problem. On the basis of the presented example, authors showed that the dynamic programming method founded on Bellman’s equation finds an optimal solution very quickly. Finding an optimal solution of any given problem using as few iterations as possible, is a very important problem in numerical calculation. The obtained results of optimization are compared with different methods.
The article presents classical genetic algorithm applied to solving optimal allotment problem. It is shown, on the base of presented example, that genetic algorithm finds optimal solution very quickly. To obtain optimal solution for a given problem with the least number of iteration, it is very important problem in numerical calculation.
Article presents application of classical genetic algorithm for the problem of dynamic optimization of the linear model. The model describes plants production during two years and takes into consideration plants changing. The soil in a good culture it is very important issue to obtain the highest crop. In the work the conditions for classical genetic algorithm to solving introduced problem are presented.
The article presents linear model for solving dynamic optimization problem of plants production at farm. In the model the very important issue of plants changing was taken into consideration. Plants changing helps to obtain highest crop and keeps soil in good condition. Presented optimization model was applied to real data of an average farm which takes up plants production in West Pomeranian province.
The deposition of acidifying compounds in Gdask region has been investigated. Bulk wet (in the open field), and through­fall (in the forest) stand, depositions were measured from 1994 till 2001. The deposition of sul­phates, nitrates and ammonium salts has been analysed. The obtained results are compared with the critical depo­sition for sulphur and nitrogen related to the Gdask region. It has been stated that exceeding critical load was not observed for sulphur, while it was ob­served for nitrogen.
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