
Nowadays, high cost and shortage of power resources has become one of the main restraining factors of economic development. The described situation pushes to search for new approaches not only to design of power-intensive equipment, but also control systems of this equipment. The new approach to the development of the optimal control system of power-intensive objects with the application of cognitive graphics is suggested. Despite of the progress in modern electronics, developers have to deal with a number of problems, which restrict the capacity of such devices. First of all, it is caused by a significant amount of real-time calculations, which do not allow full realization of the total potential of energy-saving control. One of the effective ways of problem-solving is application of cognitive graphics methods. Methods above provide rendering of complex tasks, speeding up its execution both at the stage of development of the system and during its operation. For the given model of object dynamics process, based on full analysis of optimal control, synthesized variables were received, and cognitive graphic image in synthesizing variables space was constructed. According to this image, the form of the optimal control was defined, after this control action for a given mode of the object was synthesized. Decomposition on the subtasks of the general task of developing an optimal energy-saving control system was provided
Рассмотрена задача синтеза энергосберегающего управления технологическими объектами с применением методов когнитивной графики. Выполнена декомпозиция общей задачи синтеза системы оптимального энергосберегающего управления. Показано, что методы и средства когнитивной графики обеспечивают визуализацию и оперативность решения задач синтеза энергосберегающего управления. Представление результатов синтеза оптимального управления в виде когнитивных графических образов на множестве состояний функционирования, сформированных в адресном пространстве постоянного запоминающего устройства, позволяет сократить время вычисления управляющих воздействий, уменьшить стоимость и повысить эффективность функционирования систем энергосберегающего управления, а также предоставляет разработчику широкий набор возможных вариантов построения системы управления.
КОГНИТИВНАЯ ГРАФИКА, МНОЖЕСТВО СОСТОЯНИЙ ФУНКЦИОНИРОВАНИЯ, СИНТЕЗ, СИСТЕМА УПРАВЛЕНИЯ, ЭНЕРГОСБЕРЕГАЮЩЕЕ УПРАВЛЕНИЕ
КОГНИТИВНАЯ ГРАФИКА, МНОЖЕСТВО СОСТОЯНИЙ ФУНКЦИОНИРОВАНИЯ, СИНТЕЗ, СИСТЕМА УПРАВЛЕНИЯ, ЭНЕРГОСБЕРЕГАЮЩЕЕ УПРАВЛЕНИЕ
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