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Industrial Automatic Control Systems and Controllers

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The Evolution of the Process Control Systems of Vacuum Separation of Titanium Sponge. Part II
Yu.P. Kirin, V.V. Kiryanov

The article summarizes the results of improving thermal management systems for the purposes of the intensifi cation of the process of separation of the vacuum obtained at different stages of automation of the production of titanium sponge. The conditions for the intensifi cation of the vacuum separation of titanium sponge. It is found that the rate of purifi cation of titanium sponge and impurities from magnesium chloride, magnesium essentially depends on temperature. The problem of intensifi cation is to improve thermal management and maintaining quality at the expense of the maximum allowable temperature vacuum separation process. The features of the process, hindering the synthesis of effi cient thermal management systems. The factors of uncertainty in thermal management, including the uncertainty of the information vacuum separation and uncertainty of the process as a control object. The methods of removing the vacuum separation of information uncertainty. The uncertainty of the process as a control object is overcome building model that adequately describes the dynamic properties of industrial separation apparatus heating zones. The principles of construction of control systems of temperature control developed using models of the dynamics: on the defl ection of the control system, combined controlled systems with corrective signals at the controller input and the object of high-speed combined systems, adaptive and robust control systems. The estimation of the effectiveness of these systems. It is shown that the best management quality indicators-temperature vacuum separation has a robust system.
Keywords: vacuum separation of titanium sponge; temperature control; an intensifi cation of the conditions of uncertainty; dynamics model; from the deviation of the control system; combined, adaptive, robust control system.

Contacts: E-mail: klu2010@mail.ru, E-mail: kvas@bf.pstu.ru

Pp. 03-12.

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