Study of connected system of automatic control of load and operation efficiency of a steam boiler with extremal controller on a simulation model


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Abstract

The problems of operation effectiveness increase of steam boilers are considered. To maintain the optimum fuel combustion modes, it is proposed to use an extremal controller (EC) determining the value of airflow rate, at which the boiler generating the desired amount of heat will consume a minimum amount of fuel. EC sets the determined value of airflow rate to airflow rate controller (ARC). The test results of numerical simulation dynamic nonlinear model of steam boiler with the connected system of automatic control of load and combustion efficiency using EC are presented. The model is created in the Simulink modeling package of MATLAB software and can be used to optimize the combustion modes. Based on the modeling results, the conclusion was drawn about the possibility in principle of simultaneously boiler load control and optimizing by EC the combustion modes when changing the fuel combustion heat and the boiler characteristics and its operating mode. It is shown that it is possible to automatically control the operation efficiency of steam boilers when using EC without applying the standard flue gas analyzers. The article considers the numerical simulation dynamic model of steam boiler with the schemes of control of fuel consumption and airflow rate, the steam pressure and EC; the purpose of using EC in the scheme with linear controllers and the requirements to the quality of its operation; the results of operation of boiler control schemes without EC with estimation of influence of roughness of thermal mode maps on the nature of static and dynamic connection of the control units of fuel consumption and airflow rate; the phase trajectories and the diagrams of transient processes occurring in the control scheme with EC with stepped changing the fuel quality and boiler characteristics; analysis of modeling results and prospects for using EC in the control schemes of boilers.

About the authors

V. R. Sabanin

Moscow Power Engineering Institute (MPEI, National Research University)

Author for correspondence.
Email: sabaninvr@gmail.com
Russian Federation, ul. Krasnokazarmennaya 14, Moscow, 111250

A. A. Starostin

Moscow Power Engineering Institute (MPEI, National Research University)

Email: sabaninvr@gmail.com
Russian Federation, ul. Krasnokazarmennaya 14, Moscow, 111250

A. I. Repin

OOO Energoavtomatika

Email: sabaninvr@gmail.com
Russian Federation, Ostapovskii proezd 3/2, Moscow, 109316

A. I. Popov

OOO SKB Energotekhnika-proekt

Email: sabaninvr@gmail.com
Russian Federation, pr. Bogdana Khmel’nitskogo 111, ABK 5/217, Belgorod, 308000


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