Steam Generator Level Control With an Observer-Based Algebraic Approach

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Abstract

Level control systems are used to maintain the steam generator water level within the prescribed narrow limits and to provide constant supply of steam during power demand variations. The current level control systems are often found to be unsatisfactory during startup and low power operations. A robust nonlinear estimator-based optimal algebraic control is developed for level control systems to solve the water level tracking problem during power demand variations. It is shown that the proposed control provides an optimal and robust water level tracking with a single automatic controller over the complete range of power operation in the presence of plant uncertainties and noisy measurements. © 2013 The Chamber of Turkish Electrical Engineers-Bursa. © 2020 Elsevier B.V., All rights reserved.

Description

Ablay, Gunyaz/0000-0003-2862-6761

Keywords

Algebra, Control Systems, Electric Power Utilization, Level Control, Uncertainty Analysis, Water Levels, Algebraic Approaches, Automatic Controllers, Current Levels, Low-Power Operation, Noisy Measurements, Nonlinear Estimator, Plant Uncertainty, Power Operation, Steam Generators

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

Citation

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OpenCitations Citation Count
1

Volume

Issue

Start Page

137

End Page

141