Backstepping-based nonlinear adaptive control for coal-fired utility boiler-turbine units
The control system of boiler-turbine unit plays an important role in improving efficiency and reducing emissions of power generation unit. The nonlinear, coupling and uncertainty of the unit caused by varying working conditions should be fully considered during the control system design. This paper presents an efficient control scheme based on backstepping theory for improving load adaptability of boiler-turbines in wide operation range. The design process of the scheme includes model preprocessing, control Lyapunov functions selection, interlaced computation of adaptive control laws, etc. For simplification and accuracy, differential of steam pipe inlet pressure and integral terms of target errors are adopted. Also, to enhance practicality, implementation steps of the scheme are proposed. A practical nonlinear model of a 500Â MW coal-fired boiler-turbine unit is used to test the efficiency of the proposed scheme in different conditions.
Year of publication: |
2011
|
---|---|
Authors: | Fang, Fang ; Wei, Le |
Published in: |
Applied Energy. - Elsevier, ISSN 0306-2619. - Vol. 88.2011, 3, p. 814-824
|
Publisher: |
Elsevier |
Keywords: | Coal-fired power generation unit Boiler-turbine unit control system Backstepping Nonlinear adaptive control Recursive structure Wide-range performance |
Saved in:
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