Adaptive Neural Network Control of Thermoacoustic Instability in Rijke Tube: A Fully Actuated System Approach

被引:0
|
作者
Yuzhuo Zhao
Dan Ma
Hongwei Ma
机构
[1] Northeastern University,State Key Laboratory of Synthetical Automation for Process Industries and College of Information Science and Engineering
[2] Northeastern University,College of Information Science and Engineering
关键词
Adaptive neural network control; fully actuated system; nonlinear system; Rijke tube; thermoacoustics instability;
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学科分类号
摘要
Thermoacoustic instability phenomena often encounter in gas turbine combustors, especially for the premixed combustor design, with many possible detrimental results. As a classical experiment, the Rijke tube is the simplest and the most effective illustration to study the thermoacoustic instability. This paper investigates the active control approach of the thermoacoustic instability in a horizontal Rijke tube. What’s more, the radial basis function (RBF) neural network is adopted to estimate the complex unknown continuous nonlinear heat release rate in the Rijke tube. Then, based on the proposed second-order fully actuated system model, the authors present an adaptive neural network controller to guarantee the flow velocity fluctuation and pressure fluctuation to converge to a small region of the origin. Finally, simulation results demonstrate the feasibility of the design method.
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页码:586 / 603
页数:17
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