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Nonlinear control designs for systems with bifurcations with applications to stabilization and control of compressors

机译:分叉系统的非线性控制设计,用于压缩机的稳定和控制

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This paper studies the effects of applying both nonlinear feedback and time-varying control algorithms in the form of inlet flow disturbances by introducing variations in the shut-off head of a single stage axial compressor. The closed loop controller utilizes nonlinear feedback in order to stabilize rotating stall. Using bifurcation analysis, it is possible to analytically guarantee stability of local bifurcated solutions near the stall point. Physically, this means that the system will no longer "jump" to a large amplitude oscillatory mode when bifurcating at the stall point. Thus the possible operating region of the axial compressor is enlarged. The open loop control strategy provides oscillatory input to the shut-off head coefficient. For some model systems, this type of strategy is shown to be effective in enhancing stability margins and improving efficiency. Methods of implementing both types of control laws using variations inlet guide vanes and bleed valves and by blowing air into the compressor are under investigation.
机译:本文通过在单级轴流式压缩机的关闭头中引入变化来研究以进气流扰动的形式应用非线性反馈和时变控制算法的效果。闭环控制器利用非线性反馈来稳定旋转失速。使用分叉分析,可以分析地确保失速点附近的局部分叉溶液的稳定性。从物理上讲,这意味着在停转点分叉时,系统将不再“跳至”大振幅振荡模式。因此,扩大了轴向压缩机的可能的工作区域。开环控制策略为截止压头系数提供了振荡输入。对于某些模型系统,这种策略已显示出可以有效地提高稳定性裕度并提高效率。正在研究使用变化的进口导流叶片和放气阀以及通过将空气吹入压缩机来实现两种控制规律的方法。

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