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Model-based acceleration control of turbofan engines with a Hammerstein-Wiener representation

机译:基于Hammerstein-Wiener表示的涡轮风扇发动机基于模型的加速控制

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摘要

Acceleration control of turbofan engines is conventionally designed through either schedule-based or acceleration-based approach. With the widespread acceptance of model-based design in aviation industry, it becomes necessary to investigate the issues associated with model-based design for acceleration control. In this paper, the challenges for implementing model-based acceleration control are explained; a novel Hammerstein-Wiener representation of engine models is introduced; based on the Hammerstein-Wiener model, a nonlinear generalized minimum variance type of optimal control law is derived; the feature of the proposed approach is that it does not require the inversion operation that usually upsets those nonlinear control techniques. The effectiveness of the proposed control design method is validated through a detailed numerical study.
机译:涡轮风扇发动机的加速控制通常通过基于进度表或基于加速的方法来设计。随着基于模型的设计在航空工业中的广泛接受,有必要研究与基于模型的设计进行加速控制相关的问题。在本文中,解释了实现基于模型的加速控制所面临的挑战;介绍了一种新颖的Hammerstein-Wiener发动机模型表示形式;基于Hammerstein-Wiener模型,推导了非线性广义最小方差最优控制律类型。所提出的方法的特征在于它不需要通常会使那些非线性控制技术不满意的反转操作。通过详细的数值研究验证了所提出的控制设计方法的有效性。

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