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Switching Control for Aero-Engines Based on Switched Equilibrium Manifold Expansion Model

机译:基于切换均衡流形扩展模型的航空发动机切换控制

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This paper investigates the switching control problem for aero-engines. An event-triggered switching control strategy is presented based on the proposed switched equilibrium manifold expansion (EME) model of the aero-engine in order to enhance the speed regulation performance. First, a switching law is given using an optimization index for the candidate EME models, which utilize different mappings based on the off-line data of the aero-engine so that the switched EME model has higher accuracy than general EME models. Then, controllers for the subsystems of the switched EME model are designed using the exact feedback linearization technique. Asymptotic stability of the closed-loop switched system is ensured for arbitrary switching with the given condition. This enables us to pursue other performances via design of switching law with stability guaranteed. An event-triggered switching law is constructed for the controllers to get a better performance. Finally, a case study for a two-spool turbofan engine is performed to verify the effectiveness and superiority of the proposed control strategy.
机译:本文研究了航空发动机的切换控制问题。基于提出的航空发动机平衡平衡歧管扩展(EME)模型,提出了一种事件触发的切换控制策略,以提高调速性能。首先,使用针对候选EME模型的优化索引来给出切换规律,该候选模型基于航空发动机的离线数据利用不同的映射,因此,与常规EME模型相比,切换后的EME模型具有更高的准确性。然后,使用精确的反馈线性化技术为交换式EME模型的子系统设计控制器。对于给定条件下的任意切换,确保了闭环切换系统的渐近稳定性。这使我们能够通过保证稳定性的开关规律设计来追求其他性能。为控制器构造了事件触发的开关定律以获得更好的性能。最后,对两涡流涡扇发动机进行了案例研究,以验证所提出的控制策略的有效性和优越性。

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