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Adaptive control of a jet turboshaft engine driving a variable pitch propeller using multiple models

机译:运用多种模型自适应控制喷气桨发动机驱动可变螺距螺旋桨

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摘要

In this paper, a multiple model adaptive control (MMAC) method is proposed for a gas turbine engine. The model of a twin spool turbo-shaft engine driving a variable pitch propeller includes various operating points. Variations in fuel flow and propeller pitch inputs produce different operating conditions which force the controller to be adopted rapidly. Important operating points are three idle, cruise and full thrust cases for the entire flight envelope. A multi-input multi-output (MIMO) version of second level adaptation using multiple models is developed. Also, stability analysis using Lyapunov method is presented. The proposed method is compared with two conventional first level adaptation and model reference adaptive control techniques. Simulation results for JetCat SPT5 turbo-shaft engine demonstrate the performance and fidelity of the proposed method.
机译:本文提出了一种燃气轮机的多模型自适应控制(MMAC)方法。驱动可变螺距螺旋桨的双线轴涡轮轴发动机的模型包括各种工作点。燃油流量和螺旋桨螺距输入的变化会产生不同的运行条件,从而迫使控制器被迅速采用。重要的操作要点是整个飞行包线的三个空转,巡航和全推力情况。开发了使用多个模型的第二级自适应的多输入多输出(MIMO)版本。此外,提出了使用Lyapunov方法的稳定性分析。将该方法与两种传统的一级自适应和模型参考自适应控制技术进行了比较。 JetCat SPT5涡轮轴发动机的仿真结果证明了该方法的性能和保真度。

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