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Recent research progress on airbreathing aero-engine control algorithm

机译:吸气式航空发动机控制算法研究进展

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Airbreathing aero-engines are regarded as excellent propulsion devices from ground takeoff to hypersonic flight, and require control systems to ensure their efficient and safe operation. Therefore, the present paper aims to provide a summary report of recent research progress on airbreathing aero-engine control to help researchers working on this topic. First, five control problems of airbreathing aero-engines are classified: uncertainty problem, multi-objective and multivariable control, fault-tolerant control, distributed control system, and airframe/propulsion integrated control system. Subsequently, the research progress of aircraft gas turbine engine modelling, linear control, nonlinear control, and intelligent control is reviewed, and the advantages and disadvantages of various advanced control algorithms in aircraft gas turbine engines is discussed. Third, several typical hypersonic flight tests are investigated, and the modelling and control issues of dual-mode scramjet are examined. Fourth, modelling, mode transition control and thrust pinch control for turbine-based combined cycle engines are introduced. Followed, significant hypersonic airframe/propulsion integrated system control is analysed. Finally, the study provides specific control research topics that require attention on airbreathing aero-engines.
机译:吸气式航空发动机被认为是从地面起飞到高超音速飞行的优秀推进装置,需要控制系统来确保其高效和安全运行。因此,本文旨在对近年来吸气式航空发动机控制的研究进展进行总结,以帮助研究该课题的研究人员。首先,对吸气式航空发动机的控制问题进行了分类:不确定性问题、多目标多变量控制、容错控制、分布式控制系统和机体/推进综合控制系统。随后,综述了飞机燃气涡轮发动机建模、线性控制、非线性控制和智能控制的研究进展,并讨论了各种先进控制算法在飞机燃气涡轮发动机中的优缺点。第三,研究了几种典型的高超声速飞行试验,并探讨了双模超燃冲压发动机的建模和控制问题。第四,介绍了涡轮联合循环发动机的建模、模式转换控制和推力夹紧控制;随后,分析了重要的高超音速机身/推进集成系统控制。最后,该研究提供了需要关注的吸气式航空发动机的具体控制研究课题。

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