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Research on aero-engine steady model b ased on an improved compact propulsion system model

机译:基于改进的紧凑型推进系统模型的航空发动机稳态研究

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摘要

The aero-engine steady model is the basis of the modern advanced control method such as performance seeking control. An improved compact propulsion system model is proposed to improve the steady model accuracy. The improved compact propulsion system model mainly contains linear model, such as steady-state variable model, and physical-based models, such as inlet model, nonlinear model, and nozzle model. The improved compact propulsion system model applied to full envelop by parameter corrections. The basepoint control vector and basepoint output vector of improved compact propulsion system model are four-dimensional interpolation instead of two-dimensional interpolation as conventional compact propulsion system modeling does. The improved compact propulsion system model not only considers the change of engine state but also take the flight parameter into account. The simulations of the conventional compact propulsion system modeling and the improved compact propulsion system model are conducted in subsonic and transonic flight envelop. The simulations show that, compared with the conventional compact propulsion system modeling, the relative testing errors of the improved compact propulsion system model decrease greatly. Moreover, the testing time of the conventional compact propulsion system modeling and the improved compact propulsion system model are both almost equal to 0.027 ms.
机译:航空发动机稳定模型是现代先进控制方法的基础,如性能寻求控制。提出了一种改进的紧凑推进系统模型,提高了稳定的模型精度。改进的紧凑推进系统模型主要包含线性模型,如稳态变量模型,以及入口模型,非线性模型和喷嘴模型等物理模型。改进的紧凑推进系统模型应用于完全信封参数校正。改进的紧凑推进系统模型的基点控制矢量和基点输出矢量是四维插值,而不是二维插值,作为传统的紧凑推进系统建模。改进的紧凑推进系统模型不仅考虑发动机状态的变化,还考虑了飞行参数。传统的紧凑推进系统建模和改进的紧凑推进系统模型的模拟在亚音速和跨音速飞行中传输。模拟表明,与传统的紧凑推进系统建模相比,改进的紧凑推进系统模型的相对测试误差大大降低。此外,传统的紧凑推进系统建模和改进的紧凑推进系统模型的测试时间既近于0.027毫秒。

著录项

  • 来源
    《Journal of Systems and Control Engineering》 |2020年第6期|726-733|共8页
  • 作者单位

    Nanjing University of Aeronautics and Astronautics Jiangsu Province Key Laboratory of Aerospace Power System;

    Nanjing University of Aeronautics and Astronautics Jiangsu Province Key Laboratory of Aerospace Power System;

    AECC Aero Engine Control System Institute;

    Nanjing University of Aeronautics and Astronautics Jiangsu Province Key Laboratory of Aerospace Power System;

    Nanjing University of Aeronautics and Astronautics Jiangsu Province Key Laboratory of Aerospace Power System;

    Nanjing University of Aeronautics and Astronautics Jiangsu Province Key Laboratory of Aerospace Power System;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aero-engine; performance seeking control; compact propulsion system model; steady model;

    机译:航空发动机;性能寻求控制;紧凑推进系统模型;稳态模型;

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