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高空台飞行环境模拟系统温度延时不确定性μ综合设计

  • Mei Yin Zhu
  • , Xi Wang*
  • , Xi Tong Pei
  • , Song Zhang
  • , Zhi Hong Dan
  • , Jia Shuai Liu
  • , Ke Qiang Miao
  • , Zhen Jiang
  • *此作品的通讯作者
  • Collaborative Innovation Center of Advanced Aero-Engine
  • Beihang University
  • AECC Sichuan Gas Turbine Establishment

科研成果: 期刊稿件文章同行评审

摘要

Aiming at the control problem of large temperature delay of flight environment simulation system (FESS) of altitude ground test facilities (AGTF), a two degree-of-freedom μ synthesis control design method considering temperature delay uncertainty is proposed. A complete and accurate nonlinear model of FESS is established. The FESS modeling uncertainties caused by variable specific heat volume differential equation, pipe heat transfer, control valve flow characteristics, hydraulic servo system dynamics, sensor gain, and temperature delay are considered in this model. By considering the actuator parameter and temperature delay uncertainty of FESS, a two degree-of-freedom μ synthesis control design method is presented. To ensure the designed μ synthesis controller has good robust servo tracking performance, the performance and control output weighting functions are designed according to the frequency division weighting principle. The μ synthesis controller is designed by using the D-K iteration method. A typical engine test condition with Zoom-Climb and Mach Dash is supposed to verify the servo tracking performance of the designed μ synthesis controller. The simulation results show that the relative steady-state and transient errors of temperature and pressure of FESS are both less than 1.5% and 3%, respectively.

投稿的翻译标题Temperature Delay Uncertainty μ Synthesis for Flight Environment Simulation System of Altitude Ground Test Facilities
源语言繁体中文
页(从-至)1861-1870
页数10
期刊Tuijin Jishu/Journal of Propulsion Technology
41
8
DOI
出版状态已出版 - 1 8月 2020

关键词

  • Altitude ground test facilities
  • Flight environment simulation system
  • Robust control
  • Temperature delay
  • Two-degree-of-freedom μ synthesis control

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