Volume 40 Issue 4
Apr.  2025
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LI Zhenlei, LI Bolin, LI Guo, et al. Research and verification on variable temperature tracking control experimental methodology of high temperature structure in intense transient thermal environment[J]. Journal of Aerospace Power, 2025, 40(4):20240529 doi: 10.13224/j.cnki.jasp.20240529
Citation: LI Zhenlei, LI Bolin, LI Guo, et al. Research and verification on variable temperature tracking control experimental methodology of high temperature structure in intense transient thermal environment[J]. Journal of Aerospace Power, 2025, 40(4):20240529 doi: 10.13224/j.cnki.jasp.20240529

Research and verification on variable temperature tracking control experimental methodology of high temperature structure in intense transient thermal environment

doi: 10.13224/j.cnki.jasp.20240529
  • Received Date: 2024-07-30
    Available Online: 2025-01-07
  • To simulate the intense transient thermal environment of advanced aero-engine in laboratory, an experimental system was constructed to achieve rapid temperature tracking control. Two control methodologies tailored to different temperature variation rates, i.e. single-loop double-acting proportion integration differentiation (PID) control method based on Arduino and double-loop multi-segment PID control method based on Eurotherm, were experimentally investigated and compared. Parameters tuning was validated using Simulink simulations, and the experimental system was utilized to conduct rapid temperature tracking tests. Within the temperature range of 300 ℃ to 650 ℃, both controllers achieved control errors below 6.83% when tracking triangular and trapezoidal wave targets. The Eurotherm-based controller exhibited clear advantages, achieving a maximum temperature change rate of 100 ℃/s.

     

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