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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >A Novel Cascade Temperature Control System for a High-Speed Heat-Airflow Wind Tunnel
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A Novel Cascade Temperature Control System for a High-Speed Heat-Airflow Wind Tunnel

机译:高速热气流风洞的新型叶栅温度控制系统

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In order to meet stringent temperature-control requirements in a high-speed airflow wind tunnel (HAWT) for thermal simulation under complicated work conditions such as thermal strength experiment of aero engine blade and dynamic calibration of high temperature thermal coupler, this paper proposes a novel cascade fuzzy-PID (C-Fuzzy-PID) compound control method for regulating the fuel-oil flow rate in the inner loop and temperature in the outer loop. The mathematical models that characterize the dynamics of the heat airflow temperature in the combustor and the fuel-oil flow rate for combustion are derived, upon which the improved PID control laws for the inner and outer loops are described. The former employs a fuzzy-PID controller with a predictor for controlling flow rate in the inner loop, which effectively overcomes influences according to its characteristics of large inertia and transport lag in fuel-oil supply system on the temperature responses. The latter combines disturbance compensation and a fuzzy-PID feedback law to suppress influences due to factors such as change in work conditions, disturbances, and time-varying parameter variations. The C-Fuzzy-PID method has been numerically investigated by comparing simulation results against two traditional PID-based methods, as well as experimentally validated confirming that the proposed control algorithm has strong robustness and excellent adaptability for temperature control of an HAWT.
机译:为了满足高速气流风洞(HAWT)在复杂工作条件下进行热模拟的严格温度控制要求,例如航空发动机叶片的热强度实验和高温热耦合器的动态校准,本文提出了一种新颖的方法。级联模糊-PID(C-Fuzzy-PID)复合控制方法,用于调节内回路中的燃油流量和外回路中的温度。推导了表征燃烧器中热气流温度动态变化和燃烧燃料流量的数学模型,并在此模型上描述了用于内,外回路的改进的PID控制律。前者采用带有预测器的Fuzzy-PID控制器来控制内环中的流量,根据其大惯量和燃油供应系统中的运输滞后对温度响应的影响,有效地克服了这种影响。后者将干扰补偿和Fuzzy-PID反馈定律相结合,以抑制由于诸如工作条件变化,干扰和随时间变化的参数变化等因素引起的影响。通过将仿真结果与两种传统的基于PID的方法进行比较,对C-Fuzzy-PID方法进行了数值研究,并通过实验验证了所提出的控制算法对HAWT的温度控制具有很强的鲁棒性和出色的适应性。

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