首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Compound sliding-mode predictive control for a temperature system of high-speed heat-airflow wind tunnel
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Compound sliding-mode predictive control for a temperature system of high-speed heat-airflow wind tunnel

机译:高速热气流风洞温度系统的复合滑模预测控制

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摘要

The mathematical model of the temperature system under the mode of the proportional throttle valve control and the variable frequency pump control is established, respectively. A compound control strategy that consists of a compensation controller and a sliding-mode predictive feedback controller is designed. The compensation controller, which takes the change of the wind speed as parameter, is used to eliminate the impact on the system caused by the change of the working conditions (wind speed); the sliding-mode predictive feedback controller is used to solve the problems in the system such as time delay, time-varying parameters and disturbance. In order to solve the problem of temperature disturbance caused by the mode switch between pump control and valve control and the oil-rich combustion phenomenon in the high-temperature case, a method takes the ramp signal in which the slope is adjustable as a temperature setting signal is proposed. The experimental results show that the designed strategy obtains a satisfactory control performance and can achieve the temperature control with fast response time and no overshoot. In addition, it takes the ramp signal in which the slope is adjustable as the temperature setting signal can achieve the undisturbed switching control of the temperature and prevent the oil-rich combustion effectively.
机译:建立了比例节流阀控制和变频泵控制模式下的温度系统数学模型。设计了一种由补偿控制器和滑模预测反馈控制器组成的复合控制策略。补偿控制器以风速的变化为参数,用于消除由于工况(风速)的变化对系统的影响。滑模预测反馈控制器用于解决系统中的时间延迟,时变参数和扰动等问题。为了解决由泵控制和阀控制之间的模式切换以及在高温情况下的富油燃烧现象引起的温度扰动问题,采用将斜率可调节的斜坡信号作为温度设定的方法。提出信号。实验结果表明,所设计的策略获得了令人满意的控制性能,并且可以实现温度控制,响应时间短,没有过冲。另外,由于温度设定信号可以实现温度的不受干扰的切换控制,并且有效地防止了富油燃烧,所以采用了斜率可调的斜坡信号。

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