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An improvement of decoupling control research of gas heating furnace temperature system

机译:燃气加热炉温度系统解耦控制研究的改进

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The industrial gas heating furnace is a multivariable, nonlinear, strong coupling, parameter perturbation and time delay system. And its mathematical model is difficult to establish. On the account of these problems, a novel decoupling control method based on Small-gain theorem and Frequency domain function approximation is proposed. When the system of gas heating furnace was decoupled into three non-interfered single loop, the PID controllers based on time delay Internal Model Control is used in the system. And the effect of gas heating furnace control was verified by a analysis of simulation. When the heating furnace has a large parameter perturbation, the system has good decoupling ability and dynamic and static control performance. The method greatly improve the sensitivity of system response and control precision, and has strong robustness.
机译:工业燃气加热炉是一个多变量,非线性,强耦合,参数摄动和时延系统。而且其数学模型很难建立。针对这些问题,提出了一种基于小增益定理和频域函数逼近的解耦控制方法。当燃气加热炉系统解耦成三个无干扰的单回路时,系统中使用了基于时延内部模型控制的PID控制器。通过仿真分析验证了煤气加热炉控制的效果。当加热炉参数扰动较大时,系统具有良好的解耦能力和动,静态控制性能。该方法大大提高了系统响应的灵敏度和控制精度,具有很强的鲁棒性。

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