The method to predict roll deformation precisely and efficiently is vital for the strip shape control of a six-high rolling mill. Traditional calculation methods of roll deformation, such as the finite element method ...The method to predict roll deformation precisely and efficiently is vital for the strip shape control of a six-high rolling mill. Traditional calculation methods of roll deformation, such as the finite element method and the influence function method, have been widely used due to their accuracies. However, the required calculation time is too long to be applied to the realtime control. Therefore, a rapid calculation method for predicting roll deformation of a six-high rolling mill was proposed, which employed the finite difference method to calculate the roll deflection and used a polynomial to describe the nonlinear relationship between roll flattening and roll contact pressure. Furthermore, a new correction strategy was proposed in the iteration, where the roll center flattening and the roll flattening deviation were put forward and corrected simultaneously in the iteration process according to the static equilibrium of roll. Finally, by the comparison with traditional methods, the proposed method was proved to be more efficient and it was suitable for the online calculation of the strip shape control.展开更多
针对热工对象的时变性特点及其在运行过程中易受到不确定性干扰的影响,提出一种基于最小均方(least mean square,LMS)自适应滤波器的热工过程建模方法。LMS滤波器以未知对象的输入和输出作为激励和期望信号,通过最速下降法得到未知对象...针对热工对象的时变性特点及其在运行过程中易受到不确定性干扰的影响,提出一种基于最小均方(least mean square,LMS)自适应滤波器的热工过程建模方法。LMS滤波器以未知对象的输入和输出作为激励和期望信号,通过最速下降法得到未知对象的有限脉冲响应(finity impluse response,FIR)模型,其与差分方程或传递函数是等价的。实验仿真和某电厂实际运行数据验证了该算法的有效性。这种建模方法避免了复杂的机理分析,其抽头权值的分布可以表征热工对象的动态特性,为分析热工对象提供了一种手段。展开更多
基金This work was financially supported by the National Natural Science Foundation of China (51674028), and Fundamental Research Funds for the Central Universities (FRF-IC- 16-001).
文摘The method to predict roll deformation precisely and efficiently is vital for the strip shape control of a six-high rolling mill. Traditional calculation methods of roll deformation, such as the finite element method and the influence function method, have been widely used due to their accuracies. However, the required calculation time is too long to be applied to the realtime control. Therefore, a rapid calculation method for predicting roll deformation of a six-high rolling mill was proposed, which employed the finite difference method to calculate the roll deflection and used a polynomial to describe the nonlinear relationship between roll flattening and roll contact pressure. Furthermore, a new correction strategy was proposed in the iteration, where the roll center flattening and the roll flattening deviation were put forward and corrected simultaneously in the iteration process according to the static equilibrium of roll. Finally, by the comparison with traditional methods, the proposed method was proved to be more efficient and it was suitable for the online calculation of the strip shape control.
文摘针对热工对象的时变性特点及其在运行过程中易受到不确定性干扰的影响,提出一种基于最小均方(least mean square,LMS)自适应滤波器的热工过程建模方法。LMS滤波器以未知对象的输入和输出作为激励和期望信号,通过最速下降法得到未知对象的有限脉冲响应(finity impluse response,FIR)模型,其与差分方程或传递函数是等价的。实验仿真和某电厂实际运行数据验证了该算法的有效性。这种建模方法避免了复杂的机理分析,其抽头权值的分布可以表征热工对象的动态特性,为分析热工对象提供了一种手段。