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A Dynamic Soft-sensing Method Based on Impulses Response Template and Parameter Estimation with Modified DE Optimization

机译:一种基于脉冲响应模板的动态软感测方法和改进式DE优化的参数估计

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As major experimental modeling methods, static soft-sensing methods have been widely used in modern chemical production process now. In fact, for the sampling frequency to output variable by laboratory analyzer off-line is rather low and uniform, the computed results, which gained from those methods or the existed major dynamic methods such as neural networks, are difficult to satisfy the requirements of dynamic control on-line. A dynamic soft-sensing method (DSSM) based on impulse response template (IRT) and parameter estimation using differential evolution (DE) optimization is presented in this paper. However, for a multi-variables system, learning of template parameters still takes large computational cost, and is not only slow in the convergence speed but also easy to be trapped into local optima so as to enlarge the modeling errors. To account for these problems, the original DE (ODE) is modified in the aspects of scaling factor and crossover rate, which could dynamically change with iterative loops. Subsequently, a complete implementation of the modified DE (MDE) is presented. Experiment based on hysys simulation of a primary tower system to build a three-inputs-single-output model is carried out, under various impulse response length and noise standard, and the final comparison results demonstrate the effectiveness and robustness of this method.
机译:作为主要的实验模型方法,静态软感测方法现在已广泛应用于现代化学生产过程。事实上,对于通过实验室分析仪离线的采样频率输出变量相当低而均匀,从这些方法或存在的主要动态方法(如神经网络)中获得的计算结果难以满足动态的要求控制在线。本文介绍了一种基于脉冲响应模板(IRT)和参数估计的动态软感测方法(DSSM)和使用差分演进(DE)优化的参数估计。但是,对于多变量系统,模板参数的学习仍然需要大的计算成本,并且不仅在收敛速度速度速度速度,而且易于被捕获到本地最佳状态,以便放大建模错误。要考虑这些问题,原始de(ode)在缩放因子和交叉速率的方面进行了修改,这可以通过迭代环动态地改变。随后,提出了修改的de(MDE)的完整实现。基于Hysys模拟主要塔系统来构建三输入单输出模型的实验,在各种脉冲响应长度和噪声标准下进行,最终的比较结果证明了该方法的有效性和鲁棒性。

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