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An approach for simultaneous estimation of reaction kinetics and curve resolution from process and spectral data

机译:一种根据过程和光谱数据同时估算反应动力学和曲线分辨率的方法

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摘要

Parameter estimation of reaction kinetics from spectroscopic data remains an important and challenging problem. This study describes a unified framework to address this challenge. The presented framework is based on maximum likelihood principles, nonlinear optimization techniques, and the use of collocation methods to solve the differential equations involved. To solve the overall parameter estimation problem, we first develop an iterative optimization-based procedure to estimate the variances of the noise in system variables (eg, concentrations) and spectral measurements. Once these variances are estimated, we then determine the concentration profiles and kinetic parameters simultaneously. From the properties of the nonlinear programming solver and solution sensitivity, we also obtain the covariance matrix and standard deviations for the estimated kinetic parameters. Our proposed approach is demonstrated on 7 case studies that include simulated data as well as actual experimental data. Moreover, our numerical results compare well with the multivariate curve resolution alternating least squares approach.
机译:从光谱数据估计反应动力学的参数仍然是重要且具有挑战性的问题。这项研究描述了应对这一挑战的统一框架。提出的框架基于最大似然原理,非线性优化技术以及使用搭配方法来解决所涉及的微分方程。为了解决总体参数估计问题,我们首先开发了基于迭代优化的过程,以估计系统变量(例如浓度)和频谱测量中噪声的方差。一旦估计了这些差异,我们就可以同时确定浓度曲线和动力学参数。从非线性规划求解器的性质和求解灵敏度,我们还获得了估计动力学参数的协方差矩阵和标准偏差。我们的建议方法在7个案例研究中得到了证明,其中包括模拟数据和实际实验数据。此外,我们的数值结果与多元曲线分辨率交替最小二乘法的比较很好。

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