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Combining least-squares and gradient-based algorithms for the identification of a co-current flow heat exchanger

机译:结合最小二乘和基于梯度的算法,用于识别一个电流流动热交换器

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摘要

Because of the high-dimensional nature of partial differential equations (PDEs), identifying accurate models of processes, the behaviour of which is governed by PDEs, is a challenging problem which still deserves a lot of attention. We address the problem of identifying a grey-box model of a heat exchanger by combining equation-error and output-error-based algorithms. First, in order to estimate rough but reliable values of the sought physical parameters characterising the heat exchanger behaviour, we use the interesting properties of the reinitialised partial moments (RPMs) developed initially for ordinary differential equations to deal with the problem of inaccessible partial derivatives of the PDE. Such an adaptation of the RPM features to PDEs leads to a direct continuous-time system identification problem for which convex least-squares solutions can be found. Second, thanks to a description of the heat exchanger dynamics with a 2D linear time-invariant Roesser model, the aforementioned rough estimates are used as reliable initial guesses for the nonlinear optimisation of a standard non-convex cost function introduced to estimate the state-space matrices of the Roesser model we want to identify. The efficiency of this two-step approach in terms of physical parameter estimation is validated through the simulation of a co-current flow heat exchanger.
机译:由于部分微分方程(PDE)的高维性质,识别准确的过程模型,其行为由PDE管理,是一个具有挑战性的问题,这仍然应该受到很多关注。通过组合公式误差和基于输出误差算法来解决识别热交换器灰度型号的问题。首先,为了估计表征热交换器行为的寻求物理参数的粗糙但可靠的值,我们使用最初开发的重新升级的部分时刻(RPMS)的有趣特性以处理常微分方程以应对难以接为的部分衍生物的问题PDE。将RPM特征的这种改编为PDES导致直接连续的连续时间系统识别问题,其可以找到凸形最小二乘解决方案。其次,由于具有2D线性时间不变的roesser模型的热交换器动态的描述,上述粗略估计用作标准非凸起成本函数的非线性优化的可靠性初始猜测,以估计状态空间我们想要识别的roesser模型的矩阵。通过仿真通过对电流流热交换器进行验证,验证了这种两步方法的效率。

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