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Dynamic optimization of chemical and biochemical processes using restricted second order information

机译:使用受限的二阶信息动态优化化学和生化过程

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摘要

The extension of a recently developed method for the dynamic optimization (DO) of chemical and biochemical processes is presented. This method is based on the control vector parameterization approach and makes use of the calculation of first and second order sensitivities to obtain exact gradient and projected Hessian information. In order to achieve high discretization levels of the control variables with a moderate computational cost, a mesh refining technique is also presented here. The robustness and efficiency of this strategy is illustrated with the solution of several challenging case studies.
机译:介绍了最近开发的化学和生化过程动态优化(DO)方法的扩展。该方法基于控制矢量参数化方法,并利用一阶和二阶灵敏度的计算来获得精确的梯度和投影的Hessian信息。为了以适度的计算成本实现控制变量的高离散化水平,此处还提出了网格细化技术。通过一些具有挑战性的案例研究,说明了该策略的鲁棒性和效率。

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