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首页> 外文期刊>International Communications in Heat and Mass Transfer >A chain smoothing Newton method for heat and mass transfer control with discrete variability DAE models
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A chain smoothing Newton method for heat and mass transfer control with discrete variability DAE models

机译:不同变异性DAE模型的热传质控制链光滑牛顿方法

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摘要

A multiple shooting based approach to an optimal control problem for highly nonlinear differential-algebraic systems (DAEs, differential-algebraic equations) is considered. The necessary optimality conditions being a consequence of the theory of variational inequalities are derived in the form of structured nonsmooth equations. A new indirect high accuracy optimization algorithm exploiting the chain structure of the mentioned equations is described. It uses the Chen-Harker-Kanzow-Smale smoothing function for the projection operator. A global superlinear (quadratic) convergence of the new algorithm is proven with using the theory of the smoothing Newton method specialized to the multiple shooting approach. The proposed algorithm is verified on the dynamic optimization of a highly nonlinear heat and mass exchange process. In general, the presented considerations have been motivated by the results of numerical simulations presented in the work Pandelidis et al., "Performance study of counter-flow indirect evaporative air coolers" Pandelidis et al. (2015).
机译:考虑了对高度非线性差分代数系统(DAE,差分代数方程)的最佳控制问题的多射击方法。必要的最优性条件是变分不等式理论的结果是以结构化的非结构化的形式导出。描述了利用所提到的等式的链结构的新间接高精度优化算法。它使用Chen-Harker-Kanzow-Smale平滑功能为投影算子。使用专门用于多次拍摄方法的平滑牛顿方法理论,证明了新算法的全局超级连续性(二次)收敛。验证了所提出的算法,验证了高度非线性热量和批量交流过程的动态优化。通常,所提出的考虑因素是由工作Pandelidis等,“反流间接蒸发空气冷却器”的“逆流间接蒸发空气冷却器”的数值模拟结果而引发.Pandelidis等。 (2015)。

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