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Verification of Real-Time Optimization for Multi-Stage Spray Dryer Operation with Polynomial Optimization

机译:多项式优化验证多级喷雾干燥机运行的实时优化

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Using polynomial optimization, we demonstrate computationally that the local optima determined by a Newton method (interior-point algorithm) for real-time optimization of multi-stage spray dryer operation are identical to the global optimum. In the first major step, we transform the optimization problem for the multi-stage spray dryer operation into a polynomial optimization problem. In this form, the global optimum can be computed by polynomial optimization. In the second major step, we compare the global optimum with the potential local optima obtained by a Newton method for three operational points of a pilot-size plant and for one operational point of an industrial plant. For each case, the Newton method is initialized at 10,000 different initial points. All the computed potential local optima computed by the Newton method are identical to the global optima computed by polynomial optimization. Consequently, based on this extensive computational evidence, we conclude that the Newton method converges to the global optima for the multi-stage spray dryer real-time optimization problem.
机译:使用多项式优化,我们通过计算证明通过牛顿法(内部算法)确定的多级喷雾干燥器运行实时优化的局部最优与全局最优相同。在第一步中,我们将多级喷雾干燥机运行的优化问题转换为多项式优化问题。以这种形式,可以通过多项式优化来计算全局最优。在第二个主要步骤中,我们将中试规模工厂的三个操作点和工业工厂的一个操作点的全局最优值与通过牛顿法获得的潜在局部最优值进行比较。对于每种情况,牛顿方法都将在10,000个不同的初始点处初始化。通过牛顿法计算的所有潜在局部最优值与通过多项式优化计算的全局最优值相同。因此,基于大量的计算证据,我们得出结论,对于多级喷雾干燥器实时优化问题,牛顿法收敛于全局最优。

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