Solution of Fractional Optimal Control Problems by using orthogonal collocation and Multi-objective Optimization Stochastic Fractal Search

J. V. C. F. Lima, F. S. Lobato, V. Steffen Jr
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引用次数: 1

Abstract

In this contribution the solution of Fractional Optimal Control Problems (FOCP) by using the Orthogonal Collocation Method (OCM) and the Multi-objective Optimization Stochastic Fractal Search (MOSFS) algorithm is investigated. For this purpose, three classical case studies on engineering are considered. Initially, the concentration profiles of laccase enzyme production process are analyzed to evaluate the influence of fractional order. Then, two classical FOCP (Catalyst Mixing and Batch Reactor) are solved by using the association between OCM and MOSFS approachesthrough the formulation and solution of a multi-objective optimization problem. The results indicate that the variation of the fractional order impliesdifferent values for the original objective function. In addition, physicallyincoherent profiles can be obtained by considering the fluctuation of the fractional order. Finally, the proposed MOSFS is considered as apromising methodology to solve multi-objective optimization problems.

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用正交配置和多目标优化随机分形搜索求解分数最优控制问题
本文研究了用正交配置法和多目标优化随机分形搜索算法求解分数最优控制问题。为此,考虑了三个经典的工程案例研究。首先,分析漆酶生产过程中的浓度分布,以评估分数阶数的影响。然后,利用OCM和MOSFS方法之间的关联,通过多目标优化问题的公式化和求解,求解了两个经典的FOCP(催化剂混合和间歇反应器)。结果表明,分数阶的变化对原始目标函数意味着不同的值。此外,可以通过考虑分数阶的波动来获得物理非相干轮廓。最后,所提出的MOFS被认为是解决多目标优化问题的一种有效方法。
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