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Optimizing control of adsorption separation processes based on the improved moving asymptotes algorithm

机译:基于改进的移动渐近算法的吸附分离过程控制

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摘要

We adopt the orthogonal collocation finite element method to solve an equilibrium diffusion model of a simulated moving bed chromatography separation process. We propose an optimization strategy based on the improved moving asymptotes algorithm to improve system performance indexes. By the triangle theory, we verify the feasibility of the improved moving asymptotes method. The simulation results illustrate that the improved moving asymptotes method converges quickly and results in uniformly distributed optimal solutions. This work aims to show that the simulated moving bed process can be dynamically controlled and optimized using an optimizing controller based on the method of improved moving asymptotes, facilitating the design and operation of a simulated moving bed.
机译:我们采用正交裂缝有限元方法来解决模拟移动床层析分离过程的平衡扩散模型。 我们提出了一种基于改进的移动渐近算法的优化策略来提高系统性能索引。 通过三角理论,我们验证了改进的移动渐近方法的可行性。 仿真结果说明了改进的移动渐近方法快速收敛并导致均匀分布的最佳解决方案。 该工作旨在表明,基于改进的移动渐近的方法,可以使用优化控制器动态地控制和优化模拟的移动床处理,便于模拟移动床的设计和操作。

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