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State-of-the-Art and Progress in the Optimization-based Simultaneous Design and Control for Chemical Processes

机译:基于优化的化学过程同时设计和控制的最新进展

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摘要

Significant progress in the area of simultaneous design and control for chemical processes has been achieved and various methodologies have been put forward to address this issue over the last several decades. These methods can be classified in two categories (1) controllability indicator-based frameworks that are capable of screening alternative designs, and (2) optimization-based frameworks that integrate the process design and control system design. The major objective is to give an up-to-date review of the state-of-the-art and progress in the challenging area of optimization-based simultaneous design and control. First, motivations and significances of simultaneous design and control are illustrated. Second, a general classification of existing methodologies of optimization-based simultaneous design and control is outlined. Subsequently, the mathematical formulations and relevant theoretical solution algorithms, their merits, strengths and shortcomings are highlighted. Last, based on the recent advances in this field, challenges and future research directions are discussed briefly. An attempt is made with the help of this review article to stimulate further research and disseminate the simultaneous design methods to challenging problem areas. In particular, the application of optimization-based simultaneous design and control methods to large-scale systems with highly inherent nonlinear dynamics often the case in industrial chemical processes remains a challenging task and yet to be solved.
机译:在过去的几十年中,化学过程的同时设计和控制领域已经取得了重大进展,并提出了各种方法来解决这个问题。这些方法可以分为两类:(1)能够筛选替代设计的基于可控制性指标的框架,以及(2)集成了过程设计和控制系统设计的基于优化的框架。主要目标是对基于优化的同步设计和控制这一具有挑战性的领域的最新技术和进展进行最新审查。首先,说明了同时设计和控制的动机和意义。其次,概述了基于优化的同时设计和控制的现有方法的一般分类。随后,重点介绍了数学公式和相关的理论求解算法,以及它们的优点,优点和缺点。最后,根据该领域的最新进展,简要讨论了挑战和未来的研究方向。在这篇评论文章的帮助下,试图刺激进一步的研究,并将同时设计的方法传播到具有挑战性的问题领域。特别地,基于优化的同时设计和控制方法在具有高度固有非线性动力学的大型系统中的应用通常在工业化学过程中仍然是一项艰巨的任务,尚待解决。

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