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Preference driven multi-objective optimization design procedure for industrial controller tuning

机译:偏好驱动的工业控制器整定多目标优化设计程序

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Multi-objective optimization design procedures have shown to be a valuable tool for control engineers. These procedures could be used by designers when (1) it is difficult to find a reasonable trade-off for a controller tuning fulfilling several requirements; and (2) if it is worthwhile to analyze design objectives exchange among design alternatives. Despite the usefulness of such methods for describing trade-offs among design alternatives (tuning proposals) with the so called Pareto front, for some control problems finding a pertinent set of solutions could be a challenge. That is, some control problems are complex in the sense of finding the required trade-off among design objectives. In order to improve the performance of MOOD procedures for such situations, preference handling mechanisms could be used to improve pertinency of solutions in the approximated Pareto front. In this paper an overall MOOD procedure focusing in controller tuning applications using designer's preferences is proposed. In order to validate such procedure, a benchmark control problem is used and reformulated into a multi-objective problem statement, where different preference handling mechanisms in the optimization process are evaluated and compared. The obtained results validate the overall proposal as a potential tool for industrial controller tuning. (C) 2015 Elsevier Inc. All rights reserved.
机译:对于控制工程师来说,多目标优化设计程序已被证明是有价值的工具。当以下情况时,设计人员可以使用这些程序:(1)很难找到满足几个要求的控制器调整的合理权衡; (2)是否值得分析设计备选方案之间的设计目标交换。尽管使用这种方法来描述所谓的Pareto前沿设计方案(调整建议)之间的折衷是有用的,但对于某些控制问题而言,找到一组相关的解决方案仍然是一个挑战。即,在找到设计目标之间需要的权衡的意义上,某些控制问题很复杂。为了提高这种情况下MOOD程序的性能,可以使用优先处理机制来提高近似Pareto前沿中解的相关性。在本文中,提出了一种总体的MOOD程序,该程序针对使用设计人员偏好的控制器调整应用程序。为了验证这种过程,使用了基准控制问题并将其重新表述为多目标问题陈述,其中对优化过程中的不同偏好处理机制进行了评估和比较。获得的结果验证了总体建议作为工业控制器调试的潜在工具。 (C)2015 Elsevier Inc.保留所有权利。

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