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Multi-objective optimal design of fuzzy controller for structural vibration control using Hedge-algebras approach

机译:采用对冲代数方法对结构振动控制模糊控制器的多目标优化设计

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In this paper, the problem of multi-objective optimal design of hedge-algebras-based fuzzy controller (HAC) for structural vibration control with actuator saturation is presented. The main advantages of HAC are: (i) inherent order relationships among linguistic values of each linguistic variable are always ensured; (ii) instead of using any fuzzy sets, linguistic values of linguistic variables are determined by an isomorphism mapping called semantically quantifying mapping (SQM) based on a few fuzziness parameters of each linguistic variable and hence, the process of fuzzy inference is very simple due to SQM values occurring in the fuzzy rule base and (iii) when optimizing HAC, only a few design variables which are above fuzziness parameters are needed. As a case study, a HAC and optimal HACs (opHACs) based on multi-objective optimization view point have been designed to active control of a benchmark structure with active bracing system subjected to earthquake excitation. Control performance of controllers is also discussed in order to shown advantages of the proposed method.
机译:本文提出了一种利用致动器饱和度的结构振动控制的对冲代数的模糊控制器(HAC)多目标最佳设计问题。 HAC的主要优点是:(i)始终确保每个语言变量的语言值之间的固有订单关系; (ii)(ii)代替使用任何模糊集,语言变量的语言值由语义映射来决定,其基于每个语言变量的几个模糊参数称为语义量化映射(SQM),因此,模糊推理的过程非常简单在优化HAC时,在模糊规则库和(III)中发生的SQM值,只需要少量少一些设计变量。作为一个案例研究,基于多目标优化视图的HAC和最佳HACS(OPHAC)设计成主动控制具有受地震激励的主动支撑系统的基准结构。还讨论了控制器的控制性能,以便显示所提出的方法的优点。

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