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A unified approach for squeal instability analysis of disc brakes with two types of random-fuzzy uncertainties

机译:具有两种随机模糊不确定性的盘式制动器的尖叫不稳定性分析的统一方法

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Automotive brake systems are always subjected to various types of uncertainties and two types of random-fuzzy uncertainties may exist in the brakes. In this paper, a unified approach is proposed for squeal instability analysis of disc brakes with two types of random-fuzzy uncertainties. In the proposed approach, two uncertainty analysis models with mixed variables are introduced to model the random-fuzzy uncertainties. The first one is the random and fuzzy model, in which random variables and fuzzy variables exist simultaneously and independently. The second one is the fuzzy random model, in which uncertain parameters are all treated as random variables while their distribution parameters are expressed as fuzzy numbers. Firstly, the fuzziness is discretized by using α-cut technique and the two uncertainty analysis models are simplified into random-interval models. Afterwards, by temporarily neglecting interval uncertainties, the random-interval models are degraded into random models, in which the expectations, variances, reliability indexes and reliability probabilities of system stability functions are calculated. And then, by reconsidering the interval uncertainties, the bounds of the expectations, variances, reliability indexes and reliability probabilities are computed based on Taylor series expansion. Finally, by recomposing the analysis results at each α-cut level, the fuzzy reliability indexes and probabilities can be obtained, by which the brake squeal instability can be evaluated. The proposed approach gives a general framework to deal with both types of random-fuzzy uncertainties that may exist in the brakes and its effectiveness is demonstrated by numerical examples. It will be a valuable supplement to the systematic study of brake squeal considering uncertainty.
机译:汽车制动系统总是要经受各种类型的不确定性,并且制动器中可能存在两种类型的随机模糊不确定性。本文提出了一种统一的方法来分析具有两种随机模糊不确定性的盘式制动器的尖叫不稳定性。在该方法中,引入了两个带有混合变量的不确定性分析模型来对随机模糊不确定性进行建模。第一个是随机和模糊模型,其中随机变量和模糊变量同时且独立地存在。第二个是模糊随机模型,其中不确定性参数都被视为随机变量,而其分布参数则表示为模糊数。首先,使用α-cut技术将模糊度离散化,并将两个不确定性分析模型简化为随机区间模型。然后,通过暂时忽略区间不确定性,将随机区间模型降级为随机模型,在其中计算系统稳定性函数的期望值,方差,可靠性指标和可靠性概率。然后,通过重新考虑区间不确定性,基于泰勒级数展开来计算期望值,方差,可靠性指标和可靠性概率的界限。最后,通过对每个α-cut级的分析结果进行重组,可以获得模糊的可靠性指标和概率,从而可以评估制动尖叫的不稳定性。所提出的方法为处理制动器中可能存在的两种类型的随机模糊不确定性提供了一个通用框架,并通过数值示例证明了其有效性。对于不确定性制动尖叫的系统研究将是一个有价值的补充。

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