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首页> 外文期刊>Journal of vibration and control: JVC >A novel hybrid fuzzy nonlinear weighted goal programming for optimising interior acoustics level in car cabin
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A novel hybrid fuzzy nonlinear weighted goal programming for optimising interior acoustics level in car cabin

机译:一种新颖的混合模糊非线性加权目标规划,用于优化车厢内部声学水平

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摘要

The factors that are normally considered by customers for comfortable driving upon purchasing a car are acoustical comfort and exposed vibration. Keeping this in mind, the level of noise annoyance in reference to the vehicle acoustical comfort index is proposed. This index can be categorized by five states which are generally used in the computation that involve acoustical levels in the car cabin. This study is carried out in order to improve this index by classifying and categorizing these five states using the fuzzy set theory approach. Besides, identified sources of vibration are usually linked with engine transmission and tire-road interaction. This study includes the observation on the effects of the vibration due to tire interaction with the road, as well as the pattern of the trends toward the experienced noise against the engine speed [rpm] at both stationary and non-stationary positions. A combination of fuzzy set theory and nonlinear programming has been employed to develop a multi-objective model of hybrid fuzzy nonlinear weighted goal programming. This developed model adopts the results that have been provided in order to optimize the acoustics level by referring to the vibration level which is required at a certain value of the engine speed [rpm]. The proposed model has a significant impact towards a better environment, in the perspective of acoustics - a key factor in vehicle manufacturing process.
机译:客户通常在购买汽车时考虑舒适驾驶的因素是声学舒适性和暴露的振动。牢记这一点,提出了相对于车辆声学舒适性指数的噪声烦扰程度。该索引可以按五个状态进行分类,这五个状态通常用于涉及车厢内声学水平的计算中。为了通过使用模糊集理论方法对这五个状态进行分类和分类来改善该指标,进行了本研究。此外,确定的振动源通常与发动机传动装置和轮胎-道路相互作用有关。这项研究包括观察由于轮胎与路面的相互作用而引起的振动的影响,以及在固定位置和非固定位置处相对于发动机速度[rpm]而言,经历的噪声趋势的变化趋势。将模糊集理论与非线性规划相结合,建立了混合模糊非线性加权目标规划的多目标模型。此开发的模型采用了提供的结果,以通过参考在发动机转速[rpm]的特定值下所需的振动水平来优化声学水平。从声学(汽车制造过程中的关键因素)的角度来看,所提出的模型对改善环境具有重大影响。

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