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A GENERALIZED APPROACH FOR ACTIVE CONTROL OF STRUCTURAL-INTERIOR GLOBAL NOISE

机译:主动控制结构内部全局噪声的通用方法

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摘要

A generalized approach to the sensing of orthogonal functions, to the global error (potential energy) for a source radiating into an enclosure is presented. The developed orthogonal functions are generalized, as they are fundamentally acoustic based and thus not constrained to being structural or written in terms of structural measurements. Therefore application can be made to any noise source, facilitating wide practical implementation of the technique. The presented acoustic-centric technique for the sensing and control of enclosure noise, by being based on the fundamental acoustic radiation shape - the monopole, thus overcoming the need for any information of the noise source (other than its approximate size) in the construction of orthogonal functions contributing to the noise within the enclosure. The presented approach then makes a significant improvement over previous work in the area of orthogonal developments for radiation into enclosures, which has typically taken a vibration-centric approach postulating vibration domain measurements to construct the global performance criterion. Therefore providing the hope of moving beyond small-scale laboratory implementations to more practical problems. Simulations are completed to illustrate the validity of the novel approach.
机译:提出了一种通用的方法,用于感测正交函数,以解决辐射到外壳中的源的全局误差(势能)。所开发的正交函数是广义的,因为它们基本上是基于声学的,因此不限于结构化或就结构测量而言是书面的。因此,可以将其应用于任何噪声源,从而促进该技术的广泛实际实施。通过基于基本的声辐射形状-单极子,提出了用于感测和控制外壳噪声的以声为中心的技术,从而克服了噪声源构造中对噪声源的任何信息(近似大小除外)的需要正交函数会导致机箱内的噪声。所提出的方法随后在正交开发方面向辐射入外壳的工作进行了重大改进,该工作通常采用了以振动为中心的方法,该方法以振动域测量为基础来构建全局性能标准。因此提供了从小型实验室实施转移到更多实际问题的希望。通过仿真说明了该新方法的有效性。

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