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Noise Reduction of Three Dimensional Enclosed Sound Fields Using Nonlinear Compensation

机译:利用非线性补偿降低三维封闭声场的噪声

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In this paper, the feasibility of implementing a nonlinear compensator technique in reducing noise transmitted into a three dimensional enclosure through a flexible panel is presented. A spherical wave, which is generated by a noise source located in the near field, is transmitted into a rectangular enclosure through a flexible panel. Piezoelectric patches, which are bonded symmetrically to the top and bottom surfaces of the panel, are used as actuators. The analytic model used here accounts for panel interactions with both the external and enclosed sound fields and the bonded piezoelectric patches, and this feature makes it appealing for a broad field of model-based active, passive, and hybrid noise control schemes. The nonlinear compensation scheme aims to increase the damping of the flexible panel linearly with the panel vibration amplitude and, thus, attenuates noise fields associated with structural resonance frequencies. Simulation results show that, despite the simple structure of the nonlinear compensator, high attenuation levels could be achieved. Results also show that the control input of the nonlinear compensation scheme is reduced, when compared to optimal control schemes.
机译:在本文中,提出了实施非线性补偿器技术以减少通过柔性面板传递到三维外壳中的噪声的可行性。由位于近场的噪声源生成的球面波通过柔性面板传输到矩形外壳中。对称连接到面板顶部和底部表面的压电贴片用作执行器。此处使用的分析模型考虑了面板与外部声场和封闭声场以及粘结压电片的相互作用,并且此功能使其吸引了基于模型的主动,被动和混合噪声控制方案的广泛领域。非线性补偿方案旨在随着面板振动幅度线性增加柔性面板的阻尼,从而衰减与结构共振频率相关的噪声场。仿真结果表明,尽管非线性补偿器结构简单,但仍可以实现高衰减水平。结果还表明,与最佳控制方案相比,非线性补偿方案的控制输入减少了。

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