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Research on Active Noise Control Method Compensating for Acoustic Metamaterial Noise Barrier in Transformer Noise Reduction

机译:有源降噪方法在变压器降噪中补偿超材料声屏障的研究

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摘要

Noise barrier with acoustic metamaterial has application prospect in power transformer noise reduction due to its low frequency noise reduction advantages. The acoustic diffraction along the edges of the noise barrier decreases the overall noise reduction obviously. An active noise control (ANC) method combined with noise barrier is proposed to counteract the diffracting sound waves near the edges of the noise barrier. The noise barrier is composed of the Hilbert fractal acoustic metamaterial (HFAMM) units with good sound insulation characteristics at low frequencies. The transmission loss (TL) of the HFAMM unit is higher than 20dB at the main frequencies of the transformer noise theoretically. The experiment system including the acoustic metamaterial noise barrier and the ANC system is established. The sound pressure level with ANC on the specified points in the target area is more than 10dB lower than that without ANC in the experiment. The results prove that the new method is effective for improving noise reduction performance of the noise barriers.
机译:声学超材料的声屏障由于其低频降噪的优势而在电力变压器降噪中具有应用前景。沿着隔音屏障边缘的声学衍射明显降低了总体降噪效果。提出了一种结合噪声屏障的主动噪声控制(ANC)方法,以抵消噪声屏障边缘附近的衍射声波。隔音屏障由希尔伯特分形超材料(HFAMM)单元组成,在低频下具有良好的隔音特性。理论上,在变压器噪声的主频率下,HFAMM单元的传输损耗(TL)高于20dB。建立了包括超材料声屏障和ANC系统的实验系统。在目标区域中指定点上具有ANC的声压级比实验中不具有ANC的声压级低10dB以上。结果证明,该新方法对提高噪声屏障的降噪性能有效。

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