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Hybrid Fluid-borne Noise Control in Fluid-filled Pipelines

机译:流体填充管道中的杂交流体传播噪声控制

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This article reports on an initial investigation of a hybrid fluid-borne noise control system in hydraulic pipelines. The hybrid system is built by integrating an active feedforward noise controller with passive tuned flexible hoses. The active attenuator is designed to cancel the dominant harmonic pressure pulsations in the fluid line, while the passive hose is tuned to attenuate the residual high frequency pulsations. The active attenuator can effectively decrease the fluid-borne noise by superimposing a secondary anti-phase control signal. Adaptive notch filters with the filtered-X least mean square algorithm were applied for the controller and a frequency-domain least mean square filter was used for the secondary path on-line identification. The transmission line model was used to model the pipeline, and a time-domain hose model which includes coupling of longitudinal wall and fluid waves was used to model the flexible hose. Simulation results show that very good noise cancellation was achieved using the proposed approach, which has several advantages over existing fluid-borne noise control systems, being effective for a wide range of frequencies without impairing the system dynamic response much. While the flexible hoses may be less effective than purpose-built passive silencers, they can form an inexpensive and practical solution in combination with active control.
机译:本文报告了液压管道中杂交流体传播噪声控制系统的初步调查。混合系统是通过与被动调谐的柔性软管集成有源前馈噪声控制器构建的。主动衰减器设计用于取消流体管线中的主要谐波压力脉动,而被动软管被调谐以衰减残余的高频脉动。通过叠加二次抗相控制信号,有效衰减器可以有效地降低流体传播的噪声。应用具有过滤器X最小均方算法的自适应凹口滤波器用于控制器,并且频域最小平均方滤波器用于次级路径在线识别。传输线模型用于模拟管道,并且包括纵向壁和流体波的耦合的时域软管模型用于模拟柔性软管。仿真结果表明,使用所提出的方法实现了非常好的噪声消除,这对现有的流体传播的噪声控制系统具有几个优点,对于广泛的频率有效而不损害系统动态响应。虽然灵活的软管可能比目的内置的被动消声器更低,但它们可以与主动控制相结合形成廉价且实用的解决方案。

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