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Active control of fluid-bome noise in hydraulic systems using in-series and by-pass structures

机译:使用串联和旁路结构主动控制液压系统中的流体噪声

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The nature of digital hydraulic systems may cause severe fluid-borne noise problems because of the pulsed nature of the flow. An effective method to reduce the noise that does not impair the system performance and efficiency is needed. This article reports on initial investigations of an active valve for pressure pulsation attenuation in switched inertance hydraulic systems (SIHS) based on in-series and by-pass structures. The in-series structure represents a valve arranged in line between the SIHS and the load providing a controlled pulsating pressure drop, whilst for the by-pass structure the valve was arranged in parallel with the load providing a controlled pulsating bleed-off flow. A high-performance piezoelectric valve was used as the active controller. Adaptive notch filters with the filtered-X least mean square algorithm were applied for pressure pulsation attenuation, while a frequency-domain least mean square filter was used for secondary path identification. Simulated and experimental results show that excellent cancellation was achieved using the proposed methods, which have several advantages over passive noise control systems. Comparison of the in-series and by-pass structures is discussed in terms of system performance, robustness and advantages. The proposed control structures are very promising for fluid-borne noise cancellation in fluid power systems or other fluid systems with severe noise or vibration problems.
机译:数字液压系统的特性可能会由于流的脉冲特性而导致严重的流体噪声问题。需要一种不降低系统性能和效率的有效噪声降低方法。本文报告了基于串联和旁路结构的主动式阀门对开关惯性液压系统(SIHS)中压力脉动衰减的初步研究。串联结构表示在SIHS与负载之间排成一线的阀,可提供受控的脉动压降,而对于旁路结构,阀与负载平行设置可提供受控的脉动泄放流。高性能压电阀用作主动控制器。将具有滤波X最小均方算法的自适应陷波滤波器用于压力脉动衰减,而将频域最小均方滤波器用于次级路径识别。仿真和实验结果表明,使用所提出的方法可以实现出色的消除效果,与无源噪声控制系统相比,该方法具有许多优势。串联和旁路结构的比较从系统性能,鲁棒性和优点方面进行了讨论。所提出的控制结构对于消除具有严重噪声或振动问题的流体动力系统或其他流体系统中的流体传播噪声非常有希望。

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