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Energetic analysis of an actively controlled one-dimensional acoustic waveguide

机译:主动控制一维声波导的能量分析

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The aim of this work is to show the energetic behavior when an active noise controller is applied in a one-dimensional waveguide, namely an ideal duct under the first critical frequency. In order to model the duct, a spectral element method, which is shown to be more practical for analyzing pipe networks than other commonly used analytical models, was used. The model used here consists of a duct with two sources, the primary source at one end of the duct, and the secondary source at the middle section. The error sensor was placed downstream from secondary source, and the other end of the duct was open with no flange. Three optimal control methods were applied: minimization of the potential energy density, minimization of the active intensity, and minimization of the total acoustic power radiated by the sources. It was observed that the three control methods achieved the same final result, and when the volume velocity of the secondary source was driven to the optimal volume velocity, neither the primary source nor the secondary source radiated any acoustic power. Furthermore, the controlled duct was equivalent to a duct opened-ended at the secondary source position with radiation impedance equal to zero.
机译:这项工作的目的是显示将有源噪声控制器应用于一维波导(即在第一临界频率下的理想管道)时的能量行为。为了对管道进行建模,使用了一种光谱元素方法,该方法比其他常用的分析模型更实用,可用于分析管网。此处使用的模型由具有两个源的管道组成,主要源位于管道的一端,次要源位于中间部分。误差传感器放置在次要源的下游,并且管道的另一端没有法兰。应用了三种最佳控制方法:最小化势能密度,最小化活动强度以及最小化源辐射的总声功率。可以看出,三种控制方法都达到了相同的最终结果,并且当将次级声源的体积速度驱动到最佳体积速度时,初级声源和次级声源均未辐射任何声功率。此外,受控管道等效于辐射源等于零的次级源位置处开口的管道。

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