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Sampling procedures on reception plates to quantify structure-borne sound power from machinery

机译:接待板上的采样程序,以量化机械的结构 - 传承音功

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Experimentally validated models of a heavyweight reception plate using finite element methods (FEM) have been used to assess reception plate measurements of structure-borne sound power injected by single- and multiple-contact, broadband sources. Measurements and FEM indicated high velocity levels near corners and edges of the plate; hence the reception plate power was underestimated by up to approximate to 9 dB below 100 Hz when using velocity measurements in the central zone of the plate. To avoid this problem, a sampling strategy was developed using an area-weighting approach for the velocity measurements. Measurement of the reception plate power using the area-weighted velocity level gave errors that were less than 2 dB between 20 Hz and 2 kHz for both single- and multiple-contact sources. FEM simulations also identified an additional measurement constraint for a multiple-contact source representing white goods with either zero-phase or random-phase relationships between the four contact points. As the actual phase relationship is rarely known, potential bias can be avoided by excluding positions in the area between the contacts (typically the area underneath a machine) along with those within the estimated reverberation distance from each contact point. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用有限元方法(FEM)的重量级接收板的实验验证型号已被用于评估通过单次和多触点,宽带源注入的结构传播音量的接收板测量。测量和有限元指示靠近板块和边缘附近的高速水平;因此,当在板的中心区域中使用速度测量时,通过在100Hz以下高于100Hz的接收板功率低至9dB。为了避免这个问题,使用用于速度测量的区域加权方法来开发采样策略。使用面积加权速度水平的接收板功率测量,对于单个和多触点源,使用面积加权速度水平的误差小于2dB,2dB,对于单个和多触点源。 FEM模拟还识别了表示白品的多触点源的额外测量约束,其中四个接触点之间具有零阶段或随机相位关系。随着实际相位关系很少知道,可以通过在距各个接触点的估计混响距离内的触点(通常是区域)之间的面积中排除位置来避免电位偏差。 (c)2020 elestvier有限公司保留所有权利。

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