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3-D Sound Intensity Measurements: Accuracy Enhancements With Virtual-Instrument-Based Technology

机译:3-D声音强度测量:基于虚拟仪器的技术可提高准确性

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This paper describes a method that allows accuracy and bandwidth enhancements in 3-D sound intensity measurements. Commercial 3-D probes are usually set up with three mutually perpendicular 1-D p-p probes and, thus, arranged with six microphones; although sound intensity can be calculated with 15 independent pairs of transducers, only the three “primary” pairs that are aligned with the coordinate system axes. The other 12 “secondary” pairs consist of mutually perpendicular microphones, which are placed at a distance that is $sqrt{2}$ times shorter than the primary one. The main idea of the proposed method is to average the intensity that is measured on primary and secondary pairs. This leads to a larger bandwidth, thanks to the shorter separating distance between secondary pairs. The intrinsic p-p method highfrequency sensitivity loss is partially recovered, starting from the theoretical plane wave expression. Measurements of different axes are weighted with coefficients that are computed by optimizing the measurement uncertainty. Errors that are due to the metrological characteristics of the transducers and the effects of environmental conditions are compensated. Experimental results showed that a p-p probe arranged with half-inch microphones that are placed at a distance of 50 mm allows reliable measurements up to 2.5 kHz, whereas a commercial probe bandwidth with the same configuration is usually 1250 Hz.
机译:本文介绍了一种可以提高3-D声音强度测量精度和带宽的方法。商用3-D探头通常由三个相互垂直的1-D p-p探头设置,因此配有六个麦克风。尽管可以使用15对独立的换能器来计算声强,但是只有与坐标系轴对齐的三对“主要”对。其他12对“辅助”对由相互垂直的麦克风组成,它们之间的距离比主要麦克风短$ sqrt {2} $倍。提出的方法的主要思想是对在初级和次级对上测量的强度求平均。由于次级对之间的分隔距离更短,这导致了更大的带宽。从理论上的平面波表达式开始,可以部分恢复本征p-p方法的高频灵敏度损失。通过优化测量不确定度计算得出的系数对不同轴的测量值进行加权。补偿了由于换能器的计量特性和环境条件的影响而引起的误差。实验结果表明,以50毫米距离放置半英寸麦克风的p-p探头可以进行高达2.5 kHz的可靠测量,而具有相同配置的商用探头带宽通常为1250 Hz。

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