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Measurement with verification of stationary signals and noise in extremely quiet environments: Measuring below the noise floor

机译:在极端安静的环境中进行测量,并验证固定信号和噪声:在本底噪声以下进行测量

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摘要

It can be problematic to measure stationary acoustic sound pressure level in any environment when the target level approaches or lies below the minimum measureable sound pressure level of the measurement system itself. This minimum measureable level, referred to as the inherent measurement system noise floor, is generally established by noise emission characteristics of measurement system components such as microphones, preamplifiers, and other system circuitry. In this paper, methods are presented and shown accurate measuring stationary levels within 20 dB above and below this system noise floor. Methodology includes (1) measuring inherent measurement system noise, (2) subtractive energy based, inherent noise adjustment of levels affected by system noise floor, and (3) verifying accuracy of inherent noise adjustment technique. While generalizable to other purposes, the techniques presented here were specifically developed to quantify ambient noise levels in very quiet rooms used to evaluate free-field human hearing thresholds. Results obtained applying the methods to objectively measure and verify the ambient noise level in an extremely quiet room, using various measurement system noise floors and analysis bandwidths, are presented and discussed. The verified results demonstrate the adjustment method can accurately extend measurement range to 20 dB below the measurement system noise floor, and how measurement system frequency bandwidth can affect accuracy of reported noise levels. (C) 2015 Author(s).
机译:当目标水平接近或低于测量系统本身的最小可测量声压水平时,在任何环境中测量固定的声压水平可能会有问题。通常通过测量系统组件(例如麦克风,前置放大器和其他系统电路)的噪声发射特性来确定此最小可测量水平,称为固有测量系统本底噪声。在本文中,介绍了一些方法,并显示了在此系统本底噪声之上和之下20 dB以内的准确测量静态水平的方法。方法包括(1)测量固有测量系统噪声,(2)基于减能量,对受系统本底噪声影响的电平进行固有噪声调整,以及(3)验证固有噪声调整技术的准确性。虽然可以推广到其他目的,但此处介绍的技术是专门开发的,用于量化用于评估自由场人类听力阈值的非常安静的房间中的环境噪声水平。介绍并讨论了使用该方法客观地测量和验证极端安静的房间中的环境噪声水平(使用各种测量系统的噪声本底和分析带宽)而获得的结果。验证结果表明,该调整方法可以将测量范围准确地扩展到低于测量系统本底噪声的20 dB,以及测量系统的频率带宽如何影响所报告噪声水平的准确性。 (C)2015年作者。

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