2009•Unpublished venueRequires access

Wo-dimensional sound intensity probe and error analysis

Zhou Guanglin, Xiuyan Guo

Open publisher page 0 citations

Abstract

Sound intensity is a vector, so obtained two-dimensional sound intensity is great significance for the noise source identification. Based on the two-microphone cross-spectral method for determining sound intensity, this paper introduces the structure of the new two-dimensional sound intensity probe, used for measuring two-dimensional sound intensity. It establishes the model of the sound intensity probe, and algorithms for two dimensional sound intensity components are given as well as error components. Then, the error characteristics of two-dimensional sound intensity probe are obtained through simulation experiments. On condition of the plane sound field and monopole sound field, this paper separately analyses the error characteristics of the probe. The results indicate that the measurement errors of total sound intensity are less than 1.5 dB, when frequency is below 3000 Hz, it is in the allowable range for engineering. Thus using two-dimensional sound intensity probe with three microphones can measure two-dimensional sound intensity fast and efficiently.

About this research paper

What this paper is about

Sound intensity is a vector, so obtained two-dimensional sound intensity is great significance for the noise source identification. Based on the two-microphone cross-spectral method for determining sound intensity, this paper introduces the structure of the new two-dimensional sound intensity probe, used for measuring two-dimensional sound intensity. It establishes the model of the sound intensity probe, and algorithms for two dimensional sound intensity components are given as well as error components. Then, the error characteristics of two-dimensional sound intensity probe are obtained through simulation experiments. On condition of the plane sound field and monopole sound field, this paper separately analyses the error characteristics of the probe. The results indicate that the measurement errors of total sound intensity are less than 1.5 dB, when frequency is below 3000 Hz, it is in the allowable range for engineering. Thus using two-dimensional sound intensity probe with three microphones can measure two-dimensional sound intensity fast and efficiently.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Sound intensity is a vector, so obtained two-dimensional sound intensity is great significance for the noise source identification. Based on the two-microphone cross-spectral method for determining sound intensity, this paper introduces the structure of the new two-dimensional sound intensity probe, used for measuring two-dimensional sound intensity. It establishes the model of the sound intensity probe, and algorithms for two dimensional sound intensity components are given as well as error components. Then, the error characteristics of two-dimensional sound intensity probe are obtained through simulation experiments. On condition of the plane sound field and monopole sound field, this paper separately analyses the error characteristics of the probe. The results indicate that the measurement errors of total sound intensity are less than 1.5 dB, when frequency is below 3000 Hz, it is in the allowable range for engineering. Thus using two-dimensional sound intensity probe with three microphones can measure two-dimensional sound intensity fast and efficiently.

Key concepts: Sound intensity, Sound intensity probe, Intensity (physics), Acoustics, Acoustic source localization, Microphone, Critical distance, Sound speed gradient

Related papers

Back to paper searchBrowse research topicsOriginal source
Wo-dimensional sound intensity probe and error analysis — Research Paper | ScholarLens