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首页> 外文期刊>The Journal of the Acoustical Society of America >Influences of low-frequency energy and testing environment on annoyance responses to supersonic aircraft noise when heard indoors
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Influences of low-frequency energy and testing environment on annoyance responses to supersonic aircraft noise when heard indoors

机译:低频能源和测试环境对在室内听到的超音速飞机噪声烦恼反应的影响

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摘要

The research reported is part of a larger effort to develop models to predict community response to transient sounds, including sonic booms. Such models can be used along with aircraft sound predictions to guide the design of supersonic aircraft to produce generally acceptable sounds. A test was conducted to examine the influence of low frequencies on people's responses to recorded and simulated booms and other environmental transients, heard indoors over earphones. The results of this test and a companion test conducted in a sonic boom simulator were compared to see if the playback environment affected responses. Annoyance models were also examined.E-weighted Sound Exposure level (ESEL) was the sound metric most highly correlated to mean annoyance withB-weighted Sound Exposure Level (BSEL) and Perceived Level performing similarly. Predictions were improved by including Heaviness, Duration, and rate of change of Loudness in models with a loudness metric. Models were also estimated by using the average responses from both tests and metrics generated from outdoor versions of the sounds. These models also produced accurate annoyance predictions. BSEL was the best single-metric predictor, with ESEL close behind. Including Heaviness, Duration, and rate of change of Loudness resulted inR(2)values as high as 0.90.
机译:该研究报告是制定模型的更大努力的一部分,以预测对瞬态声音的社区响应,包括Sonic Boom。这些模型可以与飞机声音预测一起使用,以引导超音速飞机的设计,以产生通常可接受的声音。进行了一个测试,以检查低频对人们对记录和模拟繁荣和其他环境瞬变的反应的影响,在室内听到耳机。将该测试的结果和在Sonic Boom Simulator中进行的伴奏测试进行了比较,看出播放环境是否受到影响。还检查了烦恼模型。加权声音曝光水平(ESEL)是最高度相关的声音,与令人烦恼的加权声曝光水平(BSEL)和感知水平相似。通过包括响度度量的模型中的厚度,持续时间和响度变化的变化率改善了预测。还通过使用从户外版本的声音产生的测试和指标的平均响应来估计模型。这些模型也产生了准确的烦恼预测。 BSEL是最好的单度量预测因子,ESEL靠近。包括沉重,持续时间和响度变化率导致INR(2)值高达0.90。

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    Purdue Univ Sch Mech Engn Ray W Herrick Labs 177 South Russell St W Lafayette IN 47907 USA;

    Purdue Univ Sch Mech Engn Ray W Herrick Labs 177 South Russell St W Lafayette IN 47907 USA;

    NASA Langley Res Ctr MailStop 463 2 North Dryden St Hampton VA 23681 USA;

    NASA Langley Res Ctr MailStop 463 2 North Dryden St Hampton VA 23681 USA;

    NASA Langley Res Ctr MailStop 463 2 North Dryden St Hampton VA 23681 USA;

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  • 正文语种 eng
  • 中图分类 声学;
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