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The effects of tones in noise on human annoyance and performance.

机译:噪声中的音调对人的烦恼和性能的影响。

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摘要

Building mechanical equipment often generates prominent tones because most systems include rotating parts like fans and pumps. These tonal noises can cause unpleasant user experiences in spaces and, in turn, lead to increased complaints by building occupants. Currently, architectural engineers can apply the noise criteria guidelines in standards or publications to achieve acceptable noise conditions for assorted types of spaces. However, these criteria do not apply well if the noise contains perceptible tones. The annoyance thresholds experienced by the general population with regards to the degree of tones in noise is a significant piece of knowledge that has not been well-established. Thus, this dissertation addresses the relationship between human perception and noises with tones in the built environment.;Four phases of subjective testing were conducted in an indoor acoustic testing chamber at the University of Nebraska to achieve the research objective. The results indicate that even the least prominent tones in noises can significantly decrease the cognitive performance of participants on a mentally demanding task. Factorial repeated-measures analysis of variance of test results have proven that tonality has a crucial influence on working memory capacity of subjects, whereas loudness levels alone did not. A multidimensional annoyance model, incorporating psycho-acoustical attributes of noise in addition to loudness and tonality, has been proposed as a more accurate annoyance model.
机译:建筑机械设备通常会发出明显的声音,因为大多数系统都包括风扇和泵之类的旋转部件。这些声音会导致用户在空间中的不愉快体验,进而导致建筑物占用者的抱怨增加。当前,建筑工程师可以在标准或出版物中应用噪声标准准则,以实现各种类型空间的可接受噪声条件。但是,如果噪声包含可察觉的音调,这些标准将无法很好地应用。普通人群在噪音声调方面所经历的烦恼阈值是一项尚未建立的重要知识。因此,本论文解决了人类感知与建筑环境中噪声与声音之间的关系。在内布拉斯加大学的室内声学测试室内进行了四个阶段的主观测试,以达到研究目的。结果表明,即使是声音中最不明显的音调,也可能显着降低参与者在一项精神上要求很高的任务上的认知能力。测试结果方差的阶乘重复测量分析已证明,音调对受试者的工作记忆能力具有至关重要的影响,而响度水平本身并没有。多维烦恼模型,除了响度和音调外,还结合了噪声的心理声学属性,已被认为是一种更准确的烦恼模型。

著录项

  • 作者

    Lee, Joonhee.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Acoustics.;Architectural engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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