Hongisto Valtteri, Oliva David, Rekola Laura
Finnish Institute of Occupational Health, Lemminkäisenkatu 14-18 B, 20520 Turku, Finland.
J Acoust Soc Am. 2015 Mar;137(3):1344-55. doi: 10.1121/1.4913273.
Artificial sound masking is increasingly used in open-plan offices to improve speech privacy and to reduce distraction caused by speech sounds. Most of the masking sounds are based on pseudorandom continuous noise filtered to a specific spectrum that should be optimized in respect with speech masking efficiency and comfort. The aim of this study was to increase basic understanding regarding the comfort. The second aim was to determine how well objective rating methods (15 different noise indices) predict the subjective ratings. Twenty-three subjects rated the loudness, disturbance, pleasantness, and six other subjective measures of 11 spectrally different noises in laboratory conditions. Speech was not present during the experiment. All sounds were presented at 42 dB LAeq within 50-10,000 Hz. Unexpectedly, the subjects were most satisfied with sounds having emphasis on low frequencies. A sound having a slope of -7 dB per octave increment resulted in the highest satisfaction. Changes in subjective ratings were reasonably well predicted by five noise indices, while many well-known noise indices frequently used in building design underperformed in this task. The results are expected to benefit in the design of masking sounds and other appliances.
人工声音掩蔽在开放式办公室中越来越多地被使用,以提高语音隐私并减少语音声音造成的干扰。大多数掩蔽声音基于经过滤波以获得特定频谱的伪随机连续噪声,该频谱应在语音掩蔽效率和舒适度方面进行优化。本研究的目的是增进对舒适度的基本理解。第二个目的是确定客观评级方法(15种不同的噪声指标)对主观评级的预测效果如何。23名受试者在实验室条件下对11种频谱不同的噪声的响度、干扰度、愉悦度以及其他六种主观指标进行了评级。实验期间没有语音。所有声音均在50 - 10,000赫兹范围内以42分贝的等效连续A声级呈现。出乎意料的是,受试者对强调低频的声音最为满意。每倍频程增量斜率为 -7分贝的声音带来了最高的满意度。主观评级的变化通过五种噪声指标得到了合理的良好预测,而建筑设计中常用的许多知名噪声指标在这项任务中表现不佳。预计这些结果将有助于掩蔽声音和其他设备的设计。