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Effects of the location of sound masking loudspeakers on cognitive performance in open-plan offices: Local sound masking is as efficient as conventional sound masking

机译:掩蔽扬声器的位置对开放式办公室中认知表现的影响:本地掩蔽与传统掩蔽一样有效

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摘要

Sound masking is a well-known measure to reduce the detrimental impact of irrelevant background speech in open-plan offices. However, the impact of the location of sound masking loudspeakers on the efficiency of masking systems with regard to cognitive performance has not yet been evaluated. This aspect is particularly important in decentralised sound masking architectures that enable individualised solutions but may depend highly on spatial release from masking. This paper reports on a study in an open-plan office with laboratory-like conditions. The subjects performed a serial recall task and completed a questionnaire during twelve different sound conditions with five different loudspeaker sets. With regard to serial recall performance, a disadvantage was observed when the speech and masker signals were presented from different horizontal directions of 90 degrees as opposed to the same direction. Moreover, a similar disadvantage occurred when the masking sound was presented over six conventional sound masking loudspeakers that were mounted in the ceiling and positioned in a grid spacing of 2.4 m. However, when the cutoff frequency of the high-pass filter that was applied to the masker signal was lowered from 200 to 100 Hz, this disadvantage did not occur. Since the sound conditions with masking from the ceiling did not produce lower error rates and were not rated as less annoying, these results imply that a local sound masking system can improve the ability to concentrate at work as efficiently as a centralised approach.
机译:声音屏蔽是一种减少开放式办公室中无关的背景语音的有害影响的众所周知的措施。但是,关于认知性能,声音掩膜扬声器的位置对掩膜系统效率的影响尚未得到评估。这方面在分散的声音掩蔽体系结构中尤其重要,该体系结构可以实现个性化的解决方案,但在很大程度上取决于掩蔽的空间释放。本文报道了在一个开放式办公室中的类似实验室条件的研究。受试者执行了一系列的召回任务,并使用五组不同的扬声器在十二种不同的声音条件下完成了问卷调查。关于串行召回性能,当语音和掩蔽信号是从与同一方向相反的90度不同水平方向呈现时,观察到一个缺点。此外,当在安装在天花板上并以2.4 m的栅格间距放置的六个常规声音掩蔽扬声器上呈现掩蔽声音时,也会发生类似的缺点。但是,当施加到屏蔽信号的高通滤波器的截止频率从200Hz降低到100Hz时,不会发生此缺点。由于从天花板上进行掩蔽的声音条件不会产生较低的错误率,并且没有被认为具有较低的烦人性,因此这些结果表明本地声音掩蔽系统可以像集中式方法一样提高集中精力工作的能力。

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