Computational studies of speech intelligibility in open-plan offices

Background Noise in open-plan offices, connected with an unintentional hearing of conversations and related distraction of attention, causes annoyance of employees. The article presents the calculated range of speech intelligibility in a selected open-plan office room. Material and Methods The spee...

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Main Author: Witold Mikulski
Format: Article
Language:English
Published: Nofer Institute of Occupational Medicine 2019-06-01
Series:Medycyna Pracy
Subjects:
STI
Online Access:http://www.journalssystem.com/medpr/Badania-obliczeniowe-zrozumialosci-mowy-w-pomieszczeniach-biur-otwartych-open-space,100632,0,2.html
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spelling doaj-82578b2e774b43d8a23c33fa105209a62020-11-25T00:31:13ZengNofer Institute of Occupational MedicineMedycyna Pracy0465-58932353-13392019-06-0170332734210.13075/mp.5893.00726100632Computational studies of speech intelligibility in open-plan officesWitold Mikulski0Centralny Instytut Ochrony Pracy − Państwowy Instytut Badawczy / Central Institute for Labour Protection − National Research Institute, Warsaw, Poland (Zakład Zagrożeń Wibroakustycznych / Department of Vibroacoustic Hazards)Background Noise in open-plan offices, connected with an unintentional hearing of conversations and related distraction of attention, causes annoyance of employees. The article presents the calculated range of speech intelligibility in a selected open-plan office room. Material and Methods The speech transmission index (STI) was examined in a real room of 300 m 3 . The room was equipped with a sound absorbing suspended ceiling, acoustic screens and sound absorbing materials on the walls. Initial tests were conducted in order to verify the assumed computational model from ODEON software, as well as the geometrical and acoustic data describing the room. The verification process consisted of comparing the calculations and measurement results. In the main part of the study, the range of speech intelligibility was calculated for several locations of the speech source, i.e., areas in which the STI > 0.5. Results The results of the calculations and the results of the measurements of physical quantities, characterizing the acoustic properties of the open-plan office room (including STI), showed good agreement. For speech emission, the ranges of speech intelligibility were determined on several work stations. Conclusions The use of calculation methods to simulate the sound field in open-plan office rooms is possible when the calibration of the room model is initially performed. Determination of the speech intelligibility range provides important information about the distance of negative acoustic interactions between work stations. This range can be used to determine the interaction between work stations or to assess various technical solutions to reduce the negative interaction. Med Pr. 2019;70(3):327–42http://www.journalssystem.com/medpr/Badania-obliczeniowe-zrozumialosci-mowy-w-pomieszczeniach-biur-otwartych-open-space,100632,0,2.htmlreverberation timeSTIacoustic treatmentopen-plan office roomsspeech intelligibilitydistraction distance
collection DOAJ
language English
format Article
sources DOAJ
author Witold Mikulski
spellingShingle Witold Mikulski
Computational studies of speech intelligibility in open-plan offices
Medycyna Pracy
reverberation time
STI
acoustic treatment
open-plan office rooms
speech intelligibility
distraction distance
author_facet Witold Mikulski
author_sort Witold Mikulski
title Computational studies of speech intelligibility in open-plan offices
title_short Computational studies of speech intelligibility in open-plan offices
title_full Computational studies of speech intelligibility in open-plan offices
title_fullStr Computational studies of speech intelligibility in open-plan offices
title_full_unstemmed Computational studies of speech intelligibility in open-plan offices
title_sort computational studies of speech intelligibility in open-plan offices
publisher Nofer Institute of Occupational Medicine
series Medycyna Pracy
issn 0465-5893
2353-1339
publishDate 2019-06-01
description Background Noise in open-plan offices, connected with an unintentional hearing of conversations and related distraction of attention, causes annoyance of employees. The article presents the calculated range of speech intelligibility in a selected open-plan office room. Material and Methods The speech transmission index (STI) was examined in a real room of 300 m 3 . The room was equipped with a sound absorbing suspended ceiling, acoustic screens and sound absorbing materials on the walls. Initial tests were conducted in order to verify the assumed computational model from ODEON software, as well as the geometrical and acoustic data describing the room. The verification process consisted of comparing the calculations and measurement results. In the main part of the study, the range of speech intelligibility was calculated for several locations of the speech source, i.e., areas in which the STI > 0.5. Results The results of the calculations and the results of the measurements of physical quantities, characterizing the acoustic properties of the open-plan office room (including STI), showed good agreement. For speech emission, the ranges of speech intelligibility were determined on several work stations. Conclusions The use of calculation methods to simulate the sound field in open-plan office rooms is possible when the calibration of the room model is initially performed. Determination of the speech intelligibility range provides important information about the distance of negative acoustic interactions between work stations. This range can be used to determine the interaction between work stations or to assess various technical solutions to reduce the negative interaction. Med Pr. 2019;70(3):327–42
topic reverberation time
STI
acoustic treatment
open-plan office rooms
speech intelligibility
distraction distance
url http://www.journalssystem.com/medpr/Badania-obliczeniowe-zrozumialosci-mowy-w-pomieszczeniach-biur-otwartych-open-space,100632,0,2.html
work_keys_str_mv AT witoldmikulski computationalstudiesofspeechintelligibilityinopenplanoffices
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