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@article{rimell_design_2015,
title = {Design of digital filters for frequency weightings (A and C) required for risk assessments of workers exposed to noise},
volume = {53},
issn = {0019-8366, 1880-8026},
url = {https://www.jstage.jst.go.jp/article/indhealth/53/1/53_2013-0003/_article},
doi = {10.2486/indhealth.2013-0003},
abstract = {Many workers are exposed to noise in their industrial environment. Excessive noise exposure can cause health problems and therefore it is important that the workers noise exposure is assessed. This may require measurement by an equipment manufacturer or the employer. Human exposure to noise may be measured using microphones; however, weighting filters are required to correlate the physical noise sound pressure level measurements to the humans response to an auditory stimulus. {IEC} 61672-1 and {ANSI} S1.43 describe suitable weighting filters, but do not explain how to implement them for digitally recorded sound pressure level data. By using the bilinear transform, it is possible to transform the analogue equations given in the standards into digital filters. This paper describes the implementation of the weighting filters as digital {IIR} (Infinite Impulse Response) filters and provides all the necessary formulae to directly calculate the filter coefficients for any sampling frequency. Thus, the filters in the standards can be implemented in any numerical processing software (such as a spreadsheet or programming language running on a {PC}, mobile device or embedded system).},
pages = {21--27},
number = {1},
journaltitle = {{INDUSTRIAL} {HEALTH}},
shortjournal = {{INDUSTRIAL} {HEALTH}},
author = {Rimell, Andrew N. and Mansfield, Neil J. and Paddan, Gurmail S.},
urldate = {2020-01-18},
date = {2015},
langid = {english},
file = {Rimell et al. - 2015 - Design of digital filters for frequency weightings.pdf:/home/anne/.literature/storage/XKC3AE4F/Rimell et al. - 2015 - Design of digital filters for frequency weightings.pdf:application/pdf}
}

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