ASA S12 71-2018 American National Standard Performance Criteria for Systems that Estimate the Attenuation of Passive Hearing Protectors for Individual Users.pdf
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1、 ANSI/ASA S12.71-2018 AMERICAN NATIONAL STANDARD Performance Criteria for Systems that Estimate the Attenuation of Passive Hearing Protectors for Individual Users Accredited Standards Committee S12, Noise Standards Secretariat Acoustical Society of America 1305 Walt Whitman Road, Suite 300 Melville,
2、 NY 11747 ANSI/ASAS12.71-2018 The American National Standards Institute, Inc. (ANSI) is the national coordinator of voluntary standards development and the clearinghouse in the U.S.A. for information on national and international standards. The Acoustical Society of America (ASA) is an organization
3、of scientists and engineers formed in 1929 to increase and diffuse the knowledge of acoustics and to promote its practical applications. ANSI/ASA S12.71-2018 AMERICAN NATIONAL STANDARD Performance Criteria for Systems that Estimate the Attenuation of Passive Hearing Protectors for Individual Users S
4、ecretariat: Acoustical Society of America Approved on May 7, 2018 by: American National Standards Institute, Inc. Abstract This standard pertains to systems intended to estimate the attenuation of hearing protection devices (HPDs) obtained by individual wearers in actual practice. Such systems are d
5、esignated field attenuation estimation systems (FAESs). This standard provides a classification of FAESs and specifies performance criteria. It also details the evaluation methodology and statistical calculations to be performed on such systems in order to state the uncertainty associated with the i
6、ndividual attenuation estimates that they provide, and specifies a method for computing a personal attenuation rating (PAR). FAES-derived data do not replace the attenuation values from ANSI/ASA S12.6 or the insertion-loss data from ANSI/ASA S12.42, nor are such data suitable for labeling the attenu
7、ation of HPDs. AMERICAN NATIONAL STANDARDS ON NOISE The Acoustical Society of America (ASA) provides the Secretariat for Accredited Standards Committees S1 on Acoustics, S2 on Mechanical Vibration and Shock, S3 on Bioacoustics, S3/SC 1 on Animal Bioacoustics, and S12 on Noise. These committees have
8、wide representation from the technical community (manufacturers, consumers, trade associations, organizations with a general interest, and government representatives). The standards are published by the Acoustical Society of America as American National Standards after approval by their respective S
9、tandards Committees and the American National Standards Institute (ANSI). These standards are developed and published as a public service to provide standards useful to the public, industry, and consumers, and to Federal, State, and local governments. Each of the Accredited Standards Committees (ope
10、rating in accordance with procedures approved by ANSI) is responsible for developing, voting upon, and maintaining or revising its own Standards. The ASA Standards Secretariat administers Committee organization and activity and provides liaison between the Accredited Standards Committees and ANSI. A
11、fter the Standards have been produced and adopted by the Accredited Standards Committees, and approved as American National Standards by ANSI, the ASA Standards Secretariat arranges for their publication and distribution. An American National Standard implies a consensus of those substantially conce
12、rned with its scope and provisions. Consensus is established when, in the judgment of the ANSI Board of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necessarily unanimity.
13、 Consensus requires that all views and objections be considered and that a concerted effort be made towards their resolution. The use of an American National Standard is completely voluntary. Their existence does not in any respect preclude anyone, whether he or she has approved the Standards or not
14、, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conforming to the Standards. NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken periodic
15、ally to reaffirm, revise, or withdraw this Standard. Acoustical Society of America Standards Secretariat 1305 Walt Whitman Road, Suite 300 Melville, New York 11747 Telephone: 1 (631) 390-0215 Fax: 1 (631) 923-2875 E-mail: asastdsacousticalsociety.org 2018 by Acoustical Society of America. This stand
16、ard may not be reproduced in whole or in part in any form for sale, promotion, or any commercial purpose, or any purpose not falling within the provisions of the U.S. Copyright Act of 1976, without prior written permission of the publisher. For permission, address a request to the Standards Secretar
17、iat of the Acoustical Society of America. Acoustical Society of America 2018 All rights reserved iContents 1 Scope . 1 2 Normative references . 1 3 Terms and definitions . 2 4 Types of field attenuation estimation systems . 3 5 Performance characteristics for FAESs that report a PAR 4 5.1 Verificati
18、on and calibration 4 5.2 Maximum permissible ambient noise levels (MPANLs) 4 5.3 Maximum test signal exposure levels 5 5.4 Assessment of bias and nonlinearity . 6 5.5 Maximum and minimum measurable attenuation values 6 6 Performance characteristics for FAESs that report only pass/fail indicators . 6
19、 6.1 Verification and calibration 6 6.2 Maximum permissible ambient noise levels (MPANLs) 6 6.3 Maximum test signal exposure levels 7 6.4 Measurement uncertainty for systems that report only pass/fail results . 7 7 Computation of A-weighted attenuation, REATA and FAESA 8 7.1 REATA 8 7.2 FAESA 9 8 Co
20、mputation of PAR and its associated uncertainty . 9 8.1 PARx 10 8.2 Computation of the principal sources of uncertainty . 10 9 Experimental data collection for specification of system performance 12 9.1 Procedure for FAESs using standard HPDs . 12 9.2 Procedure for FAESs using surrogate HPDs 13 9.3
21、Procedure for FAESs that report only pass/fail results . 15 10 Surrogate error for FAESs using surrogate HPDs . 15 10.1 Computation of surrogate error . 15 10.2 Statistical test for the surrogate error 15 11 Information to be included in user instructions for FAESs . 16 Annex A (normative) FAES perf
22、ormance statement . 17 Annex B (informative) Equivalence testing to determine MPANLs . 19 Annex C (informative) Example assessment of bias and nonlinearity 21 Acoustical Society of America 2018 All rights reserved iiAnnex D (informative) Example graphical computation of minimum and maximum attenuati
23、on values 22 Annex E (informative) Example of the computation of measurement uncertainty for a pass/fail FAES . 24 Annex F (informative) Example of the computation of composite PAR 27 F.1 Computation including audiometric data . 27 F.2 Computation in absence of audiometric data 27 F.3 Simplified com
24、putation based on lowest-ear PAR 28 Annex G (informative) Example of the computation of PAR and its associated uncertainty 29 G.1 Computation of PAR and its associated uncertainty . 29 G.2 Example cases to be used for validation of the computation of PAR and its associated uncertainty . 32 Annex H (
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