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dc.contributor.authorMunir, M.W.
dc.contributor.authorAbdulla, W. H.
dc.contributor.authorArdekani, Iman
dc.date.accessioned2019-12-18T00:32:56Z
dc.date.available2019-12-18T00:32:56Z
dc.date.issued2019
dc.identifier.urihttps://hdl.handle.net/10652/4794
dc.description.abstractActive noise control (ANC) is an effective way to cancel the low-frequency noise. The conventional ANC system creates the ‘zone of quiet’ by minimizing the mean square error (MSE) at the location of an error microphone. However, in practical applications, sometimes it is not possible to achieve the noise attenuation at the desired location due to physical constraints limiting locating the error microphone at certain points. Similarly, the performance of the conventional ANC system also compromises when the impression of audio sensation on human auditory does not match the numerical values of the system. It is because the human ear has complicated psychoacoustic properties. In this paper, we present a new psychoacoustically motivated ANC system for a remote location. Noise weighting filters are incorporated into remote ANC to improve the audio sensation of the residual noise. The performance of the purposed system is evaluated by computer simulation, and the perceptual loudness is selected as a performance criterion for the psychoacoustic assessment of residual noise.en_NZ
dc.language.isoenen_NZ
dc.relation.urihttps://anzcc.org.au/ANZCC2019/ANZCC19Program.pdfen_NZ
dc.subjectactive noise control (ANC)en_NZ
dc.subjectANCen_NZ
dc.subjectlow-frequency noiseen_NZ
dc.subjectpsychoacousticsen_NZ
dc.subjectremote ANCen_NZ
dc.titlePsychoacoustically motivated active noise control at remote locationsen_NZ
dc.typeConference Contribution - Paper in Published Proceedingsen_NZ
dc.date.updated2019-12-07T13:30:01Z
dc.rights.holderAuthorsen_NZ
dc.subject.marsden091301 Acoustics and Noise Control (excl. Architectural Acoustics)en_NZ
dc.identifier.bibliographicCitationMunir, M. W., Abdulla, W. H., & Ardekani, I. T. (2019). Psychoacoustically motivated active noise control at Remote Locations. 2019 Australian & New Zealand Control Conference (ANZCC) (pp. 1-4).en_NZ
unitec.publication.spage1en_NZ
unitec.publication.lpage4en_NZ
unitec.conference.title2019 Australian & New Zealand Control Conference (ANZCC)en_NZ
unitec.conference.orgAuckland University of Technology (AUT)en_NZ
unitec.conference.locationAuckland, New Zealanden_NZ
unitec.conference.sdate2019-11-27
unitec.conference.edate2019-11-29
unitec.peerreviewedyesen_NZ
dc.contributor.affiliationUnitec Institute of Technologyen_NZ
dc.contributor.affiliationUniversity of Aucklanden_NZ
unitec.identifier.roms64569en_NZ
unitec.institution.studyareaComputing


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