• Title/Summary/Keyword: 음질인자

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3D Audio Rendering Method based on 3D Video Information for 3DTV (3DTV 향 3D 영상 정보를 이용한 3D 오디오 원근감 재현 기술)

  • Kim, Sunmin;Lee, Young Woo;Kim, SeungHun;Lee, SeungSu
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2011.07a
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    • pp.204-207
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    • 2011
  • 본 논문에서는 3DTV 의 입체감 향상을 위한 3D 음향의 원근감 재현 기술을 제안한다. 먼저, 3D 영상 객체의 깊이를 추출하고 영상 객체의 깊이에 따라 오디오 객체의 거리감을 조절한다. 오디오 거리감 재현을 위해 필요한 오디오 깊이 인자는 3D 영상의 좌/우 이미지의 차이 정보로부터 오디오에 맞도록 비선형 변환을 통해 구해진다. 3D 오디오 재현 알고리즘은 기존의 서라운드 입체음향 기술과 원근감 재현 기술로 구성된다. 원근감 재현 기술은 추정된 오디오 깊이 인자에 따라 신호크기, 초기 반사음, 근거리 머리전달함수, 위상 제어를 통해서 구현된다. 특히, 3D 영상 객체가 화면 앞으로 튀어 나올 때 소리도 튀어나오도록 함으로써 3D 영상 객체와 연동되는 입체 음향을 효과를 통해 3D 방송 시청 시 오디오/비디오 입체감을 향상시켜준다. 상용화된 3DTV 를 활용하여 음질 평가 전문가들의 주관 청취 평가를 통해 제안한 원근감 재현 기술이 3D 방송 시청에 적합함을 검증한다.

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Implementation of Transaural filter method for sound localization (공간 음상정위를 위한 Transaural 필터 구현기법)

  • Cheung Wan-Sup;Lee Jeung-Hoon;Bhang Seungbeum;Kim Soonhyob
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.207-212
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    • 1999
  • 본 논문에서는 공간에 위치한 음원으로부터 양 귀에 들리는 음향을 좌우 대칭형 스피커를 이용하여 재현하는 기술에 대한 문제점, 즉 좌우 스피커와 양 귀의 음압전달 특성에 수반되는 Cross-talk 제거와 음향학적 모델 선정에 대한 문제점들을 우선 소개한다. 이러한 문제점을 해결할 수 있는 Transaural 필터의 모델 제시와 본 모델의 음향학적 특성을 고찰한다. 본 연구에서는 인간 청각 기관의 공간 인지량적 인자인 ILB(interaural Level Difference)와 ITD(Tnteraural Time Difference)의 개념을 이용한 새로운 Cross-talk 제거 방법과 그리고 청각기관의 "Masking" 특성을 이용한 Transaural 필터의 진폭 보상 방법을 새로이 제안한다. 끝으로 제안된 기법은 음색 왜곡과 음질 저하를 최소화할 수 있는 장점 뿐 아니라 현장 음향 기사들이 직접 음향제작에 적용할 수 있는 장점 또한 제공한다.

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The assessment of sound quality of loudspeaker system by using factor analysis and muliti-dimensional scaling (인자분석과 다효원척를 이용한 스피이커의 음질평가)

  • 황영수;김영일;차일환
    • The Journal of the Acoustical Society of Korea
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    • v.3 no.1
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    • pp.16-24
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    • 1984
  • The objective data and subjective data correlated in order to rate sound quality of loudspeaker system and these data were analyzed by the Factor Analysis and Multi-Dimensioinal Scaling. The dimensions yielded Factor Analysis were interpreted as "Contrast", "Metallic", "Rich", "Present" and their relation to physical variables were explored by studying the positions of loudspeaker systems in the respective dimension. When the subjective similarity degree of loudspeaker systems was compared with the objective similarity degree of loudspeaker systems by Multi-Dimensional Scaling, the similarity degree of sound pressure response in the listening room closely coincided with the subjective similarity degree regardless of sound source. This result implies the necessity of measurements taken not only in an anechoic room but also in a listening room in order to rate sound quality of loudspeaker systems.

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The Correlation between Ddesign Pparameter of Ssmall Tturbo Ffen and Ssound Qquality (소형터보홴 설계인자와 음질의 상관관계)

  • Jung, Young-Gyu;Kim, Hooi-Joong;Lee, Jung-Soo;Lee, Seung-Bae
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2005.11a
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    • pp.826-829
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    • 2005
  • The State of the art of low noise fan design requires the consideration of optimal sound quality. The influential design parameters of the noise level by the centrifugal fan were selected that based on a preliminary test. The centrifugal fans were designed according from the experiment plan method by specify the selected design parameters. The experiments with the machined mock-up's of centrifugal impellers revealed the major design parameters having impacts upon the indices of sound quality (e.g. loudness, sharpness, roughness and fluctuation strength) at the same performance condition. With a response surface method. the major design parameters selected were analyzed to estimate their contributions upon the sound quality of the centrifugal fan and the optimal values were drawn for the consideration of the sound quality by using each level and its regression equation. In addition, the validity of the regression equations were numerically verified by means of the coefficient of determination. Furthermore, the mechanism of how the centrifugal fans influence the determinants of sound quality was suggested.

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Salience of Envelope Interaural Time Difference of High Frequency as Spatial Feature (공간감 인자로서의 고주파 대역 포락선 양이 시간차의 유효성)

  • Seo, Jeong-Hun;Chon, Sang-Bae;Sung, Koeng-Mo
    • The Journal of the Acoustical Society of Korea
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    • v.29 no.6
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    • pp.381-387
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    • 2010
  • Both timbral features and spatial features are important in the assessment of multichannel audio coding systems. The prediction model, extending the ITU-R Rec. BS. 1387-1 to multichannel audio coding systems, with the use of spatial features such as ITDDist (Interaural Time Difference Distortion), ILDDist (Interaural Level Difference Distortion), and IACCDist (InterAural Cross-correlation Coefficient Distortion) was proposed by Choi et al. In that model, ITDDistswere only computed for low frequency bands (below 1500Hz), and ILDDists were computed only for high frequency bands (over 2500Hz) according to classical duplex theory. However, in the high frequency range, information in temporal envelope is also important in spatial perception, especially in sound localization. A new model to compute the ITD distortions of temporal envelopes in high frequency components is introduced in this paper to investigate the role of such ITD on spatial perception quantitatively. The computed ITD distortions of temporal envelopes in high frequency components were highly correlated with perceived sound quality of multichannel audio sounds.