Title :
Auditory Distance Rendering Based on ICPD Control for Stereophonic 3D Audio System
Author :
Se-Woon Jeon ; Young-cheol Park ; Dae Hee Youn
Author_Institution :
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Abstract :
In this letter, we propose a new auditory distance rendering (ADR) algorithm based on the interchannel phase difference (ICPD) control. In the conventional ICPD control, distance perception of the sound image is nonlinearly controlled, and directional localization of the sound image can be biased by changes of the interaural cues. These problems are caused by applying the frequency-independent ICPD without considering the acoustic transfer paths of the system setup. To solve these problems, first, the interaural cues of ear signals are analyzed by binaural auditory simulations. Then, stereophonic ADR filters are designed that produce ear signals with a linearly controlled interaural cross-correlation (IACC) and a consistent interaural level difference (IALD) for sophisticated distance perception under the given stereo setup. Subjective test results show that the proposed algorithm can provide better distance controllability than the conventional method with reduced lateralization blur of the sound image.
Keywords :
audio signal processing; audio systems; sound reproduction; stereo image processing; video signal processing; ADR algorithm; IACC; IALD; ICPD control; acoustic transfer paths; auditory distance rendering algorithm; binaural auditory simulations; directional localization; ear signals; frequency-independent ICPD; interaural cross-correlation; interaural cues; interaural level difference; interchannel phase difference control; lateralization blur; sound image; stereophonic 3D audio system; stereophonic ADR filters; Acoustics; Ear; Indexes; Loudspeakers; Rendering (computer graphics); Signal processing algorithms; Acoustic proximity effect; auditory distance rendering (ADR); interaural cross-correlation (IACC); interaural level difference (IALD); interchannel phase difference (ICPD);
Journal_Title :
Signal Processing Letters, IEEE
DOI :
10.1109/LSP.2014.2363455