Influence of the Quality of Consumer Headphones in the Perception of Spatial Audio
Abstract
:1. Introduction
Hypothesis and Planning of the Study
2. Headphones Measurements and Virtual Headphone Simulation
2.1. Headphone Selection
- (a)
- REF, Reference, Sennheiser HD800 headphone (open and circumaural)
- (b)
- HQop, High Quality open headphone (circumaural)
- (c)
- MQcl, Medium Quality closed headphone (circumaural)
- (d)
- BDso, Big Diaphragm semi-open headphone (circumaural)
- (e)
- LCmul, Low Cost multimedia headphone (supra-aural)
- (f)
- AirL, Airline headphone (supra-concha)
- (g)
- Woh, Wireless open headphone (circumaural)
- (h)
- LCmul2, Low Cost multimedia headphone 2 (supra-aural)
2.2. Frequency Responses Measures
2.3. Headphones Frequency Response Simulation
2.4. Non-Linear Distortion Simulations
2.5. Binaural Room Impulse Responses Measurements
3. Test 1. Sensitivity Disparity between Left-Right Transducers
3.1. Test Description
3.2. Results
4. Test 2. Frequency Response about Quality and Spatial Impressions
4.1. Test Description
4.2. Results
5. Test 3. Non-Linear Distortion
5.1. Test Description
5.2. Results
6. Test 4. Frequency Response about Azimuth Localization
6.1. Test Description
6.2. Results
7. Conclusions
- The sensitivity disparities between left and right transducers affect the localization of sound sources, starting from level differences of 1 dB.
- The quality and uniformity of the frequency response have an important influence in the spatial impression.
- Additionally, the spatial impression has a high correlation with the subjective perceived quality.
- The binaural recordings do not obtain significant better results for the parameter spatial impression compared to two-channel stereo mixes.
- The distortion introduced by consumer level low quality headphones does not affect the perception of the spatial sound image.
- It has been ratified that much front-back confusion is produced, both for high and low quality headphones.
- We found that irregularities of the frequency response in the band of 100 to 1600 Hz seem to especially affect the front-back discrimination.
- We also found that a poor response in the band of 4 to 7 kHz degrades the accuracy in lateral position localization.
Acknowledgments
Author Contributions
Conflicts of Interest
Abbreviations
ANOVA | Analysis of Variance |
BRIR | Binaural Room Impulse Responses |
dBSPL | Sound Pressure Level dB |
FFT | Fast Fourier Transform |
GUI | Graphical User Interface |
HATS | Head and Torso Simulator |
ILD | Interaural Level Difference |
ITD | Interaural Time Difference |
ITU-R | International Telecommunication Union, recommendation by Radiocommunication sector |
LPF | Low Pass Filter |
MATLAB | Matrix Laboratory, MathWorks software |
MUSHRA | MUltiple Stimuli with Hidden Reference and Anchor |
OST | Original film Soundtrack |
VBAP | Vector Base Amplitude Panning |
WFS | Wave Field Synthesis |
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Artist | Track | CD | Description |
---|---|---|---|
Bettina Flater | Haugebonden | Women en Mi | female voice and guitar |
Paco de Lucía | Zambra Gitana | Canción Andaluza | male voice and guitar |
Jerry Glodsmith | Night Boarders | OST The Mummy | high dynamic orchestral |
The Chad Fisher Group | Basin Street Blues | live | jazz (binaural) |
Smashing Pumpkins | audience sound | live | audience and drums (binaural) |
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Gutierrez-Parera, P.; Lopez, J.J. Influence of the Quality of Consumer Headphones in the Perception of Spatial Audio. Appl. Sci. 2016, 6, 117. https://doi.org/10.3390/app6040117
Gutierrez-Parera P, Lopez JJ. Influence of the Quality of Consumer Headphones in the Perception of Spatial Audio. Applied Sciences. 2016; 6(4):117. https://doi.org/10.3390/app6040117
Chicago/Turabian StyleGutierrez-Parera, Pablo, and Jose J. Lopez. 2016. "Influence of the Quality of Consumer Headphones in the Perception of Spatial Audio" Applied Sciences 6, no. 4: 117. https://doi.org/10.3390/app6040117