This paper focuses on a special group of auditory interfaces using spatial sound for the representation of information. The addition of information on the location of a selected sound source or a group of sources shows many advantages over a mere single-channel audio.
- Feedback Ramp Metering in Intelligent Transportation Systems.
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- A spatial coherence-based vision-free brain-computer interface using auditory selective attention.
- 12222 Unidad de Tecnología | ESPAM MFL.
Spatial auditory interfaces have evolved significantly in the last couple of years and can be found in a variety of environments where visual communication is obstructed or completely blocked by other activities, such as walking, driving, flying, operating multimodal virtual displays, etc. In this paper we briefly summarize our research activities in this area. We focus on spatial auditory interfaces in vehicles and on interfaces for visually impaired and blind computer users.
Cover your cough: detection of respiratory events with confidence using a smartwatch Khuong Nguyen , Zhiyuan Luo. References Publications referenced by this paper. Principal components of non-individualized head related transfer functions significant for azimuth perception Jaka Sodnik , Rudolf Susnik , S.
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Cheng , Gregory H. The use of spatial sound in human-machine interaction.https://venratohar.tk
Proceedings of the Tenth International Conference on Human-Computer Interaction
J Sodnik. A user study of auditory, head-up and multi-modal displays in vehicles. A survey of augmented reality. This survey explains the most important limitations of the human hearing system and the perception of spatial sound. It also includes some technical background and basic processing and programming techniques for the creation and reproduction of spatial sounds with different audio equipment.
tiowealthcaststeerol.ml | Spatial Auditory Human-Computer Interfaces, Jaka Sodnik | | Boeken
Spatial auditory interfaces have evolved significantly in the last couple of years and can be found in a variety of environments where visual communication is obstructed or completely blocked by other activities, such as walking, driving, flying, operating multimodal virtual displays, etc. An entire chapter of this survey is dedicated to the most important areas of spatial auditory displays: mobile devices and computers, virtual environments, aircrafts and vehicles, visually impaired and blind computers users, and brain-computer interfaces.
The subject is very specialized and the authors do a good job with it. Scientists and developers in the field of audio human-computer interfaces will find this book a good up-to-date summary of the state of the art. White, Computing Reviews, computingreviews.