Machine Audition of Acoustics: Acoustic Channel Modeling and Room Acoustic Parameter Estimation
نویسندگان
چکیده
Propagation of sound from a source to a receiver in an enclosure can be modeled as an acoustic transmission channel. Objective room acoustic parameters are routinely used to quantify properties of such channels in the design and assessment of acoustically critical spaces such as concert halls, theatres and recording studios. Traditionally, room acoustic parameters are measured using artificial probe stimuli such as pseudo random sequences, white noise or sine sweeps. The noisy test signal hinders occupied in-situ measurements. On the other hand, virtually all audio signals acquired by a microphone have undergone a process of acoustic transmission in the first place. Properties of acoustic transmission channels are essential for the design of suitable equalizers to facilitate subsequent machine audition. Motivated by these needs, a number of new methods and algorithms have been developed recently to determine room acoustic parameters using machine audition of naturally occurring sound sources, i.e. speech and music. In particular, reverberation time, early decay time and speech transmission index can be estimated from received speech or music signals using statistical machine learning or maximum likelihood estimation in a semi-blind or blind fashion. Some of these estimation methods can achieve accuracies similar to those of traditional instrument measurements. DOI: 10.4018/978-1-61520-919-4.ch018
منابع مشابه
Impulse Response Shortening for Acoustic Listening Room Compensation
The objective of this paper is to investigate the usability of channel shortening approaches known from data transmission for the equalization of acoustic systems. In setups for data transmission, the equalizing filter usually succeeds the channel, whereas in systems for the compensation of room acoustics it is placed in the signal path in front of the loudspeaker, which then acts as an acousti...
متن کاملConstrained Channel Estimation Methods in Underwater Acoustics
Underwater acoustic signal processing aims to reconstruct the shallow water acoustic channel from both direct arrival and delayed multipath reflections. This enables accurate acoustic communications in shallow water, such as between underwater autonomous vehicles (UAVs), which are essential for coastal surveillance and other applications. In this work, we take a previously implemented algorithm...
متن کاملEffect of non-acoustic properties on the sound absorption of polyurethane foams
In this paper the influence of non-acoustic properties on the sound absorption coefficient of polyurethane foams as a porous medium is investigated. Biot’s equations with transfer matrix method, as the solution approach are employed to evaluate the sound absorption coefficient of selected polyurethane foams. The major issue is the dependency of non-acoustic properties on each other which makes ...
متن کاملEfficient Physics-based Room-acoustics Modeling and Auralization
Author Samuel Siltanen Title Efficient Physics-Based Room-Acoustics Modeling and Auralization The goal of this research is to develop efficient algorithms for physicsbased room acoustics modeling and real-time auralization. Given the room geometry and wall materials, in addition to listener and sound source positions and other properties, the auralization system aims at reproducing the sound as...
متن کاملBoundary Conditions for Room Acoustic Simulations
Research on room acoustic simulation focuses on more accurate modeling of wave effects in rooms. Today, also wave models (e.g., the boundary element method and the finite differences in time domain technique) can be used for higher frequencies, thus, in the geometrical acoustics (GA) domain. Simulations in architectural acoustics are powerful tools but their reliability depends on the input dat...
متن کامل