This paper presents a novel algorithm for the automatic 3D localization of a set of microphones in an unknown environment. Given the times of arrival at each microphone of a set of sound events, the approach simultaneously estimates the 3D positions of the sensors and the sources that have generated the events. The only assumption made is that the emission time of the sound events must be known in order to measure the time of flight for each event. A closed form solution is also proposed whenever a sound event coincides with a microphone position. Simulated and real experiments show the validity of the approach for different setups of sensors and number of events
In this paper, we develop a system for microphone self-localization based on ambient sound, without ...
Abstract — In this paper we present a novel algorithm to automatically determine the relative 3D pos...
Acoustic imaging methods for sound source localization use microphone arrays. The quality of the res...
In this paper, we develop a system for microphone selflocalization based on ambient sound, without a...
In this paper we present a methodology for the self-calibration of microphone arrays using Times Of ...
In this paper, robust detection, tracking and geometry estimation methods are developed and combined...
This paper presents a three dimensional sensor and source position calibration algorithm for automat...
Recent advances in robust self-calibration have made it possible to estimate microphone positions an...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
The exact positions of microphones are mandatory when using them as an array to apply beamforming al...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
This work presents a method to localize a set of microphones using recorded signals from surrounding...
In this paper, we develop a system for microphone self-localization based on ambient sound, without ...
Abstract — In this paper we present a novel algorithm to automatically determine the relative 3D pos...
Acoustic imaging methods for sound source localization use microphone arrays. The quality of the res...
In this paper, we develop a system for microphone selflocalization based on ambient sound, without a...
In this paper we present a methodology for the self-calibration of microphone arrays using Times Of ...
In this paper, robust detection, tracking and geometry estimation methods are developed and combined...
This paper presents a three dimensional sensor and source position calibration algorithm for automat...
Recent advances in robust self-calibration have made it possible to estimate microphone positions an...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
The exact positions of microphones are mandatory when using them as an array to apply beamforming al...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
In this paper we present a methodology for the self-calibration of two microphone arrays based on th...
This work presents a method to localize a set of microphones using recorded signals from surrounding...
In this paper, we develop a system for microphone self-localization based on ambient sound, without ...
Abstract — In this paper we present a novel algorithm to automatically determine the relative 3D pos...
Acoustic imaging methods for sound source localization use microphone arrays. The quality of the res...