Title :
Acoustic localization of unknown sources with wireless sensor nodes
Author :
Chakraborty, Joyraj ; Ottoy, Geoffrey ; Gelaude, Maxim ; Goemaere, Jean-Pierre ; De Strycker, Lieven
Author_Institution :
Dept. of Electr. Eng., KU Leuven - Belgium, Ghent, Belgium
Abstract :
Accuracy of unknown sound source localization and lifetime of sensor nodes is one of the important and critical issue and challenge in wireless sensor network. Localization plays major role when there is an uncertainty of the exact source location of some fixed or mobile devices. The main problem is source localization in an environment where they try to localize and focus on a source of unknown sound and noisy distance. This paper presents a new approach on the indoor localization of an acoustic sensor source. In this localization system, the environment will be scattered with a swarm of acoustic motes. The motes used in this localization system are the LOTUS motes from MEMSIC. In order to get the system working. We utilize a modular sensor board to plug on the mote. This sensor board captures acoustic signals and then digitalizes them. This localization algorithm uses the incoming Time Difference of Arrival (TDOA) values of a swarm ZigBee modules. The location of the source of the acoustic signal is determined by the multilateration technique. A sensor network is used in order to collect the signals. The evident advantage of the algorithm is that it requires synchronization between the motes mutually and not between the motes and acoustic source. The algorithm for these methods is written in MATLAB. The motes communicate in a ZigBee mesh network.
Keywords :
Zigbee; indoor radio; wireless sensor networks; MATLAB; TDOA; ZigBee mesh network; acoustic localization; indoor localization; modular sensor board; sound source localization; time difference of arrival; wireless sensor network; wireless sensor nodes; Acoustics; Correlation; Microphones; Time difference of arrival; Wireless communication; Wireless sensor networks; Zigbee; TDOA; WSN; ZigBee; localization; sensorboard;
Conference_Titel :
Computer and Information Technology (ICCIT), 2014 17th International Conference on
DOI :
10.1109/ICCITechn.2014.7073119