Title :
Tree-Based Recursive Expectation-Maximization Algorithm for Localization of Acoustic Sources
Author :
Dorfan, Yuval ; Gannot, Sharon
Author_Institution :
Fac. of Eng., Bar-Ilan Univ., Ramat-Gan, Israel
Abstract :
The problem of distributed localization for ad hoc wireless acoustic sensor networks (WASNs) is addressed in this paper. WASNs are characterized by low computational resources in each node and by limited connectivity between the nodes. Novel bi-directional tree-based distributed estimation-maximization (DEM) algorithms are proposed to circumvent these inherent limitations. We show that the proposed algorithms are capable of localizing static acoustic sources in reverberant enclosures without a priori information on the number of sources. Unlike serial estimation procedures (like ring-based algorithms), the new algorithms enable simultaneous computations in the nodes and exhibit greater robustness to communication failures. Specifically, the recursive distributed EM (RDEM) variant is better suited to online applications due to its recursive nature. Furthermore, the RDEM outperforms the other proposed variants in terms of convergence speed and simplicity. Performance is demonstrated by an extensive experimental study consisting of both simulated and actual environments.
Keywords :
acoustic signal processing; ad hoc networks; distributed algorithms; expectation-maximisation algorithm; recursive estimation; reverberation; telecommunication network reliability; wireless sensor networks; DEM algorithm; RDEM; WASN; acoustic source localization; ad hoc wireless acoustic sensor network; bidirectional tree-based distributed recursive expectation-maximization algorithm; communication failures; convergence speed; recursive distributed EM; serial estimation procedures; Acoustics; Bidirectional control; Estimation; Microphones; Signal processing algorithms; Speech; Time-frequency analysis; Bi-directional tree topologies; distributed signal processing; recursive expectation-maximization (REM); speaker localization; wireless acoustic sensor networks (WASNs);
Journal_Title :
Audio, Speech, and Language Processing, IEEE/ACM Transactions on
DOI :
10.1109/TASLP.2015.2444654