DocumentCode :
3715837
Title :
DOA-estimation based on a complex Watson kernel method
Author :
Lukas Drude;Florian Jacob;Reinhold Haeb-Umbach
Author_Institution :
Department of Communications Engineering, University of Paderborn, 33098 Paderborn, Germany
fYear :
2015
Firstpage :
255
Lastpage :
259
Abstract :
This contribution presents a Direction of Arrival (DoA) estimation algorithm based on the complex Watson distribution to incorporate both phase and level differences of captured microphone array signals. The derived algorithm is reviewed in the context of the Generalized State Coherence Transform (GSCT) on the one hand and a kernel density estimation method on the other hand. A thorough simulative evaluation yields insight into parameter selection and provides details on the performance for both directional and omni-directional microphones. A comparison to the well known Steered Response Power with Phase Transform (SRP-PHAT) algorithm and a state of the art DoA estimator which explicitly accounts for aliasing, shows in particular the advantages of presented algorithm if inter-sensor level differences are indicative of the DoA, as with directional microphones.
Keywords :
"Signal processing algorithms","Direction-of-arrival estimation","Microphones","Estimation","Arrays","Kernel"
Publisher :
ieee
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2015 23rd European
Electronic_ISBN :
2076-1465
Type :
conf
DOI :
10.1109/EUSIPCO.2015.7362384
Filename :
7362384
Link To Document :
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