TY - GEN
T1 - DOA estimation of multiple sparse sources using three widely-spaced sensors
AU - Ballal, Tarig
AU - Bleakley, C. J.
PY - 2009
Y1 - 2009
N2 - Traditionally, Direction Of Arrival (DOA) estimation methods require an inter-sensor spacing that does not exceed half the minimum wavelength of the impinging signal in order to avoid ambiguities. Placement of sensors at the minimum half wavelength is not physically realizable for some types of signals. Additionally, for some categories of signals, half wavelength spacing is not sufficient to achieve good DOA resolution. In this paper, our previously proposed delay disambiguation method is combined with a time-delay estimation method that exploits source sparsity in time-frequency domain to unambiguously estimate the DOAs of multiple sources impinging on three widely-spaced sensors. The approach is applied to DOA estimation of multiple ultrasonic Frequency Hopping Spread Spectrum (FHSS) sources in indoor environment. Experimental results emphasize the robustness of the approach even when the number of sources exceeds the number of sensors.
AB - Traditionally, Direction Of Arrival (DOA) estimation methods require an inter-sensor spacing that does not exceed half the minimum wavelength of the impinging signal in order to avoid ambiguities. Placement of sensors at the minimum half wavelength is not physically realizable for some types of signals. Additionally, for some categories of signals, half wavelength spacing is not sufficient to achieve good DOA resolution. In this paper, our previously proposed delay disambiguation method is combined with a time-delay estimation method that exploits source sparsity in time-frequency domain to unambiguously estimate the DOAs of multiple sources impinging on three widely-spaced sensors. The approach is applied to DOA estimation of multiple ultrasonic Frequency Hopping Spread Spectrum (FHSS) sources in indoor environment. Experimental results emphasize the robustness of the approach even when the number of sources exceeds the number of sensors.
UR - https://www.scopus.com/pages/publications/79953811294
M3 - Conference contribution
AN - SCOPUS:79953811294
T3 - European Signal Processing Conference
SP - 1978
EP - 1982
BT - EUSIPCO 2009 - 17th European Signal Processing Conference
PB - European Signal Processing Conference, EUSIPCO
T2 - 17th European Signal Processing Conference, EUSIPCO 2009
Y2 - 24 August 2009 through 28 August 2009
ER -