Beamforming with Random Projections: Upper and Lower Bounds

Fuente: arXiv
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Main Authors: Mittal, Manan, Corey, Ryan M., Singer, Andrew C.
Format: Preprint
Published: 2025
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author Mittal, Manan
Corey, Ryan M.
Singer, Andrew C.
author_facet Mittal, Manan
Corey, Ryan M.
Singer, Andrew C.
contents Beamformers often trade off white noise gain against the ability to suppress interferers. With distributed microphone arrays, this trade-off becomes crucial as different arrays capture vastly different magnitude and phase differences for each source. We propose the use of multiple random projections as a first-stage preprocessing scheme in a data-driven approach to dimensionality reduction and beamforming. We show that a mixture beamformer derived from the use of multiple such random projections can effectively outperform the minimum variance distortionless response (MVDR) beamformer in terms of signal-to-noise ratio (SNR) and signal-to-interferer-and-noise ratio (SINR) gain. Moreover, our method introduces computational complexity as a trade-off in the design of adaptive beamformers, alongside noise gain and interferer suppression. This added degree of freedom allows the algorithm to better exploit the inherent structure of the received signal and achieve better real-time performance while requiring fewer computations. Finally, we derive upper and lower bounds for the output power of the compressed beamformer when compared to the full complexity MVDR beamformer.
format Preprint
id arxiv_https___arxiv_org_abs_2507_05662
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Beamforming with Random Projections: Upper and Lower Bounds
Mittal, Manan
Corey, Ryan M.
Singer, Andrew C.
Sound
Audio and Speech Processing
Beamformers often trade off white noise gain against the ability to suppress interferers. With distributed microphone arrays, this trade-off becomes crucial as different arrays capture vastly different magnitude and phase differences for each source. We propose the use of multiple random projections as a first-stage preprocessing scheme in a data-driven approach to dimensionality reduction and beamforming. We show that a mixture beamformer derived from the use of multiple such random projections can effectively outperform the minimum variance distortionless response (MVDR) beamformer in terms of signal-to-noise ratio (SNR) and signal-to-interferer-and-noise ratio (SINR) gain. Moreover, our method introduces computational complexity as a trade-off in the design of adaptive beamformers, alongside noise gain and interferer suppression. This added degree of freedom allows the algorithm to better exploit the inherent structure of the received signal and achieve better real-time performance while requiring fewer computations. Finally, we derive upper and lower bounds for the output power of the compressed beamformer when compared to the full complexity MVDR beamformer.
title Beamforming with Random Projections: Upper and Lower Bounds
topic Sound
Audio and Speech Processing
url https://arxiv.org/abs/2507.05662