A linear sensor array with self-bending sensitivity
Abstract
Self-bending wave fields exhibit an envelope that seemingly bends in space under free-field conditions. They are created by wave fronts that fold along a caustic. In this paper, we invert the concept by exploiting the reciprocity principle of the Helmholtz equation in order to create a linear sensor array whose sensitivity seemingly bends in free space in the nearfield of the array. The sensor array therefore allows for listening around a distracting source, a jammer, or a physical object as sensitivity nulls can be placed at a defined distance. We illustrate the operating range and the robustness ofthe solution based on numerical simulations. For the presented scenario, an attenuation of more than 50 dB in a controllable region in space is achieved in a frequency range of more than two octaves.
BibTeX
@inproceedings{icassp2016_alinearsensorarr,
title = {A linear sensor array with self-bending sensitivity},
author = {Jens Ahrens and Ralf Vogelgesang},
booktitle = {ICASSP 2016},
year = {2016}
}