MANIFOLD ARCHITECTURE FOR WIND NOISE ABATEMENT
An acoustic device with a manifold architecture is described. The acoustic device includes a primary waveguide and a manifold. The primary waveguide has a first end, coupled to an acoustic sensor, and a second end, a port open to a local area. The port receives airflow from the local area that includes sound pressure waves from a sound source and turbulent pressure waves. The sound pressure waves and a first portion of the turbulent pressure waves are detected by the acoustic sensor. The manifold includes a plurality of waveguides that are coupled to a portion of the primary waveguide between the first end and second end. The plurality of waveguides has openings to the local area. The manifold vents a second portion of the turbulent pressure waves through the openings, and the second portion of the turbulent pressure waves is larger than the first portion of the turbulent pressure waves.
1 . (canceled)
2 . A headset comprising:
an acoustic sensor configured to capture sound;
a primary waveguide comprising:
a first end coupled to the acoustic sensor; and
a second end comprising a first port configured to receive airflow comprising a turbulent pressure wave and a sound pressure wave; and
a manifold coupled to the primary waveguide and configured to vent at least a portion of the turbulent pressure wave away from the acoustic sensor.
3 . The headset of claim 2 , wherein the manifold comprises a secondary waveguide coupled to an internal opening of the primary waveguide.
4 . The headset of claim 3 , wherein the secondary waveguide comprises:
a first segment coupled to the internal opening of the primary waveguide; and
a second segment coupled to the first segment, wherein the second segment comprises a second port.
5 . The headset of claim 4 , wherein the second port is configured to direct at least a portion of the airflow out through the second port, thereby venting the at least a portion of the turbulent pressure wave away from the acoustic sensor.
6 . The headset of claim 4 , wherein the first segment is coupled to the second segment at an angle greater than zero.
7 . The headset of claim 6 , wherein the angle is ninety degrees.
8 . The headset of claim 4 , wherein the secondary waveguide has a gradually increasing cross-sectional area from the internal opening of the primary waveguide to the second port of the second segment.
9 . The headset of claim 2 , wherein the manifold is configured to avoid venting the sound pressure wave.
10 . The headset of claim 2 , wherein:
the manifold comprises at least three secondary waveguides; and
each of the at least three secondary waveguides is coupled to a corresponding internal opening of the primary waveguide.
11 . The headset of claim 2 , wherein the manifold comprises a single-channel waveguide with an oval-shaped manifold port.
12 . A method of reducing noise at a microphone of a headset, the method comprising:
receiving, at a port of a primary waveguide, airflow comprising a turbulent pressure wave and a sound pressure wave;
venting, at a manifold coupled to the primary waveguide, at least a portion of the turbulent pressure wave out of the primary waveguide; and
capturing remaining portions of the airflow in the primary waveguide with an acoustic sensor.
13 . The method of claim 12 , wherein the manifold comprises a secondary waveguide coupled to an internal opening of the primary waveguide.
14 . The method of claim 13 , wherein the secondary waveguide comprises:
a first segment coupled to the internal opening of the primary waveguide; and
a second segment coupled to the first segment.
15 . The method of claim 14 , wherein the first segment is coupled to the second segment at an angle greater than zero.
16 . The method of claim 12 , wherein the manifold is configured to avoid venting the sound pressure wave.
17 . A device comprising:
a primary waveguide comprising:
a first end configured to couple to an acoustic sensor; and
a second end comprising a port configured to receive airflow comprising a turbulent pressure wave and a sound pressure wave; and
a manifold coupled to the primary waveguide and configured to vent at least a portion of the turbulent pressure wave away from the first end.
18 . The device of claim 17 , wherein the manifold comprises a secondary waveguide coupled to an internal opening of the primary waveguide.
19 . The device of claim 18 , wherein the secondary waveguide comprises:
a first segment coupled to the internal opening of the primary waveguide; and
a second segment coupled to the first segment.
20 . The device of claim 19 , wherein the first segment is coupled to the second segment at an angle greater than zero.
21 . The device of claim 17 , wherein:
the manifold comprises at least three secondary waveguides; and
each of the at least three secondary waveguides is coupled to a corresponding internal opening of the primary waveguide.