IP Library Granted Patent US 11,765,498
Granted Patent B2
US 11,765,498 · App. 17/834,592 · Granted Sep 19, 2023

Microphone array system

Inventors: J. Douglas Rollow, IV (San Francisco, CA); Lance Reichert (San Francisco, CA); Daniel Voss (Hannover, DE)
Assignee: Sennheiser electronic Gmbh & Co. KG
H04R1/406H04R3/005H04R3/04H04R2201/401H04R2201/405H04R2430/23
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Quick Facts
Patent No.
US 11,765,498
App. No.
17/834,592
Granted
Sep 19, 2023
Kind
B2
Abstract

A microphone array system or microphone array unit for a conference system is provided that includes a front board, side walls and a plurality of microphone capsules arranged in or on the front board mountable on or in a ceiling of a conference room. The microphone array system or unit is adapted for generating a steerable beam within a maximum detection angle range. The microphone array system or microphone array unit includes a processing unit which is configured to receive the output signals of the microphone capsules and to steer the beam based on the received output signal of the microphone array. The processing unit is configured to control the microphone array to limit the detection angle range to exclude at least one predetermined exclusion sector in which a noise source is located.

Claims (28)

1. A conference system comprising:

a microphone array comprising a plurality of microphone capsules arranged in or on a board mountable on or in a ceiling of a conference room; and

an analog/digital converter for converting audio signals acquired by the microphone capsules to digital microphone audio signals; and

a processing unit;

wherein the digital microphone audio signals are fed to the processing unit, and

wherein the processing unit is configured to detect a direction as seen from the microphone array of an audio source based on the digital microphone audio signals,

wherein the processing unit is configured to execute an audio beam forming based on the digital microphone audio signals for predominantly acquiring sound coming from the detected direction, and to provide a conference system output signal representing sound coming from the detected direction, and

wherein the processing unit is configured to periodically re-identify the direction of the audio source and to continuously adjust the audio beam forming to the re-identified direction.

2. The conference system according to claim 1 , wherein the processing unit comprises a plurality of individual filters configured to filter each digital microphone audio signal and for individually adding an adjustable delay to each of those signals, thereby providing filter output signals, and wherein the processing unit is configured to sum together the filter output signals, thereby providing the conference system output signal.

3. The conference system according to claim 2 , wherein the processing unit performs the filtering according to a filter-and-sum approach.

4. The conference system according to claim 3 , wherein the processing unit is configured to adjust the individual filters according to the detected direction.

5. The conference system according to claim 4 , wherein the processing unit performs adjusting the individual filters further according to a projected length of the array determined from the detected direction.

6. The conference system according to claim 5 , wherein parameters for the individual filters are stored for each look direction in the conference system.

7. The conference system according to claim 2 , wherein the processing unit performs the filtering according to a Frequency-invariant-beamformer (FIB) approach.

8. The conference system according to claim 2 , wherein the processing unit performs the filtering according to a Minimum Variance Distortionless Response (MVDR) technique.

9. The conference system according to claim 2 , wherein the

processing unit performs the filtering with crossfading between a Frequency-invariant beamformer (FIB) approach and a Minimum Variance Distortionless Response (MVDR) technique.

10. The conference system according to claim 1 , wherein the processing unit is configured to detect a position as seen from the microphone array of the audio source based on the digital microphone audio signals.

11. The conference system according to claim 1 , wherein the processing unit is configured to periodically re-identify the direction of the audio source and to continuously adjust the audio beam forming to the re-identified direction.

12. A conference system comprising:

a microphone array comprising a plurality of microphone capsules arranged in or on a board mountable on or in a ceiling of a conference room; and

an analog/digital converter for converting audio signals acquired by the microphone capsules to digital microphone audio signals; and

a processing unit;

wherein the digital microphone audio signals are fed to the processing unit, and

wherein the processing unit is configured to detect a direction as seen from the microphone array of an audio source based on the digital microphone audio signals,

wherein the processing unit is configured to execute an audio beam forming based on the digital microphone audio signals for predominantly acquiring sound coming from the detected direction, and to provide a conference system output signal representing sound coming from the detected direction, and

a closed carrier board, wherein the carrier board is closed in such a way that sound can reach the capsules from a surface side, but sound is blocked away from the capsules from the opposite side by the closed carrier board.

13. The conference system according to claim 12 , wherein the closed board has an edge and wherein the microphone capsules are arranged in a common distance pattern and wherein the outermost microphone is located at a distance to the edge that is further than the a shortest distance between neighboring capsules.

Assignments (1)
CHANGE OF NAME Recorded Jun 17, 2025
From: SENNHEISER ELECTRONIC GMBH & CO. KG
To: SENNHEISER ELECTRONIC SE & CO. KG
Reel/Frame 071803/0601 →
Continuity (5)
Continuation 17234939 · Apr 20, 2021
Continuation 16666567 · Oct 29, 2019
Continuation In Part 15780787
Continuation 14959387 · Dec 4, 2015
Related Publication 20220303674A1 · Sep 22, 2022
Cited By (1)
US 12,342,127