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Related Concept Videos

Perceiving Loudness, Pitch, and Location01:21

Perceiving Loudness, Pitch, and Location

The human brain perceives pitch through two primary mechanisms reflected in place theory and frequency theory. Each mechanism describes how sound waves are interpreted as specific pitches by the brain, offering insights into the intricate processes of auditory perception.
Place theory, or place coding, suggests that different pitches are heard because various sound waves activate specific locations along the cochlea's basilar membrane. The brain determines the pitch of a sound by identifying...
Design Example01:23

Design Example

The innovation of touch-tone telephony revolutionized the telecommunications industry by replacing the traditional rotary dial with a dual-tone multi-frequency (DTMF) signaling system. This system uses a matrix-style keypad with buttons arranged in four rows and three columns, creating 12 distinct signals each assigned to a pair of frequencies. Each button press results in a simultaneous generation of two sinusoidal tones – one from a low-frequency group (697 to 941 Hz) and one from a...
Spherical and Cylindrical Capacitor01:26

Spherical and Cylindrical Capacitor

A spherical capacitor consists of two concentric conducting spherical shells of radii R1 (inner shell) and R2 (outer shell). The shells have equal and opposite charges of +Q and −Q, respectively. For an isolated conducting spherical capacitor, the radius of the outer shell can be considered to be infinite.
Conventionally, considering the symmetry, the electric field between the concentric shells of a spherical capacitor is directed radially outward. The magnitude of the field, calculated by...
Spherical Coordinates01:23

Spherical Coordinates

Spherical coordinate systems are preferred over Cartesian, polar, or cylindrical coordinates for systems with spherical symmetry. For example, to describe the surface of a sphere, Cartesian coordinates require all three coordinates. On the other hand, the spherical coordinate system requires only one parameter: the sphere's radius. As a result, the complicated mathematical calculations become simple. Spherical coordinates are used in science and engineering applications like electric and...
Sound as Pressure Waves01:17

Sound as Pressure Waves

Sound waves, which are longitudinal waves, can be modeled as the displacement amplitude varying as a function of the spatial and temporal coordinates. As a column of the medium is displaced, its successive columns are also displaced. As the successive displacements differ relatively, a pressure difference with the surrounding pressure is created. The gauge pressure varies across the medium.
The pressure fluctuation depends on the difference in displacements between the successive points in the...
Sound Intensity00:58

Sound Intensity

The loudness of a sound source is related to how energetically the source is vibrating, consequently making the molecules of the propagation medium vibrate. To measure the loudness of a source, the physical quantity of interest is the intensity. This is defined as the energy emitted per unit of time per unit of area perpendicular to the sound wave's propagation direction. Since the total energy is greater if the source vibrates for a longer duration and over a larger area, dividing the emitted...

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Articles linked to this work by shared authors, journal, and citation graph.

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On the selection of the number of beamformers in beamforming-based binaural reproduction.

EURASIP journal on audio, speech, and music processing·2022
Same author

Modal smoothing for analysis of room reflections measured with spherical microphone and loudspeaker arrays.

The Journal of the Acoustical Society of America·2018
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Spectral equalization in binaural signals represented by order-truncated spherical harmonics.

The Journal of the Acoustical Society of America·2017
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Design framework for spherical microphone and loudspeaker arrays in a multiple-input multiple-output system.

The Journal of the Acoustical Society of America·2017
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Theory and investigation of acoustic multiple-input multiple-output systems based on spherical arrays in a room.

The Journal of the Acoustical Society of America·2015
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Spherical array processing for acoustic analysis using room impulse responses and time-domain smoothing.

The Journal of the Acoustical Society of America·2013

Related Experiment Video

Updated: Jun 23, 2026

An Automated System for Sound Localization Testing in Hearing-Impaired Listeners
07:52

An Automated System for Sound Localization Testing in Hearing-Impaired Listeners

Published on: March 13, 2026

Spherical loudspeaker array for local active control of sound.

Boaz Rafaely1

  • 1Department of Electrical and Computer Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel. br@ee.bgu.ac.il

The Journal of the Acoustical Society of America
|May 12, 2009
PubMed
Summary

This study explores using spherical loudspeaker arrays for active sound control. Researchers designed larger, custom quiet zones beyond traditional limits, improving noise reduction potential.

Failed At:

2026-06-19T13:36:17.954474+00:00

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