The present application claims priority to Korean Patent Application No. 10-2016-0084326 filed on 4 Jul. 2016, the content of said application incorporated herein by reference in its entirety.
The present invention relates to a voice enhancing device with an audio focusing function, and more particularly, to a voice enhancing device with an audio focusing function which is capable of selectively enhancing voice depending on a speaking person's location.
In noisy environments such as plants, construction sites, or transportation means, earplugs for blocking out noise are widely used to protect the hearing function of workers. Such physical noise isolation, though, has limitations in terms of noise isolation performance, and also has a disadvantage of non-selectively blocking out every sound that should be heard, such as voices from people or warning signals.
Recently, active noise cancellation has been introduced to further improve noise reduction. Active noise cancellation, which is distinct from traditional passive noise cancellation, which physically blocks out noise, includes a process of analyzing outside noise and/or a process of generating a specific sound. Active noise cancellation is achieved through various signal processing algorithms, and the most typical among them is negative feedback using an inverted signal. In this method, when the user hears outside noise through a microphone, a sound with inverted phase to the noise is emitted, thereby significantly reducing outside noise. U.S. Pat. No. 4,985,925 and U.S. Laid-Open Patent Publication No. 2016-0063986 disclose such active noise-cancelling headsets.
This traditional active noise cancellation still has its limitations. Active noise cancellation, too, non-selectively blocks out outside noise, thus making it difficult for the user to perceive what is happening around them through their sense of hearing. What is more, active noise cancellation even blocks out human voice, which makes conversation between workers impossible. Another disadvantage is that, to initiate a conversation, they need to stop the operation of their noise cancelling device or take it off.
The present invention has been made to solve the foregoing problems. An object of the present invention is to provide a voice enhancing device with an audio focusing function which is capable of effectively blocking out noise in loud environments.
Another object of the present invention is to provide a voice enhancing device with an audio focusing function which, along with noise isolation, only amplifies sound signals picked up from an interested direction to allow the user to have conversation with people around them.
A further object of the present invention is to provide a voice enhancing device with an audio focusing function which, along with noise isolation, only enhances voice so that the user can hear a conversation with the other party more clearly.
According to an aspect of the present invention, there is provided a voice enhancing device with an audio focusing function, including: left and right earphones that fit into both ears; two or more microphones that acquire a sound; and a processing part that at least performs signal processing tasks for active noise cancellation on the sound signals from the microphones and outputs the processed sound signals to the earphones, wherein the processing part performs signal processing tasks to amplify only the sound signals picked up from an interested direction and to attenuate the sound signals picked up from other directions.
In some embodiments, the processing part at least determines the directions of the sounds picked up and detected by the two or more microphones, respectively, based on the difference in phase between the sounds.
In some embodiments, the voice enhancing device further includes a housing that receives at least some of the earphones, the microphones and the processing part, wherein the housing has a neckband shape, and the two or more microphones are placed apart from each other at the left and right sides of the housing,
In some embodiments, the two or more microphones are provided separately for the left and right earphones.
In some embodiments, the voice enhancing device further includes a housing that receives at least some of the earphones, the microphones and the processing part, wherein the housing has an eyeglass shape, and the two or more microphones are placed apart from each other at the left and right sides of the housing.
In some embodiments, the voice enhancing device includes an input part that sets the interested direction, wherein the processing part variably sets the interested direction based on an input for setting the interested direction from the input part.
In some embodiments, the voice enhancing device includes a communication part that performs wire or wireless communication with an electric communication device, wherein the processing part variably sets the interested direction based on an input for setting the interested direction from the communication part.
In some embodiments, the interested direction is the direction the wearer's ace is facing.
According to the present invention, the voice enhancing device has the effect of allowing the wearer to have conversation with people around them without taking it off, while effectively reducing ambient noise by active noise cancellation.
According to the present invention, the voice enhancing device has the effect of allowing the wearer to selectively hear sounds from a desired sound source by selectively cancelling noise depending on the direction.
According to the present invention, the voice enhancing device has the effect of allowing seamless communication even in loud environments by reducing ambient noise and enhancing voice picked up from an interested direction.
Those skilled in the art will recognize additional features and advantages upon reading the following detailed description, and upon viewing the accompanying drawings.
Hereinafter, a voice enhancing device with an audio focusing function according to exemplary embodiments of the present invention will be described in detail with reference to the drawings. In this specification, it will be readily appreciated that like reference numerals designating corresponding or like parts may be omitted in the drawings to facilitate understanding of the invention.
The earphone part 100 may consist of a left earphone 100L and a right earphone 100R that fit into both ears. The earphone part 100 outputs a sound signal picked up from the microphone part 200, without being processed by the processing part 300, or outputs the sound signal, after being processed by the processing part 300, so that the wearer of the present device can hear it. The microphone part 200 may consist of a plurality of microphones 200L and 200R; especially, at least some of the plurality of microphones 200L and 200R is preferably spaced apart from the other. Thus, as shown in
The processing part 300 basically performs various signal processing tasks. To implement this functionality, the processing part 300 may include a microprocessor, for example. The processing part 300 analyzes sound signals going into the microphone part 200 to locate the directions of the respective sound sources. The technology of determining the location of the sound source of a picked-up sound using a plurality of microphones has been traditionally known. This technology works on the principle that a human determines the location of a sound source through both ears, in which the processing part 300 determines the direction of a sound source using the difference in phase and sound level between sound signals going into two or more microphones 200L and 200R placed apart from one another.
By contrast, the sound signals b1 and b2, which are picked up by the microphones 1 and 2 from the sound source (b) which is at different distances from the microphones 1 and 2, have different phases and sound levels. That is, the sound signal b1 and the sound signal b2 take different times to reach the microphone 1 and the microphone 2, respectively, thus resulting in a phase difference between the two signals, and there is a sound level difference because the microphones 1 and 2 are at different distances from the sound source (b), As a consequence, the larger the difference in distance between the two separated microphones 1 and 2 and the sound source, the greater the difference in phase and sound level between the sound signals reaching the respective microphones 1 and 2. Based upon this, it is possible to find the location of the sound source. For example, it is possible to determine the location or direction of the sound source based on a position angle A (azimuth) between an extension line C1 of a midpoint C perpendicular to extension line of the microphone 1 and the microphone 2 and an extension line C2 of the sound source (b) and the midpoint C. The sound source (a) corresponds to an angle of 0°, the sound source (b) is set to be in the location or direction corresponding to an angle of 45°, and the sound source (c) is set to be in the location or direction corresponding to an angle of −45°.
Using the principle depicted in
Moreover, preferably, the direction the face of the wearer of the voice enhancing device of the present invention is facing may be set as the interested direction. The direction the wearer's face is facing may correspond to a case that, for example, the position angle A is 0°. Here, the interested direction may be preset in advance, or the processing part 300 may acquire the position angle A corresponding to the interested direction from the communication part 250 or the input part 260 to variably set the interested direction. The processing part 300 may further include other components required to perform the above functions, for example, a communication circuit, a control circuit, a battery for power supply, etc.
The voice enhancing device of the present invention is wearable on a human body, and is therefore turned in the direction the human body is facing; especially, the voice enhancing devices according to the exemplary embodiments of
There are advantages unique to the present invention that could be explicitly derived from the above-described exemplary embodiments. That is, the voice enhancing device of the present invention may selectively amplify sounds from a desired sound source so as to be heard even in loud environments with high ambient noise, by enhancing sound signals coming from a sound source in the direction the wearer's face or body is facing and effectively attenuating sound signals picked up from other directions by active noise cancellation. Moreover, the voice enhancing device of the present invention allows for selective hearing or noise cancellation in any directions other than the direction the wearer's face or body is facing, by controlling the interested direction from which the wearer wants to hear sound, through the use of a smartphone application.
While this invention has been described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood by those skilled in the art that the invention is not limited to the disclosed embodiments, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
1020160084326 | Jul 2016 | KR | national |