This application claims the benefit of Taiwan application Serial No. 109104422, filed Feb. 12, 2020, the subject matter of which is incorporated herein by reference.
The invention relates in general to a method and a processing device using same, and more particularly to a method for regulating a sound source of a designated object and an audio processing device using same.
When a user plays games or watches movies, the two-channel signal of the games or movies possesses a three-dimensional spatial characteristic. After the user designates a particular object (role or article) on the screen, the user may wish to suitably regulate the sound signal according to the needs. For example, the user may wish to reduce the sound of an exhaust pipe, increase the sound of a monster or even change the sound style of his/her teammate.
Normally, only game/movie manufacturers can regulate the sound source. The audio processing device only has synthesized two-channel signal. Once the two-channel signal is regulated, all sound sources are changed accordingly, and other sound sources may be distorted.
Therefore, it has become a prominent task for the industries to provide a method for regulating a sound source of a designated object.
The invention is directed to a method for regulating a sound source of a designated object and an audio processing device using the same capable of obtaining a sound signal characteristic of a sound source of a designated object using a beamforming technique, a sound rotation technique and an end fire array technique to regulate the sound source.
According to a first aspect of the present invention, an audio processing device is provided. The audio processing device is used to regulate a sound source of a designated object. The audio processing device includes a signal reception unit, an angle detection unit, a beamforming unit, a rotation unit, an end fire array a signal processing unit and a regulation unit. The signal reception unit is used to receive an original two-channel signal. The angle detection unit is used to detect an included angle of the designated object with respect to an ear of a user. The beamforming unit is used to respectively form a first beam and a second beam in a clockwise direction and a counterclockwise direction according to the included angle to obtain a bidirectional sound signal. The rotation unit is used to perform a sound rotation process, so that the ear is directed toward sound source of the designated object, and a rotated two-channel sound signal is obtained. The end fire array is used to obtain a unidirectional sound signal towards the sound source of the designated object. The unidirectional sound signal contains a noise. The signal processing unit is used to obtain a sound signal characteristic of the designated object according to the bidirectional sound signal and the unidirectional sound signal. The regulation unit is used to regulate the sound signal characteristic of the designated object to synthesize a regulated two-channel signal.
According to a second aspect of the present invention, a method for regulating a sound source of a designated object is provided. The method includes the following steps. An original two-channel signal is obtained. An included angle of the designated object with respect to an ear of a user is detected. A first beam and a second beam are respectively formed in a clockwise direction and a counterclockwise direction according to the included angle to obtain a bidirectional sound signal. A sound rotation process is performed, so that the ear is directed toward sound source of the designated object, and a rotated two-channel sound signal is obtained. A unidirectional sound signal towards the sound source of the designated object is obtained. The unidirectional sound signal contains a noise. A sound signal characteristic of the sound source of the designated object is obtained according to the bidirectional sound signal and the unidirectional sound signal. The sound signal characteristic of the sound source of the designated object is regulated to synthesize a regulated two-channel signal.
An original two-channel signal is obtained. An included angle of a designated object with respect to an ear of a user is detected. A first beam and a second beam are respectively formed in a clockwise direction and an anti-clockwise direction according to the included angle to obtain a bidirectional sound signal. A sound rotation process is performed, so that the ear is directed toward a sound source of a designated object, and a rotated two-channel sound signal is obtained. A unidirectional sound signal towards the sound source is obtained. The unidirectional sound signal contains a noise. A sound signal characteristic of the designated object is obtained according to the bidirectional sound signal and the unidirectional sound signal. The sound signal characteristic of the designated object is regulated to synthesize a regulated two-channel signal.
The above and other aspects of the invention will become better understood with regard to the following detailed description of the preferred but non-limiting embodiment(s). The following description is made with reference to the accompanying drawings.
Referring to
In the present embodiment, a regulation mechanism for a sound source of a designated object is performed to the audio processing device 100 instead of the server 700 of the game/movie manufacturers, and therefore is not subjected to the source of the games/movies and can be used in various types of two-channel signals.
Referring to
Referring to
Referring to
Referring to
Referring to
In the present step, the rotation unit 140, based on the HRTF technique, assumes that only the sound source A exists in the vicinity, the included angle of the sound source A with respect to the left ear is θ°, the included angle of the sound source A with respect to the right ear is 180-θ°, and each included angle is associated with an adjustment of a set of amplitude and phase. The rotation unit 140 rotates the head 910 by θ° and enables the sound source A to be directed towards the left ear, which is closer than the right ear, so that the included angle of the sound source A with respect to the left ear is 0° and the included angle of the sound source A with respect to the right ear is 180°. Meanwhile, there will be an adjustment of another set of amplitude and phase. As indicated in
Referring to
Referring to
In step S170, the sound signal characteristic CA of the sound source A is regulated by the regulation unit 170 to synthesize a regulated two-channel signal M4. The sound signal characteristic CA outputted from the signal processing unit 160 will only contain signal characteristics of the sound source A and will not exactly match the original two-channel signal M0. The regulation unit 170 must regulate the phase and amplitude of the sound signal characteristic CA to avoid the sound signal SA affecting the sound signals SB and SC. The regulation unit 170 can regulate different characteristics of the sound signal to fit user's needs. For example, the regulation unit 170 can change sound volume, perform EQ adjustment with respect to a particular frequency or change the style of the sound signal.
The regulating method and the audio processing device using the same disclosed in above embodiments of the present invention can obtain the sound signal characteristic CA of the sound source A using the beamforming technique, the sound rotation technique and the end fire array technique to regulate the sound source A of the designated object PA.
While the invention has been described by way of example and in terms of the preferred embodiment(s), it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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109104422 | Feb 2020 | TW | national |
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Number | Date | Country | |
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20210250682 A1 | Aug 2021 | US |