LG ELECTRONICS INC. (Seoul, KR)

The present disclosure concerns a method and apparatus that processes the multimedia signal. The present disclosure is more precise and comprises a method that involves getting at least one video object from a multimedia signal, and at most one audio object from the multimedia signal extracting audio feature information for the at at least 1 video object, and video feature information of the two audio objects, and then finding a correlation between at least one video object and at least two audio objects using an object matching engine that is based on the audio feature and the apparatus for determining the correlation.

Thanks to technological advancements, devices with a bigger and higher-resolution display and multiple speakers have become commonplace. Additionally, research into video coding technology that allows for the transmission of and receiving images with greater clarity and audiocoding technology for transmitting and receiving audio signals that are immersive is ongoing as well as multimedia content that has been created or created based on the video coding technology and audio coding technology are popular. For example, contentproduced and supported using the High Efficiency Video Coding (HEVC) or H.265 standard is being distributed. In addition, content ranging from stereo-based content, to content that supports multi-channel audio or an object-based standard like Dolby Atmos (orcontent created that is based on an object-based sound standard) is distributed.

In the event of using the traditional three-dimensional (3D) audio processing technique the encoder transmits information about the location and the motion of a audio source or audio-related video object to the decoder via an audiobitstream. The decoder works to process the audio signal in order to create an 3D effect, based upon the information about the location and movement contained in the audio bitstream. To mix audio by using 3D audioprocessing technology , the audio mixing technician inserts the audio source or other related audio object. The decoder processes the audio signals to create the 3D effect based on the information regarding the object’s location and movement. To create audio content, the generated parameters are encoded along with the object in the bitstream. Audio professionals have to determine and adjust the position and movement of the sound source or audio-related video object with precision and then generate information about them in order to maximize the 3D effect during the encoding process. Therefore, creating content based on the conventional 3D audio processing technology could take a lot of time and cost. Furthermore, it might be difficult to implement the traditional 3Daudio processing technology to content that is broadcast and real-time streaming.

Dolby Atmos and other 3D audio processing technologies are only applicable to specific content, such as movies. They have not been used in all broadcast or streaming media. A sound image that is present that is present in most streaming and broadcast media does not properly locate according the position of the source or the video object. This can limit the experience of immersion.

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