Methods and apparatus to determine audio source impact on an audience of media

US10595083B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10595083-B2
Application numberUS-201816140238-A
CountryUS
Kind codeB2
Filing dateSep 24, 2018
Priority dateApr 20, 2018
Publication dateMar 17, 2020
Grant dateMar 17, 2020

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  5. First independent claim

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Abstract

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Methods, apparatus, systems and articles of manufacture to determine audio source impact on an audience of media are disclosed. A disclosed example method includes dividing monitored audio into successive audio segments including a first audio segment and a second audio segment, the monitored audio associated with monitored media. The example method also includes generating a first confidence value for the first audio segment of the successive segments and a second confidence value for the second audio segment, the first confidence value associated with a presence of a first audio source in the first audio segment, the second confidence value associated with a presence of the first audio source in the second audio segment. The example method further includes comparing (1) a first correlation of the first confidence value and a first rating associated with the first audio segment and (2) a second correlation of the second confidence value and a second rating associated with the second audio segment to determine an impact of the first audio source on audience ratings of the monitored media.

First claim

Opening claim text (preview).

What is claimed is: 1. An apparatus comprising: an audio segmenter implemented by hardware or at least one processor to divide monitored audio into successive audio segments including a first audio segment and a second audio segment, the monitored audio associated with monitored media; a speaker evaluator to generate a first confidence value from the first audio segment of the successive segments and a second confidence value from the second audio segment, the first confidence value associated with a presence of a voice of a first person in the first audio segment, the second confidence value associated with a presence of the voice of the first person in the second audio segment; a sentiment analyzer to: identify a first dialogue associated with the first person and the first audio segment; identify a second dialogue associated with the first person and the second audio segment; and determine a first sentiment associated with the first dialogue and a second sentiment associated with the second dialogue; and an audience rating correlator to: augment a first rating with the first sentiment, the first rating associated with the first audio segment; augment a second rating with the second sentiment, the second rating associated with the second audio segment; and compare (1) a first correlation of the first confidence value and the first rating associated with the first audio segment, and (2) a second correlation of the second confidence value and the second rating associated with the second audio segment to determine an impact of the voice of the first person on audience ratings of the monitored media. 2. The apparatus of claim 1 , wherein the speaker evaluator includes: a speech pattern generator to generate a pattern from the first audio segment; and a pattern comparator to compare the generated pattern to a set of reference patterns to generate the first confidence value, the set of reference patterns associated with the voice of the first person. 3. The apparatus of claim 2 , wherein the pattern comparator is to compare the generated pattern to the set of reference patterns based on linear regression. 4. The apparatus of claim 1 , wherein the voice of the first person is a first audio source and the speaker evaluator is further to generate a third confidence value from the first audio segment, the third confidence value associated with a presence of a second audio source in the first audio segment, and further includes a dominant speaker identifier to compare the first confidence value and the third confidence value to determine a dominant audio source in the first segment. 5. The apparatus of claim 4 , wherein the second audio source corresponds to a reference sound. 6. A method comprising: dividing, by executing an instruction with a processor, monitored audio into successive audio segments including a first audio segment and a second audio segment, the monitored audio associated with monitored media; generating, by executing an instruction with the processor, a first confidence value from the first audio segment and a second confidence value from the second audio segment, the first confidence value associated with a presence of a voice of a first person in the first audio segment, the second confidence value associated with a presence of the voice of the first person in the second audio segment; identifying, by executing an instruction with the processor, a first dialogue associated with the first person and the first audio segment; identifying, by executing an instruction with the processor, a second dialogue associated with the first person and the second audio segment; determining, by executing an instruction with the processor, a first sentiment associated with the first dialogue and a second sentiment associated with the second dialogue; augmenting, by executing an instruction with the processor, a first rating with the first sentiment, the first rating associated with the first audio segment; augmenting, by executing an instruction with the processor, a second rating with the first sentiment, the second rating associated with the second audio segment; and comparing, by executing an instruction with the processor, (1) a first correlation of the first confidence value and the first rating associated with the first audio segment, and (2) a second correlation of the second confidence value and the second rating associated with the second audio segment to determine an impact of the voice of the first person on audience ratings of the monitored media. 7. The method of claim 6 , wherein the generating of the first confidence value includes: generating a pattern from the first audio segment; and comparing the generated pattern to a set of reference patterns to generate the first confidence value, the set of reference patterns associated with the voice of the first person. 8. The method of claim 7 , wherein the comparison of the generated pattern to the set of reference patterns is based on linear regression. 9. The method of claim 6 , wherein the voice of the first person is a first audio source, and further including: generating a third confidence value from the first audio segment, the third confidence value associated with a presence of a second audio source in the first audio segment; and comparing the first confidence value and the third confidence value to determine a dominant audio source in the first segment. 10. The method of claim 6 , wherein the identifying of the first dialogue includes analyzing closed captioning data associated with the monitored media. 11. A non-transitory computer readable medium comprising instructions that, when executed, cause a processor to at least: divide monitored audio into successive audio segments including a first audio segment and a second audio segment, the monitored audio associated with monitored media; generate a first confidence value from the first audio segment and a second confidence value from the second audio segment, the first confidence value associated with a presence of a voice of a first person in the first audio segment, the second confidence value associated with a presence of the voice of the first person in the second audio segment; identify a first dialogue associated with the first person and the first audio segment; identify a second dialogue associated with the first person and the second audio segment; determine a first sentiment associated with the first dialogue and a second sentiment associated with the second dialogue; augment a first rating with the first sentiment, the first rating associated with the first audio segment; augment a second rating with the first sentiment, the second rating associated with the second audio segment; and compare (1) a first correlation of the first confidence value and the first rating associated with the first audio segment, and (2) a second correlation of the second confidence value and the second rating associated with the second audio segment to determine an impact of the first voice of the first person on audience ratings of the monitored media. 12. The non-transitory computer readable medium of claim 11 , wherein the instructions, when executed, cause the processer to: generate a pattern from the first audio segment; and compare the generated pattern to a set of reference patterns to generate the first confidence value, the set of reference patterns associated with the voice of the first person. 13. The non-transitory computer readable medium of claim 12 , wherein instructions, when executed, cause the processor to compare the generated pattern to the set of reference patterns based on linear regression.

Assignees

Inventors

Classifications

  • of audio {(determination or detection of speech characteristics in general G10L25/00; speech recognition in general G10L15/00)} · CPC title

  • Speaker identification or verification techniques · CPC title

  • Arrangements for monitoring the users' behaviour or opinions · CPC title

  • Processing of multiple end-users' preferences to derive collaborative data · CPC title

  • sound input device, e.g. microphone · CPC title

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What does patent US10595083B2 cover?
Methods, apparatus, systems and articles of manufacture to determine audio source impact on an audience of media are disclosed. A disclosed example method includes dividing monitored audio into successive audio segments including a first audio segment and a second audio segment, the monitored audio associated with monitored media. The example method also includes generating a first confidence v…
Who is the assignee on this patent?
Nielsen Co Us Llc
What technology area does this patent fall under?
Primary CPC classification H04H60/29. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Mar 17 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).