US2022405320A1PendingUtilityA1
System for creating an audio-visual recording of an event
Est. expiryJul 21, 2037(~11 yrs left)· nominal 20-yr term from priority
Inventors:Andy Doyle
H04N 23/90G06F 16/444H04N 7/18H04N 21/4126G06F 16/487H04N 5/76G06N 20/00H04N 21/2665G11B 27/10H04N 5/77H04N 21/21805H04N 21/8549G11B 27/28G11B 27/031H04N 21/23418H04N 9/8205G06F 16/447G06F 16/489H04N 5/247
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Claims
Abstract
Many public events are recorded by members of the public, producing ‘user generated content’ or ‘user generated video’. Such content is often of unreliable and/or inconsistent quality. However, professional recordings of such events are often not possible and/or are inconvenient. In particular, multiple camera angles are often impossible to find using professional equipment and operators. The present invention provides a system and method in which user generated content may be collated, filtered and combined to produce a continuous professional quality audio-visual recording of an event.
Claims
exact text as granted — not AI-modified1 . A system for creating an audio-visual recording of an event, the system comprising:
a plurality of devices configured to:
record a respective audio-visual clip therewith;
record metadata associated with the respective audio-visual clip continually at a maximum interval of 5 seconds, the metadata comprising at least:
time data, indicating a time of recording of the respective audio-visual clip;
location data, indicating a location of recording of the respective audio-visual clip; and
attribute data, indicating an attribute of the respective audio-visual clip; and
send the respective audio-visual clip, and the associated metadata, over a wireless network, wherein the plurality of devices are configured to send the metadata and wait for a request for the audio-visual clip from the data centre before sending the audio-visual clip; and
a data centre configured to:
receive a plurality of the respective audio-visual clips from the plurality of devices over the wireless network;
analyse the metadata to select audio-visual clips that:
have been recorded at least partially within a predetermined range of times indicative of a predetermined event;
have been recorded at least partially within a predetermined range of locations indicative of the predetermined event; and
possesses attribute data within a predetermined range of attributes;
analyse the metadata to select clip portions from the selected audio-visual clips, each of the clip portions:
having been recorded within the predetermined range of times indicative of a predetermined event;
having been recorded within the predetermined range of locations indicative of the predetermined event; and
possessing attribute data within the predetermined range of attributes;
extract the selected clip portions from the selected audio-visual clips;
analyse audio-visual data within the extracted clip portions to determine a quality of the audio-visual data, and selecting audio-visual data of a predetermined minimum quality; and
combine at least some of the selected audio-visual data together to form a cohesive and continuous audio-visual recording of the event.
2 . The system of claim 1 , wherein the data centre is configured to filter the audio-visual clips by applying predetermined filters to the metadata, the predetermined filters comprising the predetermined range of times indicative of a predetermined event, the predetermined range of locations indicative of the predetermined event, and the predetermined range of attributes.
3 . The system of claim 2 , wherein the predetermined filters further comprise the predetermined minimum quality of audio-visual data within the clip portions.
4 . The system of claim 2 , further comprising a user interface for collecting the predetermined filters to the metadata from a user.
5 . The system of claim 4 , wherein the user interface is configured to collect predetermined requirements of the continuous audio-visual recording of the event.
6 . The system of claim 1 , wherein the data centre is configured to determine stability and/or blur.
7 . The system of claim 1 , wherein the data centre is configured to forming a sequence of audio-visual data within the clip portions in which an end time of each preceding one of the audio-visual data within the clip portions is equal to the start time of each following one of the audio-visual data within the clip portions.
8 . The system of claim 1 , wherein the data centre is configured to apply predetermined rules for determining which audio-visual clips to select, for determining appropriate clip portions to extract from the selected audio-visual clips, and/or for determining what audio-visual data to select from the clip portions to form the continuous audio-visual recording of the event.
9 . The system of claim 8 , wherein the data centre is configured to use artificial intelligence/machine learning to determine and/or refine rules for such determination(s).
10 . A method of creating an audio-visual recording of an event, the method comprising:
recording a plurality of audio-visual clips with a plurality of devices; recording metadata associated with each of the plurality of audio-visual clips, the metadata comprising at least:
time data, indicating a time of recording of each of the plurality of audio-visual clips;
location data, indicating a location of recording of each of the plurality of audio-visual clips; and
attribute data, indicating an attribute of each of the plurality of audio-visual clips;
wherein, for each of the plurality of audio-visual clips, recording of metadata associated therewith occurs continually at a maximum interval of 5 seconds;
sending the plurality of audio-visual clips, and the associated metadata, wirelessly to a data centre, wherein the plurality of devices are configured to send the metadata and wait for a request for the audio-visual clip from the data centre before sending the audio-visual clip; analysing the metadata to select audio-visual clips that:
have been recorded at least partially within a predetermined range of times indicative of a predetermined event;
have been recorded at least partially within a predetermined range of locations indicative of the predetermined event; and
possesses attribute data within a predetermined range of attributes;
analysing the metadata to select clip portions from the selected audio-visual clips, each of the clip portions:
having been recorded within the predetermined range of times indicative of a predetermined event;
having been recorded within the predetermined range of locations indicative of the predetermined event; and
possessing attribute data within the predetermined range of attributes;
extracting the selected clip portions from the selected audio-visual clips; analysing audio-visual data within the extracted clip portions to determine a quality of the audio-visual data, and selecting audio-visual data of a predetermined minimum quality; and combining at least some of the selected audio-visual data together to form a cohesive and continuous audio-visual recording of the event.
11 . The method of claim 10 , wherein the step of extracting clip portions from the selected audio-visual clips is completed before the step of analysing audio-visual data within the clip portions to determine a quality of the audio-visual data.
12 . The method of claim 10 , wherein the step of analysing audio-visual data within the clip portions to determine a quality of the audio-visual data is completed before the step of extracting clip portions from the selected audio-visual clips.
13 . The method of claim 10 , wherein the steps of extracting clip portions from the selected audio-visual clips, and analysing audio-visual data within the clip portions to determine a quality of the audio-visual data, are completed at substantially the same time.
14 . A device comprising a software application installed thereon and in operable communication with a data centre, the software application executable by a processor of the device and configured to:
record an audio-visual clip; record metadata associated with the audio-visual clip continually at a maximum interval of 5 seconds, the metadata comprising at least:
time data, indicating a time of recording of the respective audio-visual clip;
location data, indicating a location of recording of the respective audio-visual clip; and
attribute data, indicating an attribute of the respective audio-visual clip; and
send the respective audio-visual clip and the associated metadata, over a wireless network to the data centre, wherein the plurality of devices are configured to send the metadata and wait for a request for the audio-visual clip from the data centre before sending the audio-visual clip, and wherein the data centre is configured to:
receive a plurality of the respective audio-visual clips from the plurality of devices over the wireless network;
analyse the metadata to select audio-visual clips that:
have been recorded at least partially within a predetermined range of times indicative of a predetermined event;
have been recorded at least partially within a predetermined range of locations indicative of the predetermined event; and
possesses attribute data within a predetermined range of attributes;
analyse the metadata to select clip portions from the selected audio-visual clips, each of the clip portions:
having been recorded within the predetermined range of times indicative of a predetermined event;
having been recorded within the predetermined range of locations indicative of the predetermined event; and
possessing attribute data within the predetermined range of attributes;
extract the selected clip portions from the selected audio-visual clips;
analyse audio-visual data within the extracted clip portions to determine a quality of the audio-visual data, and selecting audio-visual data of a predetermined minimum quality; and
combine at least some of the selected audio-visual data together to form a cohesive and continuous audio-visual recording of the event.
15 . A data centre configured to:
receive a plurality of metadata records, each associated with a respective audio-visual clip of a plurality of audio-visual clips and each record associated with a device comprising a software application, wherein responsive to receiving the metadata record the data centre is configured to send a request to, and responsive to the request receive the associated audio-visual clip from, the associated device over a wireless network, and wherein the received metadata has been recorded continually at a maximum interval of 5 seconds and comprising at least:
time data, indicating a time of recording of the respective audio-visual clip;
location data, indicating a location of recording of the respective audio-visual clip; and
attribute data, indicating an attribute of the respective audio-visual clip;
analyse the metadata to select audio-visual clips that:
have been recorded at least partially within a predetermined range of times indicative of a predetermined event;
have been recorded at least partially within a predetermined range of locations indicative of the predetermined event; and
possesses attribute data within a predetermined range of attributes;
analyse the metadata to select clip portions from the selected audio-visual clips, each of the clip portions:
having been recorded within the predetermined range of times indicative of a predetermined event;
having been recorded within the predetermined range of locations indicative of the predetermined event; and
possessing attribute data within the predetermined range of attributes;
extract the selected clip portions from the selected audio-visual clips; analyse audio-visual data within the extracted clip portions to determine a quality of the audio-visual data, and selecting audio-visual data of a predetermined minimum quality; and combine at least some of the selected audio-visual data together to form a cohesive and continuous audio-visual recording of the event.Join the waitlist — get patent alerts
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