Source: http://www.google.fr/patents/US9762636
Timestamp: 2018-01-18 06:26:36
Document Index: 507302504

Matched Legal Cases: ['§120', '§119', '§120', 'art 1', 'art 1', 'art 2', 'art 2', 'art 3', 'art 3']

Brevet US9762636 - Streaming media delivery system - Google Brevets
Streaming media, such as audio or video files, is sent via the Internet. The media are immediately played on a user's computer. Audio/video data is transmitted from the server under control of a transport mechanism. A server buffer is prefilled with a predetermined amount of the audio/video data. When...http://www.google.fr/patents/US9762636?utm_source=gb-gplus-shareBrevet US9762636 - Streaming media delivery system
Numéro de publication US9762636 B2
Numéro de demande US 15/283,544
Date de dépôt 3 oct. 2016
Autre référence de publication US6766376, US8364839, US9729594, US9742824, US20020143973, US20120166669, US20130151724, US20170026434, US20170026435, US20170026436
Numéro de publication 15283544, 283544, US 9762636 B2, US 9762636B2, US-B2-9762636, US9762636 B2, US9762636B2
Inventeurs Harold Edward Price
Cessionnaire d'origine Wag Acquisition, L.L.C.
Citations de brevets (430), Citations hors brevets (285), Classifications (26), Événements juridiques (2)
US 9762636 B2
Streaming media, such as audio or video files, is sent via the Internet. The media are immediately played on a user's computer. Audio/video data is transmitted from the server under control of a transport mechanism. A server buffer is prefilled with a predetermined amount of the audio/video data. When the transport mechanism causes data to be sent to the user's computer, it is sent more rapidly than it is played out by the user system. The audio/video data in the user buffer accumulates; and interruptions in playback as well as temporary modem delays are avoided.
1. A method for distributing a live audio or video program over the Internet from a server system to a plurality of user systems, the method comprising:
receiving at the server system a continuous digitally encoded stream for the audio or video program, via a data connection from a live source, in real time, the server system comprising at least one computer;
upon receipt of the stream by the server system,
supplying, at the server system, media data elements representing the program, each media data element comprising a digitally encoded portion of the program and having a playback rate,
serially identifying the media data elements, said serial identification indicating a time sequence of the media data elements, and
storing the media data elements in a data structure under the control of the server system;
receiving requests at the server system via one or more data connections over the Internet, for one or more of the media data elements stored in the data structure, each received request specifying one or more serial identifiers of the requested one or more media data elements, each received request originating from a requesting user system of a plurality of user systems; and
responsive to the requests, sending, by the server system, the one or more media data elements having the one or more specified serial identifiers, to the requesting user systems corresponding to the requests; wherein
the data connection between the server system and each requesting user system has a data rate more rapid than the playback rate of the one or more media data elements sent via that connection;
each sending is at a transmission rate as fast as the data connection between the server system and each requesting user system allows;
the one or more media data elements sent are selected without depending on the server system maintaining a record of the last media data element sent to the requesting user systems;
all of the media data elements that are sent by the server system to the plurality of user systems are sent in response to the requests; and
all of the media data elements that are sent by the server system to the requesting user systems are sent from the data structure under the control of the server system as the media data elements were first stored therein.
2. The method of claim 1 wherein the serial identifiers are sequential.
3. The method of claim 1, wherein the sending is via a reliable transmission protocol.
4. The method of claim 3, wherein the reliable transmission protocol is TCP.
5. A server system for distributing a live audio or video program over the Internet to a plurality of user systems, the server system comprising:
at least one computer having a connection to the Internet;
a machine-readable, executable routine containing instructions to cause one of the at least one computers to receive a continuous digitally encoded stream for the live audio or video program, via a data connection from a live source, in real time;
a machine-readable, executable routine containing instructions to cause one of the at least one computers, upon receipt of the stream by the server system,
to supply, at the server system, media data elements representing the program, each media data element comprising a digitally encoded portion of the program and having a playback rate,
to serially identify the media data elements, said serial identification indicating a time sequence of the media data elements, and
to store the media data elements in a data structure under the control of the server system;
a machine-readable, executable routine containing instructions to cause one of the at least one computers to receive requests at the server system via one or more data connections over the Internet, for one or more of the media data elements stored in the data structure, each received request specifying one or more serial identifiers of the requested one or more media data elements, each received request originating from a requesting user system of a plurality of user systems; and
a machine-readable, executable routine containing instructions to cause one of the at least one computers to send, responsive to the requests, the one or more media data elements having the one or more specified serial identifiers, to the requesting user systems corresponding to the requests; wherein,
6. The server system of claim 5 wherein the serial identifiers are sequential.
7. The server system of claim 5, wherein the sending is via a reliable transmission protocol.
8. The server system of claim 7, wherein the reliable transmission protocol is TCP.
9. A computer program product for distributing a live audio or video program over the Internet from a server system comprising at least one computer to a plurality of user systems, the computer program product comprising a non-transitory computer readable storage medium having program instructions embodied therewith, the program instructions comprising:
instructions executable to cause one of the at least one computers to receive a continuous digitally encoded stream for the audio or video program, via a data connection from a live source, in real time;
instructions executable to cause one of the at least one computers, upon receipt of the stream by the server system,
instructions executable to cause one of the at least one computers to receive requests at the server system via one or more data connections over the Internet, for one or more of the media data elements stored in in the data structure, each received request specifying one or more serial identifiers of the requested one or more media data elements, each received request originating from a requesting user system of a plurality of user systems; and
instructions executable to cause one of the at least one computers to send, responsive to the requests, the one or more media data elements having the one or more specified serial identifiers, to the requesting user systems corresponding to the requests; wherein,
10. The computer program product of claim 9 wherein the serial identifiers are sequential.
11. The computer program product of claim 9, wherein the sending is via a reliable transmission protocol.
12. The computer program product of claim 11, wherein the reliable transmission protocol is TCP.
This application is a continuation of U.S. patent application Ser. No. 13/815,040, filed Jan. 25, 2013 (published on Jun. 13, 2013 as U.S. patent publication number 2013/0151724 A1), which was a continuation of U.S. patent application Ser. No. 13/385,375, filed Feb. 16, 2012 (published on Jun. 28, 2012 as U.S. patent publication number 2012/0166669 A1 and now U.S. Pat. No. 8,364,839, issued Jan. 29, 2013), which was a continuation of U.S. patent application Ser. No. 12/800,177, filed May 10, 2010 (published on Sep. 2, 2010 as U.S. patent publication number 2010/0223362 A1 and now U.S. Pat. No. 8,185,611, issued May 22, 2012), which was a continuation of U.S. patent application Ser. No. 10/893,814, filed Jul. 19, 2004 (published on Dec. 9, 2004 as U.S. patent publication number 2004/0249969 A1, and now U.S. Pat. No. 7,716,358, issued May 11, 2010), which was a continuation-in-part of U.S. patent application Ser. No. 09/819,337, filed Mar. 28, 2001 (now U.S. Pat. No. 6,766,376, issued Jul. 20, 2004), which was a nonprovisional of U.S. provisional patent application Ser. No. 60/231,997, filed Sep. 12, 2000; and it claims the benefit, under 35 U.S.C. §120, of the respective filing dates of said nonprovisional applications, and the benefit under 35 U.S.C. §119(e) of said provisional application, as well as benefit under 35 U.S.C. §§120 and 119(e) (as applicable) of the filing dates of: copending U.S. patent application Ser. No. 10/825,869, filed Apr. 16, 2004 (published on Dec. 23, 2004 as U.S. patent publication number 2004/260828 A1), which was a continuation of said U.S. patent application Ser. No. 09/819,337, which was a nonprovisional of said provisional patent application Ser. No. 60/231,997; and hereby incorporates by reference the entire disclosure of each of said prior applications. This application further incorporates by reference the entire disclosure of U.S. patent application Ser. No. 13/374,942, filed Jan. 24, 2012 (published on Jun. 14, 2012 as U.S. patent publication number 2012/0151083 A1, and now U.S. Pat. No. 8,327,011, issued Dec. 4, 2012, which was a continuation of U.S. patent application Ser. No. 12/800,152, filed May 10, 2010 (published on Sep. 16, 2010 as U.S. patent publication number 2010/0235536 A1, and now U.S. Pat. No. 8,122,141, issued Feb. 21, 2012), which was also a continuation of said U.S. patent application Ser. No. 10/893,814.
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Classification internationale H04N21/61, H04N21/44, H04L12/56, H04L29/06, H04L12/879, H04N21/24, G06F15/16, H04N21/647, H04N21/238, H04N21/234, H04L12/861
Classification coopérative H04L69/16, H04L49/9084, H04L29/06027, H04N21/2407, H04N21/44004, H04L49/901, H04L65/4076, H04L65/80, H04N21/23805, H04N21/64776, H04L49/90, H04N21/6125, H04L29/06455, H04N21/23406, H04L65/4084
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