Method of broadcast gateway signaling for channel bonding, and apparatus for the same

US2020128511A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2020128511-A1
Application numberUS-201916659738-A
CountryUS
Kind codeA1
Filing dateOct 22, 2019
Priority dateOct 22, 2018
Publication dateApr 23, 2020
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

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Disclosed herein are a method and apparatus of broadcast gateway signaling for channel bonding. The apparatus for broadcast gateway signaling includes an input formatting unit configured to generate baseband packets corresponding to channel bonding; and a stream partitioner configured to allocate the baseband packets to two or more RF channels of the channel bonding for generating an outer tunnel data stream, the outer tunnel data stream generated in different ways according to a plurality of operation modes for the channel bonding.

First claim

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What is claimed is: 1 . A broadcast gateway apparatus, comprising: an input formatting unit configured to generate baseband packets corresponding to channel bonding; and a stream partitioner configured to allocate the baseband packets to two or more RF channels of the channel bonding for generating an outer tunnel data stream, the outer tunnel data stream generated in different ways according to operation modes for the channel bonding. 2 . The broadcast gateway apparatus of claim 1 , wherein the operation modes include: a first mode in which one outer tunnel data stream is generated for each of the two or more RF channels; and a second mode in which one outer tunnel data stream is generated for the two or more RF channels. 3 . The broadcast gateway apparatus of claim 2 , wherein the one outer tunnel data stream of the first mode includes one inner tunneled packet stream group for one among the two or more RF channels, and the one outer tunnel data stream of the second mode includes two or more inner tunneled packet stream groups, the two or more inner tunneled packet stream groups being for the two or more RF channels, respectively. 4 . The broadcast gateway apparatus of claim 3 , wherein the outer tunnel data stream is transmitted to a transmitter through a Studio-to-Transmitter Link (STL) and corresponds to an outer layer of a tunneling system, and the inner tunneled packet stream group corresponds to an inner layer of the tunneling system. 5 . The broadcast gateway apparatus of claim 3 , wherein the two or more inner tunneled packet stream groups of the second mode use different port groups. 6 . The broadcast gateway apparatus of claim 5 , wherein the second mode uses two outer tunnel data streams for two non-colocated transmitters corresponding to SNR averaging channel bonding, and each of the two outer tunnel data streams includes two inner tunneled packet stream groups which use different port groups. 7 . The broadcast gateway apparatus of claim 5 , wherein the two or more RF channels are two RF channels, a first port group corresponding to ports 30000-30066 is used for the inner tunneled packet stream group corresponding to a first channel among the two RF channels, and a second port group corresponding to ports 30100-30166 is used for the inner tunneled packet stream group corresponding to a second channel among the two RF channels. 8 . The broadcast gateway apparatus of claim 5 , wherein the outer tunnel data stream includes a RTP header which includes a channel number field (number_of_channels) that indicates the number of channels corresponding to the outer tunnel data stream. 9 . The broadcast gateway apparatus of claim 8 , wherein the channel number field is 2-bit field, is set to ‘0’ for the first mode, and is set to ‘1’ for the second mode. 10 . An apparatus of transmitting a broadcast signal, comprising: a STL receiver configured to receive an outer tunnel data stream transmitted through a Studio-to-Transmitter Link (STL), the outer tunnel data stream corresponding to channel bonding; a BICM unit configured to perform error correction encoding, interleaving and modulation corresponding to one among two or more RF channels corresponding to the channel bonding; and a waveform generator configured to generate a RF transmission signal corresponding to the one among two or more RF channels. 11 . The apparatus of claim 10 , wherein the outer tunnel data stream is generated in different ways according operation modes for the channel bonding. 12 . The apparatus of claim 11 , wherein the operation modes include: a first mode in which one outer tunnel data stream is generated for each of the two or more RF channels; and a second mode in which one outer tunnel data stream is generated for the two or more RF channels. 13 . The apparatus of claim 12 , wherein the one outer tunnel data stream of the first mode includes one inner tunneled packet stream group for one among the two or more RF channels, and the one outer tunnel data stream of the second mode includes two or more inner tunneled packet stream groups, the two or more inner tunneled packet stream groups being for the two or more RF channels, respectively. 14 . The apparatus of claim 13 , wherein the two or more inner tunneled packet stream groups of the second mode use different port groups. 15 . The apparatus of claim 14 , wherein the outer tunnel data stream includes a RTP header which includes a channel number field (number_of_channels) that indicates the number of channels corresponding to the outer tunnel data stream. 16 . A broadcast-gateway-signaling method, comprising: generating baseband packets corresponding to channel bonding; and allocating the baseband packets to two or more RF channels of the channel bonding for generating an outer tunnel data stream, the outer tunnel data stream generated in different ways according to operation modes for the channel bonding. 17 . The broadcast-gateway-signaling method of claim 16 , wherein the operation modes include: a first mode in which one outer tunnel data stream is generated for each of the two or more RF channels; and a second mode in which one outer tunnel data stream is generated for the two or more RF channels. 18 . The broadcast-gateway-signaling method of claim 17 , wherein the one outer tunnel data stream of the first mode includes one inner tunneled packet stream group for one among the two or more RF channels, and the one outer tunnel data stream of the second mode includes two or more inner tunneled packet stream groups, the two or more inner tunneled packet stream groups being for the two or more RF channels, respectively. 19 . The broadcast-gateway-signaling method of claim 18 , wherein the two or more inner tunneled packet stream groups of the second mode use different port groups. 20 . The broadcast-gateway-signaling method of claim 18 , wherein the outer tunnel data stream includes a RTP header which includes a channel number field (number_of_channels) that indicates the number of channels corresponding to the outer tunnel data stream.

Assignees

Inventors

Classifications

  • H04L12/189Primary

    in combination with wireless systems (selective distribution or broadcast in wireless communication networks H04W4/06) · CPC title

  • adapted to provide push services, e.g. data channels · CPC title

  • Interconnection of networks using encapsulation techniques, e.g. tunneling · CPC title

  • H04W72/005Primary

    Electricity · mapped topic

  • H04W72/30Primary

    Resource management for broadcast services · CPC title

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What does patent US2020128511A1 cover?
Disclosed herein are a method and apparatus of broadcast gateway signaling for channel bonding. The apparatus for broadcast gateway signaling includes an input formatting unit configured to generate baseband packets corresponding to channel bonding; and a stream partitioner configured to allocate the baseband packets to two or more RF channels of the channel bonding for generating an outer tunn…
Who is the assignee on this patent?
Electronics & Telecommunications Res Inst
What technology area does this patent fall under?
Primary CPC classification H04L12/189. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Apr 23 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).