US2022200841A1PendingUtilityA1
Method and apparatus for transmitting/receiving a broadcast signal
Est. expiryJul 8, 2035(~8.9 yrs left)· nominal 20-yr term from priority
H04L 69/08H04L 41/0226H04N 21/234H04L 67/63H04L 69/324H04L 69/04H04L 69/161H04N 21/2362H04L 65/40H04N 21/64322H04L 69/323H04N 21/2383H04L 12/42H04N 21/00H04L 29/06H04L 29/08H04L 29/08018
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Claims
Abstract
A method for transmitting a broadcast signal is disclosed. The method for transmitting a broadcast signal according to an embodiment of the present invention includes link layer processing IP/UDP data to output a link layer packet, and physical layer processing the link layer packet based on a PLP.
Claims
exact text as granted — not AI-modified1 - 14 . (canceled)
15 . A method for transmitting a signal in a digital transmitter, the method comprising:
generating at least one link layer packet based on input data, wherein the at least one link layer packet includes a payload, at least one of a base header, an additional header or an optional header having Sub-stream Identifier (SID) for indicating a sub-stream identifier for the at least one link layer packet; and transmitting the signal carrying a Physical Layer Pipe (PLP) including the at least one link layer packet, wherein the generating includes: compressing a header of an Internet Protocol (JP) packet, and performing an adaptation function for the IP packet based on one of three adaptation modes, wherein the three adaptation modes include: a first adaptation mode in which a first Initialization and Refresh (JR) packet, a first IR Dynamic (IR-DYN) packet and a first compressed packet are bypassed by an adaption module, a second adaptation mode in which context information of a second IR packet is extracted, and the second IR packet is converted into a second IR-DYN packet, and a third adaptation mode in which context information of a third IR packet is extracted, context information of a third IR-DYN packet is extracted, the third IR packet is converted into a second compressed packet, and the third IR-DYN packet is converted into a third compressed packet.
16 . The method of claim 15 , wherein link layer signaling information includes mapping information for the PLP and the IP packet carried in the PLP,
wherein the mapping information includes PLP number information, IP/User Datagram Protocol (UDP) sub-stream number information included in the PLP, source IP address information for each IP/UDP sub-stream, destination IP address information, source UDP port information and destination UDP port information, and wherein the SID is used for filtering the IP/UDP sub-stream included in the PLP in a link layer level.
17 . The method of claim 16 , wherein additional header of the link layer packet includes flag information indicating whether the SID is included in the optional header.
18 . The method of claim 17 , wherein the link layer signaling information includes description information for IP header compression, and
wherein the description information includes the extracted context information.
19 . The method of claim 18 , wherein a link layer signaling packet is included in the PLP forwarding a service list table, and the service list table is signaling information describing a service.
20 . A digital transmitter for transmitting a signal, the digital transmitter comprising:
a processor configured to generate at least one link layer packet based on input data, wherein the at least one link layer packet includes a payload, at least one of a base header, an additional header or an optional header having Sub-stream Identifier (SID) for indicating a sub-stream identifier for the at least one link layer packet; and a transmitting module configured to transmit the signal carrying a Physical Layer Pipe (PLP) including the at least one link layer packet, wherein the processor is configured to: compress a header of an Internet Protocol (JP) packet, and perform an adaptation function for the IP packet based on one of three adaptation modes, wherein the three adaptation modes include: a first adaptation mode in which a first Initialization and Refresh (JR) packet, a first IR Dynamic (IR-DYN) packet and a first compressed packet are bypassed by an adaption module, a second adaptation mode in which context information of a second IR packet is extracted, and the second IR packet is converted into a second IR-DYN packet, and a third adaptation mode in which context information of a third IR packet is extracted, context information of a third IR-DYN packet is extracted, the third IR packet is converted into a second compressed packet, and the third IR-DYN packet is converted into a third compressed packet.
21 . The digital transmitter of claim 6 , wherein the link layer signaling information includes mapping information for the PLP and the IP packet carried in the PLP,
wherein the mapping information includes PLP number information, IP/User Datagram Protocol (UDP) sub-stream number information included in the PLP, source IP address information for each IP/UDP sub-stream, destination IP address information, source UDP port information and destination UDP port information, and wherein the SID is used for filtering the IP/UDP sub-stream included in the PLP in a link layer level.
22 . The digital transmitter of claim 21 , wherein additional header of the link layer packet includes flag information indicating whether the SID is included in the optional header.
23 . The digital transmitter of claim 22 , wherein the link layer signaling information includes description information for IP header compression, and
wherein the description information includes the extracted context information.
24 . The digital transmitter of claim 23 , wherein the link layer signaling packet is included in the PLP forwarding a service list table, and the service list table is signaling information describing a service.
25 . A method for receiving a signal in a digital receiver, the method comprising:
receiving at least one link layer packet based on a Physical Layer Pipe (PLP); receiving link layer signaling information; and processing the at least one link layer packet, wherein the at least one link layer packet includes a payload, at least one of a base header, an additional header or an optional header having Sub-stream Identifier (SID) for indicating a sub-stream identifier for the at least one link layer packet, wherein the processing performs based on one of three adaptation modes: in a first adaptation mode, starting a first decompression from a detected Initialization and Refresh (JR) packet, wherein the link layer signaling information includes no context information, in a second adaptation mode, starting a second decompression from a detected IR Dynamic (IR-DYN) packet using context information, the context information is extracted from the link layer signaling information, wherein the second decompression includes converting the detected IR-DYN packet into an IR packet using the extracted context information for performing the second adaption mode, and in a third adaptation mode, starting a third decompression with any compressed packet using context information, the context information is extracted from the link layer signaling information.
26 . The method of claim 25 , wherein the link layer signaling information includes mapping information for the PLP and an Internet Protocol (IP) packet carried in the PLP,
wherein the mapping information includes PLP number information, IP/User Datagram Protocol (UDP) sub-stream number information included in the PLP, source IP address information for each IP/UDP sub-stream, destination IP address information, source UDP port information and destination UDP port information, and wherein the SID is used for filtering the IP/UDP sub-stream included in the PLP in a link layer level.
27 . The method of claim 26 , wherein additional header of the link layer packet includes flag information indicating whether the SID is included in the optional header.
28 . The method of claim 27 , wherein the link layer signaling information includes description information for IP header compression, and
wherein the description information includes the extracted context information.
29 . The method of claim 28 , wherein a link layer signaling packet is included in the PLP forwarding a service list table, and the service list table is signaling information describing a service.
30 . A digital receiver for receiving a signal, the digital receiver comprising:
a receiving module configured to receive at least one link layer packet based on a Physical Layer Pipe (PLP); the receiving module configured to receive link layer signaling information; and a processor configured to process the at least one link layer packet, wherein the at least one link layer packet includes a payload, at least one of a base header, an additional header or an optional header having Sub-stream Identifier (SID) for indicating a sub-stream identifier for the at least one link layer packet; and the processor is configured to: start a first decompression from a detected Initialization and Refresh (JR) packet in a first adaptation mode, wherein the link layer signaling information includes no context information, start a second decompression from a detected IR Dynamic (IR-DYN) packet in a second adaptation mode using context information for performing the second adaption mode, the context information is extracted from link layer signaling information, wherein the second decompression includes the processor configured to convert the detected IR-DYN packet into an IR packet using the extracted context information for performing the second adaption mode, and start a third decompression with any compressed packet in a third adaptation mode using context information for performing the third adaption mode, the context information is extracted from the link layer signaling information.
31 . The digital receiver of claim 30 , wherein the link layer signaling information includes mapping information for the PLP and an Internet Protocol (IP) packet carried in the PLP,
wherein the mapping information includes PLP number information, IP/User Datagram Protocol (UDP) sub-stream number information included in the PLP, source IP address information for each IP/UDP sub-stream, destination IP address information, source UDP port information and destination UDP port information, and wherein the SID is used for filtering the IP/UDP sub-stream included in the PLP in a link layer level.
32 . The digital receiver of claim 31 , wherein additional header of the link layer packet includes flag information indicating whether the SID is included in the optional header.
33 . The digital receiver of claim 32 , wherein the link layer signaling information includes description information for IP header compression, and
wherein the description information includes the extracted context information.
34 . The digital receiver of claim 20 , wherein a link layer signaling packet is included in the PLP forwarding a service list table, and the service list table is signaling information describing a service.Join the waitlist — get patent alerts
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