USRE49468EActiveUtility
Method and apparatus for transmitting and receiving common channel information in wireless communication system
Est. expiryOct 24, 2032(~6.2 yrs left)· nominal 20-yr term from priority
H04B 7/06952H04W 56/0015H04L 5/0044Y02D30/70H04L 5/0007H04W 16/28H04L 5/0064H04B 7/0695H04L 5/0048H04L 5/14
60
PatentIndex Score
0
Cited by
142
References
28
Claims
Abstract
Methods and apparatus are provided for transmission and reception of common channel information in a mobile communication system using multi-antenna-based beamforming. A number of beams to be used for transmission to a terminal is determined at a base station. The common channel information is generated corresponding to the number of beams. The common channel information is transmitted from the base station to the terminal through one of the beams.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1. A method by a base station of a mobile communication system using multi-antenna-based, beamforming, the method comprising:
identifying a plurality of beams to be used for transmission; and transmitting, to each terminal in a cell of the base station, common channel information through each of the plurality of the beams, wherein the common channel information is information to be commonly applied to terminals which belong to the cell of the base station, wherein the common channel information comprises a synchronization channel including a first synchronization signal and a second synchronization signal, and wherein the common channel information transmitted through each of the plurality of beams to each terminal is included in different subframes in a frame and the first synchronization signal includes a beam-specific code, which is a synchronization channel-specific code determined differently depending on the beam, such that each terminal identifies a subframe carrying the first synchronization signal based on the beam-specific code for acquiring frame timing.
2. The method of claim 1 , wherein the common channel information further comprises a broadcast channel.
3. The method of claim 2 , wherein the broadcast channel comprises a master information block as cell-specific information, the master information block comprising scheduling information on beam-specific information including system information on a certain beam, the beam-specific information comprising at least one of uplink random access information, power control information, Time Division Duplex (TDD) downlink/uplink configuration information.
4. A method by a terminal in a mobile communication system using multi-antenna-based beamforming, the method comprising:
receiving common channel information transmitted through a beam by a base station, wherein the common channel information is included in a certain subframe in a frame and comprises a synchronization channel including a first synchronization signal and a second synchronization signal, the first synchronization signal including a beam-specific code, which is a synchronization channel-specific code determined differently depending on the beam, identifying the subframe carrying the first synchronization signal based on the beam-specific code; acquiring frame timing based on a result of the identification of the subframe; and receiving a signal transmitted by the base station based on the frame timing, wherein the common channel information is transmitted through each of a plurality of beams, and the common channel information transmitted through each of the plurality of beams is included in different subframes in a frame, wherein the common channel information is information to be commonly applied to terminals which belong to a cell of the base station.
5. The method of claim 4 , wherein the common channel information further comprises a broadcast channel.
6. The method of claim 5 , wherein the broadcast channel comprises a master information block as cell-specific information, the master information block comprising scheduling information on beam-specific information including system information on a certain beam, the beam-specific information comprising at least one of uplink random access information, power control information, Time Division Duplex (TDD) downlink/uplink configuration information.
7. A base station in a mobile communication system using multi-antenna-based beamforming, the base station comprising:
a transceiver configured to transmit and receive signals; and a controller configured to identify a plurality of beams to be used for transmission, and control the transceiver to transmit, to each terminal in a cell of the base station, common channel information through each of the plurality of the beams, wherein the common channel information is information to be commonly applied to terminals which belong to the cell of the base station, wherein the common channel information comprises a synchronization channel including a first synchronization signal and a second synchronization signal, and wherein the common channel information transmitted through each of the plurality of beams to each terminal is included in different subframes in a frame and the first synchronization signal includes a beam-specific code, which is a synchronization channel-specific code determined differently depending on the beam, such that each terminal identifies a subframe carrying the first synchronization signal based on the beam-specific code for acquiring frame timing.
8. The base station of claim 7 , wherein the common channel information further comprises a broadcast channel.
9. The base station of claim 8 , wherein the broadcast channel comprises a master information block as cell-specific information, the master information block comprising scheduling information on beam-specific information including system information on a certain beam, the beam-specific information comprising at least one of uplink random access information, power control information, Time Division Duplex (TDD) downlink/uplink configuration information.
10. A terminal in a mobile communication system using multi-antenna-based beamforming, the terminal comprising:
a transceiver configured to transmit and receive signals to and from a base station; and a controller configured to control the transceiver to: receive common channel information transmitted through a beam by a base station, wherein the common channel information is included in a certain subframe in a frame and comprises a synchronization channel including a first synchronization signal and a second synchronization signal, the first synchronization signal including a beam-specific code, which is a synchronization channel-specific code determined differently depending on the beam, identify the subframe carrying the first synchronization signal based on the beam-specific code, acquire frame timing based on a result of the identification of the subframe, and receive a signal transmitted by the base station based on the frame timing, wherein the common channel information is transmitted through each of a plurality of beams and the common channel information transmitted through each of the plurality of beams is included in different subframes in a frame, wherein the common channel information is information to be commonly applied to terminals which belong to a cell of the base station.
11. The terminal of claim 10 , wherein the common channel information further comprises a broadcast channel.
12. The terminal of claim 11 , wherein the broadcast channel comprises a master information block as cell-specific information, the master information block comprising scheduling information on beam-specific information including system information on a certain beam, the beam-specific information comprising at least one of uplink random access information, power control information, Time Division Duplex (TDD) downlink/uplink configuration information.
13. A terminal for processing synchronization signals and system information in a mobile communication system, the terminal comprising:
a transceiver; and a processor configured to:
receive, from a base station via the transceiver, a block including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), and a broadcast channel (BCH), wherein the block is one among a subset of blocks and each block in the subset of blocks is a candidate for receiving the PSS, SSS, and the BCH,
obtain master information in the BCH of the block, and
receive, from the base station via the transceiver, system information in a downlink shared channel based on the master information in the BCH of the block,
wherein the subset of blocks is selected from a set of blocks, and the subset of blocks is smaller than or equal to the set of blocks, wherein the set of blocks are defined based on a time duration corresponding to 5 sub-frames of 10 sub-frames within one frame, wherein the PSS of the block is separated from the SSS and the BCH in a time domain, wherein the block is associated with a beam-specific code and a beam of at least one beam for the set of blocks, wherein the set of blocks are indexed in an ascending order in the time domain, wherein a time synchronization is identified based on the block associated with the beam-specific code, and wherein the system information includes cell-specific information.
14. The terminal of claim 13, wherein each block among the set of blocks is numbered and a position of the block is predetermined.
15. The terminal of claim 13, wherein the processor is further configured to identify a cell identifier (ID) based on the block.
16. The terminal of claim 13, wherein the system information includes time duplex division (TDD) uplink-downlink configuration information and power related information.
17. A base station for processing synchronization signals and system information in a mobile communication system, the base station comprising:
a transceiver; and a processor configured to:
transmit, to a terminal via the transceiver, a block including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), and a broadcast channel (BCH), wherein the block is one among a subset of blocks and each block in the subset of blocks is a candidate for transmitting the PSS, SSS, and the BCH, and
transmit, to the terminal via the transceiver, system information in a downlink shared channel based on master information in the BCH,
wherein the subset of blocks is selected from a set of blocks, and the subset of blocks is smaller than or equal to the set of blocks, wherein the set of blocks are defined based on a time duration corresponding to 5 sub-frames of 10 sub-frames within one frame, wherein the PSS of the block is separated from the SSS and the BCH in a time domain, wherein the master information is transmitted in the BCH, wherein the block is associated with a beam-specific code and a beam of at least one beam for the set of blocks, wherein the set of blocks are indexed in an ascending order in the time domain, wherein a time synchronization is identified based on the block associated with the beam-specific code, and wherein the system information includes cell-specific information.
18. The base station of claim 17, wherein each block among the set of blocks is numbered and a position of the block is predetermined.
19. The base station of claim 17, wherein a cell identifier (ID) is identified based on the block.
20. The base station of claim 17, the system information includes time duplex division (TDD) uplink-downlink configuration information and power related information.
21. A method for processing synchronization signals and system information in a mobile communication system, the method comprising:
receiving, from a base station, a block including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), and a broadcast channel (BCH), wherein the block is one among a subset of blocks and each block in the subset of blocks is a candidate for receiving the PSS, SSS, and the BCH; obtaining master information in the BCH of the block; and receiving, from the base station, system information in a downlink shared channel based on the master information in the BCH of the block, wherein the subset of blocks is selected from a set of blocks, and the subset of blocks is smaller than or equal to the set of blocks, wherein the set of blocks are defined based on a time duration corresponding to 5 sub-frames of 10 sub-frames within one frame, wherein the PSS of the block is separated from the SSS and the BCH in a time domain, wherein the block is associated with a beam-specific code and a beam of at least one beam for the set of blocks, wherein the set of blocks are indexed in an ascending order in the time domain, wherein a time synchronization is identified based on the block associated with the beam-specific code, and wherein the system information includes cell-specific information.
22. The method of claim 21, wherein each block among the set of blocks is numbered and a position of the block is predetermined.
23. The method of claim 21, further comprising identifying a cell identifier (ID) based on the block.
24. The method of claim 21, wherein the system information includes time duplex division (TDD) uplink-downlink configuration information and power related information.
25. A method for processing synchronization signals and system information in a mobile communication system, the method comprising:
transmitting, to a terminal, a block including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), and a broadcast channel (BCH), wherein the block is one among a subset of blocks and each block in the subset of blocks is a candidate for transmitting the PSS, SSS, and the BCH; and transmitting, to the terminal, system information in a downlink shared channel based on master information in the BCH, wherein the subset of blocks is selected from a set of blocks, and the subset of blocks is smaller than or equal to the set of blocks, wherein the set of blocks are defined based on a time duration corresponding to 5 sub-frames of 10 sub-frames within one frame, wherein the PSS of the block is separated from the SSS and the BCH in a time domain, wherein the master information is transmitted in the BCH, wherein the block is associated with a beam-specific code and a beam of at least one beam for the set of blocks, wherein the set of blocks are indexed in an ascending order in the time domain, wherein a time synchronization is identified based on the block associated with the beam-specific code, and wherein the system information includes cell-specific information.
26. The method of claim 25, wherein each block among the set of blocks is numbered and a position of the block is predetermined.
27. The method of claim 25, wherein a cell identifier (ID) is identified based on the block.
28. The method of claim 25, wherein the system information includes time duplex division (TDD) uplink-downlink configuration information and power related information.Join the waitlist — get patent alerts
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