WO2012171224A1 - Procédé et dispositif de planification et procédé et dispositif de traitement d'informations de commande - Google Patents

Procédé et dispositif de planification et procédé et dispositif de traitement d'informations de commande Download PDF

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Publication number
WO2012171224A1
WO2012171224A1 PCT/CN2011/075888 CN2011075888W WO2012171224A1 WO 2012171224 A1 WO2012171224 A1 WO 2012171224A1 CN 2011075888 W CN2011075888 W CN 2011075888W WO 2012171224 A1 WO2012171224 A1 WO 2012171224A1
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WIPO (PCT)
Prior art keywords
information
tbs
control information
mcs
dci format
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PCT/CN2011/075888
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English (en)
Chinese (zh)
Inventor
陶雪涛
赵俊
雷栋
谢伟
Original Assignee
华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2011/075888 priority Critical patent/WO2012171224A1/fr
Priority to CN201180000742.9A priority patent/CN102265695B/zh
Publication of WO2012171224A1 publication Critical patent/WO2012171224A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/0001Systems modifying transmission characteristics according to link quality, e.g. power backoff
    • H04L1/0023Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
    • H04L1/0025Transmission of mode-switching indication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • H04L5/0092Indication of how the channel is divided
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0058Allocation criteria
    • H04L5/0064Rate requirement of the data, e.g. scalable bandwidth, data priority

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a scheduling method and device. Background of the invention
  • the eNodeB In the LTE (Long Term Evolution) technology, the eNodeB (Evolved Node Base Station) can transmit DCI (Downlink Control Information) format 1C through the PDCCH (Physical Downlink Control Channel). That is, the downlink control information of the DCI format 1C) or the DCI format 1A (ie, the DCI format 1A) is sent to the UE (User Equipment).
  • DCI Downlink Control Information
  • PDCCH Physical Downlink Control Channel
  • the DCI format 1C corresponds to a TBS (Transport Block Size) table, as shown in the first TBS table in FIG. 1, the number of the line in which the symbol tbs is located in the first TBS table is the serial number, and the number of the line in which the symbol TBS is located is TBS. Value, the unit of TBS value is bit (bit).
  • the UE that receives the downlink control information of the DCI format 1C passes the MCS in the downlink control information (Modulation and
  • Coding Scheme modulation coding mode
  • the DCI format 1A corresponds to a TBS table, as shown in the second TBS table in FIG. 2, and the number in the second TBS table is the TBS value, and the unit is bit o.
  • the UE that receives the downlink control information of the DCI format 1A passes the downlink control information.
  • the TPC-PUCCH Transmit Power Control-Physical Uplink Control CHannel, the transmission power control command of the uplink physical control channel
  • the scheduled TBS value is the scheduled TBS value.
  • the DCI format 1C is compact and consumes less PDCCH resources, but the indicated TBS value range is smaller, and the DCI format 1A is inferior.
  • the DCI format 1C format is compact and consumes a lot of PDCCH resources, but its TBS table indicates a large range of TBS values.
  • the DCR format 1C RB (Resource Block) allocation type is fixed using the DVRB (Distributed Virtual Resource Bock) indication.
  • DCI format 1A RB allocation type can be indicated by DVRB or LVRB (Localized Virtual Resource Block), which is more flexible.
  • the eNodeB preferentially sends the downlink control information of the DCI format 1C for the UE to determine.
  • the TBS value of this schedule if the TBS value of the scheduled time is not in the second TBS table, the eNodeB needs to send the downlink control information of the DCI format 1A for the UE to determine the TBS value of the TB of the retransmission schedule, because the DVRB resource allocation type of the DCI format 1C is limited.
  • the TBS value determined by the UE according to the downlink control information of the DCI format 1A and the downlink control information of the DCI format 1C are different, and the UE cannot combine the TB originally transmitted by the eNodeB with the retransmitted TB for decoding, and the UE cannot obtain the UE. Retransmit the gain. Summary of the invention
  • the present invention provides a scheduling method and device, and a method and a device for processing control information, so that the TBS value determined by the UE according to the downlink control information of the DCI format 1A transmitted by the eNodeB is the same as the TBS value determined by the downlink control information of the DCI format 1C.
  • An aspect of the present invention provides a scheduling method, which may include:
  • the TBS value belongs to the first TBS table corresponding to the DCI format 1C;
  • the second downlink control information includes indication information and second MCS information, where the second MCS information is used to determine the TBS value;
  • the indication information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and the second MCS The information is the same as the first MCS information; or, if the TBS value belongs to the second TBS table corresponding to the DCI format 1A, the indication information is used to indicate according to the second MCS information, the second TBS table, and the uplink physics.
  • the lowest bit of the transmission power control command TPC-PUCCH of the control channel determines the TBS value.
  • a scheduling device which may include:
  • a first sending unit configured to send first downlink control information of the downlink control information DCI format 1C to the user equipment UE, where the first downlink control information includes first modulation and coding mode MCS information, and the first MCS information is used by Determining a transport block size TBS value, where the TBS value belongs to a first TBS table corresponding to DCI format 1C;
  • a second sending unit configured to send second downlink control information of the DCI format 1A to the UE, where the second downlink control information includes indication information and second MCS information, where the second MCS information is used to determine the TBS a value, where the indication information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, if the TBS value does not belong to the second TBS table corresponding to the DCI format 1A, and the The second MCS information is the same as the first MCS information; or, if the TBS value belongs to the second TBS table corresponding to the DCI format 1A, the indication information is used to indicate according to the second MCS information, the second TBS table, and The lowest bit of the transmission power control command TPC-PUCCH of the uplink physical control channel determines the TBS value.
  • An aspect of the present invention provides a method for processing control information, which may include:
  • the second downlink control information includes the indication information and the second MCS information, and determining the TBS value according to the indication of the indication information; wherein the indication information indicates that the second MCS information is Determining a TBS value with the first TBS table, and the second MCS information is the same as the first MCS information; or, the indication information indicates a lowest according to the second MCS information, the second TBS table, and the TPC-PUCCH Bit determines the TBS value.
  • Another aspect of the present invention provides a processing device for controlling information, which may include:
  • a receiving unit configured to receive first downlink control information of DCI format 1C, where the first downlink control information includes first MCS information;
  • a processing unit configured to determine a TBS value according to the first MCS information and a first TBS table corresponding to the DCI format 1C; the receiving unit is further configured to receive second downlink control information of the DCI format 1A, where The second downlink control information includes the indication information and the second MCS information, and the TBS value is determined according to the indication of the indication information, where the indication information indicates that the TBS value is determined according to the second MCS information and the first TBS table, and the The second MCS information is the same as the first MCS information; or the indication information indicates that the TBS value is determined according to the lowest bits of the second MCS information, the second TBS table, and the TPC-PUCCH.
  • the foregoing technical solution is such that the TBS value determined by the UE according to the downlink control information of the DCI format 1A sent by the eNodeB is the same as the TBS value determined by the downlink control information of the DCI format 1C, so that the UE can merge the TB of the eNodeB and the TB of the retransmission. Decode to obtain the retransmission gain. BRIEF DESCRIPTION OF THE DRAWINGS
  • Figure 1 shows the first TBS table corresponding to DCI format 1C.
  • Figure 2 shows the second TBS table corresponding to DCI format 1A.
  • FIG. 3 is a schematic flowchart diagram of a scheduling method according to an embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of an application scenario of a scheduling method according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a scheduling device according to an embodiment of the present invention.
  • FIG. 6 is a schematic flowchart diagram of a method for processing control information according to an embodiment of the present invention.
  • FIG. 7 is a first schematic structural diagram of a processing apparatus for controlling information according to an embodiment of the present invention.
  • FIG. 8 is a second schematic structural diagram of a processing apparatus for controlling information according to an embodiment of the present invention. Mode for carrying out the invention
  • an embodiment of the present invention provides a scheduling method, which may include:
  • the first downlink control information of the DCI (Downlink Control Information) format 1C is sent to the UE (User Equipment), and the first downlink control information includes a first MCS (Modulation and Coding Scheme,
  • the first encoding information is used to determine a transport block size TBS (Transport Block Size) value, and the TBS value belongs to the first TBS table corresponding to the DCI format 1C.
  • TBS Transport Block Size
  • the second downlink control information of the DCI format 1A is sent to the UE, the second downlink control information includes indication information and second MCS information, and the second MCS information is used to determine the TBS value;
  • the indication information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and the second MCS The information is the same as the first MCS information; or, if the TBS value belongs to the second TBS table corresponding to the DCI format 1A, the indication information is used to indicate according to the second MCS information, the second TBS table, and the TPC- The lowest bit of the PUCCH (Transmit Power Control-Physical Uplink Control Channel, the transmission power control command of the uplink physical control channel) determines the TBS value.
  • the PUCCH Transmit Power Control-Physical Uplink Control Channel, the transmission power control command of the uplink physical control channel
  • the executor of the scheduling method of the embodiment of the present invention may be an eNodeB (Evolved Node Base Station).
  • the eNodeB may send downlink control information of DCI format 1C and/or DCI format 1A to the UE through a PDCCH (Physical Downlink Control Channel).
  • PDCCH Physical Downlink Control Channel
  • the foregoing technical solution may enable the UE to determine the TBS value and the DCI cell according to the downlink control information of the DCI format 1A sent by the eNodeB.
  • the downlink control information determined by the downlink control information of the formula 1C is the same, so that the UE can combine the TB originally transmitted by the eNodeB and the retransmitted TB to perform decoding, thereby obtaining a retransmission gain.
  • the second downlink control information of the DCI format 1A is sent, where the indication information in the second downlink control information occupies the highest bit of the TPC-PUCCH.
  • the TPC-PUCCH is defined as 2 bits, wherein the lowest bit indicates the column number of the second TBS table corresponding to the DCI format 1A, and the most significant bit is a reserved bit, which is not used.
  • the indication information occupies the highest bit of the TPC-PUCCH, and the DCI format 1A defined by the current LTE protocol does not have to be changed.
  • the indication information is not limited to only occupying the highest bit of the TPC-PUCCH, and other methods for modifying the DCI format 1A defined by the current LTE protocol to implement the bearer indication information are all covered by the present invention. Within the scope of protection.
  • the indication information occupies the highest bit of the TPC-PUCCH, and when the highest bit of the TPC-PUCCH is 1, it is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and the The second MCS information is the same as the first MCS information; when the highest bit of the TPC-PUCCH is 0, it is used to indicate that the TBS value is determined according to the lowest bits of the second MCS information, the second TBS table, and the TPC-PUCCH .
  • the indication information occupies the highest bit of the TPC-PUCCH, and when the highest bit of the TPC-PUCCH is 0, is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and the second MCS The information is the same as the first MCS information; when the highest bit of the TPC-PUCCH is 1, it is used to indicate that the TBS value is determined according to the lowest bits of the second MCS information, the second TBS table, and the TPC-PUCCH.
  • the embodiment of the invention provides a downlink scheduling method, which may further include:
  • the indication information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and The second MCS information is the same as the first MCS information; or, if the TBS value corresponding to the first MSC information belongs to the second TBS table corresponding to the DCI format 1A, the indication information is used to indicate that the second MCS information is The lowest bits of the second TBS table and the TPC-PUCCH determine the TBS value.
  • the TBS value corresponding to the first MSC information herein refers to the TBS value that can be determined according to the first MSC information (or the first MSC information and other information), and the first MSC information sent by the eNodeB can be understood.
  • the first MSC information can be described as corresponding to the TBS value. A similar description will not be described later.
  • a first TBS table corresponding to the DCI format 1C the first TBS table includes a correspondence relationship between the TBS value and the serial number.
  • the first downlink control information of the DCI format 1C is sent to the UE, where the first downlink control information includes the first MCS information, where the first MCS information is used to calculate a sequence number corresponding to the TBS value, to determine the TBS value.
  • the first MCS information is 5 bits, and is used to calculate a sequence number corresponding to the TBS value, where the sequence number includes 0-31.
  • the second downlink control information of the DCI format 1A is sent to the UE, and the second downlink control information includes the indication information and the second MCS information, where the TBS value does not belong to the second TBS table corresponding to the DCI format 1A, and the indication information is used. Instructed according to the second The MCS information and the first TBS table determine the TBS value, and the second MCS information is the same as the first MCS information, and the second MCS information is also used to calculate a sequence number corresponding to the TBS value, to determine Describe the TBS value.
  • the TBS value corresponding to the first MCS belongs to the first TBS table corresponding to the DCI format 1C, but does not belong to the second TBS table corresponding to the DCI format 1A
  • the TBS value determined according to the first MCS sent by the eNodeB and the second MCS are implemented.
  • the determined TBS values are the same, so that the UE can combine the TBs initially transmitted by the eNodeB and the retransmitted TBs to perform decoding, thereby obtaining retransmission gain.
  • the first TBS table corresponding to the DCI format 1C the first TBS table includes a correspondence between the TBS value and the serial number
  • the second TBS table corresponding to the DCI format 1A as shown in FIG. 2
  • the second TBS table includes a correspondence between the TBS value and the line number and the column number.
  • the first downlink control information of the DCI format 1C is sent to the UE, where the first downlink control information includes the first MCS information, where the first MCS information is used to calculate a sequence number corresponding to the TBS value, to determine the TBS value.
  • the second downlink control information of the DCI format 1A is sent to the UE, where the second downlink control information includes the indication information and the second MCS information, where the TBS value belongs to the second TBS table corresponding to the DCI format 1A, and the indication information is used.
  • the indication determines the TBS value according to the second MCS information, the second TBS table, and the lowest bit of the TPC-PUCCH.
  • the second MCS information is used to calculate a row number of the second TBS table, and the lowest bit of the TPC-PUCCH is used to calculate a column number of the second TBS table, and the second TBS table is determined according to the row number and the column number. TBS value.
  • the second MCS information is 5 bits, and is used to calculate a line number of the second TBS table, where the line number includes 1-28.
  • the column number used to calculate the second TBS table is the first column, and when the lowest bit of the TPC-PUCCH is 1, the column used to calculate the second TBS table is calculated. The number is in the second column.
  • the column number used to calculate the second TBS table is the first column, and the lowest bit of the TPC-PUCCH is 0, which is used to calculate the second column.
  • the column number of the TBS table is the second column.
  • the TBS value corresponding to the first MCS belongs to the first TBS table corresponding to the DCI format 1C, and also belongs to the second TBS table corresponding to the DCI format 1A
  • the TBS value determined according to the first MCS sent by the eNodeB is implemented, and according to the second
  • the lowermost bits of the MCS information and the TPC-PUCCH determine the same TBS value, so that the UE can combine the TB of the eNodeB and the retransmitted TB for decoding, thereby obtaining a retransmission gain.
  • the first downlink control information and/or the second downlink control information are sent by using downlink signaling, where the downlink signaling may be a system message, or a paging message, or One or more of the random access response messages.
  • the downlink signaling may be a system message, or a paging message, or One or more of the random access response messages.
  • FIG. 4 a scheduling method according to an embodiment of the present invention is provided, including:
  • the eNodeB sends the first downlink control information of the DCI format 1C to the UE.
  • the eNodeB When the TB is first transmitted to the UE, the eNodeB sends the first downlink control information of the DCI format 1C to the UE, where the first downlink control information includes the first MCS information, the first MCS information is used to determine the TBS value, and the TBS value belongs to the DCI format 1C.
  • the first MCS information is used to calculate a sequence number corresponding to the TBS value to determine a TBS value.
  • the eNodeB preferentially sends the downlink control information of the DCI format 1C for the UE to determine this time.
  • the scheduled TBS value is a person skilled in the art.
  • the first MCS information is calculated to obtain the sequence number 4, so that the UE that receives the first downlink control information can determine the current time.
  • the TBS value scheduled by the eNodeB is calculated as the first MCS information, so that the UE that receives the first downlink control information can determine the TBS value scheduled by the current eNodeB.
  • the UE receives the first downlink control information of the DCI format 1C, where the first downlink control information includes the first MCS information, and the UE determines the TBS value according to the first MCS information.
  • serial number 4 is calculated according to the first MCS information, according to the first TBS table shown in FIG. 1, the serial number 4 corresponds to
  • the TBS value is 136, and the UE can determine that the TBS value of the current eNodeB scheduling is 136.
  • the sequence number 2 is calculated according to the first MCS information, according to the first TBS table shown in FIG. 1, the TBS value corresponding to the sequence number 2 is 72, and the UE may determine that the TBS value of the current eNodeB scheduling is 72.
  • the eNodeB determines whether the TBS value corresponding to the first MCS information belongs to the second TBS table corresponding to the DCI format 1A.
  • the eNodeB determines whether the TBS value corresponding to the first MCS information in 41 belongs to the second TBS table corresponding to the DCI format 1A, and if the judgment result is no, enters 43, if the judgment result is yes, enter 44.
  • the TBS value corresponding to the first MSC information herein refers to a TBS value that can be determined according to the first MSC information (or the first MSC information and other information), and the first MSC information sent by the eNodeB can be understood.
  • the first MSC information can be described as corresponding to the TBS value.
  • the eNodeB sends the second downlink control information of the DCI format 1A, where the second downlink control information includes the indication information and the second
  • the MCS information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and the second MCS information is the same as the first MCS information.
  • the TBS value is 136, it does not belong to the second TBS table corresponding to the DCI format 1A, and the indication information occupies the highest bit in the TPC-PUCCH, and the highest bit in the TPC-PUCCH is set to 0, and the second MCS calculates the sequence number 4.
  • the UE that receives the second downlink control information may determine the TBS value scheduled by the current eNodeB.
  • the UE receives the second downlink control information of the DCI format 1A, where the second downlink control information includes the indication information and the second MCS information, and the UE determines the TBS value according to the second MCS information according to the indication of the indication information.
  • the sequence number 4 is calculated according to the second MCS information.
  • the TBS value corresponding to the sequence number 4 is 136, and the UE can determine this time.
  • the eNodeB schedules a TBS value of 136, which is the same as the TBS value determined by the first MCS transmitting DCI format 1C in 41.
  • the eNodeB sends the second downlink control information of the DCI format 1A, where the second downlink control information includes the indication information and the second MCS information, where the indication information is used to indicate the lowest bit according to the second MCS information, the second TBS table, and the TPC-PUCCH. Determine the TBS value.
  • the TBS value is 72, it belongs to the second TBS table corresponding to DCI format 1A, and the indication information occupies the most significant bit in the TPC-PUCCH, and the highest bit in the TPC-PUCCH is set to 1, and the lowest bit is used to indicate the column number 1.
  • the second MCS is used to indicate the line number 4, so that the UE that receives the second downlink control information can determine the TBS value scheduled by the current eNodeB.
  • the UE receives the second downlink control information of the DCI format 1A, where the second downlink control information includes the indication information and the second MCS information, and the UE according to the indication of the indication information, according to the second MCS information, the second TBS table, and the TPC-PUCCH The lowest bit determines the TBS value.
  • the column number 1 is calculated according to the lowest bit, and the row number 4 is calculated according to the second MCS.
  • the line number 4 is If the TBS value corresponding to column number 1 is 72, the UE can determine The TBS value of the current eNodeB scheduling is 72, which is the same as the TBS value determined by the first MCS transmitting the DCI format 1C in 41.
  • the scheduling method of the embodiment of the present invention uses the reserved bits of the TPC-PUCCH in the DCI format 1A to indicate the TBS value of the current scheduling of the UE, and the TBS value and the DCI format determined by the UE according to the downlink control information of the DCI format 1A sent by the eNodeB.
  • the downlink control information determines that the TBS values are the same, so that the UE can combine the TBs initially transmitted by the eNodeB and the retransmitted TBs to perform decoding, thereby obtaining retransmission gain. As shown in FIG.
  • the embodiment of the present invention provides a scheduling device, including: a first sending unit 51, configured to send first downlink control information of a downlink control information DCI format 1C to a user.
  • the device the first downlink control information includes a first modulation and coding mode MCS information, the first MCS information is used to determine a transport block size TBS value, and the TBS value belongs to a first TBS table corresponding to the DCI format 1C.
  • a second sending unit 52 configured to send second downlink control information of the DCI format 1A to the UE, where the second downlink control information includes indication information and second MCS information, where the second MCS information is used to determine the a TBS value, where the indication information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, if the TBS value does not belong to the second TBS table corresponding to the DCI format 1A, and the The second MCS information is the same as the first MCS information; or, if the TBS value belongs to the second TBS table corresponding to the DCI format 1A, the indication information is used to indicate according to the second MCS information, the second TBS table. And determining, by the lowest bit of the transmission power control command TPC-PUCCH of the uplink physical control channel, the TBS value.
  • the TBS value determined by the UE according to the downlink control information of the DCI format 1A sent by the eNodeB is the same as the TBS value determined by the downlink control information of the DCI format 1C, so that the UE can
  • the TB of the initial transmission of the eNodeB is combined with the retransmitted TB for decoding, thereby obtaining a retransmission gain.
  • the scheduling device in the embodiment of the present invention may be set separately or on the eNodeB.
  • the first sending unit 51 and the second sending unit 52 are implemented by a transmitter.
  • the scheduling device includes a transmitter, where the transmitter is configured to perform the foregoing sending by the first sending unit 51 and the second sending unit 52. action.
  • the first sending unit 51 and the second sending unit 52 are implemented by different transmitters.
  • the scheduling device includes: a first transmitter and a second transmitter, respectively, configured to execute the foregoing first sending unit 51 and The action performed by the second transmitting unit 52.
  • the eNodeB may send downlink control information of DCI format 1C and/or DCI format 1A to the UE through the PDCCH.
  • the embodiment of the invention provides a downlink scheduling device, which may further include:
  • the determining unit is configured to determine whether the TBS value corresponding to the first MCS information belongs to the second TBS table corresponding to the DCI format 1A. It can be seen that, if the TBS value corresponding to the first MCS information does not belong to the second TBS table corresponding to the DCI format 1A, the indication information is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and The second MCS information is the same as the first MCS information.
  • the indication information is used to indicate that the lowest bit is determined according to the second MCS information, the second TBS table, and the TPC-PUCCH. Describe the TBS value.
  • the TBS value corresponding to the first MSC information herein refers to a TBS value that can be determined according to the first MSC information (or the first MSC information and other information), and the first MSC information sent by the eNodeB can be understood.
  • the first MSC information can be described as corresponding to the TBS value.
  • the second sending unit 52 is configured to: when the indication information is sent, the indication information occupies the highest bit of the TPC-PUCCH.
  • the TPC-PUCCH is defined as 2 bits, wherein the lowest bit indicates the column number of the second TBS table corresponding to the DCI format 1A, and the most significant bit is a reserved bit, which is not used.
  • the indication information occupies the highest bit of the TPC-PUCCH, and the DCI format 1A defined by the current LTE protocol does not have to be changed.
  • the indication information is not limited to only occupying the highest bit of the TPC-PUCCH, and other methods for modifying the DCI format 1A defined by the current LTE protocol to implement the bearer indication information are all covered by the present invention. Within the scope of protection.
  • the first TBS table includes a correspondence between the TBS value and the sequence number
  • the second MCS information is used to calculate a sequence number corresponding to the TBS value to determine the TBS value.
  • the first sending unit 51 is specifically configured to send the first downlink control information by using downlink signaling
  • the second sending unit 52 is specifically configured to send the second downlink control information by using downlink signaling.
  • the downlink signaling may be one or more of a system message, or a paging message, or a random access response message.
  • an embodiment of the present invention provides a method for processing control information, including:
  • first downlink control information of the DCI format 1C where the first downlink control information includes first MCS information, and determine a TBS according to the first MCS information and a first TBS table corresponding to the DCI format 1C. value.
  • the second downlink control information of the DCI format 1A is received, where the second downlink control information includes the indication information and the second MCS information, and the TBS value is determined according to the indication of the indication information, where the indication information indicates that the second The MCS information and the first TBS table determine a TBS value, and the second MCS information is the same as the first MCS information; or, the indication information indicates according to the second MCS information, the second TBS table, and the TPC-PUCCH The lowest bit determines the TBS value.
  • the execution body of the method for processing control information in the embodiment of the present invention may be a UE.
  • the eNodeB can send the DCI format through the PDCCH.
  • the downlink control information of 1C and/or DCI format 1A is given to the UE.
  • the TBS value determined by the UE according to the downlink control information of the DCI format 1A sent by the eNodeB is the same as the TBS value determined by the downlink control information of the DCI format 1C, so that the UE can
  • the TB of the initial transmission of the eNodeB is combined with the retransmitted TB for decoding, thereby obtaining a retransmission gain.
  • the indication information occupies the highest bit of the TPC-PUCCH.
  • the TPC-PUCCH is defined as 2 bits, wherein the lowest bit indicates the column number of the second TBS table corresponding to the DCI format 1A, and the most significant bit is a reserved bit, which is not used.
  • the indication information occupies the highest bit of the TPC-PUCCH, and the DCI format 1A defined by the current LTE protocol does not have to be changed.
  • the indication information occupies the highest bit of the TPC-PUCCH, and when the highest bit of the TPC-PUCCH is 1, it is used to indicate according to the Determining, by the second MCS information and the first TBS table, the TBS value, and the second MCS information is the same as the first MCS information; when the highest bit of the TPC-PUCCH is 0, The lowest bits of the second MCS information, the second TBS table, and the TPC-PUCCH determine the TBS value.
  • the indication information occupies the highest bit of the TPC-PUCCH, and when the highest bit of the TPC-PUCCH is 0, is used to indicate that the TBS value is determined according to the second MCS information and the first TBS table, and the second MCS The information is the same as the first MCS information; when the highest bit of the TPC-PUCCH is 1, it is used to indicate that the TBS value is determined according to the lowest bits of the second MCS information, the second TBS table, and the TPC-PUCCH.
  • determining the TBS value according to the indication of the indication information may include:
  • the first TBS table corresponding to the DCI format 1C includes the correspondence relationship between the TBS value and the serial number.
  • the first MCS information is 5 bits, and is used to calculate a sequence number corresponding to the TBS value, where the sequence number includes 0-31.
  • determining the TBS value according to the indication of the indication information may include:
  • the second TBS table corresponding to the DCI format 1A includes the correspondence between the TBS value and the line number and the column number.
  • the second MCS information is 5 bits, and is used to calculate a line number of the second TBS table, where the line number includes 1-28.
  • the column number used to calculate the second TBS table is the first column, and when the lowest bit of the TPC-PUCCH is 1, the column used to calculate the second TBS table is calculated. The number is in the second column.
  • the column number used to calculate the second TBS table is the first column, and the lowest bit of the TPC-PUCCH is 0, which is used to calculate the second column.
  • the column number of the TBS table is the second column.
  • the first downlink control information of the DCI format 1C or the second downlink control information of the DCI format 1A is carried in the downlink signaling sent by the base station, where the downlink signaling may include: Or one or more of a paging message, or a random access response message.
  • the method for processing control information in the embodiment of the present invention further includes: receiving, by the TBS, the retransmitted TB and the corresponding initial transmitted TB according to the TBS value for decoding.
  • an embodiment of the present invention provides a processing device for controlling information, including:
  • the receiving unit 71 is configured to receive first downlink control information of the DCI format 1C, where the first downlink control information includes the first MCS. interest.
  • the processing unit 72 is configured to determine a TBS value according to the first MCS information and the first TBS table corresponding to the DCI format 1C.
  • the receiving unit 71 is further configured to receive the second downlink control information of the DCI format 1A, where the second downlink control information includes the indication information and the second MCS information, and the TBS value is determined according to the indication of the indication information; where the indication information indicates Determining a TBS value according to the second MCS information and the first TBS table, and the second MCS information is the same as the first MCS information; or, the indication information indicates, according to the second MCS information, the second TBS The lowest bits of the table and TPC-PUCCH determine the TBS value.
  • the TBS value determined by the UE according to the downlink control information of the DCI format 1A sent by the eNodeB is the same as the TBS value determined by the downlink control information of the DCI format 1C, so that the UE can
  • the TB of the initial transmission of the eNodeB is combined with the retransmitted TB for decoding, thereby obtaining a retransmission gain.
  • the processing device for controlling information in the embodiment of the present invention may be separately set or set on the UE.
  • the eNodeB may send downlink control information of DCI format 1C and/or DCI format 1A to the UE through the PDCCH.
  • the indication information occupies the highest bit of the TPC-PUCCH.
  • TPC-PUCCH is defined as 2 bits, wherein the lowest bit indicates the column number of the second TBS table corresponding to the DCI format 1A, The most significant bit is reserved and not used.
  • the indication information occupies the highest bit of the TPC-PUCCH, and the DCI format 1A defined by the current LTE protocol does not have to be changed.
  • the processing unit 72 is further configured to: calculate a sequence number corresponding to the TBS value according to the second MCS information, and use the sequence number from the first TBS table. Determining the TBS value, where the first TBS table includes a correspondence between the TBS value and the sequence number.
  • the processing unit 72 is further configured to:
  • the first downlink control information of the DCI format 1C received by the receiving unit 71 or the second downlink control information of the DCI format 1A is carried in the downlink signaling sent by the base station, where the downlink signaling may include: a system message, or One or more of a call message, or a random access response message.
  • the processing device for controlling information in the embodiment of the present invention is further configured to receive the retransmitted TB, and the processing device for controlling the information, and may further include:
  • the decoding unit 81 is configured to combine the retransmitted TB and its corresponding initial transmitted TB according to the TBS value for decoding.
  • the TBS value determined by the UE according to the downlink control information of the DCI format 1A sent by the eNodeB is the same as the TBS value determined by the downlink control information of the DCI format 1C, so that the UE can combine the TB of the eNodeB and the retransmitted TB for decoding. Thereby obtaining a retransmission gain.
  • the processing device of the control information provided by the embodiment of the present invention may be used to implement the action performed by the UE in the method provided in the foregoing embodiment.
  • the above is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto, and any familiarity with the present invention is not limited thereto.
  • Those skilled in the art are susceptible to variations or alternatives within the scope of the present disclosure. Therefore, the scope of the invention should be determined by the scope of the claims.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

La présente invention porte sur un procédé et un dispositif de planification et sur un procédé et un dispositif de traitement d'informations de commande, le procédé de planification consistant à : envoyer une première information de commande de liaison descendante ayant le format 1C d'information de commande de liaison descendante (DCI) à un équipement utilisateur (UE), la première information de commande de liaison descendante comprenant une première information de technique de modulation et de codage (MCS) qui est utilisée pour déterminer une valeur de longeur de bloc de transport (TBS) et la valeur TBS appartenant à la première table TBS qui correspond au format DCI 1C ; envoyer une seconde information de commande de liaison descendante ayant le format DCI 1A à l'UE, la seconde information de commande de liaison descendante comprenant une information d'indication et une seconde information MCS qui est utilisée pour déterminer la valeur TBS. Si la valeur TBS n'appartient pas à la seconde table TBS qui correspond au format DCI 1A, l'information d'indication est utilisée pour indiquer que la valeur TBS est déterminée en fonction de la seconde information MCS et de la première table TBS, et la seconde information MCS est la même que la première information MCS ; et si la valeur TBS appartient à la seconde table TBS qui correspond au format DCI 1A, l'information d'indication est utilisée pour indiquer que la valeur TBS est déterminée en fonction de la seconde information MCS, de la seconde table TBS et du bit le poids le plus faible de la commande de puissance d'émission - canal de commande de liaison montante physique (TPC-PUCCH). Le procédé et le dispositif de planification et le procédé et le dispositif de traitement d'informations de commande selon la présente invention permettent que la valeur TBS déterminée par l'UE en fonction de l'information de commande de liaison descendante ayant le format DCI 1A envoyée par un nœud de station de base évolué (eNodeB) soit la même que la valeur TBS déterminée par l'UE en fonction de l'information de commande de liaison descendante ayant le format DCI 1C, permettent en outre à l'UE de combiner un bloc de transport (TB) de transmission primaire et un TB de retransmission en provenance de l'eNodeB et de les décoder, ce qui permet d'obtenir un gain de retransmission.
PCT/CN2011/075888 2011-06-17 2011-06-17 Procédé et dispositif de planification et procédé et dispositif de traitement d'informations de commande WO2012171224A1 (fr)

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CN201180000742.9A CN102265695B (zh) 2011-06-17 2011-06-17 一种调度方法及设备、控制信息的处理方法及设备

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2830345A1 (fr) * 2013-03-21 2015-01-28 Huawei Device Co., Ltd. Procédé de transmission de données, station de base, et équipement d'utilisateur
CN107154839A (zh) * 2017-05-19 2017-09-12 北京邮电大学 一种在noma中指示是否软合并的方法
US10390338B2 (en) 2016-11-11 2019-08-20 At&T Intellectual Property I, L.P. Generic physical layer downlink control information design
WO2020063193A1 (fr) * 2018-09-28 2020-04-02 华为技术有限公司 Procédé de transmission d'informations et dispositif de transmission d'informations

Families Citing this family (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103379511B (zh) * 2012-04-13 2016-05-25 华为技术有限公司 控制信道处理方法及设备
US9144066B2 (en) * 2012-12-28 2015-09-22 Sierra Wireless, Inc. Method and system for hybrid automatic repeat request combining on an lte downlink control channel
US9973297B2 (en) 2013-01-11 2018-05-15 Interdigital Patent Holdings, Inc. System and method for adaptive modulation
US9736830B2 (en) * 2014-01-30 2017-08-15 Telefonaktiebolaget L M Ericsson (Publ) Systems and methods utilizing an efficient TBS table design for 256QAM in a cellular communications network
CN108293246B (zh) * 2015-09-24 2022-06-10 瑞典爱立信有限公司 用于下行链路控制的技术
JP6716698B2 (ja) * 2015-12-03 2020-07-01 華為技術有限公司Huawei Technologies Co.,Ltd. 制御情報フォーマット処理方法、基地局、およびユーザ機器
CN106961318B (zh) 2016-01-11 2020-07-10 中兴通讯股份有限公司 一种确定编码调制参数的方法、装置和系统
CN108390741B (zh) * 2017-02-03 2021-11-19 华为技术有限公司 数据传输方法和设备
FI3563620T3 (fi) * 2017-11-17 2024-07-01 Zte Corp Menetelmät, laitteet ja järjestelmät takaisinkytkentäsignaalin koon määrittämiseksi langattomassa tietoliikenteessä
CN110034859B (zh) 2018-01-12 2021-06-08 华为技术有限公司 一种通信方法及设备
CN110351003B (zh) * 2018-04-04 2021-12-28 华为技术有限公司 确定传输块大小的方法和通信装置
CN111937472B (zh) 2018-04-04 2022-08-26 华为技术有限公司 一种数据发送方法、信息发送方法及装置
BR112020022906A2 (pt) * 2018-05-11 2021-02-23 Huawei Technologies Co., Ltd. método de transmissão de informação, dispositivo de comunicação e dispositivo de rede
WO2019238108A1 (fr) * 2018-06-14 2019-12-19 Oppo广东移动通信有限公司 Procédé de transmission de signal de liaison montante, dispositif terminal et dispositif de réseau
CN110831220B (zh) * 2018-08-10 2023-06-02 中兴通讯股份有限公司 一种传输块tb调度方法及装置
CN115701170A (zh) * 2021-07-30 2023-02-07 华为技术有限公司 一种通信方法及通信装置

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100056079A1 (en) * 2008-09-04 2010-03-04 Texas Instruments Incorporated Retransmission between dci format 1a and format 2/2a
CN102036305A (zh) * 2009-09-30 2011-04-27 华为技术有限公司 控制信息的发送和接收方法、装置和通信系统

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101641968B1 (ko) * 2009-09-14 2016-07-29 엘지전자 주식회사 다중입출력 무선 통신 시스템에서 하향링크 신호 전송 방법 및 장치
CN101692739B (zh) * 2009-10-09 2015-05-20 中兴通讯股份有限公司 传输方式的指示方法及装置

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100056079A1 (en) * 2008-09-04 2010-03-04 Texas Instruments Incorporated Retransmission between dci format 1a and format 2/2a
CN102036305A (zh) * 2009-09-30 2011-04-27 华为技术有限公司 控制信息的发送和接收方法、装置和通信系统

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2830345A1 (fr) * 2013-03-21 2015-01-28 Huawei Device Co., Ltd. Procédé de transmission de données, station de base, et équipement d'utilisateur
EP2830345A4 (fr) * 2013-03-21 2015-04-08 Huawei Device Co Ltd Procédé de transmission de données, station de base, et équipement d'utilisateur
US9603162B2 (en) 2013-03-21 2017-03-21 Huawei Device Co., Ltd. Data transmission method, base station, and user equipment using multiple transport block size tables
KR101740412B1 (ko) 2013-03-21 2017-05-26 후아웨이 디바이스 컴퍼니 리미티드 데이터 전송 방법, 기지국, 및 사용자 기기
US10390338B2 (en) 2016-11-11 2019-08-20 At&T Intellectual Property I, L.P. Generic physical layer downlink control information design
CN107154839A (zh) * 2017-05-19 2017-09-12 北京邮电大学 一种在noma中指示是否软合并的方法
CN107154839B (zh) * 2017-05-19 2019-11-12 北京邮电大学 一种在noma中指示是否软合并的方法
WO2020063193A1 (fr) * 2018-09-28 2020-04-02 华为技术有限公司 Procédé de transmission d'informations et dispositif de transmission d'informations
CN110971368A (zh) * 2018-09-28 2020-04-07 华为技术有限公司 一种信息传输方法以及信息传输装置
CN110971368B (zh) * 2018-09-28 2021-10-22 华为技术有限公司 一种信息传输方法以及信息传输装置

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