WO2013178187A2 - 信息的处理方法及装置 - Google Patents

信息的处理方法及装置 Download PDF

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Publication number
WO2013178187A2
WO2013178187A2 PCT/CN2013/080558 CN2013080558W WO2013178187A2 WO 2013178187 A2 WO2013178187 A2 WO 2013178187A2 CN 2013080558 W CN2013080558 W CN 2013080558W WO 2013178187 A2 WO2013178187 A2 WO 2013178187A2
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Prior art keywords
serving cells
csi
pucch format
harq
serving cell
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PCT/CN2013/080558
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English (en)
French (fr)
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WO2013178187A3 (zh
Inventor
梁春丽
戴博
夏树强
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中兴通讯股份有限公司
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Priority to EP13797191.7A priority Critical patent/EP2882242A4/en
Priority to US14/420,346 priority patent/US9686776B2/en
Publication of WO2013178187A2 publication Critical patent/WO2013178187A2/zh
Publication of WO2013178187A3 publication Critical patent/WO2013178187A3/zh

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    • 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
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • H04L5/0055Physical resource allocation for ACK/NACK
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • 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
    • H04L1/0026Transmission of channel quality indication
    • 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
    • H04L1/0027Scheduling of signalling, e.g. occurrence thereof
    • 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
    • H04L1/0028Formatting
    • H04L1/0031Multiple signaling transmission
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/1607Details of the supervisory signal
    • H04L1/1671Details of the supervisory signal the supervisory signal being transmitted together with control information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1829Arrangements specially adapted for the receiver end
    • H04L1/1861Physical mapping arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0001Arrangements for dividing the transmission path
    • H04L5/0003Two-dimensional division
    • H04L5/0005Time-frequency
    • H04L5/0007Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT
    • H04L5/001Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT the frequencies being arranged in component carriers
    • 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
    • H04L5/0032Distributed allocation, i.e. involving a plurality of allocating devices, each making partial allocation
    • H04L5/0035Resource allocation in a cooperative multipoint environment
    • 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
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • H04L5/0057Physical resource allocation for CQI
    • 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
    • H04L5/0094Indication of how sub-channels of the path are allocated
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/14Two-way operation using the same type of signal, i.e. duplex
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1812Hybrid protocols; Hybrid automatic repeat request [HARQ]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/06Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information

Definitions

  • the present invention relates to the field of communications, and in particular to a method and apparatus for processing information.
  • BACKGROUND OF THE INVENTION The rapid development of digital communication systems places higher demands on the reliability of data communication, however, in a harsh channel environment, especially in high data rate or high speed mobile environments, multipath interference and Doppler frequency The phenomenon of shifting seriously affects the performance of the system. Therefore, effective error control techniques, especially Hybrid Automatic Repeat Request (HQQ) technology, have become a hot research topic in the field of communication.
  • HQQ Hybrid Automatic Repeat Request
  • HQQ Hybrid Automatic Repeat Request
  • HARQ response message ie, HARQ Acknowledgement, or HARQ-ACK
  • PDSCH Physical Downlink Shared Channel
  • the physical uplink control channel can support multiple uplink control signaling, and can include the above-mentioned HARQ-ACK, and the periodic channel state information (P-CSI), which may include: Channel Quality Indicator (CQI), Precoding Matrix Indicator (PMI) and Rank Indicator (RI), Scheduling Request (SR) and their A combination that is sent at the same time.
  • CQI Channel Quality Indicator
  • PMI Precoding Matrix Indicator
  • RI Rank Indicator
  • SR Scheduling Request
  • LTE defines a variety of PUCCH formats, which may include: PUCCH format 1/la/lb (the channel structure is shown in Figure 1) and format 2/2a/2b (the channel structure is shown in Figure 2).
  • the format 1 is used to send the scheduling request of the UE
  • the formats la and lb are used to feed back the 1-bit HARQ-ACK and the 2-bit HARQ-ACK
  • the format 2 is used to send the downlink P-CSI
  • the format 2a is used.
  • Send P-CSI and B 1 bit HARQ-ACK, format 2b is used to send P-CSI information and 2 bits
  • FDD frequency division duplex system
  • the UE when the UE needs to simultaneously transmit the SR and the HARQ-ACK, if the negative SR needs to be sent (indicating that there is no scheduling request), the UE transmits 1 bit on the HARQ-ACK PUCCH resource allocated to it or 2-bit HARQ-ACK; and if a positive SR is required to be sent (indicating that a scheduling request is made), the UE transmits a 1-bit or 2-bit HARQ-ACK on the SR PUCCH resource allocated to it; when the UE needs to simultaneously transmit HARQ-ACK and CSI
  • the subframe is a normal cyclic prefix
  • a 1-bit or 2-bit HARQ-ACK is modulated onto the second reference signal of each slot, and transmitted using PUCCH format 2a/2b, if the subframe is an extended cyclic prefix
  • the 1-bit or 2-bit HARQ-ACK and P-CSI information can be jointly encoded and transmitted using format 2 transmission.
  • ACK a plurality of downlink subframes corresponding to one uplink subframe are referred to as a binding window (bundling window, ), and the size of the binding window may be defined as M.
  • binding window a binding window
  • M the size of the binding window
  • two HARQ-ACK feedback modes are also defined: one of them is a binding mode, and the core idea of the method is to use the downlinks that need to be fed back in the uplink subframe.
  • the HARQ-ACK of the transport block corresponding to the frame is logically ANDed. If there are 2 codeword streams in one downlink subframe, the UE should feed back 2-bit HARQ-ACK. If each subframe has only one word stream, the UE should feed back 1 bit.
  • HARQ-ACK; the other is multiplexing, which can also be called multiplexing with channel selection. The core idea of this mode is to use different PUCCH channels and different modulation symbols on the channel to represent Different feedback states of the downlink subframes to be fed back in the uplink subframe.
  • the HARQ-ACKs fed back by the multiple stream streams of the downlink subframe may be logically ANDed ( Channel selection is also done after spatial bundling), and then sent using PUCCH format lb. That is, the HARQ-ACK after the logical AND operation is represented by the 2-bit information b(0) and b(1) carried by the PUCCH format lb and the index of the PUCCH channel. Therefore, in the TDD system, when the HARQ-ACK needs to be transmitted simultaneously with the SR or the P-CSI, the transmission method thereof is different from that in the FDD system described above.
  • the UE When the HARQ-ACK needs to be sent simultaneously with the SR or the CQI, the UE performs spatial binding on the multiple HARQ-ACKs in the binding window to obtain the HARQ-ACK corresponding to each downlink subframe, and then according to the binding window.
  • IMT-Advanced In the International Mobile Telecommunications-Advanced (IMT-Advanced) system, high-speed data transmission and large system capacity can be achieved. In the case of low-speed mobile and hotspot coverage, IMT- The peak rate of the Advanced system can reach 1Gbit/s. In the case of high-speed mobile and wide-area coverage, the peak rate of the IMT-Advanced system can reach 100Mbit/s.
  • LTE-A Long Term Evolution Advanced
  • LTE-A Long Term Evolution Advanced
  • the bandwidth of the LTE system can be combined to obtain a larger bandwidth.
  • This technology is called Carrier Aggregation (CA), which can improve the IMT-Advance system.
  • CA Carrier Aggregation
  • the carrier bandwidth of the LTE system can be regarded as a component carrier.
  • Each component carrier can also be called a serving cell. That is, one spectrum can be aggregated by n component carrier frequencies. .
  • the resources of one UE are composed of multiple serving cells in the frequency domain. One cell is called a primary serving cell, and the other cells are called a secondary serving cell.
  • one downlink component carrier corresponds to one PDSCH transmission block and one HARQ process, that is, the UE needs to feed back 1-bit HARQ-ACK for one PDSCH transmission block of each component carrier.
  • LTE-A currently specifies up to 2 transport blocks. Therefore, in this case, the UE needs to feed back 2-bit HARQ-ACK for 2 PDSCH transmission blocks of each downlink component carrier.
  • the uplink bandwidth and the downlink bandwidth may include multiple serving cells.
  • the terminal When the base station schedules a PDSCH for a certain UE on multiple downlink component carriers, and when the UE does not transmit a PUSCH in the current subframe, the terminal needs to feed back the HARQ of the PDSCH transmission of the multiple downlink component carriers on the PUCCH. -ACK.
  • the related art provides that all uplink control information, including: SR, HARQ-ACK, and P-CSI are sent on the primary serving cell.
  • the UE transmits using PUCCH format 1, and for HARQ-ACK, in addition to the PUCCH format la and lb that have been defined in LTE, multiplexing with channel selection, LTE-A adds a new DFT-s-OFDM-based format for transmitting a larger load of HARQ-ACK.
  • the channel structure is shown in Figure 3.
  • this structure may be referred to as PUCCH Format 3, wherein the manner in which the UE feeds back HARQ-ACK may be configured by a higher layer.
  • the UE may need to transmit P-CSI of multiple downlink serving cells in one uplink subframe, it considers the carrier aggregation mainly considered in the initial version of LTE-A (hereinafter referred to as Rel-10).
  • the scenario is an aggregation of two serving cells. Therefore, the eNB can prevent the UE from transmitting P-CSIs of multiple serving cells in the same subframe as long as the eNB is properly configured. That is, in Rel-10, P-CSI of multiple serving cells is not supported for simultaneous transmission.
  • Rel-10 defines a corresponding priority principle for the P-CSI, so that the UE can select one of the highest priority P-CSI transmission according to the priority principle. .
  • Type 1 Sub-band CQI feedback used to support UE selection
  • Type la feedback for supporting subband CQI and second PMI
  • type 2, type 2b and type 2c for supporting wideband CQI and PMI feedback
  • type 2a for supporting wideband PMI feedback
  • type 3 for support RI Feedback
  • Type 4 Used to support wideband CQI feedback
  • Type 5 Used to support RI and wideband PMI feedback
  • Type 6 Used to support RI and ⁇ feedback.
  • the priority of the above various P-CSI report types is as follows: For the same serving cell, the reporting type 3, 5, 6 has a higher priority than the reporting type 1, la, 2, 2a, 2b, 2c, or 4; and for different serving cells, the reporting type of one serving cell 3 , 5, 6, 2a has a higher priority than the reporting type 1, la, 2, 2b, 2c, or 4 of another serving cell; for the reporting type with the same priority, the index value of the corresponding serving cell The smallest P-CSI report type has the highest priority.
  • the UE does not support the HARQ-ACK and the P-CSI information of multiple serving cells in one uplink subframe. The specific reason is the same as above, and details are not described herein again.
  • the UE can prevent the UE from simultaneously transmitting the HARQ-ACK and the P-CSI of multiple serving cells through reasonable scheduling. If a collision occurs, according to Rel The relevant provisions of -10, throw away P-CSI, and only send HARQ-ACK.
  • Rel-ll the number of serving cells participating in the aggregation is no longer limited to 2, therefore, the P-CSI collision of multiple serving cells and the HARQ-ACK of multiple serving cells The probability of occurrence of P-CSI collisions will increase.
  • Each Channel State Information-Reference Signal (CSI-RS) resource corresponds to one P-CSI.
  • the P-CSI of multiple serving cells includes both the P-CSI of multiple serving cells in the carrier aggregation system and multiple CSI-RSs in one serving cell in the CoMP system. Multiple P-CSIs corresponding to resources.
  • the conclusions that have been drawn are as follows: In Rel-11, P-CSI supporting multiple serving cells is simultaneously transmitted in one subframe. For a UE supporting PUCCH format 3, the UE may simultaneously transmit HARQ-ACK, 1-bit SR, and P-CSI of one serving cell on PUCCH format 3.
  • the present invention provides a method and an apparatus for processing information to at least solve the simultaneous transmission of P-CSI of multiple serving cells in the related art or the HARQ-ACK of multiple serving cells and the P of multiple serving cells.
  • a method of processing information includes: a user equipment (UE) receives high-level signaling from a base station, where the high-layer signaling carries an uplink channel resource configured by the base station for the UE, and the uplink channel resource is used for simultaneous transmission with the UE.
  • UE user equipment
  • the uplink channel resource includes at least one of the following: PUCCH format 3, PUSCH.
  • the UE sends the P-CSIs of the multiple serving cells simultaneously on the uplink channel resource according to the high layer signaling in the preset uplink subframe, where the UE determines that the UE determines the preset uplink subframe.
  • the number of the multiple serving cells to be transmitted when the number of the multiple serving cells is less than or equal to 2, the UE simultaneously transmits the P-CSI of each serving cell on the PUCCH format 3;
  • the UE selects two serving cells with the highest P-CSI priority from the multiple serving cells, and simultaneously transmits the selected P-CSI of each serving cell on the PUCCH format 3.
  • the UE sends the P-CSIs of the multiple serving cells simultaneously on the uplink channel resource according to the high layer signaling in the preset uplink subframe, where the UE determines that the UE determines the preset uplink subframe.
  • the UE when the uplink channel resource is the PUCCH format 3, the UE simultaneously transmits the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells on the uplink channel resource according to the higher layer, in the preset uplink subframe, including: The UE determines the number of the multiple serving cells to be transmitted on the preset uplink subframe. When the number of serving cells of the P-CSI to be transmitted is one, the UE simultaneously transmits the P- of the serving cell on the PUCCH format 3.
  • the CSI and the HARQ-ACK of the multiple serving cells when the number of serving cells of the P-CSI to be transmitted is multiple, the UE selects the serving cell with the highest P-CSI priority from the plurality of serving cells, and is in the PUCCH format
  • the P-CSI of the selected serving cell and the HARQ-ACK of the multiple serving cells are simultaneously transmitted on 3.
  • the method further includes: when the uplink channel resource is the PUSCH, the UE simultaneously sends the P-CSI of the multiple serving cells on the PUSCH according to the high layer signaling in the preset uplink subframe, or simultaneously sends the multiple serving cells.
  • HARQ-ACK and P-CSI of multiple serving cells when the uplink channel resource is the PUSCH, the UE simultaneously sends the P-CSI of the multiple serving cells on the PUSCH according to the high layer signaling in the preset uplink subframe, or simultaneously sends the multiple serving cells.
  • the UE when the UE simultaneously transmits the P-CSI of the multiple serving cells or the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells on the preset uplink subframe, the UE is configured according to the preset uplink subframe.
  • the high layer signaling simultaneously transmits P-CSIs of multiple serving cells on the uplink channel resources, or simultaneously transmits HARQ-ACKs of multiple serving cells and P-CSIs of multiple serving cells.
  • another method of processing information is provided.
  • the method for processing information according to the present invention includes: a user equipment (UE) receives high layer signaling from a base station, where the high layer signaling carries information that the base station groups a plurality of serving cells corresponding to the UE, and the base station is Each group of serving cells after the packet processing is configured with uplink channel resources respectively; the UE transmits periodic channel state information (P-CSI) of any serving cell on the uplink channel resource according to the high layer signaling in the preset uplink subframe, or The P-CSI of each of the plurality of serving cells that are sent; or, the UE automatically requests a retransmission response according to the high layer signaling on the uplink channel resource or the hybrid of the multiple serving cells in the preset uplink subframe Message (HalQ-ACK) On the uplink channel resource used for transmission, the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells are simultaneously transmitted.
  • a user equipment receives high layer signaling from a base station, where the high layer signaling carries information that the
  • the uplink channel resource includes at least one of the following: PUCCH format 2, PUCCH format 3 PUSCH.
  • the UE sends the P-CSIs of the multiple serving cells simultaneously on the uplink channel resources according to the high layer signaling, and the UE determines whether the serving cells corresponding to the multiple P-CSIs to be sent are located in the same group.
  • the UE determines configuration information of the uplink channel resources used by the group of serving cells according to the high layer signaling, and sends P-CSIs of the multiple serving cells on the determined uplink channel resources; if not, the UE according to the high layer letter
  • the uplink channel resources used by each group of serving cells are determined separately, and selected in the determined uplink channel resources used by each group of serving cells, and the P-CSIs of the plurality of serving cells are transmitted by using the selected uplink channel resources.
  • the UE determines configuration information of the uplink channel resource used by the group of serving cells according to the high layer signaling, and sends the P-CSI of the multiple serving cells on the determined uplink channel resource, including one of the following: when located in the same group The number of serving cells is one, and when the uplink channel resource is PUCCH format 2 or PUCCH format 3 or PUSCH, the UE transmits the P-CSI of the serving cell on PUCCH format 2 or PUCCH format 3 or PUSCH; The number of the serving cells is two, and when the uplink channel resource is the PUCCH format 3 or the PUSCH, the UE simultaneously transmits the P-CSI of each serving cell in the packet on the PUCCH format 3 or the PUSCH; When the number of the uplink channel resources is greater than two, the UE transmits the P-CSI of each serving cell in the packet simultaneously on the PUSCH; when the number of serving cells in the same packet is greater than two, the uplink channel resource is PUCCH format.
  • the UE selects two serving cells with the highest P-CSI priority from the group of serving cells, and simultaneously sends each selected service on the PUCCH format 3.
  • P-CSI of the cell when the number of serving cells in the same packet is greater than 2 and the uplink channel resource is PUCCH format 3, if the number of bits jointly fed by the P-CSI of multiple serving cells does not exceed that of PUCCH format 3 Carrying the maximum number of bits, the UE transmits the P-CSI of the multiple serving cells on the PUCCH format 3, and the UE selects the N serving cells with the highest P-CSI priority from the plurality of serving cells, and The P-CSI of each of the selected serving cells is simultaneously transmitted on the PUCCH format 3, wherein the number of bits jointly fed by the P-CSIs of the selected N serving cells does not exceed the maximum number of bits that can be carried by the PUCCH format 3.
  • the UE determines the uplink channel resources used by each group of serving cells according to the high layer signaling, and selects the uplink channel resources used by the determined group of serving cells, and sends the selected uplink channel resources by using the selected uplink channel resources.
  • the P-CSI of the serving cell includes one of the following: when only one group of serving cells in the group of serving cells uses the uplink channel resource as the PUSCH, the UE simultaneously sends the P-CSI of the multiple serving cells on the PUSCH; When the uplink channel resource used by the multiple serving cells in the serving cell is the PUSCH, the UE selects the PUSCH used by the serving cell with the highest P-CSI priority from the plurality of groups of serving cells, and simultaneously sends multiple PUSCHs on the selected PUSCH.
  • P-CSI of the serving cell when the uplink channel resource used by the plurality of groups of serving cells in each group of serving cells is PUCCH format 3, the UE selects the serving cell with the highest P-CSI priority from the plurality of groups of serving cells.
  • PUCCH format 3 and selecting two serving cells with the highest P-CSI priority from the plurality of serving cells, and simultaneously selecting the selected PUCCH format 3 P-CSI of each serving cell; when the uplink channel resources used by the plurality of groups of serving cells in each group of serving cells are PUCCH format 3, the UE selects the serving cell with the highest P-CSI priority from the plurality of groups of serving cells
  • the used PUCCH format 3 if the number of bits jointly fed by the P-CSIs of the multiple serving cells does not exceed the maximum number of bits that can be carried by the PUCCH format 3, the UE transmits the Ps of the multiple serving cells on the selected PUCCH format 3. -CSI, No.
  • the UE selects the N serving cells with the highest P-CSI priority from the plurality of serving cells, and simultaneously transmits the selected P-CSI of each serving cell on the selected PUCCH format 3, where The number of bits jointly fed by the P-CSI of the selected N serving cells does not exceed the maximum number of bits that the PUCCH format 3 can carry, and N is a positive integer.
  • the UE sends the HARQ of multiple serving cells simultaneously on the uplink channel resource according to the high layer signaling or the uplink channel resource used in the HARQ-ACK transmission of the multiple serving cells on the preset uplink subframe.
  • the ACK and the P-CSI of the multiple serving cells include one of the following: when only one of the plurality of serving cells has a P-CSI, and the uplink channel resource used by the P-CSI is a PUSCH, the UE simultaneously transmits on the PUSCH.
  • P-CSI of multiple serving cells and HARQ-ACK of multiple serving cells when uplink channel resources used by P-CSIs of multiple groups of serving cells in a group where multiple serving cells are located are PUSCH, UEs are from multiple groups The PUSCH used by the serving cell with the highest P-CSI priority is selected in the serving cell, and the P-CSI of each serving cell and the HARQ-ACK of the multiple serving cells are simultaneously transmitted on the selected PUSCH;
  • the uplink channel resources used for P-CSI transmission of multiple serving cells are not configured as PUSCH and the HARQ-ACK of multiple serving cells is configured to be transmitted using PUCCH format 3, the UE is from multiple services.
  • the serving cell with the highest P-CSI priority is selected in the area, and the P-CSI of the selected serving cell and the HARQ of the multiple serving cells are simultaneously transmitted on the PUCCH format 3 resource used for the HARQ-ACK transmission of the multiple serving cells.
  • ACK when the uplink channel resource used for P-CSI transmission of multiple serving cells is PUCCH format 2, and the HARQ-ACK of multiple serving cells is configured to use PUCCH format lb joint channel selection transmission, the UE performs multiple services.
  • the HARQ-ACK of the cell performs spatial binding processing, and determines whether the HARQ-ACK after the spatial binding processing exceeds 2-bit information. If not, the UE selects the service with the highest P-CSI priority from the multiple serving cells.
  • the UE when the UE sends the P-CSI of any serving cell or the P-CSI of multiple serving cells simultaneously in the preset uplink subframe, the UE is in the preset uplink subframe according to the high layer signaling on the uplink channel resource.
  • the P-CSI of any serving cell is transmitted, or the P-CSI of each serving cell of the plurality of serving cells transmitted simultaneously.
  • the UE when the UE simultaneously transmits the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells corresponding to the UE on the preset uplink subframe, the UE is in the preset uplink subframe according to the high layer signaling.
  • the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells are simultaneously transmitted.
  • an information processing apparatus is provided.
  • the information processing apparatus of the present invention includes: a first receiving module, configured to receive high layer signaling from a base station, where the high layer signaling carries an uplink channel resource configured by the base station for the user equipment (UE), and an uplink channel resource A periodic channel state information (P-CSI) for simultaneously transmitting a plurality of serving cells corresponding to the UE, or a hybrid automatic request retransmission response message (HARQ-ACK) configured to simultaneously transmit a plurality of serving cells corresponding to the UE And the P-CSI of the multiple serving cells; the first sending module is configured to simultaneously send the P-CSIs of the multiple serving cells on the uplink channel resources according to the high layer signaling in the preset uplink subframe, or send multiple services simultaneously The HARQ-ACK of the cell and the P-CSI of multiple serving cells.
  • a first receiving module configured to receive high layer signaling from a base station, where the high layer signaling carries an uplink channel resource configured by the base station for the user equipment (UE), and an uplink channel resource A periodic channel state
  • the uplink channel resource includes at least one of the following: PUCCH format 3, PUSCH.
  • the first sending module includes: a first determining unit, configured to determine, when the uplink channel resource is the PUCCH format 3, the number of the multiple serving cells to be sent on the preset uplink subframe; When the number of the multiple serving cells is less than or equal to 2, the P-CSI of each serving cell is simultaneously transmitted on the PUCCH format 3; the second sending unit is set to be greater than 2 in the multiple serving cells. The two serving cells with the highest P-CSI priority are selected from the multiple serving cells, and the P-CSI of each selected serving cell is simultaneously transmitted on the PUCCH format 3.
  • the first sending module includes: a second determining unit, configured to determine, when the uplink channel resource is the PUCCH format 3, the number of bits of the P-CSI common feedback of the multiple serving cells to be sent in the preset uplink subframe a third sending unit, configured to simultaneously transmit each serving cell on the PUCCH format 3 when the number of bits of the P-CSI common feedback of the multiple serving cells does not exceed the maximum number of bits that can be carried by the PUCCH format 3 a P-CSI; a fourth sending unit, configured to select P-CSI from a plurality of serving cells when the number of bits of P-CSI common feedback of the plurality of serving cells exceeds the maximum number of bits that can be carried by the PUCCH format 3 The P-CSIs of each of the selected serving cells are simultaneously transmitted on the PUCCH format 3, wherein the number of bits jointly fed by the P-CSIs of the selected N serving cells does not exceed the PUCCH format.
  • the first sending module includes: a third determining unit, configured to determine, when the uplink channel resource is the PUCCH format 3, the number of the plurality of serving cells to be sent in the preset uplink subframe; the fifth sending unit, setting When the number of serving cells of the P-CSI to be transmitted is one, the P-CSI of the serving cell and the HARQ-ACK of the multiple serving cells are simultaneously transmitted on the PUCCH format 3; the sixth sending unit is set to When the number of serving cells of the P-CSI to be transmitted is multiple, the serving cell with the highest P-CSI priority is selected from the multiple serving cells, and the P-CSI of the selected serving cell is simultaneously transmitted on the PUCCH format 3.
  • the first sending module includes: a seventh sending unit, configured to: when the uplink channel resource is the PUSCH, send the P- of the multiple serving cells corresponding to the UE simultaneously on the PUSCH according to the high layer signaling in the preset uplink subframe.
  • CSI or, simultaneously transmits HARQ-ACK of multiple serving cells and P-CSI of multiple serving cells.
  • the first sending module is configured to: when the P-CSI of multiple serving cells or the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells are simultaneously transmitted on the preset uplink subframe, preset The uplink subframe simultaneously transmits the P-CSIs of the multiple serving cells on the uplink channel resources according to the high layer signaling, or simultaneously transmits the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells.
  • another information processing apparatus is provided.
  • the information processing apparatus includes: a second receiving module, configured to receive high layer signaling from the base station, where the high layer signaling carries the base station to group the plurality of serving cells corresponding to the user equipment (UE) And the base station separately configures an uplink channel resource for each group of serving cells after the packet processing; the second sending module is configured to send, in the preset uplink subframe, a period of any serving cell on the uplink channel resource according to the high layer signaling.
  • the uplink channel resource includes at least one of the following: PUCCH format 2, PUCCH format 3 PUSCH.
  • the second sending module includes: a determining unit, configured to determine whether the serving cell corresponding to the multiple P-CSIs to be sent is located
  • the first determining unit is configured to: when the output of the determining unit is YES, determine configuration information of the uplink channel resource used by the group of serving cells according to the high layer signaling, and send multiple services on the determined uplink channel resource.
  • a P-CSI of the cell where the second determining unit is configured to determine, according to the high layer signaling, configuration information of the uplink channel resources used by each group of serving cells according to the high layer signaling, and determine the group of serving cells after the determining
  • the uplink channel resources used are selected, and the P-CSI of each of the plurality of serving cells is transmitted by using the selected uplink channel resources.
  • the first determining unit includes: a first sending unit, configured to: when the number of serving cells in the same group is one, and the uplink channel resource is PUCCH format 2 or PUCCH format 3 or PUSCH, in PUCCH format 2 or The PUCCH format 3 or the PUSCH simultaneously transmits the P-CSI of the serving cell;
  • the second sending unit is configured to: when the number of serving cells located in the same packet is two, and the uplink channel resource is PUCCH format 3 or PUSCH, in the PUCCH format 3 or PSCH simultaneously transmitting P-CSI of each serving cell in the serving cell in the packet;
  • the third sending unit is set to be the number of serving cells located in the same packet If the uplink channel resource is the PUSCH, the P-CSI of each serving cell in the packet is simultaneously transmitted on the PUSCH; and the fourth sending unit is configured to be greater than two serving cells in the same packet, and uplink.
  • the two serving cells with the highest P-CSI priority are selected from the group of serving cells, and the P-CSI of each selected serving cell is simultaneously transmitted on the PUCCH format 3;
  • the unit when the number of serving cells in the same group is greater than two, and the uplink channel resource is PUCCH format 3, if the number of bits jointly fed by the P-CSI of multiple serving cells does not exceed the number of bits that can be carried by the PUCCH format 3 The maximum value of the number is sent on the PUCCH format 3, and the P-CSIs of the multiple serving cells are transmitted. Otherwise, the N serving cells with the highest P-CSI priority are selected from the multiple serving cells, and are simultaneously sent on the PUCCH format 3.
  • the second determining unit includes: a sixth sending unit, configured to simultaneously transmit P-CSIs of multiple serving cells on the PUSCH when the uplink channel resource used by only one group of serving cells in each group of serving cells is a PUSCH And a seventh sending unit, configured to: when the uplink channel resource used by the group of serving cells in each group of serving cells is a PUSCH, select a PUSCH used by the serving cell with the highest P-CSI priority from the plurality of groups of serving cells, And transmitting P-CSIs of the plurality of serving cells simultaneously on the selected PUSCH; the eighth sending unit is configured to: when the uplink channel resources used by the multiple groups of serving cells in each group of serving cells are PUCCH format 3, from multiple groups The PUCCH format 3 used by the serving cell with the highest P
  • a ninth transmitting unit configured to use an uplink channel resource used by a plurality of groups of serving cells in each group of serving cells as PUCCH fo
  • the PUCCH format 3 used by the serving cell with the highest P-CSI priority is selected from the plurality of groups of serving cells, and the number of bits jointly fed by the P-CSI of the multiple serving cells does not exceed the number of bits that can be carried by the PUCCH format 3
  • the maximum value of the number is sent to the P-CSI of the multiple serving cells on the selected PUCCH format 3. Otherwise, the N serving cells with the highest P-CSI priority are selected from the multiple serving cells, and the selected PUCCH format is selected.
  • the second sending module includes: a tenth sending unit, configured to send multiple uplinks on the PUSCH when the uplink channel resource used by the P-CSI of only one group of serving cells in the group where the multiple serving cells are located is the PUSCH a P-CSI of each serving cell in the serving cell and a HARQ-ACK of the plurality of serving cells; an eleventh transmitting unit, configured to be used by P-CSIs of a plurality of groups of serving cells when the plurality of serving cells are located When the uplink channel resource is the PUSCH, the PUSCH used by the serving cell with the highest P-CSI priority is selected from the multiple groups of serving cells, and the P-CSI of each serving cell in the multiple serving cells is simultaneously transmitted on the selected PUSCH.
  • a HARQ-ACK of the plurality of serving cells a twelfth transmitting unit, configured for each of the plurality of serving cells
  • the P-CSI is selected from the plurality of serving cells with the highest priority.
  • the PUCCH format 3 used by the serving cell, and the PUCCH format 3 resources used for the HARQ-ACK transmission of the multiple serving cells simultaneously transmit the P-CSI of the selected serving cell and the HARQ-ACK of the plurality of serving cells; a thirteen transmitting unit, configured to use an uplink channel resource used for P-CSI transmission of each of the plurality of serving cells as PUCCH format 2, and configured to use a PUCCH format for the HARQ-ACK of the plurality of serving cells
  • the HARQ-ACK of the multiple serving cells is spatially bound, and it is determined whether the HARQ-ACK after the spatial binding processing exceeds 2 bits of information. If not, the UE is from multiple groups of services.
  • the uplink channel resource used by the P-CSI of the plurality of serving cells is PUCCH format 3 and the HARQ-ACK of the plurality of serving cells is configured to use the PUCCH format lb joint channel selection to transmit from multiple serving cells
  • the PUCCH format 3 used by the serving cell with the highest P-CSI priority is selected, and the P-CSI of the serving cell corresponding to the selected PUCCH format 3 and the HARQ of multiple serving cells are simultaneously transmitted on the selected PUCCH format 3.
  • the second sending module is configured to send the P-CSI of any serving cell or the P-CSI of multiple serving cells simultaneously in the preset uplink subframe, according to the high layer signaling in the preset uplink subframe.
  • the periodic channel state information P-CSI of any serving cell is transmitted on the uplink channel resource, or the P-CSI of each serving cell in the plurality of serving cells simultaneously transmitted.
  • the second sending module is configured to: when the HARQ-ACK of the multiple serving cells corresponding to the UE and the P-CSI of the multiple serving cells are simultaneously transmitted on the preset uplink subframe, the UE is in the preset uplink subframe.
  • the base station is configured to configure the uplink channel resource information for the UE, and the uplink channel resource is used to simultaneously transmit the periodic channel state information P-CSI of the multiple serving cells corresponding to the UE, or a hybrid automatic request retransmission acknowledgement message HARQ-ACK and a plurality of serving cell P-CSIs for simultaneously transmitting a plurality of serving cells corresponding to the UE; the UE is on the uplink channel resource according to the high layer signaling in the preset uplink subframe.
  • FIG. 1 is a schematic diagram of a PUCCH format 1/la/lb when a subframe in a LTE system according to the related art adopts a regular cyclic prefix
  • FIG. 2 is a case where a subframe uses a regular cyclic prefix in an LTE system according to the related art
  • FIG. 3 is a schematic diagram of PUCCH format 3 when a subframe uses a regular cyclic prefix in an LTE system according to the related art;
  • FIG. 4 is a method for processing information according to an embodiment of the present invention;
  • FIG. 5 is a flowchart of a method for processing information according to a preferred embodiment of the present invention;
  • FIG. 6 is a flowchart of a method for processing information according to a preferred embodiment 2 of the present invention;
  • FIG. 8 is a flowchart of a method for processing information according to a preferred embodiment 4 of the present invention;
  • FIG. 9 is another embodiment of the present invention.
  • FIG. 10 is a flowchart of another method for processing information according to a preferred embodiment of the present invention.
  • FIG. 11 is another embodiment of a preferred embodiment according to the present invention.
  • FIG. 12 is a flowchart of another processing method according to a preferred embodiment 3 of the present invention;
  • FIG. 13 is a flowchart of another processing method according to a preferred embodiment 4 of the present invention;
  • FIG. 14 is a flowchart of another method for processing information according to a preferred embodiment 5 of the present invention;
  • FIG. 12 is a flowchart of another processing method according to a preferred embodiment 3 of the present invention.
  • FIG. 13 is a flowchart of another processing method according to a preferred embodiment 4 of the present invention;
  • FIG. 14 is a flowchart of another method for processing information according
  • FIG. 17 is a flowchart of another method for processing information according to a preferred embodiment of the present invention
  • FIG. 19 is a flowchart of another processing method according to a preferred embodiment 10 of the present invention
  • FIG. 20 is a flowchart of another processing method according to a preferred embodiment of the present invention
  • FIG. 21 is a block diagram showing the structure of an information processing apparatus according to a preferred embodiment of the present invention.
  • FIG. 22 is a block diagram showing the structure of an information processing apparatus according to a preferred embodiment 2 of the present invention.
  • Figure 23 is a block diagram showing the structure of an information processing apparatus according to a preferred embodiment 3 of the present invention;
  • Figure 24 is a block diagram showing the structure of an information processing apparatus according to a preferred embodiment 4 of the present invention;
  • FIG. 26 is a block diagram showing the structure of another information processing apparatus according to a preferred embodiment of the present invention.
  • FIG. 27 is a root A block diagram of another information processing apparatus according to a second preferred embodiment of the present invention.
  • Step S402 The UE receives the high layer signaling from the base station, where the high layer signaling carries the uplink channel resource configured by the base station for the UE, and the uplink channel resource is used for the same time.
  • Step S404 The UE is in the preset uplink The subframe simultaneously transmits the P-CSIs of the multiple serving cells on the uplink channel resources according to the high layer signaling, or simultaneously transmits the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells.
  • simultaneous transmission of P-CSIs of a plurality of serving cells or HARQ-ACK of a plurality of serving cells and P-CSI of a plurality of serving cells cannot be simultaneously transmitted. As shown in FIG.
  • the base station configures the uplink channel resource information for the UE, and sends the uplink channel resource information to the UE through the high layer signaling, where the uplink channel resource is used to simultaneously send the periodic channel state information P of the multiple serving cells corresponding to the UE.
  • the UE is in the preset uplink subframe according to the high layer signaling And transmitting, on the uplink channel resource, the P-CSI of each serving cell in the multiple serving cells corresponding to the UE, or simultaneously transmitting the HARQ-ACK and the P-CSI of each serving cell in the multiple serving cells corresponding to the UE,
  • the problem that the P-CSI of multiple serving cells cannot be simultaneously transmitted or the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells are simultaneously transmitted in the related art is solved, thereby implementing HARQ of multiple serving cells.
  • the P-CSIs of the multiple serving cells may include multiple P-CSIs corresponding to multiple CSI-RS resources in one serving cell, in addition to the P-CSI that may include multiple serving cells.
  • the P-CSI report for each serving cell is independently configured by higher layer signaling.
  • the high layer signaling further configures one PUCCH format 3 resource or one PUSCH resource, which is used for simultaneous transmission when P-CSIs of multiple serving cells collide, or HARQ-ACK and P-CSI of multiple serving cells. Simultaneous transmission in the event of a collision.
  • the P-CSI report of each serving cell is configured by the upper layer independently, and may be configured in the same manner as the existing one in the Rel-10 protocol, and details are not described herein again.
  • the uplink channel resource may include, but is not limited to, at least one of the following: PUCCH format 3, PUSCH.
  • the UE may simultaneously send the P-CSIs of the multiple serving cells on the uplink channel resource according to the high layer signaling in the preset uplink subframe, and may include the following steps: SI: the UE determines the number of multiple serving cells to be transmitted on the preset uplink subframe; Step S2: When the number of the multiple serving cells is less than or equal to 2, the UE simultaneously sends each of the PUCCH format 3 P-CSI of the serving cell; Step S3: When the number of the multiple serving cells is greater than two, the UE selects two serving cells with the highest P-CSI priority from the plurality of serving cells, and simultaneously on the PUCCH format 3 Send the selected P-CSI of each serving cell.
  • SI the UE determines the number of multiple serving cells to be transmitted on the preset uplink subframe
  • Step S2 When the number of the multiple serving cells is less than or equal to 2, the UE simultaneously sends each of the PUCCH format 3 P-CSI of the serving cell
  • Step S3 When the number of the multiple serving cells is greater than two
  • the P-CSI priorities of the multiple serving cells may be sorted, and the first two serving cells are selected, or two of the P-CSI highest priority serving cells are selected. Service communities.
  • the UE may simultaneously send the P-CSIs of the multiple serving cells on the uplink channel resource according to the high layer signaling in the preset uplink subframe, and may include the following steps: S4: The UE determines the number of bits of the P-CSI common feedback of the multiple serving cells to be sent on the preset uplink subframe.
  • Step S5 When the common feedback bit does not exceed the maximum number of bits that can be carried in the PUCCH format 3
  • the UE simultaneously transmits the P-CSI of each serving cell on the PUCCH format 3;
  • the UE selects the N serving cells with the highest P-CSI priority from the multiple serving cells, and simultaneously transmits the selected P-CSI of each serving cell on the PUCCH format 3, where the P of the selected N serving cells -
  • the number of bits jointly fed by the CSI does not exceed the maximum number of bits that the PUCCH format 3 can carry, and N is a positive integer.
  • the uplink channel resource additionally configured by the high layer signaling is PUCCH format 3
  • only feedback of 22 bits of information can be supported at most, when the total number of P-CSI bits of multiple serving cells exceeds 22, According to the priority of the P-CSI report specified by Rel-10, discard other P-CSIs with lower priority, so that the total number of P-CSIs of the reserved N serving cells does not exceed 22, and then in PUCCH format 3 Send on the resource.
  • N is a predefined value, for example: N is 2; or, according to the report type of the P-CSI, the value of N is determined, for example:
  • the report type of the P-CSI for multiple serving cells includes only 3, 5 When 6, 2a, N can take 3, 4, 5, and in other cases, N can take 2.
  • the UE when the uplink channel resource is the PUCCH format 3, in step S404, the UE simultaneously transmits the HARQ-ACK of the multiple serving cells and the multiple serving cells on the uplink channel resource according to the high layer signaling in the preset uplink subframe.
  • the P-CSI may include the following processes: Step S7: The UE determines the number of the multiple serving cells to be sent on the preset uplink subframe.
  • Step S8 When the number of serving cells of the P-CSI to be sent is one, The UE simultaneously transmits the P-CSI of the serving cell and the HARQ-ACK of the multiple serving cells on the PUCCH format 3; Step S9: When the number of serving cells of the P-CSI to be sent is multiple, the UE is from multiple services The serving cell with the highest P-CSI priority is selected in the cell, and the P-CSI of the selected serving cell and the HARQ-ACK of the multiple serving cells are simultaneously transmitted on the PUCCH format 3.
  • the resource additionally configured by the high layer signaling is the PUCCH format 3
  • the P-CSI of the one serving cell and the HARQ-ACK of the multiple serving cells may be simultaneously transmitted at the same time.
  • the P-CSI with lower priority is discarded according to the priority of the P-CSI report specified by Rel-10, and one priority is reserved.
  • the highest-level P-CSI report is then transmitted on the PUCCH format 3 resource with the HARQ-ACK of multiple serving cells.
  • the method may further include: when the uplink channel resource is the PUSCH, the UE simultaneously sends the P-CSIs of the multiple serving cells on the PUSCH according to the high layer signaling in the preset uplink subframe, or simultaneously sends the multiple serving cells.
  • HARQ-ACK and P-CSI of multiple serving cells are examples of the uplink channel resource.
  • the P-CSI of two or more serving cells may be simultaneously transmitted in the event of a collision, or two or more may be supported.
  • the P-CSI of the serving cell and the HARQ-ACK of the plurality of serving cells are simultaneously transmitted in the event of a collision.
  • the UE when the UE simultaneously transmits the P-CSI of multiple serving cells or the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells on the preset uplink subframe, the UE is in the preset uplink.
  • FIG. 5 is a flowchart of a method for processing information according to a preferred embodiment of the present invention. As shown in FIG. 5, the serving cells 1 and 2 are aggregated, and the P-CSI of each serving cell is independently configured.
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the basic period of the P-CSI report transmission is configured to be 2 ms, where , RI subframe offset configured as a periodic RI transmitted 10 times CSI transmission period, channel resources when transmitting the configuration used for the n UCCHfidn serving cell 2 configured transmission mode requires a feedback report type.
  • 3 RI
  • Type 2 Broadband CQI and PMI
  • the basic period of the P-CSI report transmission is 5ms, where the subframe offset of the RI is set to 3, and the period of the RI transmission is 4 times of the CSI transmission period.
  • the channel resources are configured as CCH , Cdn .
  • the upper layer signaling further configures a resource ⁇ for simultaneous transmission when the P-CSIs of the multiple serving cells collide, or when the HARQ-ACK of the multiple serving cells collides with the P-CSI. send.
  • the PUSCH is additionally configured by higher layer signaling.
  • the UE only needs to send the P-CSI of the serving cell 1 (which may include: RI, wideband CQI and PMI, and sub-band CQI selected by the UE), then the UE Will use high
  • the layer signaling configured resource for serving the P-CSI feedback of the cell 1 transmits the P-CSI of the serving cell 1.
  • the UE In subframe 2 of the first radio frame, subframe 0 of the second radio frame, subframe 2 of the third radio frame, and subframe 0 of the fourth radio frame, the UE only needs to transmit the serving cell 2 P-CSI (may include: RI, wideband CQI and PMI), then the UE will use the higher layer signaling configured for serving the P-CSI feedback of cell 2
  • P-CSI may include: RI, wideband CQI and PMI
  • the P-CSI of the serving cell 2 is transmitted; and in the subframe 5 of each radio frame and the subframe 0 of the 3rd radio frame, the UE needs to transmit the P-CSI of the serving cell 1 and the P of the serving cell 2 -CSI, the UE will use the resources configured by the higher layer signaling to simultaneously transmit the P-CSI of the serving cell 1 and the serving cell 2.
  • 6 is a flow chart of a method of processing information according to a preferred embodiment 2 of the present invention. As shown in FIG. 6, the serving cells 1 and 2 are aggregated, and the P-CSI of each serving cell is independently configured.
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (broadband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is set to 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the channel resources used for transmission are configured as CCH and CeH1 .
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, where the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is four times the CSI transmission period, and the channel resource used for transmission is configured as “ ⁇ OT 3 ⁇ 4 réelle 2 .
  • the upper layer signaling is additionally configured with a resource ⁇ for P-CSI occurrence in multiple serving cells. Simultaneous transmission at the time of collision, or simultaneous transmission when a HARQ-ACK of a plurality of serving cells collides with a P-CSI.
  • PUSCH is additionally configured by higher layer signaling, and is assumed to be On subframe 2 of one radio frame, on subframe 1 of the second radio frame, and on subframe 0 of the third radio frame, the UE needs to feed back HARQ-ACK of multiple serving cells.
  • the UE only needs to send the P-CSI of the serving cell 1 (may include: RI, wide The CQI and the PMI and the sub-band CQI selected by the UE, the UE will transmit the P-CSI of the serving cell 1 using the " ⁇ resource for the P-CSI feedback of the serving cell 1 configured by the higher layer signaling;
  • the UE In subframe 0 of the second radio frame, subframe 2 of the third radio frame, and subframe 0 of the fourth radio frame, the UE only needs to transmit the P-CSI of the serving cell 2 (may include: RI, broadband CQI and PMI), the UE will transmit the P-CSI of the serving cell 1 using the ea/ ⁇ 2 resource configured by the higher layer for the P-CSI feedback of the serving cell 2; for the subframe 5 in each radio frame
  • the UE may include: RI, wide The CQI and the PMI and the sub-band CQI selected by the UE, the UE will transmit the P-CSI of the serving cell 1 using the " ⁇ resource
  • the UE needs to simultaneously send the P-CSI of the serving cell 1 and B 2 and multiple The HARQ-ACK of the serving cell, and since the PUSCH is additionally configured, the UE will use the high-level additional configuration resources to simultaneously transmit the P-CSI of the serving cell 1 and B 2 and the HARQ-ACK of the multiple serving cells.
  • the serving cells 1 and 2 are aggregated, and the P-CSI of each serving cell is independently configured.
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is set to 1, the period of the RI transmission is 10 times of the CSI transmission period, and the channel resources used for transmission are configured as CCH and CeHl .
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period configuration is 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI transmits The period is four times the CSI transmission period, and the channel resource used for transmission is configured as ⁇ 3 ⁇ 4 effi ⁇ note 2 .
  • the upper layer signaling is additionally configured with a resource ⁇ for P-CSI in multiple serving cells. Simultaneous transmission in the event of a collision, or simultaneous transmission when a HARQ-ACK of a plurality of serving cells collides with the P-CSI. In the preferred embodiment, it is assumed that the upper layer of the extra configuration is ⁇ ! ⁇ ! Format 3.
  • the UE For subframes 0, 1, 3, 7, 9, of the first radio frame, subframes 1, 3, 7, 9, of the second radio frame, subframes 1, 3 of the third radio frame
  • the UE only needs to transmit the P-CSI of the serving cell 1 (may include: RI, wideband CQI and PMI, and sub-band CQI selected by the UE)
  • the UE will transmit the P-CSI of the serving cell 1 using the resources configured by the higher layer for the P-CSI feedback of the serving cell 1;
  • the UE In subframe 2 of the first radio frame, subframe 0 of the second radio frame, subframe 2 of the third radio frame, and subframe 0 of the fourth radio frame, the UE only needs to transmit the serving cell 2 P-CSI (may include: RI, wideband CQI and PMI), then the UE will use the " ⁇ 2 resource for the P-CSI feedback of the serving cell 2 configured by the higher layer, and send the P-CSI of the serving cell 2;
  • Fig. 7 is a flowchart of a method for processing information according to a preferred embodiment 3 of the present invention.
  • the serving cells 1, 2 and 3 are performed. Aggregation processing, P-CSI configuration of each serving cell is independently configured. Assume that the transmission mode configured by serving cell 1 requires feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by UE) , P-CSI report transmission basic period configuration is 2ms, where RI sub-frame offset The configuration is 1. The period of RI transmission is 10 times of the CSI transmission period.
  • RI feedback report type 3
  • type 2 wideband CQI and PMI
  • type 1 sub-band CQI selected by UE
  • the channel resources used for transmission are configured as n ⁇ CCH and Cdn .
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, where the subframe offset configuration of the RI is 3, and the RI transmission The period is 4 times of the CSI transmission period, and the channel resource used for transmission is configured as ea/ ⁇ legal 2 , and the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI),
  • the P-CSI report transmission basic period is configured to 10 ms, where the RI subframe offset configuration is 3, the RI transmission period is twice the CSI transmission period, and the channel resource configuration used for transmission is ⁇ eOT ⁇ note 3 .
  • the upper layer signaling is additionally configured with a resource ⁇ for simultaneous transmission when the P-CSI of multiple serving cells collides, or when the HARQ-ACK of multiple serving cells collides with the P-CSI. Send at the same time.
  • the upper layer of the higher layer signaling is configured as PUCCH format 3.
  • the UE For subframes 0, 1, 3, 7, 9, of the first radio frame, subframes 1, 3, 7, 9, of the second radio frame, subframes 1, 3, 7, 9 and subframes 1, 3, 7, and 9 of the fourth radio frame, the UE only needs to send the P-CSI of the serving cell 1 (which may include: RI, wideband CQI and PMI, and UE selected subband CQI), then The UE will transmit the P-CSI of the serving cell 1 using the resource configured for the P-CSI feedback of the serving cell 1 of the upper layer; for the subframe 2 of the first radio frame, the second radio frame Subframe 0, subframe 2 of the third radio frame, and subframe 0 of the fourth radio frame, the UE only needs to transmit the P-CSI of the serving cell 2 (which may include: RI, wideband CQI and PMI), then the UE The P-CSI of the serving cell 2 will be transmitted using the C CH of the higher layer configured for serving the P-CSI feedback of the cell 2; for the subframe 8 of each radio frame, the UE only needs
  • the UE needs to feed back the P-CSIs of the serving cells 1, 2 and 3, wherein the P-CSI reports corresponding to the serving cells 1, 2, 3 are report type 1 (sub-band CQI selected by the UE), report type 2 (wideband CQI and PMI), Report Type 3 (RI), because the upper layer is additionally configured for PUCCH format 3, it can only support 2 P-CSI feedbacks.
  • the UE needs to report the priority according to the P-CSI report specified by Rel-10.
  • FIG. 8 is a flow chart showing a method of processing information according to a preferred embodiment 4 of the present invention. As shown in FIG. 8, the serving cells 1, 2, and 3 are aggregated, and the P-CSI of each serving cell is independently configured.
  • the transmission mode configured by serving cell 1 requires feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type. 1 (sub-band CQI selected by the UE), the P-CSI report transmission basic period configuration is 2ms, where the RI subframe offset configuration is 1, and the RI transmission period is 10 times of the CSI transmission period, which is used when transmitting.
  • the channel resource configuration is n ⁇ CCHfielll .
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to 5 ms, where the subframe of the RI is biased.
  • the configuration is set to 3, the period of RI transmission is 4 times of the CSI transmission period, and the channel resource used for transmission is configured as ea/ ⁇ dress 2.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (Broadband CQI and PMI), the P-CSI report transmission basic period configuration is 10ms, where the RI subframe offset configuration is 3, the RI transmission period is twice the CSI transmission period, and the channel resource configuration used for transmission. It is ⁇ eOT ⁇ "3, in addition, the high layer signaling and then additional configuration ⁇ ⁇ a resource for simultaneously transmitting a plurality of serving cells collides P-CSI, or, in a plurality of serving cells HARQ - When ACK collides with P-CSI give away.
  • the UE For subframes 0, 1, 3, 7, 9, of the first radio frame, subframes 3, 7, and 9, of the second radio frame, subframes 1, 3, 7, and 9 of the third radio frame
  • the UE On subframes 1, 3, 7, and 9 of the fourth radio frame, the UE only needs to transmit the P-CSI of the serving cell 1 (which may include: RI, wideband CQI and PMI, and sub-band CQI selected by the UE), then the UE will The " ⁇ resource for serving the P-CSI feedback of the cell 1 configured by the higher layer signaling, transmitting the P-CSI of the serving cell 1; for the subframe 0 in the second radio frame, the third wireless In the subframe 2 of the frame, on the subframe 0 of the fourth radio frame, the UE only needs to send the P-CSI of the serving cell 2 (which may include: RI, wideband CQI and PMI), and the UE will use the high-level configuration for the service.
  • the ea/ ⁇ 2 resource of the P-CSI feedback of the cell 2 transmits the P-CSI of the serving cell 2; for the subframe 8 of each radio frame, the UE only needs to transmit the P-CSI of the serving cell 3, then The UE will send the P-CSI of the serving cell 3 using the " ⁇ lingual 3 resources for the P-CSI feedback of the serving cell 3 configured by the upper layer; for the subframe 2 in the first radio frame, the UE needs Send P-CSI of service cell 2 For the HARQ-ACK of multiple serving cells, the UE will use the resources configured by the higher layer signaling to simultaneously transmit the HARQ-ACK of the serving cell 2 and the multiple serving cells; for the subframe 5 in the 1st and 3rd radio frames The UE needs to feed back the P-CSIs of the serving cells 1, 2, and 3.
  • the P-CSI reports corresponding to the serving cells 1, 2, and 3 are report type 1 (sub-band CQI selected by the UE), and report type 2 (wideband CQI). And PMI), Report Type 3 (RI), due to the high-level extra configuration of ⁇ ⁇ ( ⁇ ⁇ ⁇ is PUCCH format 3, can only support 2 P-CSI feedback, at this time, the UE needs to be based on Rel-10 - CSI reports the priority, cancels the report type 1 of the serving cell 1, and transmits the P-CSI report of the serving cell 2 and the serving cell 3 on the " ⁇ PUCCH format 3 of the upper layer additionally configured; for the second radio frame On subframe 1, the UE needs to send the P-CSI of the serving cell 1 and the HARQ-ACK of the multiple serving cells, then the UE The HARQ-ACK of the serving cell 1 and the multiple serving cells will be simultaneously transmitted using the ⁇ resources of the upper layer additional configuration; for the subframe 5 of the second radio frame, the subframe 5 of the 4th subframe, the UE
  • the UE needs to report the priority according to the P-CSI specified by Rel-10.
  • the report type 2 of the serving cell 2 is discarded, and the P-CSI (RI) of the serving cell 1 and the HARQ-ACK of the plurality of serving cells are transmitted on the ⁇ ⁇ PUCCH format 3 of the higher layer signaling.
  • 9 is a flow chart of another method of processing information according to an embodiment of the present invention. As shown in FIG.
  • the method may include the following steps: Step S902: The UE receives high-level signaling from the base station, where the high-layer signaling carries information that the base station groups the multiple serving cells corresponding to the UE, And the base station separately configures the uplink channel resource for each group of the serving cells after the packet processing; Step S904: The UE sends the periodic channel state information P-CSI of any serving cell on the uplink channel resource according to the high layer signaling in the preset uplink subframe.
  • the P-CSI of each serving cell in the multiple serving cells that are simultaneously sent; or, the UE is on the uplink channel resource according to the high layer signaling on the preset uplink subframe, or the hybrid automatic in multiple serving cells Requesting a retransmission response message
  • the HARQ-ACK of the plurality of serving cells and the P-CSI of the plurality of serving cells are simultaneously transmitted.
  • the method shown in FIG. 9 solves the problem that the simultaneous transmission of P-CSI of multiple serving cells or the simultaneous transmission of HARQ-ACK and P-CSI of multiple serving cells cannot be realized in the related art, thereby implementing multiple downlinks.
  • the response message of the component carrier and the channel state information of the plurality of serving cells are simultaneously transmitted.
  • multiple serving cells participating in the aggregation may be divided into several groups, wherein the channel resources used in the configuration parameters of the P-CSI report of the serving cells in each group are the same.
  • the uplink channel resource may include, but is not limited to, at least one of the following: PUCCH format 2, PUCCH format 3 PUSCH.
  • the UE simultaneously transmitting the P-CSIs of the multiple serving cells on the uplink channel resources according to the high layer signaling in the preset uplink subframe may include the following operations: Step S1: The UE determines whether the serving cell corresponding to the multiple P-CSIs to be sent is located in the same group.
  • Step S2 If yes, the UE determines configuration information of the uplink channel resources used by the group of serving cells according to the high layer signaling, and Transmitting P-CSIs of the plurality of serving cells on the determined uplink channel resources;
  • Step S3 If not, the UE determines, according to the high layer signaling, the uplink channel resources used by each group of serving cells, and the determined group services The uplink channel resources used by the cell are selected, and the P-CSIs of the plurality of serving cells are transmitted by using the selected uplink channel resources.
  • the UE determines configuration information of the uplink channel resource used by the group of serving cells according to the high layer signaling, and sends the P-CSI of the multiple serving cells on the determined uplink channel resource, which may include the following One of the following: (1) When the number of serving cells in the same packet is one, and the uplink channel resource is PUCCH format 2 or PUCCH format 3 or PUSCH, the UE transmits the serving cell on PUCCH format 2 or PUCCH format 3 or PUSCH. P-CSI;
  • the UE When the number of serving cells in the same packet is two, and the uplink channel resource is PUCCH format 3 or PUSCH, the UE simultaneously transmits the P-CSI of each serving cell in the packet on PUCCH format 3 or PUSCH;
  • the UE When the number of serving cells in the same packet is greater than two, and the uplink channel resource is PUSCH, the UE simultaneously transmits the P-CSI of each serving cell in the packet on the PUSCH;
  • the UE selects two serving cells with the highest P-CSI priority from the group of serving cells, and is in PUCCH format. 3 simultaneously transmitting the selected P-CSI of each serving cell;
  • the UE sends the P-CSI of the multiple serving cells on the PUCCH format 3, and the UE selects the N serving cells with the highest P-CSI priority from the plurality of serving cells, and is in the PUCCH format 3
  • the P-CSI of each of the selected serving cells is simultaneously transmitted, wherein the number of bits jointly fed by the P-CSI of the selected N serving cells does not exceed the maximum number of bits that can be carried by the PUCCH format 3, and N is positive. Integer.
  • the UE determines the uplink channel resources used by each group of serving cells according to the high layer signaling, and selects the uplink channel resources used by the determined group of serving cells, and adopts the selected uplink channel.
  • the P-CSI in which the resource transmits multiple serving cells may include one of the following: (1) When only one group of serving cells in the group of serving cells uses the uplink channel resource as the PUSCH, the UE simultaneously transmits the P-CSIs of the plurality of serving cells on the PUSCH;
  • the UE selects the PUSCH used by the serving cell with the highest P-CSI priority from the plurality of groups of serving cells, and selects Simultaneously transmitting P-CSIs of multiple serving cells on the PUSCH; in a preferred embodiment, if multiple (assuming X) P-CSI reports are from different groups and there are multiple channel resources used for transmission (assuming Y, Y is greater than or equal to 2 and less than or equal to X.
  • the channel resources used for P-CSI report transmission may be configured as Y P-s of PUSCH according to the priority principle of the P-CSI report specified by Rel-10. In the CSI report, the PUSCH resources configured by the P-CSI report with the highest priority are selected, and X P-CSI reports are sent.
  • the UE selects PUCCH format 3 used by the serving cell with the highest P-CSI priority from the plurality of groups of serving cells. And selecting, from the plurality of serving cells, the P-CSI with the highest P-CSI priority, and simultaneously selecting the P-CSI of each serving cell on the selected PUCCH format 3; in a preferred embodiment, if multiple ( It is assumed that X) P-CSI reports are from different groups and the channel resources used for transmission are not configured as PUSCH, and there are Y channel resources used when multiple P-CSI reports are transmitted (Y is greater than or equal to 1, less than or equal to X)
  • PUCCH format 3 according to the priority principle of the P-CSI report specified by Rel-10, in the P P-CSI reports in which the channel resource used for the P-CSI report transmission is configured as PUCCH format 3, Select the PUCCH format 3 resource configured by the P-CSI report with the highest priority, and then select a
  • the UE selects PUCCH format 3 used by the serving cell with the highest P-CSI priority from the plurality of groups of serving cells. If the number of bits jointly fed by the P-CSIs of the multiple serving cells does not exceed the maximum number of bits that can be carried by the PUCCH format 3, the UE sends the P-CSIs of the multiple serving cells on the selected PUCCH format 3, The UE selects the N serving cells with the highest P-CSI priority from the multiple serving cells, and simultaneously sends the selected P-CSI of each serving cell on the selected PUCCH format 3, where the selected N services are selected.
  • the UE sends multiple uplinks on the uplink channel resource according to the high layer signaling or the uplink channel resource used in the HARQ-ACK transmission of the multiple serving cells in the preset uplink subframe.
  • the HARQ-ACK of the serving cell and the P-CSI of the multiple serving cells may include one of the following:
  • the UE When only one uplink cell resource used by a P-CSI of a group of serving cells is a PUSCH, the UE simultaneously transmits P-CSIs of multiple serving cells and multiple serving cells on the PUSCH.
  • HARQ-ACK When only one uplink cell resource used by a P-CSI of a group of serving cells is a PUSCH, the UE simultaneously transmits P-CSIs of multiple serving cells and multiple serving cells on the PUSCH.
  • the UE selects the serving cell with the highest P-CSI priority from the plurality of groups of serving cells.
  • PUSCH and simultaneously transmit P-CSI of each serving cell and HARQ-ACK of multiple serving cells on the selected PUSCH; in a preferred embodiment, if multiple (assuming X) P - There are multiple channel resources used for CSI report transmission (assuming Y, Y is greater than or equal to 2 and less than or equal to X).
  • PUSCH When configured as PUSCH, it can be based on the priority principle of P-CSI reporting specified by Rel-10.
  • the PUSCH resource configured by the P-CSI report having the highest priority is selected, and the X P-CSI reports and the HARQ of the plurality of serving cells are transmitted. -ACK.
  • the UE is from multiple serving cells.
  • the P-CSI with the highest P-CSI priority is selected, and the P-CSI of the selected serving cell and the HARQ-ACK of the multiple serving cells are simultaneously transmitted on the PUCCH format 3 resources used for the HARQ-ACK transmission of the multiple serving cells.
  • the UE pairs multiple The HARQ-ACK of the serving cell performs spatial binding processing, and determines whether the HARQ-ACK after the spatial binding processing exceeds 2 bits of information. If not, the UE selects the P-CSI with the highest priority from among the multiple serving cells.
  • the HARQ-ACK of multiple serving cells may be first performed. Perform spatial binding to obtain 2-bit information, and then select the resources configured by the P-CSI report with the highest priority according to the priority principle of the P-CSI report specified by Rel-10, and send the P-CSI report and the space-bound 2-bit HARQ-ACK; For TDD of M>1, only HARQ-ACKs of multiple serving cells are transmitted, and multiple P-CSIs are not transmitted. (5) When the uplink channel resources used by the P-CSIs of the plurality of serving cells are
  • PUCCH format 3 and the HARQ-ACK configuration of the plurality of serving cells is configured to use the PUCCH format lb joint channel selection transmission, the UE selects the PUCCH format 3 used by the serving cell with the highest P-CSI priority from the plurality of serving cells, and The P-CSI of the serving cell corresponding to the selected PUCCH format 3 and the HARQ-ACK of the multiple serving cells are simultaneously transmitted on the selected PUCCH format 3.
  • there are Y channel resources used when multiple P-CSI report transmissions (Y is greater than or equal to
  • the channel resources used for P-CSI report transmission can be configured as Y Ps of PUCCH format 3 according to the priority principle of the P-CSI report specified by Rel-10.
  • the PUCCH format 3 resource configured by the highest priority P-CSI report is selected, and the P-CSI report and the plurality of serving cell corresponding to the selected PUCCH format 3 resource are transmitted on the selected PUCCH format 3 resource.
  • HARQ-ACK of the serving cell may be selected in the Y P-CSI reports in which the channel resource configuration used for P-CSI report transmission is PUCCH format 3 according to the priority principle of the P-CSI report specified by Rel-10.
  • the highest P-CSI reports the configured PUCCH format 3 resources, and selects the highest priority P-CSI report among the X P-CSI reports, and sends the selected P-CSI report and the selected PUCCH format 3 resources.
  • HARQ-ACK of the serving cells when the UE sends the P-CSI of any serving cell or the P-CSI of multiple serving cells simultaneously in the preset uplink subframe, the UE uplinks in the preset uplink subframe according to the high layer signaling.
  • the P-CSI of any serving cell is transmitted on the channel resource, or the P-CSI of each serving cell in the plurality of serving cells transmitted simultaneously.
  • FIG. 10 is a flow chart showing another method of processing information according to a preferred embodiment of the present invention. As shown in FIG.
  • the serving cells 1 and 2 are aggregated, and the serving cell 1 and the serving cell 2 are grouped into one group, and the P-CSI reports of the serving cell 1 and the serving cell 2 in the group are used for transmission.
  • the channel resources are configured to simultaneously assume that the transmission mode configured by the serving cell 1 requires feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI reports the basic period of transmission.
  • the configuration is 2ms, where the subframe offset of the RI is set to 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is 4 times the CSI transmission period.
  • RI feedback report type 3
  • type 2 wideband CQI and PMI
  • P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is 4 times the CSI transmission period.
  • the serving cells in the group since the group contains 2 serving cells, it is assumed here that the serving cells in the group
  • P-CSI reports the channel resources used when sending n% c .
  • H For PUSCH or PUCCH format 3. Since there is only one group, and the serving cell in the group is 2, the channel resource n used for the P-CSI report transmission of the serving cell in the group is PUSCH or PUCCH format 3 can support P-CSI of 2 serving cells. Feedback, therefore, in the subframe in which the P-CSI needs to be sent, the method may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells at the same time, and the UE may adopt “send the corresponding P-CSI”.
  • . 11 is a flow chart of another method of processing information according to a preferred embodiment 2 of the present invention. As shown in FIG.
  • the serving cells 1 and 2 are aggregated, and the serving cell 1 and the serving cell 2 are grouped into one group, and the P-CSI reports of the serving cell 1 and the serving cell 2 in the group are used for transmission.
  • the channel resources are configured to assume that the P-CSI configurations of the serving cell 1 and the serving cell 2 are the same, and the configured transmission mode needs feedback report type 3 (RI), type 2 (broadband CQI and PMI), and the P-CSI reports the basic period of transmission.
  • the configuration is 5ms, where the subframe offset of the RI is configured to be 3, and the period of the RI transmission is 4 times of the CSI transmission period.
  • the group since the group includes 2 serving cells, it is assumed here that the group Channel resource ⁇ used when the P-CSI report of the serving cell is transmitted ⁇ For PUSCH or PUCCH format 3. Since there is only one group, and the serving cell in the group is 2, the channel resource used in the P-CSI report transmission of the serving cell in the group is PUCCH. Therefore, P-CSI needs to be transmitted in the serving cell 1 and the serving cell 2.
  • the subframe may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells at the same time, and the UE may send the corresponding P-CSI by using ⁇ .
  • Figure 12 is a flow chart showing another method of processing information according to a preferred embodiment 3 of the present invention. As shown in FIG.
  • the serving cells 1, 2, and 3 are aggregated, and the three serving cells are divided into two groups, where The cell 1 and the serving cell 2 are grouped as group 1.
  • the channel resource used in the P-CSI report transmission of the serving cell 1 and the serving cell 2 in the group is " ⁇ ", and the serving cell 3 is classified into group 2, in the group.
  • the channel resource used by the P-CSI report of the serving cell 3 is configured to be transmitted.
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is configured to be 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is four times the CSI transmission period.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • RI feedback report type 3
  • type 2 wideband CQI and PMI
  • P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • n ⁇ 0 And ⁇ ⁇ 0 All are PUSCH.
  • the method may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells at the same time, and the UE may send the corresponding P-CSI by using ⁇ .
  • the UE For the subframe 5 of the first radio frame and the subframe 5 of the third radio frame, the UE needs to feed back the P-CSI of the three serving cells, and since the serving cells 1 and 2 belong to the group 1, the serving cell 3 belongs to the group 2 And the channel resources used for the transmission are all configured as PUSCH, and the UE will select a PUSCH resource with the highest priority between 4 and ⁇ according to the P-CSI reporting priority specified by Rel-10, because the P sent by the serving cell 3
  • the CSI report is RI, which has a higher priority than the sub-band CQI of the serving cell 1 and the wideband CQI and PMI of the serving cell 2. Therefore, the UE will use ⁇ to transmit the P-CSI report of the serving cell 1, 2, 3.
  • Figure 13 is a flow chart showing another method of processing information according to a preferred embodiment 4 of the present invention.
  • the serving cells 1, 2, and 3 are aggregated, and the three serving cells are divided into two groups, where the serving cell 1 and the serving cell 2 are grouped as the group 1, and the serving cell 1 in the group
  • the channel resource configuration used when transmitting the P-CSI report of the serving cell 2 is " ⁇ "
  • the serving cell 3 is classified into the group 2, and the channel resource configuration used when the P-CSI report of the serving cell 3 in the group is transmitted is transmitted. For ⁇ .
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and ⁇ ), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where , RI subframe offset configuration is 1, RI transmission period It is 10 times the CSI transmission cycle.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is four times the CSI transmission period.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • RI feedback report type 3
  • type 2 wideband CQI and PMI
  • P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • the method may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells at the same time, and the UE may send the corresponding P-CSI by using ⁇ .
  • the serving cell 3 in addition to the subframe 5 of the first radio frame and the subframe 5 of the third radio frame, all other subframes in which the P-CSI of the serving cell 3 needs to be transmitted may be transmitted by the UE. P-CSI.
  • FIG. 14 is a flow chart showing another method of processing information according to a preferred embodiment 5 of the present invention. As shown in FIG.
  • the serving cells 1, 2, and 3 are aggregated, and the three serving cells are divided into two groups, where the serving cell 1 and the serving cell 2 are grouped as the group 1, and the serving cell 1 in the group
  • the channel resource configuration used when transmitting the P-CSI report of the serving cell 2 is 4 ⁇
  • the serving cell 3 is classified into the group 2
  • the channel resource configuration used when the P-CSI report of the serving cell 3 in the group is transmitted is transmitted. Is ⁇ .
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (broadband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is configured to be 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is four times the CSI transmission period.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • is assumed.
  • are both PUCCH format 3.
  • the method may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells at the same time, and the UE may send the corresponding P-CSI by using ⁇ .
  • the serving cell 3 in addition to the subframe 5 of the first radio frame and the subframe 5 of the third radio frame, all other subframes in which the P-CSI of the serving cell 3 needs to be transmitted may be transmitted by the UE. P-CSI.
  • the P-CSI reports the channel resources used for transmission, and then selects the P-CSI reports in the remaining serving cell 1 and serving cell 2 according to the priority of the P-CSI report specified by Rel-10.
  • the highest-priority P-CSI report since the P-CSI report of the serving cell 2 is the wideband CQI and the PMI, the priority is higher than the sub-band CQI of the serving cell 1, and therefore, the UE will send the serving cell 3 on it.
  • P-CSI And P-CSI 2 serving cell reports are a flow chart showing another method of processing information according to a preferred embodiment 6 of the present invention. As shown in FIG.
  • the serving cells 1, 2, and 3 are aggregated, and the three serving cells are divided into two groups, where the serving cell 1 and the serving cell 2 are grouped as the group 1, and the serving cell 1 in the group
  • the channel resource configuration used when transmitting the P-CSI report of the serving cell 2 is " ⁇ "
  • the serving cell 3 is classified into the group 2, and the channel resource configuration used when the P-CSI report of the serving cell 3 in the group is transmitted is transmitted. Is ⁇ .
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period configuration is 2 ms, where The subframe offset of the RI is configured to be 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is four times the CSI transmission period.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • ⁇ and ⁇ ⁇ are both PUSCH, and it is assumed that on subframe 2 of the first radio frame, subframe 1 of the second radio frame, subframe of the third radio frame On 0, and on subframe 8 of the 4th radio frame, the UE needs to feed back HARQ-ACKs of multiple serving cells.
  • the subframe of the P-CSI of the serving cell 2 may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells simultaneously, and the UE may send the corresponding P-CSI by using ⁇ %.
  • the serving cell 3 except for the subframe 5 of the first radio frame, the subframe 5 of the third radio frame, and the subframe 8 of the fourth radio frame, all the P-CSIs that need to transmit the serving cell 3 On the frame, the UE can send the corresponding P-CSI with n%.
  • the UE For the subframe 2 of the first radio frame, the UE needs to transmit the P-CSI of the serving cell 2 and the HARQ-ACK of the multiple serving cells. Since the resource used for the P-CSI transmission of the serving cell 2 is the PUSCH, the UE will The P-CSI of the serving cell 2 and the HARQ-ACK of the plurality of serving cells are transmitted on n (for the subframe 5 of the first radio frame and the subframe 5 of the third radio frame, the UE needs to feed back three serving cells P-CSI, and since serving cells 1 and 2 belong to group 1, and serving cell 3 belongs to group 2, and the channel resources used for transmission are all configured as PUSCH, the UE will report the priority according to the P-CSI specified by Rel-10.
  • the UE shall adopt n%. Send the P-CSI report of the serving cell 1, 2, 3. For the subframe 1 of the second radio frame, the UE needs to transmit the P-CSI of the serving cell 1 and the HARQ of the multiple serving cells. ACK, when the P-CSI of the serving cell 1 is transmitted The used resource is the PUSCH, so the UE will send the P-CSI of the serving cell 1 and the HARQ-ACK of the multiple serving cells on the ⁇ .
  • the UE For the subframe 0 of the third radio frame, the UE needs to send the serving cell 1 and The P-CSI of 2 and the HARQ-ACK of the multiple serving cells, since the serving cells 1 and 2 belong to the same group, and the resource used for the corresponding P-CSI transmission is the PUSCH, the UE will be at the n c 0u The P-CSI of the serving cell 1 and B 2 and the HARQ-ACK of the plurality of serving cells are transmitted. For the subframe 8 of the fourth radio frame, the UE needs to transmit the P-CSI of the serving cell 3 and the HARQ-ACK of the multiple serving cells.
  • FIG. 16 is a flow chart showing another method of processing information according to a preferred embodiment of the present invention.
  • the serving cells 1, 2, and 3 are aggregated, and the three serving cells are divided into two groups, where the serving cell 1 and the serving cell 2 are grouped as the group 1, and the serving cell 1 in the group
  • the channel resource configuration used when transmitting the P-CSI report of the serving cell 2 is " ⁇ "
  • the serving cell 3 is classified into the group 2, and the channel resource configuration used when the P-CSI report of the serving cell 3 in the group is transmitted is transmitted. For ⁇ .
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (broadband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is configured to be 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is four times the CSI transmission period.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • PUSCH which is PUCCH format 3, assuming that in subframe 2 of the first radio frame, on subframe 1 of the second radio frame, subframe 0 and sub of the third radio frame
  • the UE needs to feed back HARQ-ACKs of multiple serving cells, and assumes that HARQ-ACK is transmitted using PUCCH format 3, and channel resources are recorded as.
  • the P-CSI subframe of the serving cell 2 may include only one P-CSI of the serving cell and the P-CSI of the two serving cells simultaneously, and the UE may send the corresponding P-CSI by using n.
  • the serving cell 3 except for the subframe 5 of the first radio frame, the subframe 5 of the third radio frame, and the subframe 8 of the fourth radio frame, all the other P-CSIs that need to transmit the serving cell 3 On the subframe, the UE may send the corresponding P-CSI by using ⁇ .
  • the UE For the subframe 2 of the first radio frame, the UE needs to transmit the P-CSI of the serving cell 2 and the HARQ-ACK of the multiple serving cells. Since the resource used for the P-CSI transmission of the serving cell 2 is the PUSCH, the UE will The P-CSI of the serving cell 2 and the HARQ-ACK of the plurality of serving cells are transmitted on 4. For subframe 5 of the first radio frame, the UE needs to feed back the P-CSI of the three serving cells, and since the serving cells 1 and 2 belong to the group 1, the serving cell 3 belongs to the group 2, and the channel resources used for transmission are only One configuration is PUSCH, that is, the UE will adopt n% ⁇ . Send the P-CSI report of the service cell 1, 2, 3.
  • the UE For the subframe 1 of the second radio frame, the UE needs to transmit the P-CSI of the serving cell 1 and the HARQ-ACK of the multiple serving cells. Since the resource used for the P-CSI transmission of the serving cell 1 is the PUSCH, the UE will The P-CSI of the serving cell 1 and the HARQ-ACK of the plurality of serving cells are transmitted on the ⁇ .
  • the UE For subframe 0 of the third radio frame, the UE needs to transmit the P-CSI of the serving cells 1 and 2 and the HARQ-ACK of the multiple serving cells, since the serving cells 1 and 2 belong to the same group, and the corresponding P-CSI
  • the resource used for transmission is the PUSCH, so the UE will transmit the P-CSI of the serving cells 1 and 2 and the HARQ-ACK of the plurality of serving cells.
  • the UE For the subframe 5 of the third radio frame, the UE needs to feed back the P-CSI of the three serving cells and the HARQ-ACK of the multiple serving cells, and since the serving cells 1 and 2 belong to the group 1, the serving cell 3 belongs to the group 2, And only one of the channel resources used for the transmission is configured as a PUSCH, that is, therefore, the UE will adopt the P-CSI report of the serving cell 1, 2, 3 and the HARQ-ACK of the plurality of serving cells.
  • FIG. 17 is a flow chart showing another method of processing information according to a preferred embodiment 8 of the present invention. As shown in FIG.
  • the serving cells 1, 2, and 3 are aggregated, and the three serving cells are divided into two groups, where the serving cell 1 and the serving cell 2 are grouped as the group 1, and the serving cell 1 in the group
  • the channel resource configuration used when transmitting the P-CSI report of the serving cell 2 is " ⁇ "
  • the serving cell 3 is classified into the group 2, and the channel resource configuration used when the P-CSI report of the serving cell 3 in the group is transmitted is transmitted. For ⁇ .
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (broadband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is configured to be 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted. The period is four times the CSI transmission period.
  • the transmission mode configured by the serving cell 3 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 10 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is twice the CSI transmission period.
  • ⁇ and n% are assumed c . u , both of which are PUCCH format 3, and are assumed to be on subframe 2 of the first radio frame, on subframe 1 of the second radio frame, on subframe 0 of the third radio frame, and on the fourth radio frame.
  • the subframe of the P-CSI of the serving cell 2 may include: transmitting only one P-CSI of the serving cell and transmitting P-CSI of two serving cells at the same time, and the UE may send the corresponding P-CSI by using n.
  • the UE may send the corresponding P-CSI by using ⁇ .
  • the UE needs to transmit the P-CSI of the serving cell 2 and the HARQ-ACK of the multiple serving cells, and the resource used for the P-CSI transmission of the serving cell 2 is PUCCH format 3, and The resources used for transmission of multiple HARQ-ACKs are also configured as PUCCH format 3, so the UE will transmit the P-CSI of the serving cell 2 and the HARQ-ACK of the plurality of serving cells.
  • the UE For subframe 5 of the first radio frame, the UE needs to feed back the P-CSI of the three serving cells, and since the serving cells 1 and 2 belong to one group, the serving cell 3 belongs to another group, and the channel resources used for transmission are all Configured as PUCCH format 3, the UE will select a PUCCH format 3 resource with the highest priority between ⁇ %° and ⁇ according to the P-CSI reporting priority specified by Rel-10, because the P-CSI report sent by the serving cell 3 Is the RI whose priority is higher than the sub-band CQI of the serving cell 1 and the wideband CQI and PMI of the serving cell 2. Therefore, the UE will select the channel used for the P-CSI report transmission of the serving cell 3 having the highest priority.
  • the UE For the subframe 1 of the second radio frame, the UE needs to transmit the P-CSI of the serving cell 1 and the HARQ-ACK of the multiple serving cells, and the resource used for the P-CSI transmission of the serving cell 1 is PUCCH format 3, and The resources used in the transmission of multiple HARQ-ACKs are also configured as PUCCH format 3, so the UE will transmit the P-CSI of the serving cell 1 and the HARQ-ACK of the plurality of serving cells.
  • the UE For subframe 0 of the third radio frame, the UE needs to transmit the P-CSI of the serving cells 1 and 2 and the HARQ-ACK of the multiple serving cells, since the serving cells 1 and 2 belong to the same group, and the corresponding P-CSI
  • the resource used for transmission is PUCCH format 3, and the resources used for transmission of multiple HARQ-ACKs are also configured as PUCCH format 3. Therefore, the UE will be in the serving cell 1 and B according to the P-CSI priority principle defined by Rel-10.
  • the UE needs to feed back the P-CSI of the three serving cells and the HARQ-ACK of the multiple serving cells, and since the serving cells 1 and 2 belong to the group 1, the serving cell 3 belongs to the group 2,
  • the channel resources used for the transmission are all configured as PUCCH format 3, and the resources used for transmitting multiple HARQ-ACKs are also configured as PUCCH format 3, so the UE will be based on the P-CSI priority specified by Rel-10.
  • the UE For subframe 8 of the fourth radio frame, the UE needs to transmit the P-CSI of the serving cell 3 and the HARQ-ACK of the multiple serving cells, due to the serving cell 3
  • the resource used for P-CSI transmission is PUCCH, and the resources used when multiple HARQ-ACKs are transmitted are also configured as PUCCH format 3, so the UE will c H ACK And transmitting the P-CSI of the serving cell 3 and the HARQ-ACK of the plurality of serving cells.
  • Figure 18 is a flow chart showing another method of processing information according to a preferred embodiment 9 of the present invention. As shown in FIG.
  • the serving cells 1 and 2 are aggregated, and the serving cell 1 and the serving cell 2 respectively correspond to the group 1 and the group 2, and the channel resources used by the group 1 and group 2 for the P-CSI report are respectively sent. Configured as ⁇ %. And ⁇ . It is also assumed that the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period configuration is 2 ms, where The subframe offset of the RI is set to 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • RI feedback report type 3
  • type 2 wideband CQI and PMI
  • type 1 sub-band CQI selected by the UE
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, where the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is four times the CSI transmission period.
  • both the hypothetical sum are configured as PUCCH fommt 2, and it is assumed that on subframe 2 of the first radio frame, on subframe 1 of the second radio frame, subframe 0 of the third radio frame On the 5th, and the subframe 8 of the 4th radio frame, the UE needs to feed back the HARQ-ACK of the multiple serving cells, and assumes that the HARQ-ACK is transmitted by using the PUCCH format lb joint channel selection.
  • the UE For serving cell 1, in subframes 0, 1, 3, 7, 9 of the first radio frame, subframes 3, 7, and 9 of the second radio frame, subframes 1, 3 of the third radio frame, 7,9 and the subframes 1, 3, 7, and 9 of the fourth radio frame, the UE only needs to feed back the P-CSI of the serving cell 1, and therefore, the UE will send the P- of the serving cell 1 on the configured channel resource.
  • CSI For the serving cell 2, in the subframe 0 of the second radio frame, the subframe 2 of the third radio frame, and the subframe 0 of the fourth radio frame, the UE only needs to feed back the P-CSI of the serving cell 2, therefore, The UE will transmit the P-CSI of the serving cell 2 on the configured channel resources.
  • the UE For the subframe 2 of the first radio frame, the UE needs to feed back the P-CSI of the serving cell 2 and the HARQ-ACK of the multiple serving cells, and the channel resource used for the P-CSI transmission of the serving cell 2 is configured as PUCCH format 2 And the HARQ-ACK transmission uses the PUCCH format lb joint channel selection, where it is further assumed that the system participating in the aggregation is FDD, the UE first performs spatial binding on the HARQ-ACK of the multiple serving cells to obtain 2-bit information, and then in the serving cell 2 The P-CSI report transmits the P-CSI of the serving cell 2 and the 2-bit HARQ-ACK after the spatial bonding is performed on the channel resource configured at the time of transmission.
  • the UE For the subframe 5 of the 1/2/4th radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the serving cell 2, and the channel resources used for the P-CSI transmission of the serving cells 1 and B 2 are configured.
  • PUCCH format 2 P-CSI of multiple serving cells cannot be simultaneously transmitted. Therefore, the UE will select the P-CSI report of the highest priority serving cell 2 according to the priority principle defined by Rel-10 (because of the wideband CQI and The priority of the PMI is higher than the priority of the sub-band CQI).
  • the UE For the subframe 1 of the second radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the HARQ-ACK of the multiple serving cells, and the channel resource used for the P-CSI transmission of the serving cell 1 is configured as PUCCH format 2 And the HARQ-ACK transmission uses the PUCCH format lb joint channel selection, where it is further assumed that the system participating in the aggregation is FDD, the UE first performs spatial binding on the HARQ-ACK of the multiple serving cells to obtain 2-bit information, and then in the serving cell. On the channel resource configured at the time of transmission of the P-CSI report of 1, the P-CSI of the serving cell 1 and the HARQ-ACK of the 2-bit after the space bonding are transmitted.
  • the UE For subframe 0 of the third radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the serving cell 2 and the HARQ-ACK of the plurality of serving cells, which are used when the P-CSIs of the serving cells 1 and 2 are transmitted.
  • the channel resources are all configured as PUCCH format 2, and the transmission of the HARQ-ACK uses the PUCCH format lb joint channel selection.
  • the system participating in the aggregation is FDD, and the UE first performs spatial binding on the HARQ-ACK of multiple serving cells.
  • the wideband CQI and PMI) of 2 transmit the P-CSI of the serving cell 1 and the HARQ-ACK of the 2-bit after the spatial bonding is performed on the channel resource configured for the P-CSI transmission of the serving cell 1.
  • the UE needs to feed back the P-CSI of the serving cell 1 and the serving cell 2 and the HARQ-ACK of the plurality of serving cells, which are used when the P-CSIs of the serving cells 1 and 2 are transmitted.
  • the channel resources are all configured as PUCCH format 2, and the transmission of the HARQ-ACK uses the PUCCH format lb joint channel selection.
  • the system participating in the aggregation is FDD, and the UE first performs spatial binding on the HARQ-ACK of multiple serving cells.
  • FIG. 19 is a flow chart showing another method of processing information according to a preferred embodiment 10 of the present invention. As shown in FIG.
  • the serving cells 1 and 2 are aggregated, and the serving cell 1 and the serving cell 2 respectively correspond to the group 1 and the group 2, and the channel resources used for the P-CSI report transmission of the group 1 and the group 2 are respectively Configured as and ⁇ %,.
  • the transmission mode configured by the serving cell 1 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and type 1 (sub-band CQI selected by the UE), and the P-CSI report transmission basic period is configured to be 2 ms, where The subframe offset of the RI is set to 1, and the period of the RI transmission is 10 times of the CSI transmission period.
  • the transmission mode configured by the serving cell 2 needs feedback report type 3 (RI), type 2 (wideband CQI and PMI), and the P-CSI report transmission basic period is configured to be 5 ms, wherein the subframe offset configuration of the RI is 3, and the RI is transmitted.
  • the period is four times the CSI transmission period.
  • n p And ⁇ %° are respectively configured as PUCCH format 3 and PUCCH format 2, and it is assumed that on subframe 2 of the first radio frame, subframe 1 of the second radio frame, subframe 0 of the third radio frame, and On the 5th, and the subframe 8 of the 4th radio frame, the UE needs to feed back the HARQ-ACK of the multiple serving cells, and assumes that the HARQ-ACK is transmitted by using the PUCCH format lb joint channel selection.
  • the UE For serving cell 1, in subframes 0, 1, 3, 7, 9 of the first radio frame, subframes 3, 7, and 9 of the second radio frame, subframes 1, 3 of the third radio frame, 7,9 and the subframes 1, 3, 7, and 9 of the fourth radio frame, the UE only needs to feed back the P-CSI of the serving cell 1, and therefore, the UE will send the serving cell 1 on the configured channel resource. P-CSI.
  • the UE For the serving cell 2, in the subframe 0 of the second radio frame, the subframe 2 of the third radio frame, and the subframe 0 of the fourth radio frame, the UE only needs to feed back the P-CSI of the serving cell 2, therefore, The UE will transmit the P-CSI of the serving cell 2 on the configured channel resources.
  • the UE For the subframe 2 of the first radio frame, the UE needs to feed back the P-CSI of the serving cell 2 and the HARQ-ACK of the multiple serving cells, and the channel resource used for the P-CSI transmission of the serving cell 2 is configured as PUCCH format. 2, and the HARQ-ACK transmission uses the PUCCH format lb joint channel selection, where it is further assumed that the system participating in the aggregation is FDD, the UE first performs spatial binding on the HARQ-ACK of the multiple serving cells to obtain 2-bit information, and then in the service.
  • the P-CSI of the cell 2 is transmitted on the channel resource configured to transmit, and the P-CSI of the serving cell 2 and the 2-bit HARQ-ACK after the spatial bundling are transmitted.
  • the UE For the subframe 5 of the 1/2/4th radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the serving cell 2, and the channel resource used for the P-CSI transmission of the serving cell 1 is configured as PUCCH format 3 Therefore, the UE will transmit the P-CSI report of the serving cell 1 and P 2 on M ⁇ .
  • the UE For the subframe 1 of the second radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the HARQ-ACK of the multiple serving cells, and the channel resource used for the P-CSI transmission of the serving cell 1 is configured as PUCCH format 3 And the HARQ-ACK transmission uses the PUCCH format lb joint channel selection, and the UE transmits the P-CSI of the serving cell 1 and the HARQ-ACK of the plurality of serving cells.
  • the UE For subframe 0 of the third radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the serving cell 2 and the HARQ-ACK of the plurality of serving cells, and the channel resources used when the P-CSI of the serving cell 1 is transmitted.
  • the UE determines that the channel resource used for transmitting the P-CSI and the HARQ-ACK of the multiple serving cells is the P-CSI transmission of the serving cell 1.
  • the channel resource used at the time that is, ⁇ %, transmits the P-CSI report of the serving cell corresponding to the selected PUCCH format 3 resource and the HARQ-ACK of the multiple serving cells on the selected PUCCH format 3 resource, that is, the upper transmission
  • the P-CSI report of the serving cell 1 and the HARQ-ACK of the multiple serving cells; or, the UE selects the P-CSI report of the serving cell 1 with the highest priority according to the P-CSI reporting priority principle defined by the Rel-10 (service)
  • the priority of the RI of the cell 1 is higher than the bandwidth CQI and PMI of the serving cell 2, and the P-CSI of the serving cell 1 and the plurality of services are transmitted on the channel resource configured when the P-CSI of the serving cell 1 is transmitted.
  • the UE For the subframe 5 of the third radio frame, the UE needs to feed back the P-CSI of the serving cell 1 and the serving cell 2 and the HARQ-ACK of the plurality of serving cells, and the channel resources used when the P-CSI of the serving cell 1 is transmitted. Configured as PUCCH format 3, and the transmission of the HARQ-ACK uses PUCCH format lb joint channel selection, the UE determines that the channel resource used for transmitting the P-CSI and the HARQ-ACK of the multiple serving cells is the P-CSI transmission of the serving cell 1.
  • the channel resource used at the time that is, ⁇ %, transmits the P-CSI report of the serving cell corresponding to the selected PUCCH format 3 resource and the HARQ-ACK of the plurality of serving cells on the selected PUCCH format 3 resource, that is, in the ⁇ ⁇ ) transmitting the P-CSI report of the serving cell 1 and the HARQ-ACK of the plurality of serving cells; or, the UE selects the highest priority according to the P-CSI reporting priority principle specified by Rel-10 P-CSI report of serving cell 2 (the priority of the serving cell 2 wideband CQI and PMI is higher than the sub-band CQI of the serving cell 1), and is transmitted on the channel resource configured when the P-CSI of the serving cell 1 is transmitted.
  • 20 is a block diagram showing the structure of an information processing apparatus according to an embodiment of the present invention.
  • the information processing apparatus may include: a first receiving module 10, configured to receive high layer signaling from a base station, where the high layer signaling carries an uplink channel resource configured by the base station for the user equipment UE, The uplink channel resource is used for simultaneously transmitting periodic channel state information P-CSI of multiple serving cells corresponding to the UE, or for simultaneously transmitting a hybrid automatic request retransmission response message HARQ-ACK of multiple serving cells corresponding to the UE.
  • the P-CSI of the multiple serving cells; the first sending module 20 is configured to simultaneously send P-CSIs of multiple serving cells on the uplink channel resources according to the high layer signaling in the preset uplink subframe, or send multiple services simultaneously
  • the HARQ-ACK of the cell and the P-CSI of multiple serving cells The apparatus shown in FIG. 20 solves the problem that the simultaneous transmission of P-CSI of multiple serving cells or the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells cannot be simultaneously implemented in the related art.
  • the response message of the plurality of downlink component carriers and the channel state information of the plurality of serving cells are simultaneously transmitted.
  • the uplink channel resource may include, but is not limited to, at least one of the following: PUCCH format 3.
  • the first sending module 20 may include: a first determining unit 200, configured to determine, when the uplink channel resource is the PUCCH format 3, multiple services to be sent on the preset uplink subframe.
  • the first transmitting unit 202 is configured to simultaneously transmit the P-CSI of each serving cell on the PUCCH format 3 when the number of the multiple serving cells is less than or equal to two; the second sending unit 204, When the number of the multiple serving cells is greater than two, the two serving cells with the highest P-CSI priority are selected from the multiple serving cells, and the selected each serving cell is simultaneously sent on the PUCCH format 3.
  • P-CSI Preferably, as shown in FIG.
  • the first sending module 20 may include: a second determining unit 206, configured to determine, when the uplink channel resource is the PUCCH format 3, determine a plurality of serving cells to be sent on the preset uplink subframe. The number of bits that are commonly fed back by the P-CSI; the third sending unit 208 is configured to set the maximum number of bits that can be carried in the P-CSI of the multiple serving cells not to exceed the maximum number of bits that can be carried by the PUCCH format 3, in the PUCCH The P-CSI of each serving cell is simultaneously transmitted on the format 3; the fourth sending unit 210 is configured to set the maximum number of bits that can be carried by the P-CSI of the multiple serving cells when the number of bits of the P-CSI is more than the maximum number of bits that can be carried by the PUCCH format 3 And selecting, from the plurality of serving cells, the N serving cells with the highest priority of the P-CSI, and simultaneously transmitting the selected P-CSI of each serving cell on the PUCCH format 3, where the P of the selected N serving cells - The number
  • the first sending module 20 may include: a third determining unit 212, configured to determine, when the uplink channel resource is the PUCCH format 3, determine a plurality of serving cells to be sent on the preset uplink subframe.
  • the fifth sending unit 214 is configured to simultaneously transmit the P-CSI of the serving cell and the HARQ of the multiple serving cells on the PUCCH format 3 when the number of serving cells of the P-CSI to be transmitted is one.
  • the sixth sending unit 216 is configured to: when the number of serving cells of the P-CSI to be transmitted is multiple, select a serving cell with the highest P-CSI priority from the plurality of serving cells, and on the PUCCH format 3 The P-CSI of the selected serving cell and the HARQ-ACK of the multiple serving cells are simultaneously transmitted.
  • the first sending module 20 includes: a seventh sending unit 218, configured to: when the uplink channel resource is a PUSCH, the preset uplink subframe is simultaneously sent on the PUSCH according to the high layer signaling to correspond to the UE. P-CSI of multiple serving cells, or simultaneously transmitting HARQ-ACK of multiple serving cells and P-CSI of multiple serving cells.
  • the first sending module is configured to: when the P-CSI of multiple serving cells or the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells are simultaneously transmitted on the preset uplink subframe, preset The uplink subframe simultaneously transmits the P-CSIs of the multiple serving cells on the uplink channel resources according to the high layer signaling, or simultaneously transmits the HARQ-ACK of the multiple serving cells and the P-CSI of the multiple serving cells.
  • FIG. 25 is a block diagram showing the structure of another apparatus for processing information according to an embodiment of the present invention. As shown in FIG.
  • the information processing apparatus may include: a second receiving module 30, configured to receive high layer signaling from a base station, where the high layer signaling carries multiple services corresponding to the user equipment UE by the base station The cell performs the grouping information, and the base station configures the uplink channel resource for each group of serving cells after the packet processing; the second sending module 40 is configured to send any one of the preset uplink subframes on the uplink channel resource according to the high layer signaling.
  • the apparatus shown in FIG. 25 solves the problem that the simultaneous transmission of P-CSI of multiple serving cells or the HARQ-ACK of multiple serving cells and the P-CSI of multiple serving cells cannot be simultaneously implemented in the related art.
  • the uplink channel resource may include, but is not limited to, at least one of the following: PUCCH format 2, PUCCH format 3, PUSCH.
  • PUCCH format 2 PUCCH format 3, PUSCH.
  • the second sending module 40 may include: a determining unit 400, configured to determine whether the serving cell corresponding to the multiple P-CSIs to be sent is located in the same group; the first determining unit 402, setting When the output of the determining unit is YES, determining configuration information of the uplink channel resource used by the group of serving cells according to the high layer signaling, and transmitting P-CSI of the plurality of serving cells on the determined uplink channel resource;
  • the unit 404 is configured to determine, according to the high layer signaling, configuration information of the uplink channel resources used by each group of serving cells according to the high layer signaling, and perform the uplink channel resources used by the determined groups of the serving cells.
  • the first determining unit 402 may include: a first sending unit 4020, configured to: when the number of serving cells located in the same group is one, and the uplink channel resource is PUCCH format 2 or PUCCH format 3 In the case of the PUSCH, the P-CSI of the serving cell is simultaneously transmitted on the PUCCH format 2 or the PUCCH format 3 or the PUSCH.
  • the second transmitting unit 4022 is configured to set the number of serving cells in the same packet to two, and the uplink channel resource is In the PUCCH format 3 or the PUSCH, the P-CSI of each serving cell in the serving cell in the packet is simultaneously transmitted on the PUCCH format 3 or the PUSCH;
  • the third transmitting unit 4024 is configured to be larger when the number of serving cells located in the same packet is greater than 2, when the uplink channel resource is the PUSCH, the P-CSI of each serving cell in the packet is simultaneously transmitted on the PUSCH;
  • the fourth sending unit 4026 is configured to set the number of serving cells in the same packet to be greater than two, uplink When the channel resource is PUCCH format 3, two serving cells with the highest P-CSI priority are selected from the group of serving cells, and each selected one is sent simultaneously on PUCCH format 3.
  • the P-CSI of the serving cell; the fifth sending unit 4028 is configured to: when the number of serving cells located in the same group is greater than two, and the uplink channel resource is PUCCH format 3, if the P-CSIs of the multiple serving cells are jointly fed back If the number of bits does not exceed the maximum number of bits that can be carried in the PUCCH format 3, the P-CSI of multiple serving cells is transmitted on the PUCCH format 3, and the P-CSI is selected from the plurality of serving cells.
  • the N serving cells, and the P-CSI of each of the selected serving cells are simultaneously transmitted on the PUCCH format 3, wherein the P-CSIs of the selected N serving cells jointly feed no more than the number of bits of the PUCCH format 3
  • the maximum number of bits carried, N is a positive integer.
  • the second determining unit 404 may include: a sixth sending unit 4040, configured to: when only one group of serving cells in the group of serving cells use the uplink channel resource as the PUSCH, simultaneously on the PUSCH Transmitting a P-CSI of a plurality of serving cells; the seventh transmitting unit 4042 is configured to select a P-CSI priority from the plurality of groups of serving cells when the uplink channel resources used by the plurality of groups of serving cells in each group of serving cells are PUSCH The PUSCH used by the highest-level serving cell, and simultaneously transmitting P-CSIs of multiple serving cells on the selected PUSCH; the eighth transmitting unit 4044 is set to be used by multiple groups of serving cells in each group of serving cells.
  • a sixth sending unit 4040 configured to: when only one group of serving cells in the group of serving cells use the uplink channel resource as the PUSCH, simultaneously on the PUSCH Transmitting a P-CSI of a plurality of serving cells
  • the seventh transmitting unit 4042 is configured to select a P-
  • the PUCCH fo r mat 3 used by the serving cell with the highest P-CSI priority is selected from the plurality of groups of serving cells, and the two services with the highest P-CSI priority are selected from the plurality of serving cells.
  • a ninth transmitting unit 4046 configured to be used by multiple groups of serving cells in each group of serving cells Channel resources for PUCCH format 3, selected from the plurality of sets of cells in the serving P-CSI service the highest priority cell used PUCCH format 3, if the number of bits jointly fed by the P-CSIs of the multiple serving cells does not exceed the maximum number of bits that can be carried by the PUCCH format 3, the P-CSIs of the plurality of serving cells are transmitted on the selected PUCCH format 3, Otherwise, the N serving cells with the highest P-CSI priority are selected from the multiple serving cells, and the P-CSI of each selected serving cell is simultaneously sent on the selected PUCCH format 3, wherein the selected N services are selected.
  • the second sending module 40 may include: a tenth sending unit 406, configured to: when the plurality of serving cells are located, only one group of serving cells has an uplink channel resource used by the P-CSI of the serving cell.
  • the eleventh transmitting unit 408 is configured to have a plurality of packets in which the plurality of serving cells are located
  • the uplink channel resource used by the P-CSI of the group serving cell is the PUSCH
  • the PUSCH used by the serving cell with the highest P-CSI priority is selected from the plurality of groups of serving cells, and multiple serving cells are simultaneously transmitted on the selected PUSCH.
  • a P-CSI of each serving cell and a HARQ-ACK of a plurality of serving cells configured to use an uplink channel resource used for P-CSI transmission of each serving cell of the plurality of serving cells
  • the HARQ-ACK configuration of the plurality of serving cells that are not configured as the PUSCH is configured to select the PUCCH format 3 used by the serving cell with the highest P-CSI priority from the plurality of serving cells when transmitting using the PUCCH format 3, and
  • the P-CSI of the selected serving cell and the HARQ-ACK of the plurality of serving cells are simultaneously transmitted on the PUCCH format 3 resource used for the HARQ-ACK transmission of the multiple serving cells;
  • the thirteenth transmitting unit 412 is set to be multiple
  • the uplink channel resource used for the P-CSI transmission of each serving cell in the serving cell is PUCCH format 2
  • the HARQ-ACK configuration of the multiple serving cells is configured to use the PUCCH format lb joint channel selection, and multiple The HARQ-ACK of the serving
  • the UE selects the P-CSI with the highest priority from the plurality of groups of serving cells.
  • the PUCCH format lb transmits the HARQ-ACK of the plurality of serving cells in a joint channel selection manner; the fourteenth transmitting unit 414 is configured to be used by the P-CSIs of the plurality of serving cells
  • the uplink channel resource is PUCCH format 3 and the HARQ-ACK of the multiple serving cells is configured to use the PUCCH format lb joint channel selection transmission
  • the PUCCH format 3 used by the serving cell with the highest P-CSI priority is selected from the plurality of serving cells.
  • the second sending module 40 is configured to send the P-CSI of any serving cell or the P-CSI of multiple serving cells simultaneously in the preset uplink subframe, according to the high layer signaling in the preset uplink subframe.
  • Upstream channel The periodic channel state information P-CSI of any serving cell is transmitted on the source, or the P-CSI of each serving cell in the plurality of services/J zones transmitted simultaneously.
  • the second sending module 40 is configured to: when the HARQ-ACK of the multiple serving cells corresponding to the UE and the P-CSI of the multiple serving cells are simultaneously transmitted on the preset uplink subframe, the UE is in the preset uplink subframe. Sending HARQ-ACK of multiple serving cells and P- of multiple serving cells simultaneously on uplink channel resources according to higher layer signaling, or uplink channel resources used in HARQ-ACK transmission of multiple serving cells CSI.
  • the foregoing PUSCH resource information may include: a physical resource block index in which the PUSCH resource is located, a modulation mode, a frequency hopping, and a frequency hopping mode.
  • a plurality of downlink component carrier response messages and multiple The channel state information of the serving cell is simultaneously transmitted.
  • the above modules or steps of the present invention can be implemented by a general-purpose computing device, which can be concentrated on a single computing device or distributed over a network composed of multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device, such that they may be stored in the storage device by the computing device and, in some cases, may be different from the order herein.

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Abstract

本发明公开了一种信息的处理方法及装置,在上述方法中,UE接收来自于基站的高层信令,其中,高层信令中携带有基站为UE配置的上行信道资源,上行信道资源用于同时发送与UE对应的多个服务小区的周期信道状态信息P-CSI,或者,用于同时发送与UE对应的多个服务小区的混合自动请求重传应答消息HARQ-ACK和多个服务小区的P-CSI;UE在预设上行子帧根据高层信令在上行信道资源上同时发送多个服务小区的P-CSI,或者,同时发送多个服务小区的HARQ-ACK和多个服务小区的Ρ-CSI。根据本发明提供的技术方案,实现了多个下行分量载波的应答消息和多个服务小区的信道状态信息同时发送。

Description

信息的处理方法及装
技术领域 本发明涉及通信领域, 具体而言, 涉及一种信息的处理方法及装置。 背景技术 数字通信系统的飞速发展对数据通信的可靠性提出了更高的要求, 然而, 在恶劣 的信道环境下, 尤其是在高数据速率或者高速移动环境中, 多径干扰以及多普勒频移 等现象严重影响着系统的性能。 因此, 有效的差错控制技术, 尤其是混合自动请求重 传 (Hybrid Automatic Repeat Request, 简称为 HARQ) 技术就成为通信领域致力研究 的热点。 在长期演进 (Long Term Evolution, 简称为 LTE) 系统的下行 HARQ中, 物理下 行共享信道 (Physical Downlink Shared Channel, 简称为 PDSCH) 的 HARQ应答消息 (即 HARQ Acknowledgement, 简称为 HARQ-ACK)如果遇到终端(User Equipment, 简称为 UE)没有物理上行共享信道(Physical Uplink Shared Channel, 简称为 PUSCH) 时, 是在物理上行控制信道 (Physical Uplink Control Channel, 简称为 PUCCH) 上发 送的,其中, HARQ-ACK可以包括以下三种状态,分别为:正确应答(Acknowledgement, 简称为 ACK)、错误应答(Negative Acknowledgement)以及不连续发送(Discontinuous Transmission, 简称为 DTX )。 当前 LTE系统中, 物理上行控制信道能够支持多种上行控制信令, 可以包括上述 HARQ-ACK, 周期信道状态信息 (Periodic Channel State Information, 简称为 P-CSI), 其中, 可以包括: 信道质量指示符 (Channel Quality Indicator, 简称为 CQI), 预编码 矩阵指示符 (Precoding Matrix Indicator, 简称为 PMI) 和秩指示符 (Rank Indicator, 简称为 RI), 调度请求 (Scheduling Request, 简称为 SR) 以及它们同时发送的组合。
LTE定义了多种 PUCCH格式 (format), 可以包括: PUCCH format 1/la/lb (其 信道结构示意图如图 1所示) 和 format 2/2a/2b (其信道结构示意图如图 2所示), 其 中, format 1 用于发送 UE 的调度请求, format la和 lb 分别用于反馈 1 比特的 HARQ-ACK和 2比特的 HARQ-ACK, format 2用于发送下行的 P-CSI, format 2a用于 发送 P-CSI禾 B 1 比特的 HARQ-ACK, format 2b用于发送 P-CSI信息和 2 比特的
Figure imgf000003_0001
在 LTE系统中的频分双工系统 (FDD) 中, 由于上下行子帧是一一对应的, 所以 当 PDSCH仅包括一个传输块时, UE要反馈 1比特的 HARQ-ACK; 当 PDSCH包括两 个传输块时, UE要反馈 2比特的 HARQ-ACK。 因此, 在 LTE FDD系统中, UE需要 同时发送 SR和 HARQ-ACK的情况下, 如果需要发送 negative SR (表示没有调度请 求) 时, UE 在分配给它的 HARQ-ACK PUCCH 资源上发送 1 比特或者 2 比特 HARQ-ACK; 而如果需要发送 positive SR (表示进行调度请求) 时, UE在分配给它 的 SR PUCCH 资源上发送 1 比特或者 2 比特 HARQ-ACK; 当 UE 需要同时发送 HARQ-ACK和 CSI 信息时, 如果子帧是正常循环前缀, 将 1 比特或者 2 比特的 HARQ-ACK调制到每个时隙的第二个参考信号上, 采用 PUCCH format 2a/2b发送, 如果子帧是扩展循环前缀, 可以将 1 比特或 2比特 HARQ-ACK和 P-CSI信息联合编 码, 采用 format 2传输发送。 而在 LTE的时分双工 (TDD) 系统中, 由于上下行子帧不再是一一对应的, 根据 不同的上下行子帧配置,一个上行子帧有时需要反馈多个下行子帧的 HARQ-ACK,此 处将一个上行子帧对应的多个下行子帧称为一个绑定窗 (bundling window, ), 其中, 可以将绑定窗的大小定义为 M。除此之外,在 LTE系统中,还定义了两种 HARQ-ACK 反馈模式: 其中一种为绑定模式 (bundling), 该方法的核心思想在于将需要在该上行 子帧反馈的各个下行子帧对应的传输块的 HARQ-ACK进行逻辑与运算, 如果一个下 行子帧有 2个码字流, UE要反馈 2比特的 HARQ-ACK;如果各个子帧只有一个字流, UE要反馈 1 比特的 HARQ-ACK; 另一种为复用模式 (multiplexing), 也可以称为信 道选择( multiplexing with channel selection), 该模式的核心思想是利用不同的 PUCCH 信道和该信道上不同的调制符号来表示需要在该上行子帧反馈的下行子帧的不同反馈 状态, 如果在下行子帧上有多个字流, 那么可以先将下行子帧的多个字流反馈的 HARQ-ACK进行空间逻辑与 (也成为 spatial bundling)后再进行信道选择, 然后使用 PUCCH format lb发送。即通过 PUCCH format lb所承载的 2比特信息 b(0)和 b(l)以及 PUCCH信道的索引, 来表示经过逻辑与操作后的 HARQ-ACK。 因此, 在 TDD系统中, 当 HARQ-ACK需要与 SR或 P-CSI同时发送时, 其发送 方法与前面所述的 FDD系统中的有所不同。 当 HARQ-ACK需要与 SR或 CQI同时发 送时, UE将绑定窗中的多个 HARQ-ACK先进行空间绑定, 得到每个下行子帧对应的 HARQ-ACK, 然后根据绑定窗中经过了空间绑定后为 ACK的个数, 得到相应的两比 特 6(0), 6(1),然后通过 SR所对应的 PUCCH将 6(0), 6(1)发送出去(当同时有 Positive SR 发送时), 或者将调制在 PUCCH format 2b的第二个参考信号上, 或者将 6(0),6(1)与 P-CSI 联合编码后在 PUCCH format 2 上发送 (后面两种情况对应于 P-CSI 与 HARQ-ACK同时发送的场景), 其中, 在绑定窗中经过空间绑定处理后的 ACK的个 数与 6(0),6(1)有预设的映射关系, 如表 1所示: 表 1 : 绑定窗中经过了空间绑定后为 ACK的个数与 6(0),6(1)的映射关系
Figure imgf000005_0001
在高级国际移云力通信 (International Mobile Telecommunications-Advanced , 简称为 IMT-Advanced) 系统中, 能够实现数据的高速传输, 并具有较大的系统容量, 在低速 移动、热点覆盖的情况下, IMT-Advanced系统的峰值速率可以达到 lGbit/s, 在高速移 动、 广域覆盖的情况下, IMT-Advanced系统的峰值速率可以达到 100Mbit/s。 为了满足高级国际电信耳关盟 ( International Telecommunication Union- Advanced , 简 称为 ITU-Advanced) 的要求, 作为 LTE 的演进标准的高级长期演进 (Long Term Evolution Advanced, 简称为 LTE-A ) 系统需要支持更大的系统带宽 (最高可达 100MHz), 并需要后向兼容 LTE现有的标准。 在现有的 LTE系统的基础上, 可以将 LTE 系统的带宽进行合并来获得更大的带宽, 此种技术被称为载波聚合 (Carrier Aggregation, 简称为 CA), 该技术能够提高 IMT-Advance系统的频谱利用率、 缓解频 谱资源紧缺, 进而优化频谱资源的利用。 由此载波聚合的 LTE系统带宽可以看作分量 载波 (Component Carrier), 每个分量载波也可以称为一个服务小区 (serving cell), 即 一个频谱可以由 n个分量载频(Cell)聚合而成。对于一个 UE的资源是由频域的多个 服务小区构成的, 其中, 一个小区称为主服务小区 (Primary serving cell), 其余小区 称为辅服务小区 (Secondary serving cell)。 在引入载波聚合技术之后, 当没有采用空 分复用时, 一个下行分量载波对应一个 PDSCH传输块以及一个 HARQ进程, 即 UE 需要为每个分量载波的一个 PDSCH传输块反馈 1比特的 HARQ-ACK。而当采用空分 复用时, LTE-A当前规定, 最多支持 2个传输块。 从而在此种情况下, UE需要为每 个下行分量载波的 2个 PDSCH传输块反馈 2比特的 HARQ-ACK。 在采用了频谱聚合技术后的 LTE-A系统中, 上行带宽和下行带宽就可以包括多个 服务小区。 当基站在多个下行分量载波上都有调度给某 UE的 PDSCH时, 且当该 UE 在当前子帧没有 PUSCH要发送时,终端需要在 PUCCH上反馈这多个下行分量载波的 PDSCH 传输的 HARQ-ACK。 相关技术中规定, 所有上行控制信息, 包括: SR, HARQ-ACK以及 P-CSI都是在主服务小区上发送的。 在 LTE-A 系统中, 对于 SR信息, UE 采用 PUCCH format 1 来发送, 对于 HARQ-ACK, 除了可以使用在 LTE中已经定义的 PUCCH format la和 lb, 信道选择 (multiplexing with channel selection)夕卜, LTE-A增加了一种新的基于 DFT-s-OFDM的 格式, 用于发送更大负载的 HARQ-ACK, 其信道结构示意图如图 3所示。 为了便于描 述,可以将这种结构称为 PUCCH Format 3,其中, UE采用何种方式来反馈 HARQ-ACK 可以由高层配置。对于 P-CSI,虽然 UE有可能需要在一个上行子帧上发送多个下行服 务小区的 P-CSI, 但是考虑到在 LTE-A的初始版本 (后面称为 Rel-10) 主要考虑的载 波聚合场景是 2个服务小区的聚合, 因此, eNB只要通过合理的配置, 就可以避免 UE 在同一个子帧上发送多个服务小区的 P-CSI。 即在 Rel-10中, 不支持多个服务小区的 P-CSI同时发送。 当一个子帧需要在多个上行子帧上发送时, Rel-10对 P-CSI定义了 相应的优先级原则, 从而使得 UE 可以根据该优先级原则, 选择一个优先级最高的 P-CSI发送。 在 Rel-10中, 具体定义了以下几种 P-CSI报告类型: 类型 1 : 用于支持 UE选择的子带 CQI反馈;。 类型 la: 用于支持子带 CQI和第二 PMI的反馈; 类型 2、 类型 2b和类型 2c: 用于支持宽带 CQI和 PMI反馈; 类型 2a: 用于支持宽带 PMI反馈; 类型 3: 用于支持 RI反馈 类型 4: 用于支持宽带 CQI反馈; 类型 5: 用于支持 RI和宽带 PMI反馈; 类型 6: 用于支持 RI和 ΡΉ反馈。 上述多种 P-CSI报告类型的优先级如下: 对于同一个服务小区, 报告类型 3,5,6的优先级要高于报告类型 1, la, 2, 2a,2b, 2c, 或 4; 而对于不同的服务小区, 一个服务小区的报告类型 3,5,6,2a的优先级要高于另一 个服务小区的报告类型 1, la, 2, 2b, 2c,或 4; 对于具有相同优先级的报告类型, 其所对应的服务小区的索引值最小的 P-CSI报 告类型的优先级最高。 另外, 在 Rel-10 系统中, UE 也不支持在一个上行子帧上发送多个服务小区的 HARQ-ACK与 P-CSI信息, 具体理由同上, 此处不再赘述。 由于 Rel-10的典型载波 聚合的场景是针对两个服务小区的, 因此, 通过合理的调度, 可以避免 UE同时发送 多个服务小区的 HARQ-ACK与 P-CSI, 如果发生了碰撞, 根据 Rel-10的相关规定, 丢掉 P-CSI, 而只发送 HARQ-ACK。 但是在 LTE-A的后续版本 (后面称为 Rel-ll ), 参与聚合的服务小区数不再限制 在 2, 因此, 多个服务小区的 P-CSI碰撞以及多个服务小区的 HARQ-ACK与 P-CSI 碰撞的发生概率将会愈发增高。 如果仍然采用 Rel-10 规定的策略, 丢弃优先级低的 P-CSI或者直接将全部服务小区的 P-CSI丢弃, 由此会导致由于 CSI信息反馈不及时, 从而影响下行的调度以及下行的吞吐量性能。 因此, 在 Rel-11中, 提出了两个上行控 制信令增强的研究方向: 是否支持多个服务小区的 P-CSI在一个子帧上同时发送; 是 否支持多个服务小区的 HARQ-ACK与 P-CSI同时发送。 同时, 在 Rel-11里, 弓 |入了 多点协作传输(Coordinated Multi-Point Transmission and Reception, 简称为 CoMP)技 术, 在引入了 CoMP的系统中, 需要发送的 P-CSI也会相应增加, 每个信道状态信息 参考信号 (Channel State Information-Reference Signal, 简称 CSI-RS) 资源都对应一个 P-CSI。 在后面无特殊说明的场景下, 多个服务小区的 P-CSI, 既包括载波聚合系统中 的多个服务小区的 P-CSI,也包含 CoMP系统中的一个服务小区下的多个 CSI-RS资源 对应的多个 P-CSI。 目前, 关于上行控制信令增强, 已经得出的结论具体如下: 在 Rel-11中, 支持多个服务小区的 P-CSI在一个子帧上同时发送。 对于一个支持 PUCCH format 3的 UE而言, UE可以在 PUCCH format 3上同时发送多个服务小区的 HARQ-ACK, 1比特的 SR以及一个服务小区的 P-CSI。对于如何支持多个服务小区的 P-CSI 在一个子帧上同时发送, 仅就目前获得的结论而言, 需要采用相关技术中的上 行信道格式, 但是具体采用何种信道格式, 目前尚无定论, 仅存在两种备选方案, 包 括: PUCCH format 3和 PUSCH。 如果在 Rel-11中引入 PUCCH format 3或者 PUSCH 以支持多个服务小区的 P-CSI在一个子帧上发送, 相关技术中存在的问题在于如何进 行资源指示以及如何支持多个服务小区的 HARQ-ACK和 P-CSI同时发送亟待解决。 发明内容 本发明提供了一种信息的处理方法及装置, 以至少解决相关技术中无法实现多个 服务小区的 P-CSI 的同时发送或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI同时发送的问题。 根据本发明的一个方面, 提供了一种信息的处理方法。 根据本发明的信息的处理方法包括:用户设备(UE)接收来自于基站的高层信令, 其中, 高层信令中携带有基站为 UE配置的上行信道资源, 上行信道资源用于同时发 送与 UE对应的多个服务小区的周期信道状态信息 (P-CSI), 或者, 用于同时发送与 UE对应的多个服务小区的混合自动请求重传应答消息 (HARQ-ACK) 和多个服务小 区的 P-CSI; UE在预设上行子帧根据高层信令在上行信道资源上同时发送多个服务小 区的 P-CSI, 或者, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 优选地, 上行信道资源包括以下至少之一: PUCCH format 3、 PUSCH。 优选地, 当上行信道资源为 PUCCH format 3时, UE在预设上行子帧根据高层信 令在上行信道资源上同时发送多个服务小区的 P-CSI包括: UE确定在预设上行子帧上 待发送的多个服务小区的个数; 当多个服务小区的个数小于或者等于 2个时, UE在 PUCCH format 3上同时发送每个服务小区的 P-CSI; 当多个服务小区的个数大于 2个 时, UE从多个服务小区中选取 P-CSI优先级最高的两个服务小区,并在 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI。 优选地, 当上行信道资源为 PUCCH format 3时, UE在预设上行子帧根据高层信 令在上行信道资源上同时发送多个服务小区的 P-CSI包括: UE确定在预设上行子帧上 待发送的多个服务小区的 P-CSI共同反馈的比特数;当共同反馈的比特不超过 PUCCH format 3所能携带的比特数的最大值时, UE在 PUCCH format 3上同时发送每个服务 小区的 P-CSI;在共同反馈的比特超过 PUCCH format 3所能携带的比特数的最大值时, UE从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在 PUCCH format 3 上同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共 同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 当上行信道资源为 PUCCH format 3时, UE在预设上行子帧根据高层 ί 令在上行信道资源上同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI 包括: UE确定在预设上行子帧上待发送的多个服务小区个数; 当待发送 P-CSI的服务 小区的个数为 1个时, UE在 PUCCH format 3上同时发送该服务小区的 P-CSI和多个 服务小区的 HARQ-ACK; 在待发送 P-CSI的服务小区的个数为多个时, UE从多个服 务小区中选取 P-CSI优先级最高的服务小区,并在 PUCCH format 3上同时发送选取后 的服务小区的 P-CSI和多个服务小区的 HARQ-ACK。 优选地, 上述方法还包括: 当上行信道资源为 PUSCH时, UE在预设上行子帧根 据高层信令在 PUSCH上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服务小 区的 HARQ-ACK和多个服务小区的 P-CSI。 优选地, 当 UE在预设上行子帧上同时发送多个服务小区的 P-CSI或者多个服务 小区的 HARQ-ACK和多个服务小区的 P-CSI时, UE在预设上行子帧根据高层信令在 上行信道资源上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 根据本发明的另一方面, 提供了另一种信息的处理方法。 根据本发明的信息的处理方法包括:用户设备(UE)接收来自于基站的高层信令, 其中, 高层信令中携带有基站对与 UE对应的多个服务小区进行分组的信息, 并且基 站为进行分组处理后的每组服务小区分别配置上行信道资源; UE在预设上行子帧根据 高层信令在上行信道资源上发送任一个服务小区的周期信道状态信息(P-CSI), 或者, 同时发送的多个服务小区中每个服务小区的 P-CSI; 或者, UE在预设上行子帧上根据 高层信令在上行信道资源上, 或者, 在多个服务小区的混合自动请求重传应答消息 ( HARQ-ACK ) 发送时所使用的上行信道资源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 优选地, 上行信道资源包括以下至少之一: PUCCH format 2、 PUCCH format 3 PUSCH。 优选地, UE在预设上行子帧根据高层信令在上行信道资源上同时发送多个服务小 区的 P-CSI包括: UE判断待发送的多个 P-CSI所对应的服务小区是否位于同一分组; 如果是, UE根据高层信令确定该组服务小区所使用的上行信道资源的配置信息,并在 确定后的上行信道资源上发送多个服务小区的 P-CSI; 如果否, UE根据高层信令分别 确定各组服务小区所使用的上行信道资源, 并在确定后的各组服务小区所使用的上行 信道资源中进行选择, 采用选择后的上行信道资源发送多个服务小区的 P-CSI。 优选地, UE根据高层信令确定该组服务小区所使用的上行信道资源的配置信息, 并在确定后的上行信道资源上发送多个服务小区的 P-CSI包括以下之一: 当位于同一 分组的服务小区的个数为 1个, 上行信道资源为 PUCCH format 2或 PUCCH format 3 或 PUSCH时, UE在 PUCCH format 2或 PUCCH format 3或 PUSCH上发送服务小区 的 P-CSI; 当位于同一分组的服务小区的个数为 2个, 上行信道资源为 PUCCH format 3或 PUSCH时, UE在 PUCCH format 3或 PUSCH上同时发送分组中每个服务小区的 P-CSI; 当位于同一分组的服务小区的个数大于 2个, 上行信道资源为 PUSCH时, UE 在 PUSCH上同时发送分组中的每个服务小区的 P-CSI;当位于同一分组的服务小区的 个数大于 2个,上行信道资源为 PUCCH format 3时, UE从该组服务小区中选取 P-CSI 优先级最高的两个服务小区,并在 PUCCH format 3上同时发送选取后的每个服务小区 的 P-CSI;当位于同一分组的服务小区的个数大于 2个,上行信道资源为 PUCCH format 3时, 如果多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带 比特数的最大值, 则 UE在 PUCCH format 3上发送多个服务小区的 P-CSI, 否贝 lj, UE 从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在 PUCCH format 3上 同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同 反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, UE根据高层信令分别确定各组服务小区所使用的上行信道资源,并在确 定后的各组服务小区所使用的上行信道资源中进行选择, 采用选择后的上行信道资源 发送多个服务小区的 P-CSI包括以下之一: 当各组服务小区中仅有一组服务小区所使 用的上行信道资源为 PUSCH时, UE在 PUSCH上同时发送多个服务小区的 P-CSI; 当各组服务小区中有多组服务小区所使用的上行信道资源为 PUSCH时, UE从多组服 务小区中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上 同时发送多个服务小区的 P-CSI; 当各组服务小区中有多组服务小区所使用的上行信 道资源为 PUCCH format 3时, UE从多组服务小区中选取 P-CSI优先级最高的服务小 区所使用的 PUCCH format 3, 以及从多个服务小区中选取 P-CSI优先级最高的两个服 务小区, 并在选取的 PUCCH format 3上同时选取的每个服务小区的 P-CSI; 当各组服 务小区中有多组服务小区所使用的上行信道资源为 PUCCH format 3时, UE从多组服 务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3, 如果多个服务 小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带比特数的最大值,则 UE在选取的 PUCCH format 3上发送多个服务小区的 P-CSI, 否贝 lj, UE从多个服务小 区中选取 P-CSI优先级最高的 N个服务小区, 并在选取的 PUCCH format 3上同时发 送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同反馈的 比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, UE在预设上行子帧上根据高层信令在上行信道资源上, 或者, 在多个服 务小区的 HARQ-ACK发送时所使用的上行信道资源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI包括以下之一:当多个服务小区所在的分组中仅 有一组服务小区的 P-CSI所使用的上行信道资源为 PUSCH时, UE在 PUSCH上同时 发送多个服务小区的 P-CSI以及多个服务小区的 HARQ-ACK;当多个服务小区所在的 分组中有多组服务小区的 P-CSI所使用的上行信道资源为 PUSCH时, UE从多组服务 小区中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同 时发送多个服务小区中的每个服务小区的 P-CSI以及多个服务小区的 HARQ-ACK;当 多个服务小区的 P-CSI发送时所使用的上行信道资源没有配置为 PUSCH且的多个服 务小区的的 HARQ-ACK配置为使用 PUCCH format 3发送时, UE从多个服务小区中 选取 P-CSI优先级最高的服务小区, 在多个服务小区的 HARQ-ACK发送时所使用的 的 PUCCH format 3 资源上同时发送选取服务小区的 P-CSI 以及多个服务小区的 HARQ-ACK;当多个服务小区的 P-CSI发送时所使用的上行信道资源为 PUCCH format 2,且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, UE对多个服务小区的 HARQ-ACK进行空间绑定处理,并判断经过空间绑定处理后的 HARQ-ACK是否超过 2比特信息, 如果未超过, 则 UE从多个服务小区中选取 P-CSI 优先级最高的服务小区所使用的 PUCCH format 2, 并在选取的 PUCCH format 2上同 时发送选取的服务小区的 P-CSI 以及的经过空间绑定后的多个服务小区的 HARQ-ACK; 如果超过, 则 UE使用 PUCCH format lb联合信道选择的方式发送多个 服务小区的 HARQ-ACK;当多个服务小区中有多个服务小区的 P-CSI所使用的上行信 道资源为 PUCCH format 3且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, UE从多个服务小区中选取 P-CSI优先级最高的服务小区所 使用的 PUCCH format 3, 并在选取的 PUCCH format 3上同时发送与选取的 PUCCH format 3对应的服务小区的 P-CSI和多个服务小区的 HARQ-ACK。 优选地, 当 UE在预设上行子帧上发送任一个服务小区的 P-CSI或者同时发送多 个服务小区的 P-CSI时, UE在预设上行子帧根据高层信令在上行信道资源上发送任一 个服务小区的 P-CSI, 或者, 同时发送的多个服务小区中每个服务小区的 P-CSI。 优选地, 当 UE 在预设上行子帧上同时发送与 UE 对应的多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI时, UE在预设上行子帧上根据高层信令在上行 信道资源上, 或者, 在多个服务小区的 HARQ-ACK发送时所使用的上行信道资源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 根据本发明的又一方面, 提供了一种信息的处理装置。 根据本发明的信息的处理装置包括: 第一接收模块, 设置为接收来自于基站的高 层信令, 其中, 高层信令中携带有基站为用户设备 (UE)配置的上行信道资源, 上行 信道资源用于同时发送与 UE对应的多个服务小区的周期信道状态信息 (P-CSI), 或 者, 设置为同时发送与 UE 对应的多个服务小区的混合自动请求重传应答消息 (HARQ-ACK) 和多个服务小区的 P-CSI; 第一发送模块, 设置为在预设上行子帧根 据高层信令在上行信道资源上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个 服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 优选地, 上行信道资源包括以下至少之一: PUCCH format 3、 PUSCH。 优选地, 第一发送模块包括: 第一确定单元, 设置为当上行信道资源为 PUCCH format 3 时, 确定在预设上行子帧上待发送的多个服务小区的个数; 第一发送单元, 用于在多个服务小区的个数小于或者等于 2个时,在 PUCCH format 3上同时发送每个 服务小区的 P-CSI; 第二发送单元, 设置为在多个服务小区的个数大于 2个时, 从多 个服务小区中选取 P-CSI优先级最高的两个服务小区,并在 PUCCH format 3上同时发 送选取后的每个服务小区的 P-CSI。 优选地, 第一发送模块包括: 第二确定单元, 设置为当上行信道资源为 PUCCH format 3时, 确定在预设上行子帧上待发送的多个服务小区的 P-CSI共同反馈的比特 数;第三发送单元,设置为在多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值时, 在 PUCCH format 3上同时发送每个服务小区 的 P-CSI; 第四发送单元, 设置为在多个服务小区的 P-CSI 共同反馈的比特数超过 PUCCH format 3所能携带的比特数的最大值时, 从多个服务小区中选取 P-CSI优先级 最高的 N个服务小区, 并在 PUCCH format 3 上同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 第一发送模块包括: 第三确定单元, 设置为当上行信道资源为 PUCCH format 3 时, 确定在预设上行子帧上待发送的多个服务小区个数; 第五发送单元, 设 置为在待发送 P-CSI的服务小区的个数为 1个时,在 PUCCH format 3上同时发送该服 务小区的 P-CSI和多个服务小区的 HARQ-ACK;第六发送单元,设置为在待发送 P-CSI 的服务小区的个数为多个时, 从多个服务小区中选取 P-CSI优先级最高的服务小区, 并在 PUCCH format 3 上同时发送选取后的服务小区的 P-CSI 和多个服务小区的 HARQ-ACK。 优选地, 第一发送模块包括: 第七发送单元, 设置为当上行信道资源为 PUSCH 时,在预设上行子帧根据高层信令在 PUSCH上同时发送与 UE对应的多个服务小区的 P-CSI, 或者, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 优选地,第一发送模块,设置为在预设上行子帧上同时发送多个服务小区的 P-CSI 或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI时, 在预设上行子帧根据 高层信令在上行信道资源上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服 务小区的 HARQ-ACK和多个服务小区的 P-CSI。 根据本发明的再一方面, 提供了另一种信息的处理装置。 根据本发明的信息的处理装置包括: 第二接收模块, 设置为接收来自于基站的高 层信令, 其中, 高层信令中携带有基站对与用户设备 (UE)对应的多个服务小区进行 分组的信息, 并且基站为进行分组处理后的每组服务小区分别配置上行信道资源; 第 二发送模块, 设置为在预设上行子帧根据高层信令在上行信道资源上发送任一个服务 小区的周期信道状态信息 P-CSI, 或者, 同时发送的多个服务小区中每个服务小区的 P-CSI; 或者, 在预设上行子帧上根据高层信令在上行信道资源上, 或者, 在多个服务 小区的混合自动请求重传应答消息 HARQ-ACK发送时所使用的上行信道资源上, 同 时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 优选地, 上行信道资源包括以下至少之一: PUCCH format 2、 PUCCH format 3 PUSCH 优选地, 第二发送模块包括: 判断单元, 设置为判断待发送的多个 P-CSI所对应 的服务小区是否位于同一分组; 第一确定单元, 设置为在判断单元输出为是时, 根据 高层信令确定该组服务小区所使用的上行信道资源的配置信息, 并在确定后的上行信 道资源上发送多个服务小区的 P-CSI; 第二确定单元, 设置为在判断单元输出为否时, 根据高层信令分别确定各组服务小区所使用的上行信道资源的配置信息, 并在确定后 的各组服务小区所使用的上行信道资源中进行选择, 采用选择后的上行信道资源发送 多个服务小区中的每个服务小区的 P-CSI。 优选地, 第一确定单元包括: 第一发送单元, 设置为当位于同一分组的服务小区 的个数为 1个, 上行信道资源为 PUCCH format 2或 PUCCH format 3或 PUSCH时, 在 PUCCH format 2或 PUCCH format 3或 PUSCH上同时发送服务小区的 P-CSI;第二 发送单元,设置为当位于同一分组的服务小区的个数为 2个,上行信道资源为 PUCCH format 3或 PUSCH时, 在 PUCCH format 3或 PUSCH上同时发送分组中服务小区中 的每个服务小区的 P-CSI; 第三发送单元, 设置为当位于同一分组的服务小区的个数 大于 2个, 上行信道资源为 PUSCH时, 在 PUSCH上同时发送分组中的每个服务小区 的 P-CSI; 第四发送单元, 设置为当位于同一分组的服务小区的个数大于 2个, 上行 信道资源为 PUCCH format 3时,从该组服务小区中选取 P-CSI优先级最高的两个服务 小区, 并在 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI; 第五发送单 元, 设置为当位于同一分组的服务小区的个数大于 2 个, 上行信道资源为 PUCCH format 3时, 如果多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所 能携带比特数的最大值, 则在 PUCCH format 3上发送多个服务小区的 P-CSI, 否则, 从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在 PUCCH format 3上 同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同 反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 第二确定单元包括: 第六发送单元, 设置为当各组服务小区中仅有一组 服务小区所使用的上行信道资源为 PUSCH时,在 PUSCH上同时发送多个服务小区的 P-CSI; 第七发送单元, 设置为当各组服务小区中有多组服务小区所使用的上行信道资 源为 PUSCH 时, 从多组服务小区中选取 P-CSI 优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送多个服务小区的 P-CSI; 第八发送单元, 设 置为当各组服务小区中有多组服务小区所使用的上行信道资源为 PUCCH format 3时, 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3以及从 多个服务小区中选取 P-CSI优先级最高的两个服务小区, 并在选取的 PUCCH format 3 上同时选取的每个服务小区的 P-CSI; 第九发送单元, 设置为当各组服务小区中有多 组服务小区所使用的上行信道资源为 PUCCH format 3 时, 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3, 如果多个服务小区的 P-CSI 共同反馈的比特数不超过 PUCCH format 3 所能携带比特数的最大值, 则在选取的 PUCCH format 3上发送多个服务小区的 P-CSI, 否则, 从多个服务小区中选取 P-CSI 优先级最高的 N个服务小区, 并在选取的 PUCCH format 3上同时发送选取后的每个 服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI 共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 第二发送模块包括: 第十发送单元, 设置为当多个服务小区所在的分组 中仅有一组服务小区的 P-CSI所使用的上行信道资源为 PUSCH时,在 PUSCH上同时 发送多个服务小区中每个服务小区的 P-CSI以及多个服务小区的 HARQ-ACK;第十一 发送单元, 设置为当多个服务小区所在的分组有多组服务小区的 P-CSI所使用的上行 信道资源为 PUSCH时, 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用 的 PUSCH, 并在选取的 PUSCH上同时发送多个服务小区中的每个服务小区的 P-CSI 以及多个服务小区的 HARQ-ACK;第十二发送单元,设置为多个服务小区的每个服务 小区的 P-CSI发送时所使用的上行信道资源没有配置为 PUSCH且的多个服务小区的 的 HARQ-ACK配置为使用 PUCCH format 3发送时, 从多个服务小区中选取 P-CSI优 先级最高的服务小区所使用的 PUCCH format 3, 并多个服务小区的 HARQ-ACK发送 时所使用的的 PUCCH format 3资源上同时发送选取服务小区的 P-CSI以及多个服务小 区的 HARQ-ACK; 第十三发送单元, 设置为当多个服务小区中中的每个服务小区的 P-CSI 发送时所使用的上行信道资源为 PUCCH format 2, 且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, 对多个服务小区的 HARQ-ACK进行空间绑定处理,并判断经过空间绑定处理后的 HARQ-ACK是否超过 2比特信息,如果未超过,则 UE从多组服务小区中选取 P-CSI优先级最高的服务小区 所使用的 PUCCH format 2, 并在选取的 PUCCH format 2上同时发送选取的服务小区 的的 P-CSI以及的经过空间绑定后的多个服务小区的 HARQ-ACK; 如果超过, 则使用 PUCCH format lb联合信道选择的方式发送多个服务小区的 HARQ-ACK; 第十四发送 单元, 设置为当多个服务小区中有多个服务小区的 P-CSI 所使用的上行信道资源为 PUCCH format 3且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信 道选择发送时,从多个服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3,并在选取的 PUCCH format 3上同时发送与选取的 PUCCH format 3对应的服 务小区的 P-CSI和多个服务小区的 HARQ-ACK。 优选地, 第二发送模块, 设置为在预设上行子帧上发送任一个服务小区的 P-CSI 或者同时发送多个服务小区的 P-CSI时, 在预设上行子帧根据高层信令在上行信道资 源上发送任一个服务小区的周期信道状态信息 P-CSI, 或者, 同时发送的多个服务小 区中每个服务小区的 P-CSI。 优选地, 第二发送模块, 设置为在预设上行子帧上同时发送与 UE对应的多个服 务小区的 HARQ-ACK和多个服务小区的 P-CSI时, UE在预设上行子帧上根据高层信 令在上行信道资源上, 或者, 在多个服务小区的 HARQ-ACK发送时所使用的上行信 道资源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 通过本发明,采用基站为 UE配置上行信道资源信息,并通过高层信令发送至 UE, 其中, 上行信道资源用于同时发送与 UE 对应的多个服务小区的周期信道状态信息 P-CSI, 或者, 用于同时发送与 UE对应的多个服务小区的混合自动请求重传应答消息 HARQ-ACK和多个服务小区的 P-CSI; UE在预设上行子帧根据高层信令在上行信道 资源上同时发送与 UE对应的多个服务小区中每个服务小区的 P-CSI,或者, 同时发送 与 UE对应的多个服务小区中每个服务小区的 HARQ-ACK和 P-CSI,解决了相关技术 中无法实现多个服务小区的 P-CSI的同时发送或者多个服务小区的 HARQ-ACK和多 个服务小区的 P-CSI同时发送的问题, 进而实现了多个下行分量载波的应答消息和多 个服务小区的信道状态信息同时发送。 附图说明 此处所说明的附图用来提供对本发明的进一步理解, 构成本申请的一部分, 本发 明的示意性实施例及其说明用于解释本发明, 并不构成对本发明的不当限定。 在附图 中- 图 1 是根据相关技术的 LTE 系统中子帧采用常规循环前缀时, PUCCH 格式 1/la/lb的示意图; 图 2 是根据相关技术的 LTE 系统中子帧采用常规循环前缀时, PUCCH 格式 2/2a/2b的示意图; 图 3是根据相关技术的 LTE系统中子帧采用常规循环前缀时, PUCCH格式 3的 示意图; 图 4是根据本发明实施例的一种信息的处理方法的流程图; 图 5是根据本发明优选实施例一的一种信息的处理方法的流程图; 图 6是根据本发明优选实施例二的一种信息的处理方法的流程图; 图 7是根据本发明优选实施例三的一种信息的处理方法的流程图; 图 8是根据本发明优选实施例四的一种信息的处理方法的流程图; 图 9是根据本发明实施例的另一种信息的处理方法的流程图; 图 10是根据本发明优选实施例一的另一种信息的处理方法的流程图 图 11是根据本发明优选实施例二的另一种 ίΐ 息的处理方法的流程图; 图 12是根据本发明优选实施例三的另一种 f 息的处理方法的流程图; 图 13是根据本发明优选实施例四的另一种 f 息的处理方法的流程图; 图 14是根据本发明优选实施例五的另一种 f 息的处理方法的流程图; 图 15是根据本发明优选实施例六的另一种信息的处理方法的流程图 图 16是根据本发明优选实施例七的另一种信息的处理方法的流程图 图 17是根据本发明优选实施例八的另一种 f 息的处理方法的流程图; 图 18是根据本发明优选实施例九的另一种 f 息的处理方法的流程图; 图 19是根据本发明优选实施例十的另一种 f 息的处理方法的流程图; 图 20是根据本发明实施例的一种信息的处理装置的结构框图; 图 21是根据本发明优选实施例一的一种信息的处理装置的结构框图; 图 22是根据本发明优选实施例二的一种信息的处理装置的结构框图; 图 23是根据本发明优选实施例三的一种信息的处理装置的结构框图; 图 24是根据本发明优选实施例四的一种信息的处理装置的结构框图; 图 25是根据本发明实施例的另一种信息的处理装置的结构框图; 图 26是根据本发明优选实施例一的另一种信息的处理装置的结构框图; 以及 图 27是根据本发明优选实施例二的另一种信息的处理装置的结构框图。 具体实施方式 下文中将参考附图并结合实施例来详细说明本发明。 需要说明的是, 在不冲突的 情况下, 本申请中的实施例及实施例中的特征可以相互组合。 图 4是根据本发明实施例的一种信息的处理方法的流程图。 如图 4所示, 该方法 可以包括以下处理步骤: 步骤 S402: UE接收来自于基站的高层信令, 其中, 高层信令中携带有基站为 UE 配置的上行信道资源, 上行信道资源用于同时发送与 UE 对应的多个服务小区的 P-CSI, 或者, 用于同时发送与 UE对应的多个服务小区的 HARQ-ACK和多个服务小 区的 P-CSI; 步骤 S404: UE在预设上行子帧根据高层信令在上行信道资源上同时发送多个服 务小区的 P-CSI, 或者, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 相关技术中, 无法实现多个服务小区的 P-CSI 的同时发送或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI同时发送。 采用如图 4所示的方法, 基站为 UE 配置上行信道资源信息, 并通过高层信令发送至 UE, 其中, 上行信道资源用于同时发 送与 UE对应的多个服务小区的周期信道状态信息 P-CSI, 或者, 用于同时发送与 UE 对应的多个服务小区的混合自动请求重传应答消息 HARQ-ACK和多个服务小区的 P-CSI; UE在预设上行子帧根据高层信令在上行信道资源上同时发送与 UE对应的多 个服务小区中每个服务小区的 P-CSI,或者, 同时发送与 UE对应的多个服务小区中每 个服务小区的 HARQ-ACK和 P-CSI, 解决了相关技术中无法实现多个服务小区的 P-CSI的同时发送或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI同时发送 的问题, 进而实现了多个服务小区的 HARQ-ACK多个服务小区的 P-CSI同时发送。 需要说明的是, 多个服务小区的 P-CSI, 除了可以包括多个服务小区的 P-CSI夕卜, 还可以包括一个服务小区下与多个 CSI-RS资源对应的多个 P-CSI。 在优选实施例中, 每个服务小区的 P-CSI报告通过高层信令独立配置。 此外, 高 层信令还额外配置一个 PUCCH format 3资源或者一个 PUSCH资源, 用于在多个服务 小区的 P-CSI发生碰撞时的同时发送, 或者, 多个服务小区的 HARQ-ACK与 P-CSI 发生碰撞时的同时发送。 在优选实施过程中, 每个服务小区的 P-CSI报告通过高层独立配置, 可以采用与 Rel- 10协议中已有的相同方式进行配置, 此处不再赘述。 在优选实施过程中, 上行信道资源可以包括但不限于以下至少之一: PUCCH format 3、 PUSCH。 优选地, 当上行信道资源为 PUCCH format 3时, 在步骤 S404中, UE在预设上 行子帧根据高层信令在上行信道资源上同时发送多个服务小区的 P-CSI可以包括以下 步骤: 步骤 SI : UE确定在预设上行子帧上待发送的多个服务小区的个数; 步骤 S2: 当多个服务小区的个数小于或者等于 2个时, UE在 PUCCH format 3上 同时发送每个服务小区的 P-CSI; 步骤 S3: 当多个服务小区的个数大于 2个时, UE从多个服务小区中选取 P-CSI 优先级最高的两个服务小区,并在 PUCCH format 3上同时发送选取后的每个服务小区 的 P-CSI。 在优选实施例中, 可以对多个服务小区的 P-CSI优先级进行排序, 选取排在前两 位的服务小区, 或者, P-CSI优先级最高的服务小区有两个, 则选取这两个服务小区。 优选地, 当上行信道资源为 PUCCH format 3时, 在步骤 S404中, UE在预设上 行子帧根据高层信令在上行信道资源上同时发送多个服务小区的 P-CSI可以包括以下 步骤: 步骤 S4: UE确定在预设上行子帧上待发送的多个服务小区的 P-CSI共同反馈的 比特数; 步骤 S5: 当共同反馈的比特不超过 PUCCH format 3所能携带的比特数的最大值 时, UE在 PUCCH format 3上同时发送每个服务小区的 P-CSI; 步骤 S6:在共同反馈的比特超过 PUCCH format 3所能携带的比特数的最大值时,
UE从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在 PUCCH format 3 上同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共 同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 在优选实施例中, 当通过高层信令额外配置的上行信道资源为 PUCCH format 3 时, 最多只能支持 22比特信息的反馈, 当多个服务小区的 P-CSI总的比特数超过 22 时, 按照 Rel-10规定的 P-CSI报告的优先级, 丢弃其他优先级低的 P-CSI而使保留下 来的 N个服务小区的 P-CSI的总的比特数不超过 22, 然后在 PUCCH format 3资源上 进行发送。 或者, N为预定义的值, 例如: N取 2; 或者, 根据 P-CSI的报告类型, 确定 N的取值, 例如: 对于多个服务小区的 P-CSI的报告类型仅包括 3,5,6,2a时, N 可以取 3,4,5, 而在其他情况下, N可以取 2。 优选地, 当上行信道资源为 PUCCH format 3时, 在步骤 S404中, UE在预设上 行子帧根据高层信令在上行信道资源上同时发送多个服务小区的 HARQ-ACK和多个 服务小区的 P-CSI可以包括以下处理: 步骤 S7: UE确定在预设上行子帧上待发送的多个服务小区个数; 步骤 S8: 当待发送 P-CSI的服务小区的个数为 1个时, UE在 PUCCH format 3上 同时发送该服务小区的 P-CSI和多个服务小区的 HARQ-ACK; 步骤 S9: 在待发送 P-CSI的服务小区的个数为多个时, UE从多个服务小区中选 取 P-CSI优先级最高的服务小区,并在 PUCCH format 3上同时发送选取后的服务小区 的 P-CSI和多个服务小区的 HARQ-ACK。 在优选实施例中, 当通过高层信令额外配置的资源为 PUCCH format 3时,最多只 能支持 1个服务小区的 P-CSI与多个服务小区的 HARQ-ACK发生碰撞时的同时发送, 当超过 1个服务小区的 P-CSI与多个服务小区的 HARQ-ACK发生碰撞时,按照 Rel-10 规定的 P-CSI报告的优先级, 丢弃其他优先级低的 P-CSI而保留 1 个优先级最高的 P-CSI报告, 然后与多个服务小区的 HARQ-ACK在 PUCCH format 3资源上发送。 优选地, 上述方法还可以包括: 当上行信道资源为 PUSCH时, UE在预设上行子 帧根据高层信令在 PUSCH上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服 务小区的 HARQ-ACK和多个服务小区的 P-CSI。 在优选实施例中, 当通过高层信令额外配置的资源为 PUSCH 时, 既可以支持 2 个或 2个以上服务小区的 P-CSI发生碰撞时的同时发送, 也可以支持 2个或 2个以上 的服务小区的 P-CSI以及多个服务小区的 HARQ-ACK发生碰撞时的同时发送。 在优选实施过程中, 当 UE在预设上行子帧上同时发送多个服务小区的 P-CSI或 者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI时, UE在预设上行子帧根据 高层信令在上行信道资源上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服 务小区的 HARQ-ACK和多个服务小区的 P-CSI。 下面结合图 5至图 8所示的优选实施例对上述优选实施过程做进一步的描述。 图 5是根据本发明优选实施例一的一种信息的处理方法的流程图。 如图 5所示, 将服务小区 1和 2进行聚合处理, 每个服务小区的 P-CSI独立配置。 假设服务小区 1 配置的传输模式需要反馈报告类型 3 (RI),类型 2 (宽带 CQI和 PMI)以及类型 1 (UE 选择的子带 CQI), P-CSI报告发送的基本周期配置为 2ms, 其中, RI的子帧偏置配置 为 1, RI 发送的周期是 CSI 发送周期的 10 倍, 发送时所使用的信道资源配置为 n UCCHfidn 服务小区 2配置的传输模式需要反馈报告类型 3 (RI)、 类型 2 (宽带 CQI 和 PMI), P-CSI报告发送的基本周期配置为 5ms, 其中, RI的子帧偏置配置为 3, RI 发送的周期是 CSI发送周期的 4倍,发送时所使用的信道资源配置为 CCH,Cdn。此外, 高层信令再额外配置一个资源 ^, 用于在多个服务小区的 P-CSI发生碰撞时的同 时发送, 或者, 在多个服务小区的 HARQ-ACK与 P-CSI发生碰撞时的同时发送。 在该优选实施例中, 假设通过高层信令额外配置的 为 PUSCH。 在第 1个无 线帧的子帧 0、 1、 3、 7、 9, 第 2个无线帧的子帧 1、 3、 7、 9, 第 3个无线帧的子帧 1、 3、 7、 9以及第 4个无线帧的子帧 1、 3、 7、 9上, UE只需要发送服务小区 1 的 P-CSI (可以包括: RI, 宽带 CQI和 PMI以及 UE选择的子带 CQI), 则 UE将使用高 层信令配置的用于服务小区 1 的 P-CSI反馈的 资源, 发送服务小区 1 的 P-CSI。 在第 1个无线帧的子帧 2, 第 2个无线帧的子帧 0, 第 3个无线帧的子帧 2, 第四个无线帧的子帧 0上, UE只需要发送服务小区 2的 P-CSI (可以包括: RI, 宽带 CQI 和 PMI), 则 UE 将使用高层信令配置的用于服务小区 2 的 P-CSI 反馈的的
2麵, 发送服务小区 2的 P-CSI; 而在每个无线帧的子帧 5以及第 3个无线 帧的子帧 0上, UE需要发送服务小区 1的 P-CSI和服务小区 2的 P-CSI, 则 UE将使 用高层信令额外配置的 资源, 同时发送服务小区 1和服务小区 2的 P-CSI。 图 6是根据本发明优选实施例二的一种信息的处理方法的流程图。 如图 6所示, 将服务小区 1和 2进行聚合处理, 每个服务小区的 P-CSI独立配置。 假设服务小区 1 配置的传输模式需要反馈报告类型 3 (RI),类型 2 (宽带 CQI和 PMI)以及类型 1 (UE 选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1,RI发送的周期是 CSI发送周期的 10倍,发送时所使用的信道资源配置为 CCH,CeHl。 服务小区 2配置的传输模式需要反馈报告类型 3 (RI)、 类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置配置为 3, RI发送的周期 是 CSI发送周期的 4倍, 发送时所使用的信道资源配置为《^OT ¾2。 此外, 高层信令 再额外配置一个资源 ^, 用于在多个服务小区的 P-CSI发生碰撞时的同时发送, 或者, 在多个服务小区的 HARQ-ACK与 P-CSI发生碰撞时的同时发送。 在该优选实施例中, 假设通过高层信令额外配置的 为 PUSCH, 且假设在第 1个无线帧的子帧 2上, 第 2个无线帧的子帧 1上, 以及第 3个无线帧的子帧 0上, UE需要反馈多个服务小区的 HARQ-ACK。 对于在第 1个无线帧的子帧 0、 1、 3、 7、 9, 第 2个无线帧的子帧 3、 7、 9, 第 3个无线帧的子帧 1、 3、 7、 9以及第 4个无线 帧的子帧 1、 3、 7、 9上, UE只需要发送服务小区 1的 P-CSI (可以包括: RI, 宽带 CQI和 PMI以及 UE选择的子带 CQI), 则 UE将使用高层信令配置的用于服务小区 1 的 P-CSI反馈的的《^^^^资源, 发送服务小区 1的 P-CSI; 对于在第 2个无线帧的 子帧 0, 第 3个无线帧的子帧 2, 第 4个无线帧的子帧 0上, UE只需要发送服务小区 2的 P-CSI (可以包括: RI, 宽带 CQI和 PMI), 则 UE将使用高层配置的用于服务小 区 2的 P-CSI反馈的的 ^ ea/ ^2资源, 发送服务小区 1的 P-CSI; 对于在每个无线帧 的子帧 5上, UE需要发送服务小区 1的 P-CSI和服务小区 2的 P-CSI, 则 UE将使用 高层额外配置的^^^资源, 同时发送服务小区 1和服务小区 2的 P-CSI; 对于在第 1 个无线帧的子帧 2上, UE需要发送服务小区 1的 P-CSI和多个服务小区的 HARQ-ACK, 则 UE 将使用高层额外配置的^ ^^资源, 同时发送服务小区 1 和多个服务小区的 HARQ-ACK;对于在第 2个无线帧的子帧 1上, UE需要同时发送服务小区 2的 P-CSI 和多个服务小区的 HARQ-ACK, 则 UE将使用高层额外配置的^^^资源, 同时发送 服务小区 2的 P-CSI和多个服务小区的 HARQ-ACK; 对于在第 3个无线帧的子帧 0 上, UE需要同时发送服务小区 1禾 B 2的 P-CSI以及多个服务小区的 HARQ-ACK, 且 由于额外配置的 为 PUSCH, 则 UE将使用高层额外配置的^^^资源, 同时发 送服务小区 1禾 B 2的 P-CSI以及多个服务小区的 HARQ-ACK。 在优选实施例中, 如图 5所示, 将服务小区 1和 2进行聚合处理, 每个服务小区 的 P-CSI独立配置。假设服务小区 1配置的传输模式需要反馈报告类型 3 (RI), 类型 2 (宽带 CQI和 PMI) 以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配 置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期是 CSI发送周期的 10倍, 发送时所使用的信道资源配置为 CCH,CeHl。服务小区 2配置的传输模式需要反馈报告 类型 3 (RI)、 类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中 RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 4倍, 发送时所使用的信道 资源配置为^ ¾effi^„2。 此外, 高层信令再额外配置一个资源 ^^^, 用于在多个服务 小区的 P-CSI发生碰撞时的同时发送, 或者, 在多个服务小区的 HARQ-ACK与 P-CSI 发生碰撞时的同时发送。 在该优选实施例中, 假设高层额外配置的 ^^^为?!^^! format 3。 针对在第 1 个无线帧的子帧 0、 1、 3、 7、 9, 第 2个无线帧的子帧 1、 3、 7、 9, 第 3个无线帧的 子帧 1、 3、 7、 9以及第 4个无线帧的子帧 1、 3、 7、 9上, UE只需要发送服务小区 1 的 P-CSI (可以包括: RI, 宽带 CQI和 PMI以及 UE选择的子带 CQI), 则 UE将使用 高层配置的用于服务小区 1的 P-CSI反馈的的 资源,发送服务小区 1的 P-CSI; 针对在第 1个无线帧的子帧 2, 第 2个无线帧的子帧 0, 第 3个无线帧的子帧 2, 第四 个无线帧的子帧 0上, UE只需要发送服务小区 2的 P-CSI (可以包括: RI, 宽带 CQI 和 PMI), 则 UE将使用高层配置的用于服务小区 2的 P-CSI反馈的的《^^ 2资源, 发送服务小区 2的 P-CSI; 在每个无线帧的子帧 5以及第 3个无线帧的子帧 0上, UE 需要发送服务小区 1的 P-CSI和服务小区 2的 P-CSI, 则 UE将使用高层额外配置的 C麵, 同时发送服务小区 1和服务小区 2的 P-CSI。 图 7是根据本发明优选实施例三的一种信息的处理方法的流程图。 如图 7所示, 将服务小区 1、 2和 3进行聚合处理, 每个服务小区的 P-CSI独立配置。 假设服务小 区 1配置的传输模式需要反馈报告类型 3 (RI) ,类型 2 (宽带 CQI和 PMI) 以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置 配置为 1, RI发送的周期是 CSI发送周期的 10倍, 发送时所使用的信道资源配置为 n^CCH,Cdn。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类型 2 (宽带 CQI 和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI 的子帧偏置配置为 3, RI 发送的周期是 CSI发送周期的 4倍, 发送时所使用的信道资源配置为 ea/^„2, 服务 小区 3配置的传输模式需要反馈报告类型 3 ( RI)、 类型 2 (宽带 CQI和 PMI), P-CSI 报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI 发送周期的 2倍, 发送时所使用的信道资源配置为 ^ eOT^„3。 此外, 高层信令再额外 配置了一个资源 ^, 用于在多个服务小区的 P-CSI发生碰撞时的同时发送, 或者, 在多个服务小区的 HARQ-ACK与 P-CSI发生碰撞时的同时发送。 在该优选实施例中, 假设高层信令额外配置的^ ^^为 PUCCH format 3。 针对在 第 1个无线帧的子帧 0、 1、 3、 7、 9, 第 2个无线帧的子帧 1、 3、 7、 9, 第 3个无线 帧的子帧 1、 3、 7、 9以及第 4个无线帧的子帧 1、 3、 7、 9上, UE只需要发送服务小 区 1的 P-CSI (可以包括: RI, 宽带 CQI和 PMI以及 UE选择的子带 CQI), 则 UE将 使用高层配置的用于服务小区 1的 P-CSI反馈的的 ^^ ^资源, 发送服务小区 1的 P-CSI; 针对在第 1个无线帧的子帧 2, 第 2个无线帧的子帧 0, 第 3个无线帧的子帧 2, 第四个无线帧的子帧 0上, UE只需要发送服务小区 2的 P-CSI (可以包括: RI, 宽带 CQI 和 PMI), 则 UE 将使用高层配置的用于服务小区 2 的 P-CSI 反馈的的 CCH, 麵, 发送服务小区 2的 P-CSI; 针对在每个无线帧的子帧 8上, UE只需 要发送服务小区 3的 P-CSI,则 UE将使用高层配置的用于服务小区 3的 P-CSI反馈的 的^^ ffi^„3资源, 发送服务小区 3的 P-CSI; 针对在第 1和第 3个无线帧的子帧 5,
UE需要反馈服务小区 1、 2和 3的 P-CSI, 其中服务小区 1、 2、 3对应的 P-CSI报告 分别为报告类型 1 (UE选择的子带 CQI)、 报告类型 2 (宽带 CQI和 PMI)、 报告类型 3 ( RI ) , 由于高层额外配置的 为 PUCCH format 3 , 只能支持 2个 P-CSI的反馈, 这时候, UE需要根据 Rel-10规定的 P-CSI报告优先级,打掉服务小区 1的报告类型 1, 在高层额外配置的 PUCCH format 3上发送服务小区 2和服务小区 3的 P-CSI 报告;针对在第 2个无线帧的子帧 5,第 3个无线帧的子帧 0以及第 4个子帧的子帧 5, UE需要发送服务小区 1的 P-CSI和服务小区 2的 P-CSI, 则 UE将使用高层额外配置 的^^^资源, 同时发送服务小区 1和服务小区 2的 P-CSI。 图 8是根据本发明优选实施例四的一种信息的处理方法的流程图。 如图 8所示, 将服务小区 1、 2和 3进行聚合处理, 每个服务小区的 P-CSI独立配置。 假设服务小 区 1配置的传输模式需要反馈报告类型 3 ( RI ) ,类型 2 (宽带 CQI和 PMI) 以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置 配置为 1, RI发送的周期是 CSI发送周期的 10倍, 发送时所使用的信道资源配置为 n^CCHfielll 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类型 2 (宽带 CQI 和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI 的子帧偏置配置为 3, RI 发送的周期是 CSI发送周期的 4倍, 发送时所使用的信道资源配置为 ea/^„2。服务 小区 3配置的传输模式需要反馈报告类型 3 ( RI)、 类型 2 (宽带 CQI和 PMI), P-CSI 报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI 发送周期的 2倍, 发送时所使用的信道资源配置为 ^ eOT^„3, 此外, 高层信令再额外 配置了一个资源^^ ^, 用于在多个服务小区的 P-CSI发生碰撞时的同时发送, 或者, 在多个服务小区的 HARQ-ACK与 P-CSI发生碰撞时的同时发送。 在该优选实施例中, 假设高层信令额外配置的 ^^^为?!^^! format 3, 且假设 在第 1个无线帧的子帧 2上, 第 2个无线帧的子帧 1上, 以及第 3个无线帧的子帧 0 上, UE需要反馈多个服务小区的 HARQ-ACK。 针对在第 1个无线帧的子帧 0、 1、 3、 7、 9, 第 2个无线帧的子帧 3、 7、 9, 第 3个无线帧的子帧 1、 3、 7、 9以及第 4个无 线帧的子帧 1、 3、 7、 9上, UE只需要发送服务小区 1的 P-CSI (可以包括: RI, 宽 带 CQI和 PMI以及 UE选择的子带 CQI), 则 UE将使用高层信令配置的用于服务小 区 1的 P-CSI反馈的的《^^^^资源, 发送服务小区 1的 P-CSI; 针对在第 2个无线 帧的子帧 0, 第 3个无线帧的子帧 2, 第 4个无线帧的子帧 0上, UE只需要发送服务 小区 2的 P-CSI (可以包括: RI, 宽带 CQI和 PMI), 则 UE将使用高层配置的用于服 务小区 2的 P-CSI反馈的的 ^ ea/ ^2资源, 发送服务小区 2的 P-CSI; 针对在每个无 线帧的子帧 8上, UE只需要发送服务小区 3的 P-CSI, 则 UE将使用高层配置的用于 服务小区 3的 P-CSI反馈的的《^^^„3资源, 发送服务小区 3的 P-CSI; 针对在第 1 个无线帧的子帧 2上, UE需要发送服务小区 2的 P-CSI和多个服务小区的 HARQ-ACK, 则 UE将使用高层信令额外配置的 资源, 同时发送服务小区 2和多个服务小区 的 HARQ-ACK; 针对在第 1和第 3个无线帧的子帧 5, UE需要反馈服务小区 1、 2和 3的 P-CSI, 其中服务小区 1、 2、 3对应的 P-CSI报告分别为报告类型 1 (UE选择的 子带 CQI)、 报告类型 2 (宽带 CQI和 PMI)、 报告类型 3 ( RI), 由于高层额外配置的 ηΡ ^Η为 PUCCH format 3 , 只能支持 2个 P-CSI的反馈, 这时候, UE需要根据 Rel-10 规定的 P-CSI报告优先级, 打掉服务小区 1 的报告类型 1, 在高层额外配置的《^^ PUCCH format 3上发送服务小区 2和服务小区 3的 P-CSI报告; 针对在第 2个无线帧 的子帧 1上, UE需要发送服务小区 1的 P-CSI和多个服务小区的 HARQ-ACK,则 UE 将使用高层额外配置的^ 资源, 同时发送服务小区 1 和多个服务小区的 HARQ-ACK; 针对在第 2个无线帧的子帧 5, 第 4个子帧的子帧 5, UE需要发送服务 小区 1的 P-CSI和服务小区 2的 P-CSI, 则 UE将使用高层额外配置的 资源, 同 时发送服务小区 1和服务小区 2的 P-CSI; 针对在第 3个无线帧的子帧 0, UE需要反 馈服务小区 1禾 B 2的 P-CSI以及多个服务小区的 HARQ-ACK, 其中服务小区 1、 2对 应的 P-CSI报告分别为 2报告类型 3 (RI)、 报告类型 2 (宽带 CQI和 PMI), 由于高 层信令额外配置的 为 PUCCH format 3,只能支持 1个 P-CSI与多个 HARQ-ACK 的反馈, 此时 UE需要根据 Rel-10规定的 P-CSI报告优先级, 丢弃服务小区 2的报告 类型 2,在高层信令额外配置的^^ ^ PUCCH format 3上发送服务小区 1的 P-CSI(RI) 和多个服务小区的 HARQ-ACK。 图 9是根据本发明实施例的另一种信息的处理方法的流程图。 如图 9所示, 该方 法可以包括以下处理步骤: 步骤 S902: UE接收来自于基站的高层信令, 其中, 高层信令中携带有基站对与 UE对应的多个服务小区进行分组的信息,并且基站为进行分组处理后的每组服务小区 分别配置上行信道资源; 步骤 S904: UE在预设上行子帧根据高层信令在上行信道资源上发送任一个服务 小区的周期信道状态信息 P-CSI, 或者, 同时发送的多个服务小区中每个服务小区的 P-CSI; 或者, UE在预设上行子帧上根据高层信令在上行信道资源上, 或者, 在多个 服务小区的混合自动请求重传应答消息 HARQ-ACK发送时所使用的上行信道资源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 采用图 9所示的方法, 解决了相关技术中无法实现多个服务小区的 P-CSI的同时 发送或者多个服务小区的 HARQ-ACK和 P-CSI同时发送的问题, 进而实现了多个下 行分量载波的应答消息和多个服务小区的信道状态信息同时发送。 在优选实施例中, 可以将参与聚合的多个服务小区划分为若干个组, 其中, 各组 内的服务小区的 P-CSI报告的配置参数中使用的信道资源相同。 在优选实施过程中, 上行信道资源可以包括但不限于以下至少之一: PUCCH format 2、 PUCCH format 3 PUSCH。 优选地, 在步骤 S904中, UE在预设上行子帧根据高层信令在上行信道资源上同 时发送多个服务小区的 P-CSI可以包括以下操作: 步骤 SI : UE判断待发送的多个 P-CSI所对应的服务小区是否位于同一分组; 步骤 S2: 如果是, UE根据高层信令确定该组服务小区所使用的上行信道资源的 配置信息, 并在确定后的上行信道资源上发送多个服务小区的 P-CSI; 步骤 S3: 如果否, UE根据高层信令分别确定各组服务小区所使用的上行信道资 源, 并在确定后的各组服务小区所使用的上行信道资源中进行选择, 采用选择后的上 行信道资源发送多个服务小区的 P-CSI。 优选地, 在上述步骤 S2中, UE根据高层信令确定该组服务小区所使用的上行信 道资源的配置信息, 并在确定后的上行信道资源上发送多个服务小区的 P-CSI可以包 括以下之一: ( 1 )当位于同一分组的服务小区的个数为 1个,上行信道资源为 PUCCH format 2 或 PUCCH format 3或 PUSCH时, UE在 PUCCH format 2或 PUCCH format 3或 PUSCH 上发送服务小区的 P-CSI;
(2)当位于同一分组的服务小区的个数为 2个,上行信道资源为 PUCCH format 3 或 PUSCH时, UE在 PUCCH format 3或 PUSCH上同时发送分组中每个服务小区的 P-CSI;
(3 ) 当位于同一分组的服务小区的个数大于 2个, 上行信道资源为 PUSCH时, UE在 PUSCH上同时发送分组中的每个服务小区的 P-CSI;
(4)当位于同一分组的服务小区的个数大于 2个,上行信道资源为 PUCCH format 3 时, UE 从该组服务小区中选取 P-CSI优先级最高的两个服务小区, 并在 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI;
(5 )当位于同一分组的服务小区的个数大于 2个,上行信道资源为 PUCCH format 3时, 如果多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带 比特数的最大值, 则 UE在 PUCCH format 3上发送多个服务小区的 P-CSI, 否贝 lj, UE 从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在 PUCCH format 3上 同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同 反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 在步骤 S3, UE根据高层信令分别确定各组服务小区所使用的上行信道 资源, 并在确定后的各组服务小区所使用的上行信道资源中进行选择, 采用选择后的 上行信道资源发送多个服务小区的 P-CSI可以包括以下之一: ( 1 ) 当各组服务小区中仅有一组服务小区所使用的上行信道资源为 PUSCH时, UE在 PUSCH上同时发送多个服务小区的 P-CSI;
(2)当各组服务小区中有多组服务小区所使用的上行信道资源为 PUSCH时, UE 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送多个服务小区的 P-CSI; 在优选实施例中, 如果多个 (假定 X个) P-CSI报告来自不同的组且发送所使用 的信道资源有多个 (假定 Y个, Y大于等于 2且小于等于 X) 配置为 PUSCH时, 则 可以根据 Rel-10规定的 P-CSI报告的优先级原则, 在 P-CSI报告发送所使用的信道资 源配置为 PUSCH的 Y个 P-CSI报告中, 选择优先级最高的 P-CSI报告所在所配置的 PUSCH资源, 发送 X个 P-CSI报告。
(3 ) 当各组服务小区中有多组服务小区所使用的上行信道资源为 PUCCH format 3时, UE从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3,以及从多个服务小区中选取 P-CSI优先级最高的两个服务小区,并在选取的 PUCCH format 3上同时选取的每个服务小区的 P-CSI; 在优选实施例中, 如果多个 (假设 X个) P-CSI报告来自不同的组且发送所使用 的信道资源没有配置为 PUSCH, 且当多个 P-CSI报告发送所使用的信道资源有 Y个 (Y大于等于 1, 小于等于 X)配置为 PUCCH format 3时, 则可以根据 Rel-10规定的 P-CSI报告的优先级原则, 在 P-CSI报告发送所使用的信道资源配置为 PUCCH format 3的 Y个 P-CSI报告中,选择优先级最高的 P-CSI报告所配置的 PUCCH format 3资源, 然后再根据 Rel-10规定的 P-CSI报告的优先级原则, 在其余的 X-1个 P-CSI报告中, 选择一个优先级最高的 P-CSI报告,与选择的信道资源配置为 PUCCH format 3的 P-CSI 报告一起在选择的 PUCCH format 3资源上发送。
(4) 当各组服务小区中有多组服务小区所使用的上行信道资源为 PUCCH format 3时, UE从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3, 如果多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带比 特数的最大值,则 UE在选取的 PUCCH format 3上发送多个服务小区的 P-CSI,否贝 U, UE从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在选取的 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正 整数。 优选地, 在步骤 S40中, UE在预设上行子帧上根据高层信令在上行信道资源上, 或者, 在多个服务小区的 HARQ-ACK发送时所使用的上行信道资源上, 同时发送多 个服务小区的 HARQ-ACK和多个服务小区的 P-CSI可以包括以下之一:
( 1 )当多个服务小区所在的分组中仅有一组服务小区的 P-CSI所使用的上行信道 资源为 PUSCH时, UE在 PUSCH上同时发送多个服务小区的 P-CSI以及多个服务小 区的 HARQ-ACK;
(2)当多个服务小区所在的分组中有多组服务小区的 P-CSI所使用的上行信道资 源为 PUSCH时, UE从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送多个服务小区中的每个服务小区的 P-CSI以 及多个服务小区的 HARQ-ACK; 在优选实施例中, 如果多个 (假定 X个) P-CSI报告发送所使用的信道资源有多 个 (假定 Y个, Y大于等于 2且小于等于 X) 配置为 PUSCH时, 则可以根据 Rel-10 规定的 P-CSI报告的优先级原则,在 P-CSI报告发送所使用的信道资源配置为 PUSCH 的 Y个 P-CSI报告中, 选择优先级最高的 P-CSI报告所配置的 PUSCH资源, 发送 X 个 P-CSI报告与多个服务小区的 HARQ-ACK。
(3 ) 当多个服务小区的 P-CSI发送时所使用的上行信道资源没有配置为 PUSCH 且的多个服务小区的的 HARQ-ACK配置为使用 PUCCH format 3发送时, UE从多个 服务小区中选取 P-CSI优先级最高的服务小区, 在多个服务小区的 HARQ-ACK发送 时所使用的的 PUCCH format 3资源上同时发送选取服务小区的 P-CSI以及多个服务小 区的 HARQ-ACK;
(4) 当多个服务小区的 P-CSI发送时所使用的上行信道资源为 PUCCH format 2, 且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, UE对多个服务小区的 HARQ-ACK进行空间绑定处理,并判断经过空间绑定处理后的 HARQ-ACK是否超过 2比特信息, 如果未超过, 则 UE从多个服务小区中选取 P-CSI 优先级最高的服务小区所使用的 PUCCH format 2, 并在选取的 PUCCH format 2上同 时发送选取的服务小区的 P-CSI 以及的经过空间绑定后的多个服务小区的 HARQ-ACK; 如果超过, 则 UE使用 PUCCH format lb联合信道选择的方式发送多个 服务小区的 HARQ-ACK; 在优选实施例中,当多个 P-CSI报告发送所使用的信道资源既没有配置为 PUSCH, 也没有配置为 PUCCH format 3, 仅是多个 HARQ-ACK所使用的上行信道资源配置为
PUCCH format 2时,对于 FDD和 M=l的 TDD,可以先对多个服务小区的 HARQ-ACK 进行空间绑定得到 2比特信息, 然后根据 Rel-10规定的 P-CSI报告的优先级原则, 选 择优先级最高的 P-CSI报告所配置的资源, 发送 P-CSI报告以及空间绑定后的 2比特 的 HARQ-ACK; 对于 M>1的 TDD, 仅发送多个服务小区的 HARQ-ACK, 不发送多 个 P-CSI。 ( 5 ) 当多个服务小区中有多个服务小区的 P-CSI 所使用的上行信道资源为
PUCCH format 3且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信 道选择发送时, UE 从多个服务小区中选取 P-CSI 优先级最高的服务小区所使用的 PUCCH format 3, 并在选取的 PUCCH format 3上同时发送与选取的 PUCCH format 3 对应的服务小区的 P-CSI和多个服务小区的 HARQ-ACK。 在优选实施例中, 当多个 P-CSI报告发送所使用的信道资源有 Y个 (Y大于等于
1, 小于等于 X) 配置为 PUCCH format 3时, 则可以根据 Rel-10规定的 P-CSI报告的 优先级原则,在 P-CSI报告发送所使用的信道资源配置为 PUCCH format 3的 Y个 P-CSI 报告中, 选择优先级最高的 P-CSI 报告所配置的 PUCCH format 3 资源, 在选择的 PUCCH format 3资源上发送与选择的 PUCCH format 3资源对应的服务小区的 P-CSI 报告和多个服务小区的 HARQ-ACK。 在优选实施例中, 可以根据 Rel-10规定的 P-CSI报告的优先级原则, 在 P-CSI报 告发送所使用的信道资源配置为 PUCCH format 3的 Y个 P-CSI报告中, 选择优先级 最高的 P-CSI报告所配置的 PUCCH format 3资源, 以及在 X个 P-CSI报告中选择优 先级最高的 P-CSI报告,在选择的 PUCCH format 3资源上发送选择的 P-CSI报告和多 个服务小区的 HARQ-ACK。 在优选实施过程中, 当 UE在预设上行子帧上发送任一个服务小区的 P-CSI或者 同时发送多个服务小区的 P-CSI时, UE在预设上行子帧根据高层信令在上行信道资源 上发送任一个服务小区的 P-CSI, 或者, 同时发送的多个服务小区中每个服务小区的 P-CSI。 在优选实施过程中, 当 UE在预设上行子帧上同时发送与 UE对应的多个服务小 区的 HARQ-ACK和多个服务小区的 P-CSI时, UE在预设上行子帧上根据高层信令在 上行信道资源上, 或者, 在多个服务小区的 HARQ-ACK发送时所使用的上行信道资 源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 下面结合图 10至图 19所示的优选实施例对上述优选实施过程做进一步的描述。 图 10是根据本发明优选实施例一的另一种信息的处理方法的流程图。 如图 10所 示, 将服务小区 1和 2进行聚合处理, 且把服务小区 1和服务小区 2归为 1个组, 组 内的服务小区 1和服务小区 2的 P-CSI报告发送时所使用的信道资源配置为 同时假设服务小区 1配置的传输模式需要反馈报告类型 3 ( RI ) , 类型 2 (宽带 CQI和 PMI) 以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期是 CSI发送周期的 10倍。 服务小区 2配置的 传输模式需要反馈报告类型 3 ( RI)、 类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本 周期配置为 5ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 4 倍。 在该优选实施例中, 由于组内包含 2 个服务小区, 此处假设组内的服务小区的
P-CSI报告发送时所使用的信道资源 n%cH为 PUSCH或 PUCCH format 3。 由于只有 1个组, 且组内的服务小区为 2, 组内的服务小区的 P-CSI报告发送时 所使用的信道资源 n 为 PUSCH或 PUCCH format 3均能支持 2个服务小区的 P-CSI 反馈, 因此, 在需要发送 P-CSI的子帧上, 可以包括: 只发送一个服务小区的 P-CSI 以及同时发送 2个服务小区的 P-CSI, UE都可以采用《 发送相应的 P-CSI。 图 11是根据本发明优选实施例二的另一种信息的处理方法的流程图。 如图 11所 示, 将服务小区 1和 2进行聚合处理, 且把服务小区 1和服务小区 2归为 1个组, 组 内的服务小区 1和服务小区 2的 P-CSI报告发送时所使用的信道资源配置为 同时假设服务小区 1和服务小区 2的 P-CSI配置相同, 配置的传输模式需要反馈报告 类型 3 ( RI)、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 4倍, 在该优选实施例中, 由于组内包含 2 个服务小区, 此处假设组内的服务小区的 P-CSI报告发送时所使用的信道资源 η Η为 PUSCH或 PUCCH format 3。 由于只有 1个组, 且组内的服务小区为 2, 组内的服务小区的 P-CSI报告发送时 所使用的信道资源 为 PUCCH,因此,在服务小区 1和服务小区 2需要发送 P-CSI 的子帧上, 可以包括: 只发送一个服务小区的 P-CSI 以及同时发送 2 个服务小区的 P-CSI, UE都可以采用 η 发送相应的 P-CSI。 图 12是根据本发明优选实施例三的另一种信息的处理方法的流程图。 如图 12所 示, 将服务小区 1、 2和 3进行聚合处理, 且把三个服务小区分为两个组, 其中, 服务 小区 1和服务小区 2归为组 1, 组内的服务小区 1和服务小区 2的 P-CSI报告发送时 所使用的信道资源配置为《^^), 服务小区 3归为组 2, 组内的服务小区 3的 P-CSI 报告发送时所使用的信道资源配置为 。 同时假设服务小区 1配置的传输模式需 要反馈报告类型 3 ( RI ) ,类型 2 (宽带 CQI和 PMI )以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期 是 CSI发送周期的 10倍。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类 型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置 配置为 3, RI发送的周期是 CSI发送周期的 4倍。 服务小区 3配置的传输模式需要反 馈报告类型 3 ( RI )、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 2倍。 在该优选实施例中, 假设 n ^0 和 η ^0 均为 PUSCH。 对于服务小区 1和 2, 除了第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5夕卜, 其余所有需要发送服务小区 1和服务小区 2的 P-CSI的子帧上, 可以包括: 只发送一 个服务小区的 P-CSI以及同时发送 2个服务小区的 P-CSI, UE都可以采用^ 发送 相应的 P-CSI。 对于服务小区 3, 除了第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5夕卜, 其 余所有需要发送服务小区 3的 P-CSI的子帧上, UE可以采用 n=、发送相应的 P-CSI。 对于第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5, UE需要反馈 3个服务小 区的 P-CSI, 而且由于服务小区 1和 2属于组 1, 服务小区 3属于组 2, 且发送所使用 的信道资源均配置为 PUSCH, UE将根据 Rel-10规定的 P-CSI报告优先级, 在 4 和 ^ 之间选择一个优先级最高的 PUSCH资源, 由于服务小区 3发送的 P-CSI报 告是 RI, 其优先级高于服务小区 1的子带 CQI以及服务小区 2的宽带 CQI和 PMI, 因此, UE将采用 η 、发送服务小区 1 ,2,3的 P-CSI报告。 图 13是根据本发明优选实施例四的另一种信息的处理方法的流程图。 如图 13所 示, 将服务小区 1、 2和 3进行聚合处理, 且把三个服务小区分为了两个组, 其中, 服 务小区 1和服务小区 2归为组 1, 组内的服务小区 1和服务小区 2的 P-CSI报告发送 时所使用的信道资源配置为《^^), 服务小区 3归为组 2, 组内的服务小区 3的 P-CSI 报告发送时所使用的信道资源配置为^^ 。 同时假设服务小区 1配置的传输模式需 要反馈报告类型 3 ( RI ) ,类型 2 (宽带 CQI和 ΡΜΙ )以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期 是 CSI发送周期的 10倍。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类 型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置 配置为 3, RI发送的周期是 CSI发送周期的 4倍。 服务小区 3配置的传输模式需要反 馈报告类型 3 ( RI )、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 2倍。 在该优选实施例中, 假设 n ^0 为 PUSCH, 而 、为 PUCCH format 3。 对于服务小区 1和 2, 除了第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5夕卜, 其余所有需要发送服务小区 1和服务小区 2的 P-CSI的子帧上, 可以包括: 只发送一 个服务小区的 P-CSI以及同时发送 2个服务小区的 P-CSI, UE都可以采用^ 发送 相应的 P-CSI。 对于服务小区 3, 除了第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5夕卜, 其 余所有需要发送服务小区 3的 P-CSI的子帧上, UE可以采用 发送相应的 P-CSI。 对于第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5, UE需要反馈 3个服务小 区的 P-CSI , 而且由于服务小区 1和 2属于组 1, 服务小区 3属于组 2, 且发送所使用 的信道资源均有且仅有一个配置 PUSCH , UE 将采用 发送服务小区 1 ,2,3 的 P-CSI报告。 图 14是根据本发明优选实施例五的另一种信息的处理方法的流程图。 如图 14所 示, 将服务小区 1、 2和 3进行聚合处理, 且把三个服务小区分为了两个组, 其中, 服 务小区 1和服务小区 2归为组 1, 组内的服务小区 1和服务小区 2的 P-CSI报告发送 时所使用的信道资源配置为 4^^), 服务小区 3归为组 2, 组内的服务小区 3的 P-CSI 报告发送时所使用的信道资源配置为^ 。 同时假设服务小区 1配置的传输模式需 要反馈报告类型 3 ( RI ),类型 2 (宽带 CQI和 PMI )以及类型 1 ( UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期 是 CSI发送周期的 10倍。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类 型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置 配置为 3, RI发送的周期是 CSI发送周期的 4倍。 服务小区 3配置的传输模式需要反 馈报告类型 3 ( RI )、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 2倍。 在该优选实施例中, 假设 η 。 和 η 、均为 PUCCH format 3。 对于服务小区 1和 2, 除了第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5夕卜, 其余所有需要发送服务小区 1和服务小区 2的 P-CSI的子帧上, 可以包括: 只发送一 个服务小区的 P-CSI以及同时发送 2个服务小区的 P-CSI, UE都可以采用^ 发送 相应的 P-CSI。 对于服务小区 3, 除了第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5夕卜, 其 余所有需要发送服务小区 3的 P-CSI的子帧上, UE可以采用 发送相应的 P-CSI。 对于第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5, UE需要反馈 3个服务小 区的 P-CSI , 而且由于服务小区 1和 2属于一个组, 服务小区 3属于另一个组, 且发 送所使用的信道资源均配置为 PUCCH format 3, UE将根据 Rel- 10规定的 P-CSI报告 优先级,在 n=和 ^f ^ 之间选择一个优先级最高的 PUCCH format 3资源, 由于服 务小区 3发送的 P-CSI报告是 RI,其优先级要高于服务小区 1的子带 CQI以及服务小 区 2的宽带 CQI和 PMI, 因此, UE将选择具有最高优先级的服务小区 3的 P-CSI报 告发送时所使用的信道资源 , 然后再根据 Rel- 10规定的 P-CSI报告的优先级原 贝 U,在其余的服务小区 1和服务小区 2的 P-CSI报告中,选择一个优先级最高的 P-CSI 报告, 由于服务小区 2的 P-CSI报告为宽带 CQI和 PMI, 其优先级要高于服务小区 1 的子带 CQI, 因此, UE将在 上发送服务小区 3的 P-CSI报告以及服务小区 2 的 P-CSI报告。 图 15是根据本发明优选实施例六的另一种信息的处理方法的流程图。 如图 15所 示, 将服务小区 1、 2和 3进行聚合处理, 且把三个服务小区分为了两个组, 其中, 服 务小区 1和服务小区 2归为组 1, 组内的服务小区 1和服务小区 2的 P-CSI报告发送 时所使用的信道资源配置为《^^), 服务小区 3归为组 2, 组内的服务小区 3的 P-CSI 报告发送时所使用的信道资源配置为^ 。 同时假设服务小区 1配置的传输模式需 要反馈报告类型 3 ( RI ) ,类型 2 (宽带 CQI和 PMI )以及类型 1 ( UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期 是 CSI发送周期的 10倍。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类 型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置 配置为 3, RI发送的周期是 CSI发送周期的 4倍。 服务小区 3配置的传输模式需要反 馈报告类型 3 ( RI )、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 2倍。 在该优选实施例中,假设^ 和^^ ^均为 PUSCH, 同时假设在第 1个无线帧 的子帧 2上, 第 2个无线帧的子帧 1上, 第 3个无线帧的子帧 0上, 以及第 4个无线 帧的子帧 8上, UE需要反馈多个服务小区的 HARQ-ACK。 对于服务小区 1和 2, 除了第 1个无线帧的子帧 2和 5、 第 2个无线帧的子帧 1、 第 3个无线帧的子帧 0和 5外, 其余所有需要发送服务小区 1和服务小区 2的 P-CSI 的子帧上, 可以包括: 只发送一个服务小区的 P-CSI 以及同时发送 2 个服务小区的 P-CSI, UE都可以采用 η% 发送相应的 P-CSI。 对于服务小区 3, 除了第 1个无线帧的子帧 5、 第 3个无线帧的子帧 5 以及第 4 个无线帧的子帧 8外, 其余所有需要发送服务小区 3的 P-CSI的子帧上, UE可以采 用 n% 发送相应的 P-CSI。 对于第 1个无线帧的子帧 2, UE需要发送服务小区 2的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 2的 P-CSI发送时使用的资源为 PUSCH, 因此 UE将 在 n( 上发送服务小区 2的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 1个无线帧的子帧 5以及第 3个无线帧的子帧 5, UE需要反馈 3个服务小 区的 P-CSI, 而且由于服务小区 1和 2属于组 1, 服务小区 3属于组 2, 且发送所使用 的信道资源均配置为 PUSCH, UE将根据 Rel-10规定的 P-CSI报告优先级, 在 ^ 和 之间选择一个优先级最高的 PUSCH资源, 由于服务小区 3发送的 P-CSI报 告是 RI, 其优先级相对于服务小区 1的子带 CQI以及服务小区 2的宽带 CQI和 PMI, 因此, UE将采用 n%。 发送服务小区 1 ,2,3的 P-CSI报告。 对于第 2个无线帧的子帧 1, UE需要发送服务小区 1的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 1的 P-CSI发送时使用的资源为 PUSCH, 因此 UE将 在《^^上发送服务小区 1的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 3个无线帧的子帧 0, UE需要发送服务小区 1和 2的 P-CSI以及多个服务 小区的 HARQ-ACK, 由于服务小区 1和 2属于同一个组, 且对应的 P-CSI发送时使用 的资源为 PUSCH, 因此 UE将在 n c 0u^上发送服务小区 1禾 B 2的 P-CSI以及多个服务 小区的 HARQ-ACK。 对于第 4个无线帧的子帧 8, UE需要发送服务小区 3的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 3的 P-CSI发送时使用的资源为 PUSCH, 因此 UE将 在^^ ^上发送服务小区 3的 P-CSI以及多个服务小区的 HARQ-ACK。 图 16是根据本发明优选实施例七的另一种信息的处理方法的流程图。 如图 16所 示, 将服务小区 1、 2和 3进行聚合处理, 且把三个服务小区分为了两个组, 其中, 服 务小区 1和服务小区 2归为组 1, 组内的服务小区 1和服务小区 2的 P-CSI报告发送 时所使用的信道资源配置为《^^), 服务小区 3归为组 2, 组内的服务小区 3的 P-CSI 报告发送时所使用的信道资源配置为^^ 。 同时假设服务小区 1配置的传输模式需 要反馈报告类型 3 ( RI ),类型 2 (宽带 CQI和 PMI )以及类型 1 ( UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期 是 CSI发送周期的 10倍。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类 型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置 配置为 3, RI发送的周期是 CSI发送周期的 4倍。 服务小区 3配置的传输模式需要反 馈报告类型 3 ( RI )、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 2倍。 在该优选实施例中, 假设 为 PUSCH, 为 PUCCH format 3, 假设在 第 1个无线帧的子帧 2上, 第 2个无线帧的子帧 1上, 第 3个无线帧的子帧 0和子帧 5上, 以及第 4个无线帧的子帧 8上, UE需要反馈多个服务小区的 HARQ-ACK, 且 假设 HARQ-ACK使用 PUCCH format 3发送, 信道资源记为 。 对于服务小区 1和 2, 除了第 1个无线帧的子帧 2和 5、 第 2个无线帧的子帧 1、 第 3个无线帧的子帧 0和 5外, 其余所有需要发送服务小区 1和服务小区 2的 P-CSI 的子帧上,可以包括只发送一个服务小区的 P-CSI以及同时发送 2个服务小区的 P-CSI , UE都可以采用 n 发送相应的 P-CSI。 对于服务小区 3, 除了第 1个无线帧的子帧 5、 第 3个无线帧的子帧 5 以及第 4 个无线帧的子帧 8夕卜,其余所有需要发送服务小区 3的 P-CSI的子帧上, UE可以采用 ^发送相应的 P-CSI。 对于第 1个无线帧的子帧 2, UE需要发送服务小区 2的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 2的 P-CSI发送时使用的资源为 PUSCH, 因此 UE将 在 4 上发送服务小区 2的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 1个无线帧的子帧 5, UE需要反馈 3个服务小区的 P-CSI ,而且由于服务 小区 1和 2属于组 1,服务小区 3属于组 2, 且发送所使用的信道资源仅有一个配置为 PUSCH, 也就是 , UE将采用 n%^。 发送服务小区 1 ,2,3的 P-CSI报告。 对于第 2个无线帧的子帧 1, UE需要发送服务小区 1的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 1的 P-CSI发送时使用的资源为 PUSCH, 因此 UE将 在《^^上发送服务小区 1的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 3个无线帧的子帧 0, UE需要发送服务小区 1和 2的 P-CSI以及多个服务 小区的 HARQ-ACK, 由于服务小区 1和 2属于同一个组, 且对应的 P-CSI发送时使用 的资源为 PUSCH, 因此 UE将在 上发送服务小区 1和 2的 P-CSI以及多个服务 小区的 HARQ-ACK。 对于第 3个无线帧的子帧 5, UE需要反馈 3个服务小区的 P-CSI以及多个服务 小区的 HARQ-ACK, 而且由于服务小区 1和 2属于组 1, 服务小区 3属于组 2, 且发 送所使用的信道资源有且仅有一个配置为 PUSCH, 也就是 , 因此, UE将采用 发送服务小区 1 ,2,3的 P-CSI报告以及多个服务小区的 HARQ-ACK。 对于第 4个无线帧的子帧 8, UE需要发送服务小区 3的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 3的 P-CSI发送时使用的资源为 PUCCH format 3, 而 HARQ-ACK发送时也是使用 PUCCH format 3 , 因此 UE将在 -ACK)上发送服务小 区 3的 P-CSI以及多个服务小区的 HARQ-ACK。 图 17是根据本发明优选实施例八的另一种信息的处理方法的流程图。 如图 17所 示, 将服务小区 1、 2和 3进行聚合处理, 且把三个服务小区分为了两个组, 其中, 服 务小区 1和服务小区 2归为组 1, 组内的服务小区 1和服务小区 2的 P-CSI报告发送 时所使用的信道资源配置为《^^), 服务小区 3归为组 2, 组内的服务小区 3的 P-CSI 报告发送时所使用的信道资源配置为^^ 。 同时假设服务小区 1配置的传输模式需 要反馈报告类型 3 ( RI ),类型 2 (宽带 CQI和 PMI )以及类型 1 ( UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI的子帧偏置配置为 1, RI发送的周期 是 CSI发送周期的 10倍。 服务小区 2配置的传输模式需要反馈报告类型 3 ( RI)、 类 型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 5ms, 其中, RI的子帧偏置 配置为 3, RI发送的周期是 CSI发送周期的 4倍。 服务小区 3配置的传输模式需要反 馈报告类型 3 ( RI )、类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期配置为 10ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 2倍。 在该优选实施例中, 假设 η 和 n%cu 、均为 PUCCH format 3, 同时假设在第 1 个无线帧的子帧 2上, 第 2个无线帧的子帧 1上, 第 3个无线帧的子帧 0上, 以及第 4个无线帧的子帧 8上, UE需要反馈多个服务小区的 HARQ-ACK,且假设 HARQ-ACK 使用 PUCCH format 3发送, 信道资源记为 n=ACK)。 对于服务小区 1和 2, 除了第 1个无线帧的子帧 2和 5、 第 2个无线帧的子帧 1、 第 3个无线帧的子帧 0和 5外, 其余所有需要发送服务小区 1和服务小区 2的 P-CSI 的子帧上, 可以包括: 只发送一个服务小区的 P-CSI 以及同时发送 2 个服务小区的 P-CSI, UE都可以采用 n 发送相应的 P-CSI。 对于服务小区 3, 除了第 1个无线帧的子帧 5、 第 3个无线帧的子帧 5 以及第 4 个无线帧的子帧 8夕卜,其余所有需要发送服务小区 3的 P-CSI的子帧上, UE可以采用 ^发送相应的 P-CSI。 对于第 1个无线帧的子帧 2, UE需要发送服务小区 2的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 2的 P-CSI发送时使用的资源为 PUCCH format 3, 而 多个 HARQ-ACK 发送时使用的资源也配置为 PUCCH format 3, 因此 UE 将在 上发送服务小区 2的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 1个无线帧的子帧 5, UE需要反馈 3个服务小区的 P-CSI, 而且由于服务 小区 1和 2属于一个组, 服务小区 3属于另一个组, 且发送所使用的信道资源均配置 为 PUCCH format 3, UE将根据 Rel- 10规定的 P-CSI报告优先级,在 η%° 和 η 之 间选择一个优先级最高的 PUCCH format 3资源,由于服务小区 3发送的 P-CSI报告是 RI,其优先级要高于服务小区 1的子带 CQI以及服务小区 2的宽带 CQI和 PMI,因此, UE 将选择具有最高优先级的服务小区 3 的 P-CSI 报告发送时所使用的信道资源 n ^0 , 然后再根据 Rel-10规定的 P-CSI报告的优先级原则, 在其余的服务小区 1和 服务小区 2的 P-CSI报告中, 选择一个优先级最高的 P-CSI报告。 由于服务小区 2的 P-CSI报告为宽带 CQI和 PMI, 其优先级要高于服务小区 1的子带 CQI, 因此, UE将 在 4 上发送服务小区 3的 P-CSI报告以及服务小区 2的 P-CSI报告。 对于第 2个无线帧的子帧 1, UE需要发送服务小区 1的 P-CSI以及多个服务小 区的 HARQ-ACK, 由于服务小区 1的 P-CSI发送时使用的资源为 PUCCH format 3, 而多个 HARQ-ACK发送时使用的资源也配置为 PUCCH format 3, 因此 UE 将在 上发送服务小区 1的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 3个无线帧的子帧 0, UE需要发送服务小区 1和 2的 P-CSI以及多个服务 小区的 HARQ-ACK, 由于服务小区 1和 2属于同一个组, 且对应的 P-CSI发送时使用 的资源为 PUCCH format 3, 而多个 HARQ-ACK发送时使用的资源也配置为 PUCCH format 3,因此 UE将根据 Rel-10规定的 P-CSI优先级原则,在服务小区 1禾 B 2的 P-CSI 报告之间选择一个优先级高的报告, 即服务小区 1的 P-CSI报告 (RI的优先级高于宽 带 CQI和 PMI的优先级), 在 ^—^上与多个 HARQ-ACK—起发送。 对于第 3个无线帧的子帧 5, UE需要反馈 3个服务小区的 P-CSI以及多个服务小 区的 HARQ-ACK, 而且由于服务小区 1和 2属于组 1, 服务小区 3属于组 2, 且发送 所使用的信道资源均配置为 PUCCH format 3, 而多个 HARQ-ACK发送时使用的资源 也配置为 PUCCH format 3, 因此 UE将根据 Rel-10规定的 P-CSI优先级原贝 lj, 在服务 小区 1、 2和 3的 P-CSI报告之间选择一个优先级高的报告, 即服务小区 3的 P-CSI 报告 (RI的优先级高于宽带 CQI和 PMI和子带 CQI的的优先级), 在 „ 上与 多个 HARQ-ACK—起发送。 对于第 4个无线帧的子帧 8, UE需要发送服务小区 3的 P-CSI以及多个服务小区 的 HARQ-ACK, 由于服务小区 3 的 P-CSI 发送时使用的资源为 PUCCH, 而多个 HARQ-ACK发送时使用的资源也配置为 PUCCH format 3, 因此 UE将在 c H ACK、上 发送服务小区 3的 P-CSI以及多个服务小区的 HARQ-ACK。 图 18是根据本发明优选实施例九的另一种信息的处理方法的流程图。 如图 18所 示, 将服务小区 1和 2进行聚合处理, 且服务小区 1和服务小区 2分别对应组 1和组 2,组 1和组 2的 P-CSI报告发送时所使用的信道资源分别配置为 η%。 和 η 。同 时假设服务小区 1配置的传输模式需要反馈报告类型 3(RI),类型 2(宽带 CQI和 PMI) 以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI 的子帧偏置配置为 1, RI发送的周期是 CSI发送周期的 10倍。服务小区 2配置的传输 模式需要反馈报告类型 3 (RI)、 类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期 配置为 5ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 4倍。 在该优选实施例中, 假设 和 均配置为 PUCCH fommt 2, 同时假设在 第 1个无线帧的子帧 2上,第 2个无线帧的子帧 1上,第 3个无线帧的子帧 0和 5上, 以及第 4个无线帧的子帧 8上, UE需要反馈多个服务小区的 HARQ-ACK, 且假设 HARQ-ACK使用 PUCCH format lb联合信道选择的方式发送。 对于服务小区 1,在第 1个无线帧的子帧 0,1,3,7,9, 第 2个无线帧的子帧 3,7,9,第 3个无线帧的子帧 1,3,7,9以及第 4个无线帧的子帧 1,3,7,9, UE只需要反馈服务小区 1 的 P-CSI, 因此, UE将在配置的^ 信道资源上发送服务小区 1的 P-CSI。 对于服务小区 2, 在第 2个无线帧的子帧 0, 第 3个无线帧的子帧 2以及第 4个无 线帧的子帧 0, UE只需要反馈服务小区 2的 P-CSI, 因此, UE将在配置的 信 道资源上发送服务小区 2的 P-CSI。 对于第 1个无线帧的子帧 2, UE需要反馈服务小区 2的 P-CSI以及多个服务小区 的 HARQ-ACK,由于服务小区 2的 P-CSI发送时使用的信道资源配置为 PUCCH format 2, 而 HARQ-ACK发送使用 PUCCH format lb联合信道选择, 这里进一步假定参与聚 合的系统为 FDD, 则 UE先对多个服务小区的 HARQ-ACK进行空间绑定得到 2比特 信息, 然后在服务小区 2的 P-CSI报告发送时所配置的信道资源 上, 发送服务 小区 2的 P-CSI以及经过了上述空间绑定后的 2比特的 HARQ-ACK。 对于第 1/2/4个无线帧的子帧 5, UE需要反馈服务小区 1和服务小区 2的 P-CSI, 由于服务小区 1禾 B 2的 P-CSI发送时所使用的信道资源均配置为 PUCCH format 2, 无 法支持多个服务小区的 P-CSI同时发送, 因此, UE将根据 Rel-10规定的优先级原则, 选择优先级最高的服务小区 2的 P-CSI报告(因为宽带 CQI和 PMI的优先级要高于子 带 CQI的优先级) 在上 发送。 对于第 2个无线帧的子帧 1, UE需要反馈服务小区 1的 P-CSI以及多个服务小区 的 HARQ-ACK,由于服务小区 1的 P-CSI发送时使用的信道资源配置为 PUCCH format 2, 而 HARQ-ACK发送使用 PUCCH format lb联合信道选择, 此处进一步假定参与聚 合的系统为 FDD, 则 UE先对多个服务小区的 HARQ-ACK进行空间绑定得到 2比特 信息, 然后在服务小区 1的 P-CSI报告发送时所配置的信道资源^^ 上, 发送服务 小区 1的 P-CSI以及经过了上述空间绑定后的 2比特的 HARQ-ACK。 对于第 3个无线帧的子帧 0, UE需要反馈服务小区 1和服务小区 2的 P-CSI以及 多个服务小区的 HARQ-ACK,由于服务小区 1和 2的 P-CSI发送时所使用的信道资源 均配置为 PUCCH format 2, 且 HARQ-ACK的发送使用 PUCCH format lb联合信道选 择,此处进一步假定参与聚合的系统为 FDD,则 UE先对多个服务小区的 HARQ-ACK 进行空间绑定得到 2比特信息, 然后再根据 Rel-10规定的 P-CSI报告优先级原则, 选 择优先级最高的服务小区 1的 P-CSI报告(服务小区 1的 RI的优先级要高于服务小区 2的宽带 CQI和 PMI), 在服务小区 1的 P-CSI发送时所配置的信道资源 上, 发 送服务小区 1的 P-CSI以及经过了上述空间绑定后的 2比特的 HARQ-ACK。 对于第 3个无线帧的子帧 5, UE需要反馈服务小区 1和服务小区 2的 P-CSI以及 多个服务小区的 HARQ-ACK,由于服务小区 1和 2的 P-CSI发送时所使用的信道资源 均配置为 PUCCH format 2, 且 HARQ-ACK的发送使用 PUCCH format lb联合信道选 择,此处进一步假定参与聚合的系统为 FDD,则 UE先对多个服务小区的 HARQ-ACK 进行空间绑定得到 2比特信息, 然后再根据 Rel-10规定的 P-CSI报告优先级原则, 选 择优先级最高的服务小区 2的 P-CSI报告(服务小区 2的宽带 CQI和 PMI要高于服务 小区 1的子带 CQI),在服务小区 2的 P-CSI发送时所配置的信道资源 ^f ^ 上, 发送 服务小区 2的 P-CSI以及经过了上述空间绑定后的 2比特的 HARQ-ACK。 图 19是根据本发明优选实施例十的另一种信息的处理方法的流程图。 如图 19所 示, 将服务小区 1和 2进行聚合处理, 且服务小区 1和服务小区 2分别对应组 1和组 2,组 1和组 2的 P-CSI报告发送时所使用的信道资源分别配置为 和 η% 、。同 时假设服务小区 1配置的传输模式需要反馈报告类型 3( RI ),类型 2(宽带 CQI和 PMI ) 以及类型 1 (UE选择的子带 CQI), P-CSI报告发送基本周期配置为 2ms, 其中, RI 的子帧偏置配置为 1, RI发送的周期是 CSI发送周期的 10倍。服务小区 2配置的传输 模式需要反馈报告类型 3 ( RI)、 类型 2 (宽带 CQI和 PMI), P-CSI报告发送基本周期 配置为 5ms, 其中, RI的子帧偏置配置为 3, RI发送的周期是 CSI发送周期的 4倍。 在该优选实施例中,假设 np 和 η%° 分别配置为 PUCCH format 3和 PUCCH format 2, 同时假设在第 1个无线帧的子帧 2上, 第 2个无线帧的子帧 1上, 第 3个无 线帧的子帧 0和 5上, 以及第 4个无线帧的子帧 8上, UE需要反馈多个服务小区的 HARQ-ACK, 且假设 HARQ-ACK使用 PUCCH format lb联合信道选择的方式发送。 对于服务小区 1,在第 1个无线帧的子帧 0, 1 ,3,7,9, 第 2个无线帧的子帧 3,7,9,第 3个无线帧的子帧 1 ,3,7,9以及第 4个无线帧的子帧 1 ,3,7,9, UE只需要反馈服务小区 1 的 P-CSI, 因此, UE将在配置的 ^^^)信道资源上发送服务小区 1的 P-CSI。 对于服务小区 2, 在第 2个无线帧的子帧 0, 第 3个无线帧的子帧 2以及第 4个无 线帧的子帧 0, UE只需要反馈服务小区 2的 P-CSI, 因此, UE将在配置的^ 信 道资源上发送服务小区 2的 P-CSI。 对于第 1个无线帧的子帧 2, UE需要反馈服务小区 2的 P-CSI以及多个服务小区 的 HARQ-ACK,由于服务小区 2的 P-CSI发送时使用的信道资源配置为 PUCCH format 2, 而 HARQ-ACK发送使用 PUCCH format lb联合信道选择, 此处进一步假定参与聚 合的系统为 FDD, 则 UE先对多个服务小区的 HARQ-ACK进行空间绑定得到 2比特 信息, 然后在服务小区 2的 P-CSI报告发送时所配置的信道资源^^ 上, 发送服务 小区 2的 P-CSI以及经过了上述空间绑定后的 2比特的 HARQ-ACK。 对于第 1/2/4个无线帧的子帧 5, UE需要反馈服务小区 1和服务小区 2的 P-CSI, 由于服务小区 1的 P-CSI发送时所使用的信道资源配置为 PUCCH format 3, 因此, UE 将在 M^ ^上发送服务小区 1禾 P 2的 P-CSI报告。 对于第 2个无线帧的子帧 1, UE需要反馈服务小区 1的 P-CSI以及多个服务小区 的 HARQ-ACK,由于服务小区 1的 P-CSI发送时使用的信道资源配置为 PUCCH format 3, 而 HARQ-ACK发送使用 PUCCH format lb联合信道选择, UE将 4 )上, 发送 服务小区 1的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 3个无线帧的子帧 0, UE需要反馈服务小区 1和服务小区 2的 P-CSI以及 多个服务小区的 HARQ-ACK,由于服务小区 1的 P-CSI发送时所使用的信道资源配置 为 PUCCH format 3, 且 HARQ-ACK的发送使用 PUCCH format lb联合信道选择, 则 UE确定发送 P-CSI和多个服务小区的 HARQ-ACK所使用的信道资源为服务小区 1的 P-CSI发送时所使用的信道资源, 即 η% , 在选择的 PUCCH format 3资源上发送与 选择的 PUCCH format 3 资源对应的服务小区的 P-CSI 报告和多个服务小区的 HARQ-ACK , 即在 上发送服务小区 1 的 P-CSI 报告和多个服务小区的 HARQ-ACK; 或者, UE根据 Rel- 10规定的 P-CSI报告优先级原则, 选择优先级最高 的服务小区 1的 P-CSI报告(服务小区 1的 RI的优先级要高于服务小区 2的宽带 CQI 和 PMI), 在服务小区 1的 P-CSI发送时所配置的信道资源^ 上, 发送服务小区 1 的 P-CSI以及多个服务小区的 HARQ-ACK。 对于第 3个无线帧的子帧 5, UE需要反馈服务小区 1和服务小区 2的 P-CSI以及 多个服务小区的 HARQ-ACK,由于服务小区 1的 P-CSI发送时所使用的信道资源配置 为 PUCCH format 3, 且 HARQ-ACK的发送使用 PUCCH format lb联合信道选择, 则 UE确定发送 P-CSI和多个服务小区的 HARQ-ACK所使用的信道资源为服务小区 1的 P-CSI发送时所使用的信道资源, 即 η% , 在选择的 PUCCH format 3资源上发送与 选择的 PUCCH format 3 资源对应的服务小区的 P-CSI 报告和多个服务小区的 HARQ-ACK, 也就是在 ^^^)上发送服务小区 1 的 P-CSI 报告和多个服务小区的 HARQ-ACK; 或者, UE根据 Rel- 10规定的 P-CSI报告优先级原则, 选择优先级最高 的服务小区 2的 P-CSI报告(服务小区 2宽带 CQI和 PMI的优先级要高于服务小区 1 的子带 CQI), 在服务小区 1的 P-CSI发送时所配置的信道资源 上, 发送服务小 区 2的 P-CSI以及多个服务小区的 HARQ-ACK。 图 20是根据本发明实施例的一种信息的处理装置的结构框图。 如图 20所示, 该 信息的处理装置可以包括: 第一接收模块 10, 设置为接收来自于基站的高层信令, 其 中, 高层信令中携带有基站为用户设备 UE配置的上行信道资源, 上行信道资源用于 同时发送与 UE对应的多个服务小区的周期信道状态信息 P-CSI,或者,用于同时发送 与 UE对应的多个服务小区的混合自动请求重传应答消息 HARQ-ACK和多个服务小 区的 P-CSI; 第一发送模块 20, 设置为在预设上行子帧根据高层信令在上行信道资源 上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服务小区的 HARQ-ACK和多 个服务小区的 P-CSI。 采用如图 20所示的装置,解决了相关技术中无法实现多个服务小区的 P-CSI的同 时发送或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI同时发送的问题, 进而实现了多个下行分量载波的应答消息和多个服务小区的信道状态信息同时发送。 优选地, 上行信道资源可以包括但不限于以下至少之一: PUCCH format 3、
PUSCHo 优选地, 如图 21所示, 第一发送模块 20可以包括: 第一确定单元 200, 设置为 当上行信道资源为 PUCCH format 3时,确定在预设上行子帧上待发送的多个服务小区 的个数; 第一发送单元 202, 设置为在多个服务小区的个数小于或者等于 2个时, 在 PUCCH format 3上同时发送每个服务小区的 P-CSI; 第二发送单元 204, 设置为在多 个服务小区的个数大于 2个时, 从多个服务小区中选取 P-CSI优先级最高的两个服务 小区, 并在 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI。 优选地, 如图 22所示, 第一发送模块 20可以包括: 第二确定单元 206, 设置为 当上行信道资源为 PUCCH format 3时,确定在预设上行子帧上待发送的多个服务小区 的 P-CSI共同反馈的比特数; 第三发送单元 208, 设置为在多个服务小区的 P-CSI共 同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值时, 在 PUCCH format 3上同时发送每个服务小区的 P-CSI; 第四发送单元 210, 设置为在多个服务小 区的 P-CSI共同反馈的比特数超过 PUCCH format 3所能携带的比特数的最大值时,从 多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在 PUCCH format 3上同 时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同反 馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 如图 23所示, 第一发送模块 20可以包括: 第三确定单元 212, 设置为 当上行信道资源为 PUCCH format 3时,确定在预设上行子帧上待发送的多个服务小区 个数;第五发送单元 214,设置为在待发送 P-CSI的服务小区的个数为 1个时,在 PUCCH format 3上同时发送该服务小区的 P-CSI和多个服务小区的 HARQ-ACK; 第六发送单 元 216, 设置为在待发送 P-CSI的服务小区的个数为多个时, 从多个服务小区中选取 P-CSI优先级最高的服务小区, 并在 PUCCH format 3上同时发送选取后的服务小区的 P-CSI和多个服务小区的 HARQ-ACK。 优选地, 如图 24所示, 第一发送模块 20包括: 第七发送单元 218, 设置为当上 行信道资源为 PUSCH时, 在预设上行子帧根据高层信令在 PUSCH上同时发送与 UE 对应的多个服务小区的 P-CSI, 或者, 同时发送多个服务小区的 HARQ-ACK和多个服 务小区的 P-CSI。 优选地,第一发送模块,设置为在预设上行子帧上同时发送多个服务小区的 P-CSI 或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI时, 在预设上行子帧根据 高层信令在上行信道资源上同时发送多个服务小区的 P-CSI, 或者, 同时发送多个服 务小区的 HARQ-ACK和多个服务小区的 P-CSI。 图 25是根据本发明实施例的另一种信息的处理装置的结构框图。 如图 25所示, 该信息的处理装置可以包括: 第二接收模块 30, 设置为接收来自于基站的高层信令, 其中,高层信令中携带有基站对与用户设备 UE对应的多个服务小区进行分组的信息, 并且基站为进行分组处理后的每组服务小区分别配置上行信道资源; 第二发送模块 40, 设置为在预设上行子帧根据高层信令在上行信道资源上发送任一个服务小区的周 期信道状态信息 P-CSI, 或者, 同时发送的多个服务小区中每个服务小区的 P-CSI; 或 者, 在预设上行子帧上根据高层信令在上行信道资源上, 或者, 在多个服务小区的混 合自动请求重传应答消息 HARQ-ACK发送时所使用的上行信道资源上, 同时发送多 个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 采用如图 25所示的装置,解决了相关技术中无法实现多个服务小区的 P-CSI的同 时发送或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI同时发送的问题, 进而实现了多个下行分量载波的应答消息和多个服务小区的信道状态信息同时发送。 在优选实施例中, 上行信道资源可以包括但不限于以下至少之一: PUCCH format 2、 PUCCH format 3、 PUSCH。 优选地, 如图 26所示, 第二发送模块 40可以包括: 判断单元 400, 设置为判断 待发送的多个 P-CSI所对应的服务小区是否位于同一分组; 第一确定单元 402, 设置 为在判断单元输出为是时, 根据高层信令确定该组服务小区所使用的上行信道资源的 配置信息, 并在确定后的上行信道资源上发送多个服务小区的 P-CSI; 第二确定单元 404, 设置为在判断单元输出为否时,根据高层信令分别确定各组服务小区所使用的上 行信道资源的配置信息, 并在确定后的各组服务小区所使用的上行信道资源中进行选 择, 采用选择后的上行信道资源发送多个服务小区中的每个服务小区的 P-CSI。 优选地, 如图 26所示, 第一确定单元 402可以包括: 第一发送单元 4020, 设置 为当位于同一分组的服务小区的个数为 1 个, 上行信道资源为 PUCCH format 2 或 PUCCH format 3或 PUSCH时, 在 PUCCH format 2或 PUCCH format 3或 PUSCH上 同时发送服务小区的 P-CSI; 第二发送单元 4022, 设置为当位于同一分组的服务小区 的个数为 2个, 上行信道资源为 PUCCH format 3或 PUSCH时, 在 PUCCH format 3 或 PUSCH 上同时发送分组中服务小区中的每个服务小区的 P-CSI; 第三发送单元 4024, 设置为当位于同一分组的服务小区的个数大于 2个, 上行信道资源为 PUSCH 时, 在 PUSCH上同时发送分组中的每个服务小区的 P-CSI; 第四发送单元 4026, 设 置为当位于同一分组的服务小区的个数大于 2个, 上行信道资源为 PUCCH format 3 时, 从该组服务小区中选取 P-CSI优先级最高的两个服务小区, 并在 PUCCH format 3 上同时发送选取后的每个服务小区的 P-CSI; 第五发送单元 4028, 设置为当位于同一 分组的服务小区的个数大于 2个, 上行信道资源为 PUCCH format 3时, 如果多个服务 小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带比特数的最大值,则 在 PUCCH format 3上发送多个服务小区的 P-CSI,否贝 1」,从多个服务小区中选取 P-CSI 优先级最高的 N个服务小区, 并在 PUCCH format 3上同时发送选取后的每个服务小 区的 P-CSI, 其中, 选取的 N个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。 优选地, 如图 26所示, 第二确定单元 404可以包括: 第六发送单元 4040, 设置 为当各组服务小区中仅有一组服务小区所使用的上行信道资源为 PUSCH 时, 在 PUSCH上同时发送多个服务小区的 P-CSI; 第七发送单元 4042, 设置为当各组服务小 区中有多组服务小区所使用的上行信道资源为 PUSCH 时, 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送多个 服务小区的 P-CSI; 第八发送单元 4044, 设置为当各组服务小区中有多组服务小区所 使用的上行信道资源为 PUCCH format 3时,从多组服务小区中选取 P-CSI优先级最高 的服务小区所使用的 PUCCH format 3以及从多个服务小区中选取 P-CSI优先级最高的 两个服务小区, 并在选取的 PUCCH format 3上同时选取的每个服务小区的 P-CSI; 第 九发送单元 4046, 设置为当各组服务小区中有多组服务小区所使用的上行信道资源为 PUCCH format 3时, 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3,如果多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3 所能携带比特数的最大值, 则在选取的 PUCCH format 3 上发送多个服务小区的 P-CSI, 否则, 从多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在选取 的 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI, 其中, 选取的 N个服 务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大 值, N为正整数。 优选地, 如图 27所示, 第二发送模块 40可以包括: 第十发送单元 406, 设置为 当多个服务小区所在的分组中仅有一组服务小区的 P-CSI 所使用的上行信道资源为 PUSCH时, 在 PUSCH上同时发送多个服务小区中每个服务小区的 P-CSI以及多个服 务小区的 HARQ-ACK; 第十一发送单元 408, 设置为当多个服务小区所在的分组有多 组服务小区的 P-CSI 所使用的上行信道资源为 PUSCH 时, 从多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送多个 服务小区中的每个服务小区的 P-CSI以及多个服务小区的 HARQ-ACK;第十二发送单 元 410, 设置为多个服务小区的每个服务小区的 P-CSI发送时所使用的上行信道资源 没有配置为 PUSCH且的多个服务小区的的 HARQ-ACK配置为使用 PUCCH format 3 发送时,从多个服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3, 并多个服务小区的 HARQ-ACK发送时所使用的的 PUCCH format 3资源上同时发 送选取服务小区的 P-CSI以及多个服务小区的 HARQ-ACK; 第十三发送单元 412, 设 置为当多个服务小区中中的每个服务小区的 P-CSI 发送时所使用的上行信道资源为 PUCCH format 2, 且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合 信道选择发送时, 对多个服务小区的 HARQ-ACK进行空间绑定处理, 并判断经过空 间绑定处理后的 HARQ-ACK是否超过 2比特信息, 如果未超过, 则 UE从多组服务 小区中选取 P-CSI 优先级最高的服务小区所使用的 PUCCH format 2, 并在选取的 PUCCH format 2上同时发送选取的服务小区的的 P-CSI以及的经过空间绑定后的多个 服务小区的 HARQ-ACK; 如果超过,则使用 PUCCH format lb联合信道选择的方式发 送多个服务小区的 HARQ-ACK; 第十四发送单元 414, 设置为当多个服务小区中有多 个服务小区的 P-CSI 所使用的上行信道资源为 PUCCH format 3 且多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时,从多个服务小区中选 取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3,并在选取的 PUCCH format 3上同时发送与选取的 PUCCH format 3对应的服务小区的 P-CSI和多个服务小区的
Figure imgf000045_0001
优选地,第二发送模块 40,设置为在预设上行子帧上发送任一个服务小区的 P-CSI 或者同时发送多个服务小区的 P-CSI时, 在预设上行子帧根据高层信令在上行信道资 源上发送任一个服务小区的周期信道状态信息 P-CSI, 或者, 同时发送的多个服务 /J 区中每个服务小区的 P-CSI。 优选地, 第二发送模块 40, 设置为在预设上行子帧上同时发送与 UE对应的多个 服务小区的 HARQ-ACK和多个服务小区的 P-CSI时, UE在预设上行子帧上根据高层 信令在上行信道资源上, 或者, 在多个服务小区的 HARQ-ACK发送时所使用的上行 信道资源上, 同时发送多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。 需要说明的是, 上述 PUSCH资源信息可以包括: PUSCH资源所在的物理资源块 索引、 调制方式、 是否跳频以及跳频模式。 从以上的描述中, 可以看出, 上述实施例实现了如下技术效果 (需要说明的是这 些效果是某些优选实施例可以达到的效果):实现了多个下行分量载波的应答消息和多 个服务小区的信道状态信息同时发送。 显然, 本领域的技术人员应该明白, 上述的本发明的各模块或各步骤可以用通用 的计算装置来实现, 它们可以集中在单个的计算装置上, 或者分布在多个计算装置所 组成的网络上, 可选地, 它们可以用计算装置可执行的程序代码来实现, 从而, 可以 将它们存储在存储装置中由计算装置来执行, 并且在某些情况下, 可以以不同于此处 的顺序执行所示出或描述的步骤, 或者将它们分别制作成各个集成电路模块, 或者将 它们中的多个模块或步骤制作成单个集成电路模块来实现。 这样, 本发明不限制于任 何特定的硬件和软件结合。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本领域的技 术人员来说, 本发明可以有各种更改和变化。 凡在本发明的精神和原则之内, 所作的 任何修改、 等同替换、 改进等, 均应包含在本发明的保护范围之内。

Claims

权 利 要 求 书
1. 一种信息的处理方法, 包括:
用户设备 UE接收来自于基站的高层信令, 其中, 所述高层信令中携带有 所述基站为所述 UE配置的上行信道资源, 所述上行信道资源用于同时发送与 所述 UE对应的多个服务小区的周期信道状态信息 P-CSI, 或者, 用于同时发 送与所述 UE对应的多个服务小区的混合自动请求重传应答消息 HARQ-ACK 和多个服务小区的 P-CSI;
所述 UE在预设上行子帧根据所述高层信令在所述上行信道资源上同时发 送所述多个服务小区的 P-CSI,或者,同时发送所述多个服务小区的 HARQ-ACK 和所述多个服务小区的 P-CSI。
2. 根据权利要求 1所述的方法, 其中, 所述上行信道资源包括以下至少之一: 物理上行控制信道格式 3 PUCCH format 3;
物理上行共享信道 PUSCH。
3. 根据权利要求 1或 2所述的方法, 其中, 当所述上行信道资源为所述 PUCCH format 3时,所述 UE在所述预设上行子帧根据所述高层信令在所述上行信道资 源上同时发送所述多个服务小区的 P-CSI包括:
所述 UE确定在所述预设上行子帧上待发送的所述多个服务小区的个数; 当所述多个服务小区的个数小于或者等于 2个时,所述 UE在所述 PUCCH format 3上同时发送每个服务小区的 P-CSI;
当所述多个服务小区的个数大于 2个时, 所述 UE从所述多个服务小区中 选取 P-CSI优先级最高的两个服务小区,并在所述 PUCCH format 3上同时发送 选取后的每个服务小区的 P-CSI。
4. 根据权利要求 1或 2所述的方法, 其中, 当所述上行信道资源为所述 PUCCH format 3时,所述 UE在所述预设上行子帧根据所述高层信令在所述上行信道资 源上同时发送所述多个服务小区的 P-CSI包括:
所述 UE确定在所述预设上行子帧上待发送的所述多个服务小区的 P-CSI 共同反馈的比特数; 当所述共同反馈的比特不超过 PUCCH format 3所能携带的比特数的最大 值时, 所述 UE在所述 PUCCH format 3上同时发送每个服务小区的 P-CSI;
在所述共同反馈的比特超过 PUCCH format 3所能携带的比特数的最大值 时, 所述 UE从所述多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在所述 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI, 其中, 所述选取的 N个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3 所能携带的比特数的最大值, N为正整数。
5. 根据权利要求 1或 2所述的方法, 其中, 当所述上行信道资源为所述 PUCCH format 3时,所述 UE在所述预设上行子帧根据所述高层信令在所述上行信道资 源上同时发送所述多个服务小区的 HARQ-ACK和所述多个服务小区的 P-CSI 包括:
所述 UE确定在所述预设上行子帧上待发送的所述多个服务小区个数; 当所述待发送 P-CSI的服务小区的个数为 1个时,所述 UE在所述 PUCCH format 3上同时发送该服务小区的 P-CSI和所述多个服务小区的 HARQ-ACK;
在所述待发送 P-CSI的服务小区的个数为多个时, 所述 UE从所述多个服 务小区中选取 P-CSI优先级最高的服务小区,并在所述 PUCCH format 3上同时 发送选取后的服务小区的 P-CSI和所述多个服务小区的 HARQ-ACK。
6. 根据权利要求 1或 2所述的方法, 其中, 所述方法还包括: 当所述上行信道资 源为所述 PUSCH时, 所述 UE在所述预设上行子帧根据所述高层信令在所述 PUSCH上同时发送所述多个服务小区的 P-CSI, 或者, 同时发送所述多个服务 小区的 HARQ-ACK和所述多个服务小区的 P-CSI。
7. 根据权利要求 1至 6中任一项所述的方法, 其中, 当所述 UE在所述预设上行 子帧上同时发送多个服务小区的 P-CSI或者多个服务小区的 HARQ-ACK和多 个服务小区的 P-CSI时, 所述 UE在所述预设上行子帧根据所述高层信令在所 述上行信道资源上同时发送所述多个服务小区的 P-CSI, 或者, 同时发送所述 多个服务小区的 HARQ-ACK和所述多个服务小区的 P-CSI。
8. 一种信息的处理方法, 包括:
用户设备 UE接收来自于基站的高层信令, 其中, 所述高层信令中携带有 所述基站对与所述 UE对应的多个服务小区进行分组的信息, 并且所述基站为 进行分组处理后的每组服务小区分别配置上行信道资源; 所述 UE在预设上行子帧根据所述高层信令在所述上行信道资源上发送任 一个服务小区的周期信道状态信息 P-CSI, 或者, 同时发送所述的多个服务小 区中每个服务小区的 P-CSI; 或者, 所述 UE在所述预设上行子帧上根据所述 高层信令在所述上行信道资源上, 或者, 在所述多个服务小区的混合自动请求 重传应答消息 HARQ-ACK发送时所使用的上行信道资源上, 同时发送所述多 个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。
9. 根据权利要求 8所述的方法, 其中, 所述上行信道资源包括以下至少之一: 物理上行控制信道格式 2 PUCCH format 2;
物理上行控制信道格式 3 PUCCH format 3;
物理上行共享信道 PUSCH。
10. 根据权利要求 8或 9所述的方法, 其中, 所述 UE在所述预设上行子帧根据所 述高层信令在所述上行信道资源上同时发送所述多个服务小区的 P-CSI包括: 所述 UE判断待发送的多个 P-CSI所对应的服务小区是否位于同一分组; 如果是, 所述 UE根据所述高层信令确定该组服务小区所使用的上行信道 资源的配置信息, 并在确定后的上行信道资源上发送所述多个服务小区的 P-CSI;
如果否, 所述 UE根据所述高层信令分别确定各组服务小区所使用的上行 信道资源, 并在确定后的各组服务小区所使用的上行信道资源中进行选择, 采 用选择后的上行信道资源发送所述多个服务小区的 P-CSI。
11. 根据权利要求 10所述的方法, 其中, 所述 UE根据所述高层信令确定该组服务 小区所使用的上行信道资源的配置信息, 并在确定后的上行信道资源上发送所 述多个服务小区的 P-CSI包括以下之一:
当位于同一分组的服务小区的个数为 1 个, 所述上行信道资源为所述 PUCCH format 2或所述 PUCCH format 3或所述 PUSCH时, 所述 UE在所述 PUCCH format 2或所述 PUCCH format 3或所述 PUSCH上发送所述服务小区的 P-CSI;
当位于同一分组的服务小区的个数为 2 个, 所述上行信道资源为所述 PUCCH format 3或所述 PUSCH时, 所述 UE在所述 PUCCH format 3或所述 PUSCH上同时发送所述分组中每个服务小区的 P-CSI; 当位于同一分组的服务小区的个数大于 2 个, 所述上行信道资源为所述 PUSCH时, 所述 UE在所述 PUSCH上同时发送所述分组中的每个服务小区的 P-CSI;
当位于同一分组的服务小区的个数大于 2 个, 所述上行信道资源为所述 PUCCH format 3时, 所述 UE从该组服务小区中选取 P-CSI优先级最高的两个 服务小区, 并在所述 PUCCH format 3 上同时发送选取后的每个服务小区的 P-CSI;
当位于同一分组的服务小区的个数大于 2 个, 所述上行信道资源为所述 PUCCH format 3时, 如果所述多个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带比特数的最大值,则所述 UE在所述 PUCCH format 3 上发送所述多个服务小区的 P-CSI, 否则, 所述 UE从所述多个服务小区中选 取 P-CSI优先级最高的 N个服务小区, 并在所述 PUCCH format 3上同时发送 选取后的每个服务小区的 P-CSI, 其中, 所述选取的 N个服务小区的 P-CSI共 同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整 数。
12. 根据权利要求 10所述的方法, 其中, 所述 UE根据所述高层信令分别确定各组 服务小区所使用的上行信道资源, 并在确定后的各组服务小区所使用的上行信 道资源中进行选择, 采用选择后的上行信道资源发送所述多个服务小区的 P-CSI包括以下之一:
当各组服务小区中仅有一组服务小区所使用的所述上行信道资源为所述
PUSCH时, 所述 UE在所述 PUSCH上同时发送所述多个服务小区的 P-CSI;
当各组服务小区中有多组服务小区所使用的所述上行信道资源为所述 PUSCH时,所述 UE从所述多组服务小区中选取 P-CSI优先级最高的服务小区 所使用的 PUSCH,并在选取的 PUSCH上同时发送所述多个服务小区的 P-CSI; 当各组服务小区中有多组服务小区所使用的所述上行信道资源为所述 PUCCH format 3时, 所述 UE从所述多组服务小区中选取 P-CSI优先级最高的 服务小区所使用的 PUCCH format 3, 以及从所述多个服务小区中选取 P-CSI优 先级最高的两个服务小区,并在选取的 PUCCH format 3上同时所述选取的每个 服务小区的 P-CSI;
当各组服务小区中有多组服务小区所使用的所述上行信道资源为所述 PUCCH format 3时, 所述 UE从所述多组服务小区中选取 P-CSI优先级最高的 服务小区所使用的 PUCCH format 3, 如果所述多个服务小区的 P-CSI共同反馈 的比特数不超过 PUCCH format 3所能携带比特数的最大值,则所述 UE在所述 选取的 PUCCH format 3上发送所述多个服务小区的 P-CSI, 否则, 所述 UE从 所述多个服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在所述选取的 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI, 其中, 所述选取 的 N个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带 的比特数的最大值, N为正整数。
13. 根据权利要求 8或 9所述的方法, 其中, 所述 UE在所述预设上行子帧上根据 所述高层信令在所述上行信道资源上, 或者, 在所述多个服务小区的 HARQ-ACK发送时所使用的上行信道资源上, 同时发送所述多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI包括以下之一:
当所述多个服务小区所在的分组中仅有一组服务小区的 P-CSI所使用的所 述上行信道资源为所述 PUSCH时,所述 UE在所述 PUSCH上同时发送所述多 个服务小区的 P-CSI以及所述多个服务小区的 HARQ-ACK;
当所述多个服务小区所在的分组中有多组服务小区的 P-CSI所使用的所述 上行信道资源为所述 PUSCH时, 所述 UE从所述多组服务小区中选取 P-CSI 优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送所述 多个服务小区中的每个服务小区的 P-CSI 以及所述多个服务小区的 HARQ-ACK;
当所述多个服务小区的 P-CSI 发送时所使用的上行信道资源没有配置为 PUSCH且所述的多个服务小区的的 HARQ-ACK配置为使用 PUCCH format 3 发送时, 所述 UE从所述多个服务小区中选取 P-CSI优先级最高的服务小区, 在所述多个服务小区的 HARQ-ACK发送时所使用的所述的 PUCCH format 3资 源上同时发送所述选取服务小区的 P-CSI 以及所述多个服务小区的 HARQ-ACK;
当所述多个服务小区的 P-CSI 发送时所使用的上行信道资源为所述 PUCCH format 2, 且所述多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, 所述 UE对所述多个服务小区的 HARQ-ACK 进行空间绑定处理, 并判断经过空间绑定处理后的 HARQ-ACK是否超过 2比 特信息, 如果未超过, 则所述 UE从所述多个服务小区中选取 P-CSI优先级最 高的服务小区所使用的 PUCCH format 2, 并在选取的 PUCCH format 2上同时 发送所述选取的服务小区的 P-CSI以及所述的经过空间绑定后的多个服务小区 的 HARQ-ACK; 如果超过, 则所述 UE使用 PUCCH format lb联合信道选择的 方式发送所述多个服务小区的 HARQ-ACK;
当所述多个服务小区中有多个服务小区的 P-CSI所使用的所述上行信道资 源为所述 PUCCH format 3 且所述多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, 所述 UE从所述多个服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3, 并在选取的 PUCCH format 3上同时发送与选取的 PUCCH format 3对应的服务小区的 P-CSI和多个 服务小区的 HARQ-ACK。
14. 根据权利要求 8至 13中任一项所述的方法, 其中, 当所述 UE在所述预设上行 子帧上发送任一个服务小区的 P-CSI或者同时发送多个服务小区的 P-CSI时, 所述 UE在预设上行子帧根据所述高层信令在所述上行信道资源上发送任一个 服务小区的 P-CSI, 或者, 同时发送所述的多个服务小区中每个服务小区的 P-CSI。
15. 根据权利要求 8至 13中任一项所述的方法, 其中, 当所述 UE在所述预设上行 子帧上同时发送与所述 UE对应的多个服务小区的 HARQ-ACK和多个服务小 区的 P-CSI时, 所述 UE在所述预设上行子帧上根据所述高层信令在所述上行 信道资源上, 或者, 在所述多个服务小区的 HARQ-ACK发送时所使用的上行 信道资源上, 同时发送所述多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。
16. 一种信息的处理装置, 包括:
第一接收模块, 设置为接收来自于基站的高层信令, 其中, 所述高层信令 中携带有所述基站为用户设备 UE配置的上行信道资源, 所述上行信道资源用 于同时发送与所述 UE对应的多个服务小区的周期信道状态信息 P-CSI, 或者, 用于同时发送与所述 UE 对应的多个服务小区的混合自动请求重传应答消息 HARQ-ACK和多个服务小区的 P-CSI;
第一发送模块, 设置为在所述预设上行子帧根据所述高层信令在所述上行 信道资源上同时发送所述多个服务小区的 P-CSI, 或者, 同时发送所述多个服 务小区的 HARQ-ACK和所述多个服务小区的 P-CSI。
17. 根据权利要求 16所述的装置, 其中, 所述上行信道资源包括以下至少之一: 物理上行控制信道格式 3PUCCH format 3; 物理上行共享信道 PUSCH。
18. 根据权利要求 16或 17所述的装置, 其中, 所述第一发送模块包括:
第一确定单元,设置为当所述上行信道资源为所述 PUCCH format 3时,确 定在所述预设上行子帧上待发送的所述多个服务小区的个数;
第一发送单元, 设置为在所述多个服务小区的个数小于或者等于 2个时, 在所述 PUCCH format 3上同时发送每个服务小区的 P-CSI;
第二发送单元, 设置为在所述多个服务小区的个数大于 2个时, 从所述多 个服务小区中选取 P-CSI优先级最高的两个服务小区,并在所述 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI。
19. 根据权利要求 16或 17所述的装置, 其中, 所述第一发送模块包括:
第二确定单元,设置为当所述上行信道资源为所述 PUCCH format 3时,确 定在所述预设上行子帧上待发送的所述多个服务小区的 P-CSI共同反馈的比特 数;
第三发送单元, 设置为在所述多个服务小区的 P-CSI共同反馈的比特数不 超过 PUCCH format 3所能携带的比特数的最大值时, 在所述 PUCCH format 3 上同时发送每个服务小区的 P-CSI;
第四发送单元, 设置为在所述多个服务小区的 P-CSI共同反馈的比特数超 过 PUCCH format 3所能携带的比特数的最大值时,从所述多个服务小区中选取 P-CSI优先级最高的 N个服务小区,并在所述 PUCCH format 3上同时发送选取 后的每个服务小区的 P-CSI, 其中, 所述选取的 N个服务小区的 P-CSI共同反 馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。
20. 根据权利要求 16或 17所述的装置, 其中, 所述第一发送模块包括:
第三确定单元,设置为当所述上行信道资源为所述 PUCCH format 3时,确 定在所述预设上行子帧上待发送的所述多个服务小区个数;
第五发送单元, 设置为在所述待发送 P-CSI的服务小区的个数为 1个时, 在所述 PUCCH format 3上同时发送该服务小区的 P-CSI和所述多个服务小区的 HARQ-ACK;
第六发送单元, 设置为在所述待发送 P-CSI的服务小区的个数为多个时, 从所述多个服务小区中选取 P-CSI优先级最高的服务小区, 并在所述 PUCCH format 3 上同时发送选取后的服务小区的 P-CSI 和所述多个服务小区的
Figure imgf000054_0001
21. 根据权利要求 16或 17所述的装置, 其中, 所述第一发送模块包括:
第七发送单元, 设置为当所述上行信道资源为所述 PUSCH时, 在所述预 设上行子帧根据所述高层信令在所述 PUSCH上同时发送与所述 UE对应的多 个服务小区的 P-CSI,或者, 同时发送多个服务小区的 HARQ-ACK和多个服务 小区的 P-CSI。
22. 根据权利要求 16至 21中任一项所述的装置, 其中, 所述第一发送模块, 设置 为在所述预设上行子帧上同时发送多个服务小区的 P-CSI或者多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI时,在所述预设上行子帧根据所述高层信 令在所述上行信道资源上同时发送所述多个服务小区的 P-CSI, 或者, 同时发 送所述多个服务小区的 HARQ-ACK和所述多个服务小区的 P-CSI。
23. 一种信息的处理装置, 包括:
第二接收模块, 设置为接收来自于基站的高层信令, 其中, 所述高层信令 中携带有所述基站对与用户设备 UE对应的多个服务小区进行分组的信息, 并 且所述基站为进行分组处理后的每组服务小区分别配置上行信道资源;
第二发送模块, 设置为在预设上行子帧根据所述高层信令在所述上行信道 资源上发送任一个服务小区的周期信道状态信息 P-CSI, 或者, 同时发送所述 的多个服务小区中每个服务小区的 P-CSI; 或者, 在所述预设上行子帧上根据 所述高层信令在所述上行信道资源上, 或者, 在所述多个服务小区的混合自动 请求重传应答消息 HARQ-ACK发送时所使用的上行信道资源上, 同时发送所 述多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。
24. 根据权利要求 23所述的装置, 其中, 所述上行信道资源包括以下至少之一: 物理上行控制信道格式 2PUCCH format 2;
物理上行控制信道格式 3PUCCH format 3;
物理上行共享信道 PUSCH。
25. 根据权利要求 23或 24所述的装置, 其中, 所述第二发送模块包括:
判断单元, 设置为判断待发送的多个 P-CSI所对应的服务小区是否位于同 一分组; 第一确定单元, 设置为在所述判断单元输出为是时, 根据所述高层信令确 定该组服务小区所使用的上行信道资源的配置信息, 并在确定后的上行信道资 源上发送所述多个服务小区的 P-CSI;
第二确定单元, 设置为在所述判断单元输出为否时, 根据所述高层信令分 别确定各组服务小区所使用的上行信道资源的配置信息, 并在确定后的各组服 务小区所使用的上行信道资源中进行选择, 采用选择后的上行信道资源发送所 述多个服务小区中的每个服务小区的 P-CSI。
26. 根据权利要求 25所述的装置, 其中, 所述第一确定单元包括:
第一发送单元, 设置为当位于同一分组的服务小区的个数为 1个, 所述上 行信道资源为所述 PUCCH format 2或所述 PUCCH format 3或所述 PUSCH时, 在所述 PUCCH format 2或所述 PUCCH format 3或所述 PUSCH上同时发送所 述服务小区的 P-CSI;
第二发送单元, 设置为当位于同一分组的服务小区的个数为 2个, 所述上 行信道资源为所述 PUCCH format 3或所述 PUSCH时,在所述 PUCCH format 3 或所述 PUSCH上同时发送所述分组中服务小区中的每个服务小区的 P-CSI;
第三发送单元, 设置为当位于同一分组的服务小区的个数大于 2个, 所述 上行信道资源为所述 PUSCH时,在所述 PUSCH上同时发送所述分组中的每个 服务小区的 P-CSI;
第四发送单元, 设置为当位于同一分组的服务小区的个数大于 2个, 所述 上行信道资源为所述 PUCCH format 3时,从该组服务小区中选取 P-CSI优先级 最高的两个服务小区,并在所述 PUCCH format 3上同时发送选取后的每个服务 小区的 P-CSI;
第五发送单元, 设置为当位于同一分组的服务小区的个数大于 2个, 所述 上行信道资源为所述 PUCCH format 3时,如果所述多个服务小区的 P-CSI共同 反馈的比特数不超过 PUCCH format 3 所能携带比特数的最大值, 则在所述 PUCCH format 3上发送所述多个服务小区的 P-CSI, 否则, 从所述多个服务小 区中选取 P-CSI优先级最高的 N个服务小区, 并在所述 PUCCH format 3上同 时发送选取后的每个服务小区的 P-CSI, 其中, 所述选取的 N 个服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数的最大值, N为正整数。
27. 根据权利要求 25所述的装置, 其中, 所述第二确定单元包括: 第六发送单元, 设置为当各组服务小区中仅有一组服务小区所使用的所述 上行信道资源为所述 PUSCH时,在所述 PUSCH上同时发送所述多个服务小区 的 P-CSI;
第七发送单元, 设置为当各组服务小区中有多组服务小区所使用的所述上 行信道资源为所述 PUSCH时, 从所述多组服务小区中选取 P-CSI优先级最高 的服务小区所使用的 PUSCH, 并在选取的 PUSCH上同时发送所述多个服务小 区的 P-CSI;
第八发送单元, 设置为当各组服务小区中有多组服务小区所使用的所述上 行信道资源为所述 PUCCH format 3时,从所述多组服务小区中选取 P-CSI优先 级最高的服务小区所使用的 PUCCH format 3以及从所述多个服务小区中选取 P-CSI优先级最高的两个服务小区, 并在选取的 PUCCH format 3上同时所述选 取的每个服务小区的 P-CSI;
第九发送单元, 设置为当各组服务小区中有多组服务小区所使用的所述上 行信道资源为所述 PUCCH format 3时,从所述多组服务小区中选取 P-CSI优先 级最高的服务小区所使用的 PUCCH format 3, 如果所述多个服务小区的 P-CSI 共同反馈的比特数不超过 PUCCH format 3所能携带比特数的最大值,则在所述 选取的 PUCCH format 3上发送所述多个服务小区的 P-CSI, 否则, 从所述多个 服务小区中选取 P-CSI优先级最高的 N个服务小区, 并在所述选取的 PUCCH format 3上同时发送选取后的每个服务小区的 P-CSI, 其中, 所述选取的 N个 服务小区的 P-CSI共同反馈的比特数不超过 PUCCH format 3所能携带的比特数 的最大值, N为正整数。 根据权利要求 23所述的装置, 其中, 所述第二发送模块包括:
第十发送单元, 设置为当所述多个服务小区所在的分组中仅有一组服务小 区的 P-CSI所使用的所述上行信道资源为所述 PUSCH时,在所述 PUSCH上同 时发送所述多个服务小区中每个服务小区的 P-CSI 以及所述多个服务小区的 HARQ-ACK;
第十一发送单元, 设置为当所述多个服务小区所在的分组有多组服务小区 的 P-CSI所使用的所述上行信道资源为所述 PUSCH时, 从所述多组服务小区 中选取 P-CSI优先级最高的服务小区所使用的 PUSCH, 并在选取的 PUSCH上 同时发送多个服务小区中的每个服务小区的 P-CSI 以及所述多个服务小区的 HARQ-ACK; 第十二发送单元, 设置为所述多个服务小区的每个服务小区的 P-CSI发送 时所使用的上行信道资源没有配置为 PUSCH 且所述的多个服务小区的的 HARQ-ACK配置为使用 PUCCH format 3发送时, 从所述多个服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3 , 并所述多个服务小区 的 HARQ-ACK发送时所使用的所述的 PUCCH format 3资源上同时发送所述选 取服务小区的 P-CSI以及所述多个服务小区的 HARQ-ACK;
第十三发送单元, 设置为当所述多个服务小区中中的每个服务小区的 P-CSI发送时所使用的所述上行信道资源为所述 PUCCH format 2, 且所述多个 服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, 对所述多个服务小区的 HARQ-ACK进行空间绑定处理, 并判断经过空间绑定 处理后的 HARQ-ACK是否超过 2比特信息, 如果未超过, 则所述 UE从所述 多组服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 2, 并在选取的 PUCCH format 2上同时发送所述选取的服务小区的的 P-CSI以及所 述的经过空间绑定后的多个服务小区的 HARQ-ACK;如果超过,则使用 PUCCH format lb联合信道选择的方式发送所述多个服务小区的 HARQ-ACK;
第十四发送单元, 设置为当所述多个服务小区中有多个服务小区的 P-CSI 所使用的所述上行信道资源为所述 PUCCH format 3 且所述多个服务小区的 HARQ-ACK配置为使用 PUCCH format lb联合信道选择发送时, 从所述多个 服务小区中选取 P-CSI优先级最高的服务小区所使用的 PUCCH format 3, 并在 选取的 PUCCH format 3上同时发送与选取的 PUCCH format 3对应的服务小区 的 P-CSI和多个服务小区的 HARQ-ACK。
29. 根据权利要求 23至 28中任一项所述的装置, 其中, 所述第二发送模块, 设置 为在所述预设上行子帧上发送任一个服务小区的 P-CSI或者同时发送多个服务 小区的 P-CSI时, 在预设上行子帧根据所述高层信令在所述上行信道资源上发 送任一个服务小区的周期信道状态信息 P-CSI, 或者, 同时发送所述的多个服 务小区中每个服务小区的 P-CSI。
30. 根据权利要求 23至 28中任一项所述的装置, 其中, 所述第二发送模块, 设置 为在所述预设上行子帧上同时发送与所述 UE 对应的多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI时,所述 UE在所述预设上行子帧上根据 所述高层信令在所述上行信道资源上, 或者, 在所述多个服务小区的 HARQ-ACK发送时所使用的上行信道资源上, 同时发送所述多个服务小区的 HARQ-ACK和多个服务小区的 P-CSI。
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