WO2017132811A1 - 上行信息传输的方法、装置 - Google Patents

上行信息传输的方法、装置 Download PDF

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Publication number
WO2017132811A1
WO2017132811A1 PCT/CN2016/073110 CN2016073110W WO2017132811A1 WO 2017132811 A1 WO2017132811 A1 WO 2017132811A1 CN 2016073110 W CN2016073110 W CN 2016073110W WO 2017132811 A1 WO2017132811 A1 WO 2017132811A1
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WO
WIPO (PCT)
Prior art keywords
information
time domain
uplink data
resource corresponding
uplink
Prior art date
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PCT/CN2016/073110
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English (en)
French (fr)
Inventor
吴作敏
吕永霞
李超君
马莎
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2016/073110 priority Critical patent/WO2017132811A1/zh
Priority to EP16888637.2A priority patent/EP3402270A4/en
Priority to JP2018539943A priority patent/JP2019503631A/ja
Priority to CN201680079456.9A priority patent/CN108476500A/zh
Publication of WO2017132811A1 publication Critical patent/WO2017132811A1/zh
Priority to US16/050,570 priority patent/US20180338306A1/en

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    • 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
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/1263Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
    • H04W72/1268Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows of uplink data flows
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/08Access point devices
    • H04W88/10Access point devices adapted for operation in multiple networks, e.g. multi-mode access points

Definitions

  • the present invention relates to the field of communications, and in particular, to a method and apparatus for uplink information transmission.
  • latency is a key performance indicator (KPI), which also affects the user experience.
  • KPI key performance indicator
  • WCDMA Wideband Code Division Multiple Access
  • HSPA High-Speed Packet Access
  • LTE Long Term Evolution
  • the LTE physical layer needs to introduce a Short Transmission Time Interval (TTI) frame structure to further shorten the scheduling interval.
  • TTI can be shortened from 1 ms to 1 symbol (symbol) to 0.5 ms.
  • the above mentioned symbols may be an Orthogonal Frequency Division Multiplexing (OFDM) symbol in an LTE system.
  • OFDM Orthogonal Frequency Division Multiplexing
  • Figure 1 shows the RTT (Round-Trip Time) delay time chart of the base station data transmission.
  • HARQ Hybrid Automatic Repeat Request
  • DL downlink
  • UL uplink
  • ACK acknowledgement
  • the TTI with the number i+4 feeds back the negative character (Negative Acknowledgment, NACK), and the base station decides to perform new data transmission or retransmission processing on the TTI with the downlink number i+8 according to the ACK or NACK received on the TTI numbered i+4.
  • the fed back ACK or NACK may also be collectively referred to as HARQ-ACK information.
  • the length of the TTI for both uplink and downlink transmissions is 1 ms.
  • the processing time can be considered to be scaled down, and the above RTT delay is also followed.
  • LTE supports carrier aggregation technology, that is, the base station configures multiple carriers to one UE to increase the data rate of the UE.
  • a UE supporting carrier aggregation technology may simultaneously detect downlink data on multiple downlink carriers, and the UE needs to simultaneously The downlink data on multiple downlink carriers is used as a feedback mechanism of HARQ. Therefore, one channel is required to support information of multiple downlink carrier uplink and downlink data HARQ-ACK.
  • the UE needs to feed back the channel state information CSI (Channel State Information) on each carrier.
  • CSI Channel State Information
  • the UE may also send a Scheduling Request (SR) to the base station to request the uplink UL-SCH resource from the base station.
  • SR Scheduling Request
  • the UE may support data reception of multiple downlink carriers, but the uplink has only single carrier transmission capability.
  • the TTI length of the downlink carrier that schedules the uplink data transmission may be the same as the TTI length of the uplink carrier, or may be different from the TTI length of the uplink carrier.
  • it may be necessary to feed back HARQ-ACK feedback information and downlink data for downlink scheduling data to the base station in a specific uplink TTI.
  • the TTI length of the feedback HARQ-ACK feedback information and the TTI length of the transmission uplink data may not be equal. Taking FIG. 2 as an example, FIG.
  • FIG. 2 is a schematic diagram of an uplink control channel and an uplink data channel collision with different TTI lengths.
  • FIG. 2 includes an uplink carrier (Component carrier, CC for short) and two downlink carriers, and the two downlink carriers are downlink carrier 1 and downlink carrier 2, respectively.
  • the TTI durations of the downlink carrier 1 and the uplink carrier are equal, and the TTI durations of the downlink carrier 2 and the downlink carrier 1 are not equal.
  • the TTI length of the downlink carrier is the same as the TTI length of the uplink carrier, the data transmission on the uplink carrier is scheduled by the control signaling on the downlink carrier 1.
  • the UE transmits the uplink grant on the TTI of the uplink carrier number i+6 after receiving the uplink grant.
  • Uplink data information if the base station transmits data on the TTI of the downlink carrier 2 number i, after the UE receives the data, it will be at the time corresponding to the TTI of the downlink carrier 2 number i+4, that is, the number of the uplink carrier.
  • the uplink control information is fed back to the TTI of the i+6, that is, the collision between the uplink data and the uplink HARQ-ACK information of the corresponding downlink carrier 2 may occur on the TTI of the uplink carrier number i+6.
  • an object of embodiments of the present invention is to provide a solution that solves the problem.
  • a method for uplink information transmission comprising:
  • the user equipment determines uplink data information and uplink control information, where the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the uplink control information includes hybrid automatic repeat request information and channel state information. At least one of scheduling request information;
  • the user equipment transmits the first information on the overlapping time domain resource, where the first information includes At least one of two information and third information;
  • the second information includes part of the uplink control information or all the information of the uplink control information, where the third information includes part of the uplink data information or the uplink data information. All the information.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and includes:
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information.
  • the first information includes the second information
  • the method further includes at least one of the following steps:
  • the user equipment transmits the second information on the overlapping time domain resources in the resource corresponding to the uplink control information.
  • the user equipment transmits the second information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following steps:
  • the user equipment transmits the second information in a format corresponding to the uplink control information on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the user equipment transmits the second information on a predefined resource in the overlapping time domain resource in the resource corresponding to the uplink data information:
  • the user equipment repeatedly transmits on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the second information ;
  • the user equipment transmits the second information by using the same modulation manner as the uplink data information on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the method further includes:
  • the user equipment further transmits a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the first information includes the third information, where the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling request information.
  • the first information includes the third information
  • the method further includes at least one of the following steps:
  • the user equipment transmits the third information on the overlapping time domain resources in the resource corresponding to the uplink data information
  • the user equipment transmits the third information on the overlapping time domain resources in the resource corresponding to the uplink control information.
  • the first information includes the second information and the third information
  • the method further includes at least one of the following steps:
  • the user equipment transmits the first information on the overlapping time domain resources in the resource corresponding to the uplink control information.
  • the user equipment transmits the first information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following steps:
  • the user equipment transmits the third information in the first information on the resources other than the predefined resources in the overlapping time domain resources in the resources corresponding to the uplink data information;
  • the user equipment transmits the first information on the overlapping time domain resources in the resource corresponding to the uplink data information, where the second information and the first information in the first information are
  • the third information occupies different time-frequency resources
  • the user equipment transmits the second information and the third information in the first information by using the same modulation manner on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the method further includes:
  • the user equipment further transmits a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the method further includes:
  • the user equipment receives the indication information sent by the base station, where the indication information includes at least one of the following information:
  • the first information includes indication information of the content
  • the indication information of the manner in which the first information is transmitted on the overlapping time domain resources is transmitted on the overlapping time domain resources.
  • a method for uplink information transmission comprising:
  • the base station receives the uplink data information on the time domain resource corresponding to the uplink data information, and receives the uplink control information on the time domain resource corresponding to the uplink control information, where the length of the time domain resource corresponding to the uplink data information is not equal to the time domain corresponding to the uplink control information.
  • the base station When the time domain resource corresponding to the uplink data information overlaps with the time domain resource corresponding to the uplink control information, the base station receives the first information on the overlapping time domain resource, where the first information includes the second information. At least one of information and third information;
  • the second information includes part of the uplink control information or all the information of the uplink control information, where the third information includes part of the uplink data information or the uplink data information. All the information.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and includes:
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information
  • the length of the time domain resource corresponding to the uplink data information is smaller than the time domain resource corresponding to the uplink control information. length.
  • the first information includes the second information
  • the method further includes at least one of the following steps:
  • the base station receives the second information on the overlapping time domain resources in the resource corresponding to the uplink data information
  • the base station receives the second information on the overlapping time domain resources in the resource corresponding to the uplink control information.
  • the base station receives the second information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following steps:
  • the base station receives the second information by using the format corresponding to the uplink control information on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the base station receives the second information on a predefined resource in the overlapping time domain resource in the resource corresponding to the uplink data information:
  • the base station combines and receives the second information on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the base station receives the second information by using the same modulation mode as the uplink data information on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the method further includes:
  • the base station further receives a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information
  • the base station demodulates the first information according to the reference signal.
  • the first information includes the third information, where the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling request information.
  • the first information includes the third information
  • the method further includes at least one of the following steps:
  • the base station receives the third information on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the base station receives the third information on the overlapping time domain resources in the resource corresponding to the uplink control information.
  • the first information includes the second information and the third information
  • the method further includes at least one of the following steps:
  • the base station receives the first information on the overlapping time domain resources in the resource corresponding to the uplink data information
  • the base station receives the first information on the overlapping time domain resources in the resource corresponding to the uplink control information.
  • the receiving, by the base station, the first information on the time domain resource that is overlapped in the resource corresponding to the uplink data information including at least one of the following steps:
  • the base station receives the first information on the overlapping time domain resources in the resource corresponding to the uplink data information, where the second information in the first information and the first information
  • the third information occupies different time-frequency resources
  • the base station receives the second information and the third information in the first information by using the same modulation manner on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the method further includes:
  • the base station further receives a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information
  • the base station demodulates the first information according to the reference signal.
  • the method further includes:
  • the base station sends the indication information to the user equipment, where the indication information includes at least one of the following information:
  • the first information includes indication information of the content
  • the indication information of the manner in which the first information is transmitted on the overlapping time domain resources is transmitted on the overlapping time domain resources.
  • a transmission device for uplink information comprising: a bus system, a processor, and transceiver. Wherein the processor and the transceiver are connected by a bus system, the processor and the transceiver performing the method of the first aspect or any possible implementation of the first aspect.
  • a transmission device for uplink information comprising: a bus system, a processor, and a transceiver.
  • the processor and the transceiver are connected by a bus system, the processor and the transceiver performing the method of the second aspect or any possible implementation of the second aspect.
  • an apparatus for transmitting uplink information for performing the method of the first aspect or any possible implementation of the first aspect comprises means for performing the method of the first aspect or any of the possible implementations of the first aspect.
  • a device for transmitting uplink information for performing the method in any of the possible implementations of the second aspect or the second aspect.
  • the apparatus comprises means for performing the method of any of the second aspect or any of the possible implementations of the second aspect.
  • the embodiment of the invention provides an uplink information transmission method and device, which can ensure that the uplink control information with higher priority is transmitted, or can ensure the demodulation performance of the uplink data information, or can guarantee the demodulation of the uplink data information.
  • the uplink control information with higher priority is transmitted when the performance impact is small.
  • FIG. 1 is a diagram showing an RTT delay of data transmission of a base station in the prior art
  • FIG. 2 is a schematic diagram of an uplink control channel and an uplink data channel collision with different TTI lengths
  • FIG. 3 is a schematic diagram of an application scenario according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram showing conflicts between uplink data information transmission and uplink control information transmission of different TTI lengths
  • FIG. 5 is another schematic diagram showing conflicts between uplink data information transmission and uplink control information transmission of different TTI lengths
  • FIG. 6 is a flowchart of an uplink information transmission method according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention
  • FIG. 8 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention
  • FIG. 9 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • FIG. 10 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention
  • FIG. 11 is a flowchart of an uplink information transmission method according to an embodiment of the present invention.
  • FIG. 12 is a schematic diagram of an uplink control information transmission apparatus according to an embodiment of the present invention.
  • FIG. 13 is a schematic diagram of an uplink control information transmission apparatus according to an embodiment of the present invention.
  • the embodiment of the invention provides a method and a device for transmitting uplink information, which can solve the conflict between the uplink control information and the uplink data information during transmission.
  • the application environment of the embodiment of the present invention is briefly described below, and the LTE system or the LTE-A system is taken as an example.
  • the application environment of the embodiment of the present invention is not limited to the LTE related system, and any wireless communication system that performs data transmission through scheduling may use the present application.
  • the solution provided by the embodiment of the invention is not limited to the LTE related system, and any wireless communication system that performs data transmission through scheduling may use the present application.
  • the time length of one radio frame is 10 ms
  • the time length of one subframe is 1 ms
  • one radio frame includes 10 subframes.
  • NCP Normal Cyclic Prefix
  • ECP Extended Cyclic Prefix
  • one ECP subframe includes 12 OFDM symbols or 2 slots; the OFDM symbol is numbered from 0 to 11, and the 0th to the 5th The OFDM symbols are odd slots, and the sixth to eleventh OFDM symbols are even slots.
  • the smallest unit is the subcarrier. From the time-frequency two-dimensional joint view, the minimum unit is the resource element (Resource Element, RE) for the resource used for one antenna port transmission.
  • RE Resource Element
  • One RE includes one OFDM symbol in the time domain and one subcarrier in the frequency domain.
  • a Resource-Element Group (REG) may contain an integer number of REs, for example, one REG may contain 4 or 16 REs.
  • a physical resource block (PRB) includes one time slot in the time domain, 12 subcarriers in the frequency domain, and one PRB pair in one subframe.
  • a Resource Block (RB) contains one subframe in the time domain and 12 subcarriers in the frequency domain.
  • a Resource Block Group (RBG) may contain an integer number of PRBs. For example, one RBG may contain one, two, three, four or other integer number of PRBs.
  • the uplink symbol is called Single Carrier-Frequency Division Multiple Access (SC-FDMA) symbol, and the downlink symbol is called Orthogonal Frequency Division Multiplexing (OFDM) symbol. If the subsequent technology introduces an orthogonal multiple access method of Orthogonal Frequency Division Multiple Access (OFDMA), the uplink symbol may also be referred to as an OFDM symbol.
  • the uplink symbol and the downlink symbol are collectively referred to as a symbol.
  • a symbol includes a Cyclic Prefix (CP) portion and an information segment portion, wherein the information segment portion includes all information of one symbol; and the CP is a repetition of a portion of the information segment signal.
  • CP Cyclic Prefix
  • the symbols mentioned in the technical solutions of the embodiments of the present invention may also be symbols of other types of communications, which are not limited by the present invention.
  • the physical channel is specifically used for the transmission of data information and/or control information.
  • the physical channel includes one or a combination of the following: PUSCH (physical uplink shared channel, PUSCH, physical uplink shared channel), PUCCH (physical uplink control channel), PDCCH (Physical Downlink Control Channel), EPDCCH (Enhanced-Physical Downlink Control Channel, Enhanced Physical Downlink Control Channel), PCFICH (Physical Control Format Indicator Channel), PHICH (Physical Hybrid ARQ indicator channel), PDSCH (Physical) Downlink Shared Channel, etc., or the newly introduced functions in the standard, but different names of channels, such as control channels or data channels introduced in short TTI transmission.
  • Short TTI data transmission that is, data transmission with a TTI less than 1 subframe or 1 ms, for example, a TTI length of 0.5 ms, or a TTI length of one, two, three, four, five, six symbols,
  • the TTI length is a combination of at least two different TTI lengths of one, two, three, four, five, six, and seven symbols, for example, four TTIs in 1 ms, and lengths are four, three, respectively. , 4, 3 symbols or a combination of 3, 4, 3, 4 symbols or other different TTI lengths.
  • the TTI length is 0.25 ms in the embodiment of the present invention.
  • Short TTI data transmissions may be continuously distributed in the frequency domain or may be discontinuously distributed. It should be noted that, considering backward compatibility, there may be a case of 1 ms TTI transmission and short TTI transmission in the system.
  • FIG. 3 is a schematic diagram of an application scenario of the embodiment of the present invention.
  • the application scenario shown in FIG. 3 includes a cell base station 301, a user equipment 302 and a user equipment that are in the coverage of the cell base station 301 and communicate with the cell base station 301.
  • 303 ; wherein the cell base station 301 is a base station of the LTE system, the user equipments 302 and 303 are user equipments of the corresponding LTE system, and the cell base station 301 and the user equipment 302 are both devices supporting short TTI transmission, and the user equipment 303 is not supported by the short. TTI transmission equipment.
  • the cell base station 301 can communicate with the user equipment 302 using a short TTI or a normal 1 ms TTI, respectively.
  • the cell base station 301 can communicate with the user equipment 303 using a normal 1 ms TTI.
  • a user equipment may be referred to as a terminal (Mobile), a mobile station (Mobile Station, MS), a mobile terminal (Mobile Terminal), etc.
  • the user equipment may be through a radio access network.
  • Radio Access Network, RAN communicates with one or more core networks, for example, the user equipment may be a mobile phone (or "cellular" phone), a computer with a mobile terminal, etc., for example, the user device may also be portable , pocket, handheld, computer built-in or in-vehicle mobile devices that exchange voice and/or data with a wireless access network.
  • the base station may be an evolved base station (abbreviated as eNB or e-NodeB), a macro base station, and a micro base station (also referred to as a "small base station") in the LTE system or the LAA-LTE system.
  • eNB evolved base station
  • e-NodeB a macro base station
  • micro base station also referred to as a "small base station”
  • the present invention is not limited to a pico base station, an access point (AP), a transmission point (TP), or another network side device.
  • the carrier aggregation technology is supported in the LTE system, that is, the base station configures multiple carriers to one UE to increase the data rate of the UE.
  • a UE supporting the carrier aggregation technology may simultaneously detect downlink data on multiple downlink carriers, and the UE needs to perform a HARQ feedback mechanism for downlink data on the multiple downlink carriers at the same time. Therefore, an uplink channel is required to support transmission of uplink HARQ-ACK information corresponding to uplink and downlink data of multiple downlink carriers.
  • the UE needs to feed back the channel state information CSI (CSI) on each carrier to the base station.
  • CSI channel state information
  • the CSI information fed back by the UE to the base station is divided into periodic CSI information and aperiodic CSI information.
  • periodic CSI the feedback period of each downlink carrier is independently configured.
  • the UE When the periodic CSI of multiple downlink component carriers needs to be simultaneously fed back, the UE only feeds back the periodic CSI with the highest priority on a certain component carrier, where the same priority is given.
  • the periodic CSI of the plurality of downlink component carriers of the level, and the periodic CSI of the component carrier with the smallest downlink component carrier index is fed back.
  • the control bits in the dynamic downlink control information DCI are used to trigger the aperiodic CSI.
  • the UE may need to feed back uplink HARQ-ACK feedback information for downlink scheduling data and CSI information on multiple carriers to the base station at the same time.
  • the UE may also send a Scheduling Request (SR) to the base station to request the uplink UL-SCH resource from the base station.
  • SR Scheduling Request
  • the uplink HARQ-ACK information corresponding to the downlink transmission data block, the CSI feedback information obtained by measuring the downlink channel state, and the scheduling request SR information sent by the UE are all Uplink Control Information (UCI), where CSI
  • the feedback information may include at least one of CQI (Channel Quality Indicator) information, PMI (Precoding Matrix Indicator) information, and RI (Rank Indicator) information.
  • the UCI can be carried on the PUCCH or on the PUSCH. The embodiment of the present invention mainly considers the case where the UCI is carried on the PUSCH.
  • the UE can support downlink data reception with multiple different TTI lengths, where each TTI can be transmitted as a complete transmission data block that can be demodulated independently.
  • the UE can also support uplink data transmission of multiple different TTI lengths.
  • the length of the TTI of the downlink transmission and the corresponding uplink transmission may be the same.
  • the length of the TTI of the downlink transmission and its corresponding uplink transmission is 0.25 ms; the length of the TTI of the downlink transmission may be less than the length of the TTI of the corresponding uplink transmission, for example, downlink transmission.
  • the length of the TTI is 2 symbols, and the length of the TTI of the uplink transmission is 3 symbols.
  • the length of the TTI of the downlink transmission may also be greater than the length of the TTI of the corresponding uplink transmission.
  • the length of the TTI of the downlink transmission is 0.25 ms, and the length of the TTI of the uplink transmission. It is 1 symbol.
  • a plurality of downlink transport data blocks corresponding to different TTI lengths may be from the same carrier or may be from different carriers.
  • the UE also needs to feed back CSI information on different carriers.
  • the corresponding HARQ processing delay is also shortened. It can be considered that the HARQ processing delay is proportionally shortened, that is, the data transmission of the short TTI still follows the length of 4 times TTI.
  • the HARQ feedback delay may also be considered as follows:
  • the data transmission of the short TTI follows the HARQ feedback delay of more than 4 times the TTI length or the HARQ feedback delay of less than 4 times the TTI length, which is not limited in the present invention.
  • the UE needs to transmit uplink data information and uplink control information of different lengths to the base station at the same time in the uplink, and thus the uplink data information transmission and the uplink control information transmission may conflict.
  • the following describes the problem in detail.
  • the UE in the carrier aggregation scenario describes the conflict between the uplink data information transmission and the uplink control information transmission of different TTI lengths.
  • the short TTI data transmission follows 4
  • the HARQ feedback delay of the TTI length is doubled, and it is assumed that the TTI length of the uplink transmission is the same as the TTI length of its corresponding downlink transmission.
  • FIG. 4 is a schematic diagram showing conflicts between uplink data information transmission and uplink control information transmission with different TTI lengths.
  • the UE supports two downlink carrier data receptions and one uplink carrier data transmission, where the two downlink carriers are downlink carrier 1 and downlink carrier 2, respectively.
  • the TTI length of the downlink carrier 1 and the uplink carrier is greater than the TTI length of the downlink carrier 2, and the TTI of the downlink carrier 1 and the TTI length of the uplink carrier are equal, and the data transmission on the uplink carrier is scheduled by using the control signaling on the downlink carrier 1. of.
  • Each of the cuboids in FIG. 4 represents one TTI corresponding to the uplink data or the downlink data, that is, 4101 is the TTI of the downlink carrier 1, 4201 is the TTI of the uplink carrier, and 4301 is the TTI of the downlink carrier 2.
  • the duration of the TTI of 4101 is equal to the duration of the TTI of 4201, and the duration of the TTI of 4101 is equal to twice the duration of the 4301 TTI.
  • the TTI of the downlink carrier 1 and the TTI duration of the uplink carrier are equal. Therefore, after receiving the uplink grant on the kth TTI of the downlink carrier 1, the UE will be on the TTI of the uplink carrier corresponding to the k+4th TTI of the downlink carrier 1. Transmit upstream data information. For example, after receiving the uplink grant on 4101, the uplink data information is transmitted on the 4205 corresponding to 4105.
  • the duration of the TTI of the uplink carrier is twice the length of the TTI of the downlink carrier 2, and the HARQ-ACK information corresponding to the data of the kth TTI of the downlink carrier 2 should be the uplink corresponding to the k+4th TTI of the downlink carrier 2.
  • Feedback on the TTI of the carrier For example, the HARQ-ACK information corresponding to the data on the 4301, the uplink control information should be fed back in the first half of the 4203 corresponding to 4305 according to the HARQ timing, and the data on the 4306 should be fed back in the second half of the 4205 according to the HARQ timing. information.
  • the data information transmitted on the uplink carrier and the HARQ-ACK information may be in conflict, and the type of the conflict may include:
  • the 4101 of the downlink carrier 1 there is the uplink grant transmission of the UE, the 4305 of the downlink carrier 2, and the 4306 of the downlink carrier 2 have the data transmission of the UE at the same time, and the data information and HARQ-ACK transmitted by the UE on the uplink carrier 4205 Information can create conflicts.
  • FIG. 4 illustrates a case where the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information, that is, the TTI length of the PUSCH is greater than the TTI length of the PUCCH.
  • FIG. 5 is a schematic diagram showing conflicts between uplink data information transmission and uplink control information transmission of different TTI lengths.
  • the scenario shown in FIG. 5 includes one uplink carrier and two downlink carriers, and the two downlink carriers are downlink carrier 1 and downlink carrier 2, respectively.
  • the TTI length of the downlink carrier 1 is greater than the TTI length of the uplink carrier and the downlink carrier 2
  • the TTI duration of the downlink carrier 1 is twice the TTI duration of the downlink carrier 2
  • the TTI duration of the downlink carrier 2 is equal to the TTI duration of the uplink carrier.
  • the data transmission on the uplink carrier is scheduled by the control signaling on the downlink carrier 2.
  • the HARQ-ACK information corresponding to the data transmitted on the 5101 of the downlink carrier 1 is fed back in the 5209 and 5210 of the uplink carrier; the PUSCH corresponding to the uplink grant transmitted on the 5305 of the downlink carrier 2 is transmitted on the 5209, and the downlink carrier 2 is transmitted.
  • the PUSCH corresponding to the uplink grant transmitted on the 5306 is transmitted on the 5210.
  • the data information transmitted on the uplink carrier and the HARQ-ACK information may be in conflict.
  • the types of conflicts may include:
  • the data information and the HARQ-ACK information transmitted by the UE on the 5209 of the uplink carrier may collide; or If the 5101 of the downlink carrier 1 has the data transmission of the UE and the uplink grant transmission of the UE on the 5306 of the downlink carrier 2, the data information transmitted on the uplink carrier 5210 and the HARQ-ACK information may collide.
  • the 5101 of the downlink carrier 1 has the data transmission of the UE, the 5305 of the downlink carrier 2, and the 5306 of the downlink carrier 2 all have the uplink grant transmission of the UE, and the data information and HARQ transmitted by the UE on the 5209 and 5210 of the uplink carrier are The ACK message also generates a collision.
  • FIG. 5 illustrates a case where the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information, that is, the TTI length of the PUSCH is smaller than the TTI length of the PUCCH.
  • the embodiment of the present invention provides the following method.
  • FIG. 6 is a flowchart of an uplink information transmission method according to an embodiment of the present invention. As shown in FIG. 6, the method includes:
  • Step 601 The user equipment determines uplink data information and uplink control information.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information
  • the uplink control information includes at least one of hybrid automatic repeat request (HARQ-ACK) information, channel state information (CSI), and scheduling request (SR) information.
  • HARQ-ACK hybrid automatic repeat request
  • CSI channel state information
  • SR scheduling request
  • the channel state information includes at least one of CQI information, PMI information, and RI information.
  • the time sequence in which the user equipment determines the uplink data information and the uplink control information is not limited.
  • the user equipment may first determine the uplink data information, and then determine the uplink control information; the user equipment may also determine the uplink control information and then determine the uplink data information; the user equipment may also determine the uplink data information and the uplink control information at the same time.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the length of the time domain resource corresponding to the uplink data information is greater than the time corresponding to the uplink control information.
  • the length of the domain resource, or the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information.
  • the length of the time domain resource corresponding to the uplink data information is the length of the PUSCH corresponding to the uplink data information
  • the length of the time domain resource corresponding to the uplink control information is the PUCCH corresponding to the uplink control information. length.
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information, and the length of the time domain resource corresponding to the uplink control information is less than 1 millisecond.
  • the length of the time domain resource corresponding to the uplink data information is the length of the first transmission time interval TTI, and the length of the time domain resource corresponding to the uplink control information is the second transmission time interval TTI duration, and the second TTI duration is less than 1 millisecond.
  • the length of the time domain resource corresponding to the uplink data information is 1 ms, and the length of the time domain resource corresponding to the uplink control information is 0.5 ms or 0.25 ms or 4 symbols or 3 symbols or 2 symbols or 1 symbol.
  • the length of the time domain resource corresponding to the uplink data information and the length of the time domain resource corresponding to the uplink control information are both less than 1 ms, for example, the length of the time domain resource corresponding to the uplink data information is 0.5 ms, and the time domain corresponding to the uplink control information
  • the length of the resource is 0.25ms or 4 Symbol or 3 symbols or 2 symbols or 1 symbol.
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information, and the length of the time domain resource corresponding to the uplink data information is less than 1 millisecond.
  • the length of the time domain resource corresponding to the uplink data information is the duration of the first transmission time interval TTI
  • the length of the time domain resource corresponding to the uplink control information is the duration of the second transmission time interval TTI
  • the time domain resource corresponding to the uplink data information is less than 1 millisecond.
  • the length of the time domain resource corresponding to the uplink control information is 1 ms
  • the length of the time domain resource corresponding to the uplink data information is 0.5 ms or 0.25 ms or 4 symbols or 3 symbols or 2 symbols or 1 symbol.
  • the length of the time domain resource corresponding to the uplink control information and the length of the time domain resource corresponding to the uplink data information are both less than 1 ms, for example, the length of the time domain resource corresponding to the uplink control information is 0.5 ms, and the time domain corresponding to the uplink data information
  • the length of the resource is 0.25 ms or 4 symbols or 3 symbols or 2 symbols or 1 symbol.
  • the base station determines, by using a predefined manner, the user equipment to determine the time domain resource corresponding to the uplink data information and/or the time domain resource corresponding to the uplink control information.
  • the base station allocates a time domain resource corresponding to the uplink data information and/or a time domain resource corresponding to the uplink control information to the user equipment.
  • the base station notifies the resource allocation information of the time domain resource corresponding to the uplink data information and/or the resource allocation information of the time domain resource corresponding to the uplink control information by means of RRC signaling, MAC signaling, or physical layer signaling.
  • the RRC signaling or the MAC signaling or the physical layer signaling may be carried on the carrier or may be carried on the non-local carrier.
  • the user equipment receives the indication information sent by the base station, where the indication information includes the resource allocation information of the time domain resource corresponding to the uplink data information and/or the resource of the time domain resource corresponding to the uplink control information. Assign information.
  • the resource allocation information of the time domain resource corresponding to the uplink data information may be the indication information of the length of the time domain resource corresponding to the uplink data information, and may be the indication information of the TTI length of the PUSCH corresponding to the uplink data information, which may be
  • the indication information of the PUSCH channel resource in the uplink grant (UL grant) corresponding to the uplink data information may also include a time domain resource indication, and/or a frequency domain resource indication, and/or a spatial domain resource indication, and/or a code resource indication. Resource allocation information corresponding to the uplink data information.
  • the resource allocation information of the time domain resource corresponding to the uplink control information may be the indication information of the length of the time domain resource corresponding to the uplink control information, and may be the indication information of the TTI length of the PUCCH corresponding to the uplink control information, and may be corresponding to the uplink control information.
  • the indication information of the PUCCH channel resource may also be resource allocation information including a time domain resource indication, and/or a frequency domain resource indication, and/or a spatial domain resource indication, and/or uplink control information indicated by the code resource.
  • the time domain resource corresponding to the uplink data information or the uplink control information corresponds to
  • the time domain resource is a time domain resource that is pre-allocated to the user equipment for transmitting uplink data information or uplink control information, and the time domain resource used when the uplink data information or the uplink control information is actually transmitted is not necessarily the pre-allocated uplink data. All time domain resources corresponding to information or uplink control information.
  • Step 602 When the time domain resource corresponding to the uplink data information overlaps with the time domain resource corresponding to the uplink control information, the user equipment transmits the first information on the overlapping time domain resource.
  • the first information includes at least one of the second information and the third information
  • the second information includes part of the uplink control information or all the information of the uplink control information, where the third information includes part of the uplink data information or all of the uplink data information.
  • the first information may include the following eight situations:
  • part of the uplink control information or all information in the uplink control information may also be described as “partial information or all information in the uplink control information” or “uplink control information”. "Partial or all”, the three indicate the same meaning.
  • part of the information in the uplink control information and the “part of the uplink control information” have the same meaning
  • all information in the uplink control information and “uplink control” "All of the information” means the same meaning
  • partial information in the uplink data information or all information in the uplink data information may also be described as “partial information or all information in the uplink data information” or “partial or all of the uplink data information” "The three indicate the same meaning.
  • part of the information in the uplink data” and “part of the uplink data” have the same meaning, “all information in the uplink data” and “all of the uplink data”. Express the same meaning.
  • the user equipment determines that the time domain resource corresponding to the uplink data information overlaps with the time domain resource corresponding to the uplink control information.
  • the overlapping manner of the time domain resource corresponding to the uplink data information and the time domain resource corresponding to the uplink control information may be included in the time domain resource corresponding to the uplink data information. All resources or part of resources in the time domain resource corresponding to the uplink control information.
  • the overlapping manner of the time domain resource corresponding to the uplink data information and the time domain resource corresponding to the uplink control information may be that all resources or parts of the time domain resource corresponding to the uplink data information in the time domain resource corresponding to the uplink control information Resources.
  • the length of the overlapping time domain resource is less than 1 ms, for example, one or several symbols, or one time slot.
  • the base station sends the indication information of the overlapping time domain resources to the user equipment.
  • the indication information of the overlapping time domain resources may include the length of the overlapping time domain resources, and the symbol labels of the overlapping time domain resources overlap. At least one of a time slot label of a time domain resource, a start position of an overlapping time domain resource, an end position of an overlapping time domain resource, and the like.
  • the base station may notify the user equipment of the indication information of the overlapping time domain resources by means of RRC signaling, MAC signaling, or physical layer signaling, where the RRC signaling or MAC signaling or physical layer signaling may be
  • the bearer is carried on the carrier and can also be carried on the non-local carrier.
  • the resource corresponding to the uplink control information or the resource corresponding to the uplink data includes the resource in the time domain, and further includes at least one of a resource in the frequency domain, a code resource, and a resource of the space antenna port.
  • the overlapping means that the resources corresponding to the uplink data information and the resources corresponding to the uplink control information overlap in the time domain, and the resources and uplinks corresponding to the uplink data information are in the frequency domain, and/or the code domain, and/or the airspace.
  • the resources corresponding to the control information may or may not overlap, which is not limited in the embodiment of the present invention.
  • the time domain resources corresponding to one uplink control information overlap with the time domain resources corresponding to one uplink data information, and the time domain corresponding to multiple uplink control information occurs.
  • the processing method and one uplink control information The case where the corresponding time domain resource overlaps with the time domain resource corresponding to one uplink data information is similar, and details are not described herein again.
  • the first information includes part or all of the uplink control information.
  • the first information includes part or all of the uplink data information.
  • the first information includes part or all of the uplink control information, and part or all of the uplink data information.
  • the content of the first information is predefined.
  • the content of the first information is determined by the user equipment receiving the content indication information of the first information sent by the base station. Further, the base station notifies the user equipment of the indication information of the first information by means of RRC signaling, MAC signaling, or physical layer signaling, and the RRC signaling or MAC signaling or physical layer signaling may be carried in the On this carrier, it can also be carried on a non-local carrier.
  • the overlapping time domain resource may be part of the time domain resource in the time domain resource corresponding to the uplink control information, and the part of the uplink control information may refer to the first information including the uplink. Part of the information in the control information.
  • the overlapping time domain resource may be part of the time domain resource in the time domain resource corresponding to the uplink data information, and the part of the uplink data information may refer to the first information including the uplink data. Part of the information in the entire information.
  • the uplink control information includes at least one of hybrid automatic repeat request information, channel state information, and scheduling request information, where the hybrid automatic repeat request information is response information to the downlink data packet received by the user equipment,
  • the scheduling request information is information for requesting an uplink transmission resource from the base station, and the channel state information is information for reporting a downlink channel state of the user equipment to the base station.
  • the uplink control information includes at least two types of the hybrid automatic repeat request information, the channel state information, and the scheduling request information
  • the part of the uplink control information may be the uplink control information. At least one of the above two types of information is not included.
  • the hybrid automatic repeat request information and/or the scheduling request information may be considered to have higher priority than the channel state information.
  • the uplink control information includes at least one of the hybrid automatic repeat request information or the scheduling request information, and the channel state information
  • the part of the uplink control information may refer to other information except the channel state information in the uplink control information.
  • the first information includes the second information, that is, the first information includes part or all of the uplink control information.
  • the user equipment does not transmit the uplink data information on the time domain resources overlapped in the time domain resources corresponding to the uplink data information and the time domain resources corresponding to the uplink control information, so that only the uplink control information is transmitted on the overlapping time domain resources. Part or all.
  • FIG. 7 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the time domain resource corresponding to the uplink data information is longer than the time domain resource corresponding to the uplink control information, and the time domain resource corresponding to the uplink data information includes all the resources in the time domain resource corresponding to the uplink control information.
  • the length of the time domain resource corresponding to the uplink control information is 4 symbols, and the corresponding symbol 0, 1, 2, 3 is used for transmitting uplink control information; and the length of the time domain resource corresponding to the uplink data information.
  • the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information are on symbols 0, 1, 2, and 3. overlapping.
  • the symbols 0, 1, 2, and 3 on the uplink carrier are represented by 7209, and the symbols 4, 5, and 6 on the uplink carrier are represented by 7210.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data do not overlap in the frequency domain.
  • FIG. 8 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information, and the time domain resource corresponding to the uplink control information includes all the resources in the time domain resource corresponding to the uplink data information.
  • the length of the time domain resource corresponding to the uplink data information is 4 symbols, and the corresponding symbols 0, 1, 2, and 3 are used for transmitting uplink data information, and the length of the time domain resource corresponding to the uplink control information.
  • the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information overlap on the symbols 0, 1, 2, and 3.
  • the symbols 0, 1, 2, and 3 on the uplink carrier are represented by 8209, and the symbols 4, 5, and 6 on the uplink carrier are represented by 8210.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data do not overlap in the frequency domain.
  • FIG. 9 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the time domain resource corresponding to the uplink data information is longer than the time domain resource corresponding to the uplink control information, and the time domain resource corresponding to the uplink data information includes some resources in the time domain resource corresponding to the uplink control information.
  • the length of the time domain resource corresponding to the uplink data information is 3 symbols, and the corresponding symbol 0, 1, 2 is used for transmitting uplink data information; and the length of the time domain resource corresponding to the uplink control information is 2
  • the symbols, specifically corresponding to symbol 2 and symbol 3 are used to transmit uplink control information.
  • the time domain resource corresponding to the uplink control information and the time domain resource corresponding to the uplink data information overlap on symbol 2.
  • the symbol 0, 1 on the uplink carrier is represented by 9209
  • the symbol 2 on the uplink carrier is represented by 9210
  • the symbol 3 on the uplink carrier is represented by 9211.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data do not overlap in the frequency domain.
  • the user equipment should transmit uplink control information on the resource corresponding to the uplink control information, and transmit the uplink data information on the resource corresponding to the uplink data information.
  • the user equipment may transmit part or all of the uplink control information on the overlapping time domain resources due to the single carrier feature sent by the user equipment. For example, the symbol represented by the user equipment in 7209 in FIG. Some or all of the uplink control information is transmitted on the symbol indicated by 8209 in FIG. 8 or the symbol indicated by 9210 in FIG.
  • part or all of the uplink control information is transmitted by the user equipment on the overlapping time domain resources, and the user equipment may transmit part or all of the uplink control information on the time domain resources that overlap in the resources corresponding to the uplink control information.
  • the user equipment transmits part or all of the uplink control information on the resource indicated by 72091 in FIG. 7, or on the resource indicated by 82091 in FIG. 8, or on the resource indicated by 92101 in FIG.
  • the user equipment transmits the uplink control information on the resource corresponding to the uplink control information by using the format of the original transmission uplink control information.
  • part or all of the uplink control information transmitted by the user equipment on the overlapping time domain resources may be part or all of the uplink control information transmitted by the user equipment on the time domain resources overlapped in the resources corresponding to the uplink data information.
  • the user equipment transmits part or all of the uplink control information on the resource indicated by 72092 in FIG. 7, or on the resource indicated by 82092 in FIG. 8, or on the resource indicated by 92102 in FIG.
  • the user equipment transmits part or all of the uplink control information in a format in which the PUCCH transmits the uplink control information on the time domain resource that overlaps the resources corresponding to the uplink data information.
  • 72091 is an area of 2*4 in the upper left corner
  • 72092 is an area of 4*4 in the lower left corner.
  • 82091 is an area of 2*4 in the upper left corner
  • 82092 is an area of 4*4 in the lower left corner.
  • 92101 is an area of the upper part 2*1 of the symbol 2
  • 92102 is an area of the lower part 4*1 of the symbol 2.
  • the uplink data information includes more content than the uplink control information, and therefore the frequency domain resource allocated to the user for transmitting the uplink data information is greater than the frequency domain resource for the user to transmit the uplink control information.
  • the frequency domain resource corresponding to the uplink control information is two PRBs
  • the frequency domain resource corresponding to the uplink data information is four PRBs.
  • the user equipment transmits part or all of the uplink control information on the predefined resources in the time domain resources that are overlapped in the resources corresponding to the uplink data information.
  • the user equipment transmits part or all of the uplink control information on the two predefined PRBs in the four PRBs corresponding to the uplink data information.
  • the user equipment repeatedly transmits part or all of the uplink control information on the time domain resources that are overlapped in the resources corresponding to the uplink data information. For example, the user equipment repeatedly transmits part or all of the uplink control information on every two PRBs of the four PRBs corresponding to the uplink data information.
  • the user equipment transmits part or all of the uplink control information by using the same modulation mode as the uplink data information on the time domain resources that are overlapped in the resources corresponding to the uplink data information.
  • the receiving side demodulates the uplink control information by using a reference signal for demodulating the uplink data information.
  • the user equipment transmits the uplink control on the time domain resource that overlaps in the resource corresponding to the uplink data information. Part or all of the information, the reference signal is also transmitted.
  • the receiving side uses the reference signal to demodulate the uplink control information or the uplink data information.
  • the user equipment transmits part or all of the uplink data information on the time domain resource that does not include the overlapping time domain resource in the time domain resource corresponding to the uplink data information.
  • the user equipment does not transmit uplink data information on the overlapping time domain resources, such as the symbol represented by 7209 in FIG. 7, or the symbol represented by 8209 in FIG. 8, or the symbol indicated by 9210 in FIG.
  • the user equipment does not transmit the uplink data information on the time domain resource corresponding to the uplink data information. For example, in the case shown in FIG. 8, the user equipment drops the uplink data packet originally scheduled to be transmitted on the 82092.
  • the user equipment only transmits part or all of the uplink control information on the overlapping time domain resources, so that the uplink control information with higher priority can be transmitted.
  • the first information includes the third information, that is, the first information includes part or all of the uplink data information.
  • the user equipment does not transmit the uplink control information on the time domain resources in the time domain resources corresponding to the uplink data information and the time domain resources corresponding to the uplink control information, so that only the uplink data information is transmitted on the overlapping time domain resources. Part or all.
  • the user equipment transmits uplink data on the symbol represented by 7209 in FIG. 7, or the symbol represented by 8209 in FIG. 8, or the symbol indicated by 9210 in FIG. Part or all of the information.
  • the user equipment transmits part or all of the uplink data information on the time domain resources that are overlapped in the resources corresponding to the uplink data information, for example, the user equipment is on the resource represented by 72092 in FIG. 7, or the resource represented by 82092 in FIG. Some or all of the uplink data information is transmitted on the resource indicated by 92102 in FIG.
  • the user equipment transmits part or all of the uplink data information on the time domain resources that are overlapped in the resources corresponding to the uplink control information, for example, the user equipment is on the resource represented by 72091 in FIG. 7, or the resource represented by 82091 in FIG. Some or all of the uplink data information is transmitted on the resource indicated by 92101 in FIG.
  • the uplink control information includes at least one of hybrid automatic repeat request information, channel state information, and scheduling request information, where the hybrid automatic repeat request information is response information to the downlink data packet received by the user equipment,
  • the scheduling request information is information for requesting an uplink transmission resource from the base station, and the channel state information is information for reporting a downlink channel state of the user equipment to the base station.
  • the hybrid automatic repeat request information and/or the scheduling request information may be considered to have higher priority than the channel state information.
  • the time domain resource and the uplink control information corresponding to the uplink data information of the user equipment Only part or all of the uplink data information is transmitted on the overlapping time domain resources in the time domain resources corresponding to the information, wherein the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling request information.
  • the user equipment transmits part or all of the uplink control information on the time domain resource that does not include the overlapping time domain resource in the time domain resource corresponding to the uplink control information.
  • the user equipment does not transmit uplink control information on the overlapping time domain resources, such as the symbol represented by 7209 in FIG. 7, or the symbol represented by 8209 in FIG. 8, or the symbol indicated by 9210 in FIG.
  • the user equipment does not transmit the uplink control information on the time domain resource corresponding to the uplink control information. For example, in the case shown in FIG. 7, the user equipment discards the uplink control information originally scheduled to be transmitted on the 72091.
  • the user equipment only transmits part or all of the uplink data information on the overlapping time domain resources, and the demodulation performance of the uplink data information can be guaranteed.
  • the first information includes the second information and the third information, that is, the first information includes part or all of the uplink control information, and part or all of the uplink data information.
  • the user equipment transmits part or all of the uplink control information and some or all of the uplink data information on the time domain resource in which the time domain resource corresponding to the uplink control information and the time domain resource corresponding to the uplink data information overlap.
  • the user equipment should transmit uplink control information on the resource corresponding to the uplink control information, and transmit the uplink data information on the resource corresponding to the uplink data information.
  • the user equipment may transmit the first information on the overlapping time domain resource. For example, the user equipment transmits part or all of the uplink control information on the symbol indicated by 7209 in FIG. 7, or the symbol indicated by 8209 in FIG. 8, or the symbol indicated by 9210 in FIG. 9, and part or all of the uplink data information.
  • the user equipment transmitting the first information on the overlapping time domain resources may transmit part or all of the uplink control information and the part of the uplink data information on the time domain resource that is overlapped by the user equipment in the resource corresponding to the uplink control information. Or all.
  • the user equipment transmits part or all of the uplink control information on the resource indicated by 72091 in FIG. 7, or the resource indicated by 82091 in FIG. 8, or the resource indicated by 92101 in FIG. 9, and part or all of the uplink data information.
  • the user equipment transmitting the first information on the overlapping time domain resources may transmit part or all of the uplink control information and the part of the uplink data information on the time domain resource that is overlapped by the user equipment in the resource corresponding to the uplink data information. Or all.
  • the user equipment is on the resource indicated by 72092 in FIG. 7, or 82921 in FIG.
  • Some or all of the uplink control information and some or all of the uplink data information are transmitted on the resource, or the resource indicated by 92102 in FIG.
  • the user equipment transmitting the first information on the overlapping time domain resources may transmit part or all of the uplink control information on the time domain resource overlapped by the user equipment in the resource corresponding to the uplink control information, where the uplink data information is corresponding. Part or all of the uplink data information is transmitted on overlapping time domain resources in the resource.
  • the user equipment transmits part or all of the uplink control information on the resource indicated by 72091 in FIG. 7, or the resource indicated by 82091 in FIG. 8, or the resource indicated by 92101 in FIG. 9; on the resource indicated by 72092 in FIG. , or part or all of the uplink data information transmitted on the resource indicated by 82092 in FIG. 8 or the resource indicated by 92102 in FIG. 9.
  • the user equipment separately encodes the second information in the first information and the third information in the first information, and then transmits the time domain resources that are overlapped in the resources corresponding to the uplink data information.
  • the uplink control information and the uplink data information occupy different time domain resources, and/or frequency domain resources, and/or air domain resources, and/or code domain resources.
  • the user equipment jointly encodes the second information in the first information and the third information in the first information, and then transmits the time domain resources that are overlapped in the resources corresponding to the uplink data information.
  • the second information in the first information and the third information in the first information use the same modulation mode.
  • the first information that is transmitted by the user equipment on the time domain resource that is overlapped in the resource corresponding to the uplink data information may be sent by the user equipment to the predefined resource in the time domain resource that is overlapped in the resource corresponding to the uplink data information.
  • the second information in a message.
  • the time domain location where the predefined resource is located is determined according to a HARQ feedback timing. This will be described below with reference to FIG.
  • FIG. 10 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the length of the time domain resource corresponding to the uplink control information is 4 symbols, and the corresponding symbols 0, 1, 2, and 3 are used for transmitting uplink control information; and the length of the time domain resource corresponding to the uplink data information. It is 7 symbols, specifically corresponding to symbols 0 to 6, for transmitting uplink data information.
  • the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information overlap on the symbols 0, 1, 2, and 3.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data information do not overlap in the frequency domain.
  • the HARQ-ACK information should be transmitted on the time domain resource corresponding to the uplink control information, so optionally, the location of the predefined resource may be in the time domain.
  • the predefined resource On at least one of the symbols 0, 1, 2, 3, in the frequency domain, it may be the last one or several RBs in the resource corresponding to the uplink data information, and the predefined resource may be continuous in the frequency domain.
  • the distributed resources 1, as defined in FIG. 10, may also be discretely distributed, such as resource 2 predefined in FIG.
  • the location of the predefined resource may also be on the first or first few RBs of the resources corresponding to the uplink data information in the frequency domain, such as the resource 3 predefined in FIG.
  • the user equipment does not transmit the third information in the first information, and the time domain resource that overlaps in the resource corresponding to the uplink data information, in the predefined resource in the time domain resource that is overlapped in the resource corresponding to the uplink data information.
  • the third information in the first information is transmitted on the resources other than the predefined resources, that is, the second information in the first information and the third information in the first information occupy different time-frequency resources.
  • the user equipment may transmit the second information in the first information on the predefined resource by means of puncturing or rate matching.
  • the receiving side demodulates the uplink control information by using a reference signal for demodulating the uplink data information.
  • the user equipment transmits the reference signal on the time domain resource that overlaps the resources corresponding to the uplink data information, except for transmitting the first information.
  • the receiving side uses the reference signal to demodulate the uplink control information or the uplink data information.
  • the manner of transmitting the first information on the overlapping time domain resources includes repetition, frequency division multiplexing, time division multiplexing, code division multiplexing, puncturing, rate matching, and association. At least one of encoding and the like.
  • the manner in which the first information is transmitted on the overlapping time domain resources is predefined.
  • the manner in which the first information is transmitted on the overlapping time domain resource is determined by the user equipment receiving the indication information of the manner in which the first information is transmitted on the overlapping time domain resources sent by the base station.
  • the base station notifies the user equipment of the indication information of the manner of transmitting the first information on the overlapping time domain resource by means of RRC signaling, MAC signaling, or physical layer signaling, and the RRC signaling or MAC
  • the command or physical layer signaling may be carried on the carrier or on the non-local carrier.
  • the user equipment transmits part or all of the uplink control information and some or all of the uplink data information in an overlapping manner on the overlapping time domain resources, so as to ensure demodulation performance on the uplink data information.
  • the uplink control information with higher priority is transmitted when the impact is small.
  • the uplink control information with higher priority can be transmitted, and the time domain resources of the user equipment are overlapped. Only part or all of the uplink data information is transmitted, and the demodulation performance of the uplink data information can be guaranteed; Case 3 transmits part or all of the uplink control information in a multiplexed manner on the overlapping time domain resources, and Part or all of the row data information can ensure that the uplink control information with higher priority is transmitted when the demodulation performance of the uplink data information is less affected.
  • the method of the present invention is mainly described from the application to the user equipment side, the user equipment transmits the first information, and the base station receives the first information. Therefore, the present invention further provides a method for transmitting uplink information of the uplink control information, which is applied to the method. Base station side.
  • FIG. 11 is a flowchart of an uplink information transmission method according to an embodiment of the present invention. As shown in FIG. 11, the method includes:
  • Step 1101 The base station receives the uplink data information on the time domain resource corresponding to the uplink data information, and receives the uplink control information on the time domain resource corresponding to the uplink control information.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the uplink control information includes at least one of hybrid automatic repeat request information, channel state information, and scheduling request information.
  • Step 1102 When the time domain resource corresponding to the uplink data information overlaps with the time domain resource corresponding to the uplink control information, the base station receives the first information on the overlapping time domain resource.
  • the first information includes at least one of the second information and the third information
  • the second information includes part of the uplink control information or all the information of the uplink control information, where the third information includes part of the uplink data information or all of the uplink data information.
  • the base station receives the uplink control information and the uplink data information.
  • the content included in the uplink control information, the length of the time domain resource corresponding to the uplink control information, and the method for determining the length of the time domain resource corresponding to the uplink control information are The method of determining the content of the uplink control information, the length of the time domain resource corresponding to the uplink control information, and the method for determining the length of the time domain resource corresponding to the uplink control information are the same, and are not described herein again.
  • the content included in the uplink data information, the length of the time domain resource corresponding to the uplink data information, and the method for determining the length of the time domain resource corresponding to the uplink data information are The method for determining the content of the uplink data information, the length of the time domain resource corresponding to the uplink data information, and the method for determining the length of the time domain resource corresponding to the uplink data information are the same, and are not described herein again.
  • the length of the time domain resource corresponding to the uplink control information and the time domain corresponding to the uplink data information is the same as the length of the time domain resource corresponding to the uplink data information, and details are not described herein again.
  • the first information includes the second information, that is, the first information includes part or all of the uplink control information.
  • the first information includes the third information, that is, the first information includes part or all of the uplink data information.
  • the first information includes the second information and the third information, that is, the first information includes part or all of the uplink control information, and part or all of the uplink data information.
  • the base station does not receive the uplink data information on the time domain resources in the time domain resources corresponding to the uplink data information and the time domain resources corresponding to the uplink control information, so that only the uplink control information is received on the overlapping time domain resources. Part or all.
  • the case 1 will be specifically described below by taking FIG. 7 to FIG. 9 as an example.
  • FIG. 7 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the time domain resource corresponding to the uplink data information is longer than the time domain resource corresponding to the uplink control information, and the time domain resource corresponding to the uplink data information includes all the resources in the time domain resource corresponding to the uplink control information.
  • the length of the time domain resource corresponding to the uplink control information is 4 symbols, and the corresponding symbol 0, 1, 2, 3 is used for transmitting uplink control information; and the length of the time domain resource corresponding to the uplink data information.
  • the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information overlap on the symbols 0, 1, 2, and 3.
  • the symbols 0, 1, 2, and 3 on the uplink carrier are represented by 7209, and the symbols 4, 5, and 6 on the uplink carrier are represented by 7210.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data do not overlap in the frequency domain.
  • FIG. 8 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information, and the time domain resource corresponding to the uplink control information includes All resources in the time domain resource corresponding to the uplink data information.
  • the length of the time domain resource corresponding to the uplink data information is 4 symbols, and the corresponding symbols 0, 1, 2, and 3 are used for transmitting uplink data information, and the length of the time domain resource corresponding to the uplink control information.
  • the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information overlap on the symbols 0, 1, 2, and 3.
  • the symbols 0, 1, 2, and 3 on the uplink carrier are represented by 8209, and the symbols 4, 5, and 6 on the uplink carrier are represented by 8210.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data do not overlap in the frequency domain.
  • FIG. 9 is a schematic diagram showing that time domain resources corresponding to uplink control information on the same uplink carrier overlap with time domain resources corresponding to uplink data information according to an embodiment of the present invention.
  • the time domain resource corresponding to the uplink data information is longer than the time domain resource corresponding to the uplink control information, and the time domain resource corresponding to the uplink data information includes some resources in the time domain resource corresponding to the uplink control information.
  • the length of the time domain resource corresponding to the uplink data information is 3 symbols, and the corresponding symbol 0, 1, 2 is used for transmitting uplink data information; and the length of the time domain resource corresponding to the uplink control information is 2
  • the symbols, specifically corresponding to symbol 2 and symbol 3 are used to transmit uplink control information.
  • the time domain resource corresponding to the uplink control information and the time domain resource corresponding to the uplink data information overlap on symbol 2.
  • the symbol 0, 1 on the uplink carrier is represented by 9209
  • the symbol 2 on the uplink carrier is represented by 9210
  • the symbol 3 on the uplink carrier is represented by 9211.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data do not overlap in the frequency domain.
  • the base station should receive the uplink control information on the resource corresponding to the uplink control information, and receive the uplink data information on the resource corresponding to the uplink data information.
  • the user equipment may transmit part or all of the uplink control information on the overlapping time domain resources due to the single carrier feature sent by the user equipment.
  • the base station can receive some or all of the uplink control information on the overlapping time domain resources. For example, the base station receives some or all of the uplink control information on the symbol indicated by 7209 in FIG. 7, or on the symbol indicated by 8209 in FIG. 8, or on the symbol indicated by 9210 in FIG.
  • part or all of the uplink control information received by the base station on the overlapping time domain resources may be part or all of the uplink control information received by the base station on the time domain resources overlapped in the resources corresponding to the uplink control information.
  • the base station receives part or all of the uplink control information on the resource indicated by 72091 in FIG. 7, or on the resource indicated by 82091 in FIG. 8, or on the resource indicated by 92101 in FIG.
  • the base station receives the uplink control information on the resource corresponding to the uplink control information by using the format of the original uplink control information.
  • part or all of the uplink control information received by the base station on the overlapping time domain resources may receive part or all of the uplink control information on the time domain resources that are overlapped by the base station in the resources corresponding to the uplink data information.
  • the base station receives part or all of the uplink control information on the resource indicated by 72092 in FIG. 7, or on the resource indicated by 82092 in FIG. 8, or on the resource indicated by 92102 in FIG.
  • the base station receives part or all of the uplink control information by using a transport format corresponding to the PUCCH on the time domain resource that overlaps the resources corresponding to the uplink data information.
  • 72091 is an area of 2*4 in the upper left corner
  • 72092 is an area of 4*4 in the lower left corner.
  • 82091 is an area of 2*4 in the upper left corner
  • 82092 is an area of 4*4 in the lower left corner.
  • 92101 is an area of the upper part 2*1 of the symbol 2
  • 92102 is an area of the lower part 4*1 of the symbol 2.
  • the user equipment only transmits part or all of the uplink control information on the overlapping time domain resources.
  • the base station only receives part or all of the uplink control information on the overlapping time domain resources, and may guarantee priority.
  • the higher level uplink control information is transmitted.
  • the base station does not receive the uplink control information on the time domain resources in the time domain resources corresponding to the uplink data information and the time domain resources corresponding to the uplink control information, so that only the uplink data information is received on the overlapping time domain resources. Part or all.
  • the base station receives the uplink data information on the symbol represented by 7209 in FIG. 7, or the symbol indicated by 8209 in FIG. 8, or the symbol indicated by 9210 in FIG. Part or all of it.
  • the base station receives part or all of the uplink data information on the time domain resources that are overlapped in the resources corresponding to the uplink data information, for example, the base station is on the resource indicated by 72092 in FIG. 7, or the resource indicated by 82092 in FIG. Or some or all of the uplink data information is received on the resource indicated by 92102 in FIG.
  • the base station receives part or all of the uplink data information on the time domain resources that are overlapped in the resources corresponding to the uplink control information, for example, the base station is on the resource indicated by 72091 in FIG. 7, or the resource indicated by 82091 in FIG. Or some or all of the uplink data information is received on the resource indicated by 92101 in FIG.
  • the uplink control information includes at least one of hybrid automatic repeat request information, channel state information, and scheduling request information, where the hybrid automatic repeat request information is response information to the downlink data packet received by the user equipment,
  • the scheduling request information is information for requesting an uplink transmission resource from the base station, and the channel state information is information for reporting a downlink channel state of the user equipment to the base station.
  • the uplink control information includes at least two of the foregoing three types of information, the priority of the hybrid automatic repeat request information and/or the scheduling request information may be considered. Higher than channel status information.
  • the user equipment transmits only part or all of the uplink data information on the time domain resource that overlaps the time domain resource corresponding to the uplink data information and the time domain resource corresponding to the uplink control information, and correspondingly, the base station corresponds to the uplink data information.
  • the time domain resource overlaps with the time domain resource corresponding to the uplink control information, and only part or all of the uplink data information is received, where the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling. Request information.
  • the user equipment only transmits part or all of the uplink data information on the overlapping time domain resources.
  • the base station only receives part or all of the uplink data information on the overlapping time domain resources, and can ensure uplink. Demodulation performance of data information.
  • the base station receives part or all of the uplink control information and some or all of the uplink data information on the time domain resources in the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information.
  • the base station should receive the uplink control information on the resource corresponding to the uplink control information, and receive the uplink data information on the resource corresponding to the uplink data information.
  • the base station may receive the first information on the overlapping time domain resources. For example, the base station receives part or all of the uplink control information on the symbol indicated by 7209 in FIG. 7, or the symbol indicated by 8209 in FIG. 8, or the symbol indicated by 9210 in FIG. 9, and some or all of the uplink data information.
  • the receiving, by the base station, the first information on the overlapping time domain resources may receive the first information on the time domain resource that is overlapped by the base station in the resource corresponding to the uplink control information.
  • the base station receives part or all of the uplink control information on the resource indicated by 72091 in FIG. 7, or the resource indicated by 82091 in FIG. 8, or the resource indicated by 92101 in FIG. 9, and part or all of the uplink data information.
  • the receiving, by the base station, the first information on the overlapping time domain resources may receive, by the base station, the first information on the time domain resources that are overlapped in the resources corresponding to the uplink data information.
  • the base station is provided on the resource indicated by 72092 in FIG. 7, or on the resource indicated by 82092 in FIG. 8, or part or all of the uplink control information received on the resource indicated by 92102 in FIG. 9, and part or all of the uplink data information.
  • the receiving, by the base station, the first information on the overlapping time domain resources may receive part or all of the uplink control information on the time domain resource that is overlapped by the base station in the resource corresponding to the uplink control information, where the uplink data information is in the resource corresponding to the uplink data information.
  • Part or all of the uplink data information is received on the overlapping time domain resources.
  • the base station receives the uplink control on the resource indicated by 72091 in FIG. 7, or the resource indicated by 82091 in FIG. 8, or the resource indicated by 92101 in FIG. Part or all of the information; part or all of the uplink data information received on the resource indicated by 72092 in Fig. 7, or on the resource indicated by 82092 in Fig. 8, or on the resource indicated by 92102 in Fig. 9.
  • the user equipment separately encodes the second information in the first information and the third information in the first information, and then transmits the time domain resources that are overlapped in the resources corresponding to the uplink data information, and the corresponding base station is in the uplink data.
  • the second information in the first information and the third information in the first information are respectively received on the overlapping time domain resources in the resources corresponding to the information.
  • the uplink control information and the uplink data information occupy different time domain resources, and/or frequency domain resources, and/or air domain resources, and/or code domain resources.
  • the user equipment jointly encodes the second information in the first information and the third information in the first information, and then transmits the time domain resources that are overlapped in the resources corresponding to the uplink data information, and the base station receives the joint coding.
  • Information is included in the user equipment.
  • the second information in the first information and the third information in the first information use the same modulation mode, and correspondingly, the base station uses the same modulation mode to the first information in the first information.
  • the second information and the third information in the first information are demodulated.
  • the receiving, by the base station, the first information on the time domain resource that is overlapped in the resource corresponding to the uplink data information may receive the first information on the predefined resource in the time domain resource that is overlapped by the base station in the resource corresponding to the uplink data information.
  • the second information in .
  • the time domain location where the predefined resource is located is determined according to a HARQ feedback timing. This will be described below with reference to FIG.
  • the length of the time domain resource corresponding to the uplink control information is 4 symbols, and the corresponding symbols 0, 1, 2, and 3 are used for transmitting uplink control information; and the length of the time domain resource corresponding to the uplink data information. It is 7 symbols, specifically corresponding to symbols 0 to 6, for transmitting uplink data information.
  • the time domain resources corresponding to the uplink control information and the time domain resources corresponding to the uplink data information overlap on the symbols 0, 1, 2, and 3.
  • the resources corresponding to the uplink control information and the resources corresponding to the uplink data information do not overlap in the frequency domain.
  • the HARQ-ACK information should be transmitted on the time domain resource corresponding to the uplink control information, so optionally, the location of the predefined resource may be in the symbols 0, 1, 2, 3 in the time domain.
  • the at least one symbol may be the last one or several RBs in the resource corresponding to the uplink data information in the frequency domain, and the predefined resources may be continuously distributed in the frequency domain, as defined in FIG. 1, can also be discretely distributed, as defined in Figure 10 of the resource 2.
  • the location of the predefined resource may also be on the first or first few RBs of the resources corresponding to the uplink data information in the frequency domain, such as the resource 3 predefined in FIG.
  • the base station does not receive the third information in the first information in the predefined resources in the time domain resources that are overlapped in the resources corresponding to the uplink data information, and is in the time domain resources that overlap in the resources corresponding to the uplink data information.
  • the third information in the first information is received on the resources other than the predefined resources, that is, the second information in the first information and the third information in the first information occupy different time-frequency resources.
  • the user equipment may transmit the second information in the first information on the predefined resource by means of puncturing or rate matching.
  • the base station demodulates the uplink control information by using a reference signal for demodulating the uplink data information.
  • the base station receives the reference signal on the time domain resource that overlaps the resources corresponding to the uplink data information, in addition to receiving the first information.
  • the base station uses the reference signal to demodulate the uplink control information or the uplink data information.
  • the manner of transmitting the first information on the overlapping time domain resources includes repetition, frequency division multiplexing, time division multiplexing, code division multiplexing, puncturing, rate matching, and association. At least one of encoding and the like.
  • the manner in which the first information is transmitted on the overlapping time domain resources is predefined.
  • the manner in which the first information is transmitted on the overlapping time domain resource is determined by the user equipment receiving the indication information of the manner in which the first information is transmitted on the overlapping time domain resources sent by the base station.
  • the base station notifies the user equipment of the indication information of the manner of transmitting the first information on the overlapping time domain resource by means of RRC signaling, MAC signaling, or physical layer signaling, and the RRC signaling or MAC
  • the command or physical layer signaling may be carried on the carrier or on the non-local carrier.
  • the user equipment transmits part or all of the uplink control information and part or all of the uplink data information in a multiplexed manner on the overlapping time domain resources, and correspondingly, the base station is on the overlapping time domain resources.
  • Receiving part or all of the uplink control information and part or all of the uplink data information can ensure that the uplink control information with higher priority is transmitted when the demodulation performance of the uplink data information is less affected.
  • the uplink control information in the first case, only part or all of the uplink control information is transmitted on the overlapping time domain resources, so that the uplink control information with higher priority can be transmitted, and the second uplink information is transmitted on the overlapping time domain resources.
  • Part or all of the data information can ensure the demodulation performance of the uplink data information;
  • Case 3 transmits part or all of the uplink control information and some or all of the uplink data information in an overlapping manner on the overlapping time domain resources, It is ensured that the uplink control information with higher priority is transmitted when the impact on the demodulation performance of the uplink data information is small.
  • the embodiment of the present invention further provides a user equipment for transmitting uplink information, and a method for transmitting user equipment corresponding to uplink information is a method for transmitting uplink information according to Embodiment 1 of the present invention. Therefore, the implementation of the user equipment for transmitting the uplink information in the embodiment of the present invention can be referred to the implementation of the method, and details are not described herein again.
  • FIG. 12 is a schematic diagram of a transmission device according to an embodiment of the present invention. As shown in FIG. 12, the device includes:
  • the processor 1201 is configured to determine uplink data information and uplink control information, where the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the uplink control information includes the hybrid automatic repeat request information. At least one of channel state information and scheduling request information;
  • the transceiver 1202 is configured to transmit uplink data information on a time domain resource corresponding to the uplink data information, and transmit uplink control information on the time domain resource corresponding to the uplink control information, where the time domain resource corresponding to the uplink data information is The time domain resources corresponding to the uplink control information overlap, and the first information is transmitted on the overlapping time domain resources.
  • the first information includes at least one of the second information and the third information, where the second information includes part information of the uplink control information or all information of the uplink control information, the third information The partial information of the uplink data information or all the information of the uplink data information is included.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and includes:
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information.
  • the first information includes the second information
  • the transceiver 1202 is further configured to: at least one of the following:
  • the transceiver 1202 transmits the second information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following:
  • the transceiver 1202 is further configured to:
  • a reference signal is further transmitted on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the first information includes the third information, where the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling request information.
  • the first information includes the third information
  • the transceiver 1202 is further configured to: at least one of the following:
  • the first information includes the second information and the third information
  • the transceiver 1202 is further configured to: at least one of the following:
  • the transceiver 1202 transmits the first information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following:
  • the transceiver 1202 is further configured to: when the overlapping of the resources corresponding to the uplink data information The reference signal is also transmitted on the domain resource.
  • the transceiver 1202 is further configured to receive indication information sent by the base station, where the indication information includes at least one of the following information:
  • the first information includes indication information of the content
  • the indication information of the manner in which the first information is transmitted on the overlapping time domain resources is transmitted on the overlapping time domain resources.
  • the device of the embodiment of the present invention can solve the problem that the uplink control information or the uplink data information is transmitted when the uplink control information and the uplink data information of the time domain resources of different lengths occur and the corresponding time domain resources conflict.
  • the embodiment of the present invention further provides a base station for transmitting uplink information, and a method for transmitting uplink information is a method for transmitting uplink information according to Embodiment 2 of the present invention.
  • a base station for transmitting uplink information is a method for transmitting uplink information according to Embodiment 2 of the present invention.
  • the base station that transmits the uplink information in the embodiment of the present invention refer to the implementation of the method, and details are not described herein again.
  • the embodiment of the present invention further provides an apparatus for transmitting uplink control information applied to a base station, where the apparatus is applied to a base station, where the apparatus includes:
  • the transceiver is configured to receive uplink data information on a time domain resource corresponding to the uplink data information, receive uplink control information on the time domain resource corresponding to the uplink control information, and the processor is configured to receive the received uplink data information or uplink control
  • the information is demodulated, wherein the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the uplink control information includes hybrid automatic repeat request information, channel state information, and scheduling request information. At least one of them;
  • the transceiver is further configured to receive the first information on the overlapping time domain resource, where the processor And configured to demodulate the received first information, where the first information includes at least one of the second information and the third information,
  • the second information includes part information of the uplink control information or all information of the uplink control information, where the third information includes part of the uplink data information or all of the uplink data information. information.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and includes:
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information.
  • the first information includes the second information
  • the transceiver is further configured to: at least one of the following:
  • the transceiver receives the second information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one:
  • the transceiver is further configured to receive a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the processor is further configured to demodulate the second information according to the reference signal.
  • the first information includes the third information, where the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling request information.
  • the first information includes the third information
  • the transceiver is further used to: at least one of the following:
  • the first information includes the second information and the third information
  • the transceiver is further configured to At least one of the following:
  • the transceiver receives the first information on a time domain resource that overlaps resources in the uplink data information, including at least one of the following:
  • the first information Receiving, by the first information, the first time information in the overlapped time domain resource in the resource corresponding to the uplink data information, where the second information in the first information and the first information in the first information
  • the third information occupies different time-frequency resources
  • the transceiver is further configured to receive a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the processor is further configured to demodulate the first information according to the reference signal.
  • the transceiver is further configured to send the indication information to the user equipment, where the indication information includes at least one of the following information:
  • the first information includes indication information of the content
  • the indication information of the manner in which the first information is transmitted on the overlapping time domain resources is transmitted on the overlapping time domain resources.
  • the device of the embodiment of the present invention can solve the problem that the uplink control information or the uplink data information is transmitted when the uplink control information and the uplink data information of the time domain resources of different lengths occur and the corresponding time domain resources conflict.
  • the embodiment of the present invention further provides a transmission device for transmitting uplink information, and a method for transmitting uplink information is a method for transmitting uplink information according to Embodiment 1 of the present invention. Therefore, the implementation of the transmission apparatus for transmitting uplink information in the embodiment of the present invention can be referred to the implementation of the method, and the repeated description is not repeated.
  • FIG. 13 is a schematic diagram of a transmission apparatus according to an embodiment of the present invention. As shown in FIG. 13, the apparatus includes:
  • the processing unit 1301 is configured to determine uplink data information and uplink control information, where the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the uplink control information includes the hybrid automatic repeat request information. At least one of channel state information and scheduling request information;
  • the transceiver unit 1302 is configured to transmit uplink data information on a time domain resource corresponding to the uplink data information, and transmit uplink control information on the time domain resource corresponding to the uplink control information, where the time domain resource corresponding to the uplink data information is The time domain resources corresponding to the uplink control information overlap, and the first information is transmitted on the overlapping time domain resources;
  • the first information includes at least one of the second information and the third information, where the second information includes part information of the uplink control information or all information of the uplink control information, the third information The partial information of the uplink data information or all the information of the uplink data information is included.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and includes:
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information.
  • the first information includes the second information
  • the transceiver unit 1302 is further configured to: at least one of the following:
  • the transceiver unit 1302 transmits the second information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following:
  • the transceiver unit 1302 is further configured to:
  • a reference signal is further transmitted on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the first information includes the third information, where the uplink control information includes channel state information and does not include hybrid automatic repeat request information and scheduling request information.
  • the first information includes the third information
  • the transceiver unit 1302 is further configured to: at least one of the following:
  • the first information includes the second information and the third information
  • the transceiver unit 1302 is further configured to: at least one of the following:
  • the transceiver unit 1302 transmits the first information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one of the following:
  • the transceiver unit 1302 is further configured to: further transmit a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information.
  • the transceiver unit 1302 is further configured to receive indication information sent by the base station, where the indication information includes at least one of the following information:
  • the first information includes indication information of the content
  • the indication information of the manner in which the first information is transmitted on the overlapping time domain resources is transmitted on the overlapping time domain resources.
  • the device of the embodiment of the present invention can solve the problem that the uplink control information or the uplink data information is transmitted when the uplink control information and the uplink data information of the time domain resources of different lengths occur and the corresponding time domain resources conflict.
  • the embodiment of the present invention further provides a base station for transmitting uplink information, and a method for transmitting uplink information is a method for transmitting uplink information according to Embodiment 2 of the present invention.
  • a base station for transmitting uplink information is a method for transmitting uplink information according to Embodiment 2 of the present invention.
  • the base station that transmits the uplink information in the embodiment of the present invention refer to the implementation of the method, and details are not described herein again.
  • the embodiment of the present invention further provides an apparatus for transmitting uplink control information applied to a base station, where the apparatus is applied to a base station, where the apparatus includes:
  • the transceiver unit is configured to receive the uplink data information on the time domain resource corresponding to the uplink data information, and receive the uplink control information on the time domain resource corresponding to the uplink control information, where the processing unit is configured to receive the received uplink data information or uplink control
  • the information is demodulated, wherein the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and the uplink control information includes hybrid automatic repeat request information, channel state information, and scheduling request information. At least one of them;
  • the time domain resource corresponding to the uplink data information and the time domain resource corresponding to the uplink control information are heavy
  • the transceiver unit is further configured to receive first information on the overlapping time domain resources, where the processing unit is further configured to demodulate the received first information, where the first information includes the second information. And at least one of the third information,
  • the second information includes part information of the uplink control information or all information of the uplink control information
  • the third information includes part information of the uplink data information or all information of the uplink data information.
  • the length of the time domain resource corresponding to the uplink data information is not equal to the length of the time domain resource corresponding to the uplink control information, and includes:
  • the length of the time domain resource corresponding to the uplink data information is greater than the length of the time domain resource corresponding to the uplink control information
  • the length of the time domain resource corresponding to the uplink data information is smaller than the length of the time domain resource corresponding to the uplink control information.
  • the first information includes the second information
  • the transceiver unit is further configured to: at least one of the following:
  • the transceiver unit receives the second information on the overlapping time domain resources in the resource corresponding to the uplink data information, including at least one:
  • the transceiver unit is further configured to receive a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the processing unit is further configured to demodulate the second information according to the reference signal.
  • the first information includes the third information, where the uplink control information includes a channel shape Status information does not include hybrid automatic repeat request information and scheduling request information.
  • the first information includes the third information
  • the transceiver unit is further configured to: at least one of the following:
  • the first information includes the second information and the third information
  • the transceiver unit is further configured to: at least one of the following:
  • the transceiver unit receives the first information on a time domain resource that overlaps resources in the uplink data information, including at least one of the following:
  • the first information Receiving, by the first information, the first time information in the overlapped time domain resource in the resource corresponding to the uplink data information, where the second information in the first information and the first information in the first information
  • the third information occupies different time-frequency resources
  • the transceiver unit is further configured to receive a reference signal on the overlapping time domain resources in the resource corresponding to the uplink data information;
  • the processing unit is further configured to demodulate the first information according to the reference signal.
  • the transceiver unit is further configured to send the indication information to the user equipment, where the indication information includes at least one of the following information:
  • the first information includes indication information of the content
  • the indication information of the manner in which the first information is transmitted on the overlapping time domain resources is transmitted on the overlapping time domain resources.
  • the device of the embodiment of the present invention can solve the problem that the uplink control information or the uplink data information is transmitted when the uplink control information and the uplink data information of the time domain resources of different lengths occur and the corresponding time domain resources conflict.
  • the embodiment of the invention provides an uplink information transmission method and a transmission device.
  • the uplink control information and the uplink data information conflict, the uplink control information with higher priority can be transmitted, or the solution of the uplink data information can be guaranteed.
  • the performance of the uplink control information may be transmitted with a higher priority in the case of less impact on the demodulation performance of the uplink data information.
  • the system embodiment since it basically corresponds to the method embodiment, it can be referred to the partial description of the method embodiment.
  • the system embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, ie may be located A place, or it can be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the embodiment. Those of ordinary skill in the art can understand and implement without any creative effort.
  • the invention may be described in the general context of computer-executable instructions executed by a computer, such as a program module.
  • program modules include routines, programs, objects, components, data structures, and the like that perform particular tasks or implement particular abstract data types.
  • the invention may also be practiced in distributed computing environments where tasks are performed by remote processing devices that are connected through a communication network.
  • program modules can be located in both local and remote computer storage media including storage devices.

Abstract

本发明实施例提供了一种上行信息传输的方法和装置,所述方法包括:用户设备确定上行数据信息以及上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度;当上行数据信息对应的时域资源与上行控制信息对应的时域资源有重叠,用户设备在重叠的时域资源上传输第一信息,第一信息包括第二信息和第三信息中的至少一种,其中,第二信息包括上行控制信息中的部分信息或全部信息,所述第三信息包括上行数据信息中的部分信息或全部信息。本发明可以解决当出现对应不同长度的时域资源的上行控制信息和上行数据信息且其对应的时域资源上发生冲突时上行控制信息或上行数据信息的传输问题。

Description

上行信息传输的方法、装置 技术领域
本发明涉及通讯领域,特别涉及一种上行信息传输的方法和装置。
背景技术
在通讯网络中,时延是一个关键的绩效指标(Key Performance Indicator,KPI),同时也影响着用户的使用体验。随着通讯协议的发展,对时延影响最明显的物理层的调度间隔也越来越小,在最初的宽带码分多址(Wideband Code Division Multiple Access,WCDMA)中,调度间隔是10ms,高速分组接入(High-Speed Packet Access,HSPA)中调度间隔缩短到2ms,长期演进(Long Term Evolution,LTE)中调度间隔缩短到1ms。
小时延的业务需求导致LTE物理层需要引入短传输时间间隔(Transmission Time Interval,TTI)帧结构,以进一步缩短调度间隔,TTI可以从1ms缩短为1符号(symbol)到0.5ms之间。上述提及的符号可以是LTE系统中的一个正交频分复用(Orthogonal Frequency Division Multiplexing,OFDM)符号。
图1所示为基站数据传输的RTT(Round-Trip Time,传输的来回时间)时延图,如图1所示,基于混合自动重传请求(Hybrid Automatic Repeat Request,HARQ)技术,如果基站在下行(Downlink,简称DL)链路的编号为i的TTI向用户设备传输数据,若用户设备对接收到的该数据正确解调译码,则在上行(uplink,简称UL)链路的编号为i+4的TTI向基站反馈确认字符(Acknowledgement,ACK),若用户设备对接收到的该数据没有正确解调译码,则在编号为i+4的TTI向基站反馈否认字符(Negative Acknowledgment,NACK),而基站则根据编号为i+4的TTI上收到的ACK或NACK决定对下行链路编号为i+8的TTI进行数据新传或重传处理。反馈的ACK或NACK也可以统称为HARQ-ACK信息。在现有技术中,上行链路和下行链路传输的TTI的长度都是1ms。如果引入短TTI传输技术,例如上行链路和下行链路传输的TTI的长度缩短为0.5ms或为1个或多个符号时,可以认为处理时间等比例缩减,同样遵循上述RTT时延。
LTE支持载波聚合技术,即基站把多个载波配置给一个UE来提升UE的数据速率。支持载波聚合技术的UE可能同时检测到多个下行载波上的下行数据,该UE需要同时对该 多个下行载波上的下行数据做HARQ的反馈机制。因此需要一个信道可以支持多个下行载波上下行数据HARQ-ACK的信息。另一方面,为使基站可以在多个下行载波上对UE调度并传输下行数据,UE需要向基站反馈各载波上信道状态信息CSI(Channel State Information)。在一个特定的上行TTI,可能需要同时向基站反馈针对下行调度数据的HARQ-ACK反馈信息和多个载波上的CSI信息。UE还可能向基站发送调度请求信息(Scheduling Request,SR),用于向基站请求上行UL-SCH资源。
在载波聚合场景下,UE可能支持下行多个载波的数据接收,但上行只有单载波传输能力。调度上行数据传输的下行载波的TTI长度可以和上行载波的TTI长度相同,也可以和上行载波的TTI长度不同。当UE支持多个不同TTI长度的下行载波数据接收时,可能需要在一个特定的上行TTI向基站反馈针对下行调度数据的HARQ-ACK反馈信息和传输上行数据。反馈HARQ-ACK反馈信息的TTI长度和传输上行数据的TTI长度可能不相等。以图2为例,图2所示为不同TTI长度的上行控制信道和上行数据信道冲突的示意图。如图2所示,图2包括一个上行载波(Component carrier,分量载波,简称CC)和两个下行载波,两个下行载波分别为下行载波1和下行载波2。下行载波1和上行载波的TTI时长相等,下行载波2与下行载波1的TTI时长不相等。假设下行载波的TTI长度和上行载波的TTI长度相同,上行载波上的数据传输是通过下行载波1上的控制信令调度的。如果基站在下行载波1的编号为i+2的TTI上发送一个调度用户数据传输的上行授权(grant),则UE收到该上行授权后会在上行载波的编号为i+6的TTI上传输上行数据信息;如果基站在下行载波2的编号为i的TTI上发送数据,则UE收到数据后,会在下行载波2的编号为i+4的TTI对应的时刻,即在上行载波的编号为i+6的TTI上反馈上行控制信息,即在上行载波的编号为i+6的TTI上可能会发生上行数据和对应下行载波2的上行HARQ-ACK信息的冲突。
现有技术中,还没有当出现对应不同长度的时域资源的上行控制信息和上行数据信息且其对应的时域资源上发生冲突时上行控制信息或上行数据信息怎么传输的处理方法。
发明内容
有鉴于此,本发明实施例的目的是提供一种,能解决问题。
为了解决上述技术问题,本发明实施例公开了如下技术方案:
第一方面,提供了一种上行信息传输的方法,所述方法包括:
用户设备确定上行数据信息以及上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,所述用户设备在所述重叠的时域资源上传输第一信息,所述第一信息包括第二信息和第三信息中的至少一种;
其中,所述第二信息包括所述上行控制信息中的部分信息或所述上行控制信息中的全部信息,所述第三信息包括所述上行数据信息中的部分信息或所述上行数据信息中的全部信息。
可选的,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
可选的,所述第一信息包括所述第二信息,所述方法还包括以下步骤中的至少一个:
所述用户设备在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息;
所述用户设备在上行控制信息对应的资源中所述重叠的时域资源上传输所述第二信息。
可选的,所述用户设备在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息,包括以下步骤中的至少一个:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式传输所述第二信息;
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第二信息:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上重复传输 所述第二信息;
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式传输所述第二信息。
进一步可选的,所述方法还包括:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
可选的,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,所述第一信息包括所述第三信息,所述方法还包括以下步骤中的至少一个:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第三信息;
所述用户设备在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第三信息。
可选的,所述第一信息包括所述第二信息和所述第三信息,所述方法还包括以下步骤中的至少一个:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息;
所述用户设备在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第一信息。
可选的,所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,包括以下步骤中的至少一个:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第一信息中的所述第二信息;
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上传输所述第一信息中的所述第三信息;
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式传输所述第一信息中的所述第二信息和所述第三信息。
进一步可选的,所述方法还包括:
所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
可选的,所述方法还包括:
所述用户设备接收基站发送的指示信息,所述指示信息中包括以下信息中的至少一种:
所述上行控制信息对应的时域资源的资源分配信息;
所述上行数据信息对应的时域资源的资源分配信息;
所述重叠的时域资源的指示信息;
所述第一信息包括内容的指示信息;
所述重叠的时域资源上传输所述第一信息的方式的指示信息。
第二方面,提供给了一种上行信息传输的方法,所述方法包括:
基站在上行数据信息对应的时域资源上接收上行数据信息,在上行控制信息对应的时域资源上接收上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,所述基站在所述重叠的时域资源上接收第一信息,所述第一信息包括第二信息和第三信息中的至少一种;
其中,所述第二信息包括所述上行控制信息中的部分信息或所述上行控制信息中的全部信息,所述第三信息包括所述上行数据信息中的部分信息或所述上行数据信息中的全部信息。
可选的,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源 的长度。
可选的,所述第一信息包括所述第二信息,所述方法还包括以下步骤中的至少一个:
所述基站在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息;
所述基站在上行控制信息对应的资源中所述重叠的时域资源上接收所述第二信息。
可选的,所述基站在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息,包括以下步骤中的至少一个:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式接收所述第二信息;
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第二信息:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上合并接收所述第二信息;
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式接收所述第二信息。
进一步可选的,所述方法还包括:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上还接收参考信号;
所述基站根据所述参考信号对所述第一信息进行解调。
可选的,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,所述第一信息包括所述第三信息,所述方法还包括以下步骤中的至少一个:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第三信息;
所述基站在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第三信息。
可选的,所述第一信息包括所述第二信息和所述第三信息,所述方法还包括以下步骤中的至少一个:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息;
所述基站在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第一信息。
可选的,所述基站在所述上行数据信息对应的资源中重叠的时域资源上接收所述第一信息,包括以下步骤中的至少一个:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第一信息中的所述第二信息;
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上接收所述第一信息中的所述第三信息;
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式接收所述第一信息中的所述第二信息和所述第三信息。
进一步可选的,所述方法还包括:
所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上还接收参考信号;
所述基站根据所述参考信号对所述第一信息进行解调。
可选的,所述方法还包括:
所述基站发送指示信息至用户设备,所述指示信息中包括以下信息中的至少一种:
所述上行控制信息对应的时域资源的资源分配信息;
所述上行数据信息对应的时域资源的资源分配信息;
所述重叠的时域资源的指示信息;
所述第一信息包括内容的指示信息;
所述重叠的时域资源上传输所述第一信息的方式的指示信息。
第三方面,提供了一种上行信息的传输设备,该设备包括:总线系统、处理器和 收发器。其中,处理器和收发器通过总线系统相连,处理器和收发器执行第一方面或第一方面的任意可能的实现方式中的方法。
第四方面,提供了一种上行信息的传输设备,该设备包括:总线系统、处理器和收发器。其中,处理器和收发器通过总线系统相连,处理器和收发器执行第二方面或第二方面的任意可能的实现方式中的方法。
第五方面,提供了一种上行信息的传输装置,用于执行第一方面或第一方面的任意可能的实现方式中的方法。具体地,该装置包括用于执行第一方面或第一方面的任意可能的实现方式中的方法的单元。
第六方面,提供了一种上行信息的传输装置,用于执行第二方面或第二方面的任意可能的实现方式中的方法。具体地,该装置包括用于执行第二方面或第二方面的任意可能的实现方式中的方法的单元。
本发明实施例提供了一种上行信息传输方法和装置,可以保证优先级较高的上行控制信息得到传输,或可以保证上行数据信息的解调性能,或可以保证在对上行数据信息的解调性能影响较小的情况下传输优先级较高的上行控制信息。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性的,并不能限制本发明的保护范围。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1所示为现有技术中基站数据传输的RTT时延图;
图2所示为不同TTI长度的上行控制信道和上行数据信道冲突的示意图;
图3所示为本发明实施例的应用场景的示意图;
图4所示为不同TTI长度的上行数据信息传输和上行控制信息传输发生冲突的一个示意图;
图5所示为不同TTI长度的上行数据信息传输和上行控制信息传输发生冲突的另一个示意图;
图6所示为本发明实施例的上行信息传输方法的流程图;
图7所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图;
图8所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图;
图9所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图;
图10所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图;
图11所示为本发明实施例的上行信息传输方法的流程图;
图12所示为本发明实施例的上行控制信息传输装置的示意图;
图13所示为本发明实施例的上行控制信息传输装置的示意图.
通过上述附图,已示出本发明明确的实施例,后文中将有更详细的描述。这些附图和文字描述并不是为了通过任何方式限制本发明构思的范围,而是通过参考特定实施例为本领域技术人员说明本发明的概念。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
为了全面理解本发明,在以下详细描述中提到了众多具体的细节,但是本领域技术人员应该理解,本发明可以无需这些具体细节而实现。在其他实施例中,不详细描述公知的方法、过程、组件和电路,以免不必要地导致实施例模糊。
本发明实施例提供了一种上行信息传输的方法和装置,能解决上行控制信息和上行数据信息在传输时的冲突。
下面简要介绍本发明实施例的应用环境,以LTE系统或LTE-A系统为例,但本发明实施例的应用环境不限于LTE相关系统,任何通过调度进行数据传输的无线通信系统都可以采用本发明实施例提供的方案。
可以理解的是,在LTE或LTE-A系统中,从时间维度上来看,一个无线帧的时间长度为10ms,一个子帧的时间长度为1ms,一个无线帧包含10个子帧。具体有两种子帧格式:一种是正常循环前缀(Normal Cyclic Prefix,NCP)子帧格式,一个NCP子帧包括14个OFDM符号或2个时隙;将OFDM符号从0开始标号至13,第0号至第6号OFDM符号为奇数时隙,第7号至第13号OFDM符号为偶数时隙。另一种是长循环前缀(Extended Cyclic Prefix,ECP)子帧格式,一个ECP子帧包括12个OFDM符号或2个时隙;将OFDM符号从0开始标号至11,第0号至第5号OFDM符号为奇数时隙,第6号至第11号OFDM符号为偶数时隙。
从频率维度上来看,最小单位是子载波。从时频二维联合来看,对于一个天线端口传输使用的资源,最小单位是资源单位(Resource Element,RE),一个RE在时域上包含一个OFDM符号,在频域上包含一个子载波。资源单元组(Resource-Element Group,REG)可以包含整数个RE,例如,一个REG可以包含4个或16个RE。一个物理资源块(Physical Resource Block,PRB)在时域上包含一个时隙,在频域上包含12个子载波;一个子帧中包含一个PRB对(PRB pair)。一个资源块(Resource Block,RB)在时域上包含一个子帧,在频域上包含12个子载波。资源块组(Resource Block Group,RBG)可以包含整数个PRB,例如,一个RBG可以包含1个,2个,3个,4个或其他整数个PRB。
上行符号称为单载波频分多址(Single Carrier-Frequency Division Multiple Access,简称SC-FDMA)符号,下行符号称为正交频分复用(Orthogonal Frequency Division Multiplexing,简称OFDM)符号。若后续技术引入正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)的上行多址方式,上行符号也可以称为OFDM符号。本发明实施例中,上行符号和下行符号都统称为符号。一个符号包括循环前缀(Cyclic Prefix,CP)部分和信息段部分,其中信息段部分包括了一个符号的全部信息;CP是对一部分信息段信号的重复。本发明实施例的技术方案中提及的符号也可以是其他类型的通信的符号,本发明对此不作限定。
物理信道(physical channel)具体用于数据信息和/或控制信息的传输,本发明实施例中,物理信道包括以下之一或者组合:PUSCH(physical uplink shared channel,PUSCH,物理上行共享信道),PUCCH(physical uplink control channel,物理上行控制信道),PDCCH(Physical Downlink Control Channel,物理下行控制信道),EPDCCH (Enhanced-Physical Downlink Control Channel,增强的物理下行控制信道),PCFICH(Physical Control Format Indicator Channel,物理控制格式指示信道),PHICH(Physical hybrid ARQ indicator channel,物理混合重传指示信道),PDSCH(Physical Downlink Shared Channel,物理下行共享信道)等,或是标准中新引入的功能相同,但是名称不同的信道,例如短TTI传输中引入的控制信道或数据信道等。
短TTI数据传输即TTI小于1个子帧或1ms的数据传输,例如TTI长度为0.5ms,或者TTI长度为1个、2个、3个、4个、5个、6个符号中的一种,或者TTI长度是1个、2个、3个、4个、5个、6个、7个符号中至少2种不同TTI长度的组合,例如1ms内包含4个TTI,长度分别是4个、3个、4个、3个符号或3个、4个、3个、4个符号或其他不同TTI长度的组合。为描述方便,对于1ms内包含4个TTI的情况,如无特殊说明,在本发明实施例中描述为TTI长度为0.25ms。同理,TTI小于1个子帧或1ms的数据包称为短TTI数据包。短TTI数据传输在频域上可连续分布,也可非连续分布。需要说明的是,考虑到后向兼容性,系统中可能同时存在1ms TTI传输和短TTI传输的情况。
图3所示为本发明实施例的应用场景的示意图,图3所示的应用场景中包括小区基站301,处在小区基站301覆盖范围内并与小区基站301进行通信的用户设备302和用户设备303;其中,小区基站301是LTE系统的基站,用户设备302和303是对应的LTE系统的用户设备,小区基站301和用户设备302均为支持短TTI传输的设备,用户设备303为不支持短TTI传输的设备。小区基站301可以分别使用短TTI或正常的1ms TTI和用户设备302进行通信。小区基站301可以使用正常的1ms TTI和用户设备303进行通信。
在本发明实施例中,用户设备(User Equipment,UE)可称之为终端(Terminal)、移动台(Mobile Station,MS)、移动终端(Mobile Terminal)等,该用户设备可以经无线接入网(Radio Access Network,RAN)与一个或多个核心网进行通信,例如,用户设备可以是移动电话(或称为“蜂窝”电话)、具有移动终端的计算机等,例如,用户设备还可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语音和/或数据。
在本发明实施例中,基站可以是LTE系统或者LAA-LTE系统中的演进型基站(Evolutional Node B,缩写为eNB或e-NodeB)、宏基站、微基站(也称为“小基站”)、微微基站、接入站点(Access Point,AP)或传输站点(Transmission Point,TP)、或是其他的网络侧设备等,本发明对此并不限定。
在LTE系统中支持载波聚合技术,即基站把多个载波配置给一个UE来提升UE的数据速率。支持载波聚合技术的UE可能同时检测到多个下行载波上的下行数据,该UE需要同时对该多个下行载波上的下行数据做HARQ的反馈机制。因此需要一个上行信道可以支持多个下行载波上下行数据对应的上行HARQ-ACK信息的传输。另一方面,为使基站可以在多个下行载波上对UE调度并传输下行数据,UE需要向基站反馈各载波上的信道状态信息CSI(Channel State Information,CSI)。UE向基站反馈的CSI信息分为周期CSI信息和非周期CSI信息。对于周期CSI,每个下行载波的反馈周期独立配置,当有多个下行分量载波的周期CSI需要同时反馈时,UE只反馈某一个分量载波上具有最高优先级的周期CSI,其中对于具有相同优先级的多个下行分量载波的周期CSI,反馈下行分量载波索引最小的分量载波的周期CSI。而对于非周期CSI,使用动态下行控制信息DCI中的控制位用于触发非周期CSI。在一个特定的上行TTI,UE可能需要同时向基站反馈针对下行调度数据的上行HARQ-ACK反馈信息和多个载波上的CSI信息。UE还可能向基站发送调度请求信息(Scheduling Request,SR),用于向基站请求上行UL-SCH资源。需要说明的是,下行传输数据块对应的上行HARQ-ACK信息,对下行信道状态测量得到的CSI反馈信息和UE发送的调度请求SR信息都是上行控制信息(Uplink Control Information,UCI),其中CSI反馈信息可以包括CQI(Channel Quality Indicator,信道质量指示)信息、PMI(Precoding Matrix Indicator,预编码矩阵指示)信息、RI(Rank Indicator,秩指示)信息中的至少一种。UCI可以承载在PUCCH上,也可以承载在PUSCH上,本发明实施例主要考虑UCI承载在PUSCH上的情况。
引入短TTI传输后,UE可以支持多种不同TTI长度的下行数据接收,其中,每个TTI里传输的都可以是能独立被解调的完整的传输数据块。UE也可以支持多种不同TTI长度的上行数据发送。下行传输和其对应的上行传输的TTI长度可以相同,例如下行传输和其对应的上行传输的TTI长度都是0.25ms;下行传输的TTI长度可以小于其对应的上行传输的TTI长度,例如下行传输的TTI长度是2个符号,上行传输的TTI长度是3个符号;下行传输的TTI长度还可以大于其对应的上行传输的TTI长度,例如下行传输的TTI长度是0.25ms,上行传输的TTI长度是1个符号。需要说明的是,多个对应不同TTI长度的下行传输数据块可以来自于同一个载波,也可以来自于不同的载波。当UE有多个下行载波时,UE还需要反馈不同载波上的CSI信息。TTI缩短后,对应的HARQ处理时延也会缩短。可以认为HARQ处理时延等比例缩短,即短TTI的数据传输仍然遵循4倍TTI长度的 HARQ反馈时延,也可以认为短TTI的数据传输遵循大于4倍TTI长度的HARQ反馈时延或小于4倍TTI长度的HARQ反馈时延,本发明对此并不限定。但不论哪种情况,都可能出现UE需要在上行同一时间向基站传输长度不相等的上行数据信息和上行控制信息的场景,从而可能出现上行数据信息传输和上行控制信息传输发生冲突。下面对该问题进行详细描述,为描述方便,以载波聚合场景中UE对不同TTI长度的上行数据信息传输和上行控制信息传输发生冲突进行说明,在该例子中,短TTI的数据传输遵循4倍TTI长度的HARQ反馈时延,并假设上行传输的TTI长度和其对应的下行传输的TTI长度相同。
图4所示为不同TTI长度的上行数据信息传输和上行控制信息传输发生冲突的一个示意图。
如图4所示,UE支持两个下行载波数据接收和一个上行载波数据发送,其中两个下行载波分别为下行载波1和下行载波2。其中,下行载波1和上行载波的TTI长度大于下行载波2的TTI长度,且下行载波1的TTI和上行载波的TTI长度相等,上行载波上的数据传输是通过下行载波1上的控制信令调度的。假设下行载波1的一个TTI的时长等于N个下行载波2的TTI的时长。即,假设下行载波2的TTI的时长为L2,则下行载波1的TTI的时长L1=N*L2,图4所示的实施例中,L1=2*L2。
图4中每一个长方体代表对应上行数据或下行数据的一个TTI,即,4101为下行载波1的TTI,4201为上行载波的TTI,4301为下行载波2的TTI。如图4所示,4101的TTI的时长等于4201的TTI的时长,4101的TTI的时长等于4301TTI时长的2倍。
下行载波1的TTI和上行载波的TTI时长相等,因此,UE在下行载波1的第k个TTI上接收上行授权后,会在下行载波1的第k+4个TTI对应的上行载波的TTI上传输上行数据信息。例如在4101上接收到上行授权后,会在4105对应的4205上传输上行数据信息。
上行载波的TTI的时长是下行载波2的TTI时长的2倍,下行载波2的第k个TTI上的数据对应的HARQ-ACK信息,应在下行载波2的第k+4个TTI对应的上行载波的TTI上反馈。例如在4301上的数据对应的HARQ-ACK信息,按HARQ时序应在4305对应的4203的前半部分上反馈上行控制信息,在4306上的数据,按HARQ时序应在4205的后半部分反馈上行控制信息。
在图4所示的实施例中,上行载波上传输的数据信息和HARQ-ACK信息可能产生冲突,冲突类型可能包括:
1)下行载波1的4101上有UE的上行授权传输以及下行载波2的4305上有UE的数据传 输,则UE在上行载波的4205上传输的数据信息和HARQ-ACK信息会产生冲突;或者,若下行载波1的4101上有UE的上行授权传输以及下行载波2的4306上有UE的数据传输,则UE在上行载波的4205上传输的数据信息和HARQ-ACK信息会产生冲突。
2)下行载波1的4101上有UE的上行授权传输、下行载波2的4305以及下行载波2的4306上同时有UE的数据传输,则UE在上行载波的4205上传输的数据信息和HARQ-ACK信息会产生冲突。
图4描述的是上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,即PUSCH的TTI长度大于PUCCH的TTI长度的情况。
图5所示为不同TTI长度的上行数据信息传输和上行控制信息传输发生冲突的示意图。
图5所示的场景中,包括一个上行载波,两个下行载波,两个下行载波分别为下行载波1和下行载波2。其中,下行载波1的TTI长度大于上行载波及下行载波2的TTI长度,下行载波1的TTI时长为下行载波2的TTI时长的2倍,下行载波2的TTI时长与上行载波的TTI时长相等。上行载波上的数据传输是通过下行载波2上的控制信令调度的。
下行载波1的5101上传输的数据对应的HARQ-ACK信息,会在上行载波的5209及5210反馈;下行载波2的5305上传输的上行授权对应的PUSCH,会在5209上传输,下行载波2的5306上传输的上行授权对应的PUSCH,会在5210上传输。
图5所示的场景中,上行载波上传输的数据信息和HARQ-ACK信息可能产生冲突,冲突类型可能包括:
3)下行载波1的5101有UE的数据传输以及下行载波2的5305上有UE的上行授权传输,则UE在上行载波的5209上传输的数据信息和HARQ-ACK信息会产生冲突;或者,若下行载波1的5101有UE的数据传输以及下行载波2的5306上有UE的上行授权传输,则在上行载波的5210上传输的数据信息和HARQ-ACK信息会产生冲突。
4)下行载波1的5101有UE的数据传输、下行载波2的5305和下行载波2的5306上均有UE的上行授权传输,则UE在上行载波的5209及5210上传输的数据信息和HARQ-ACK信息同时产生冲突。
图5描述的是上行数据信息对应的时域资源的长度小于上行控制信息对应的时域资源的长度,即PUSCH的TTI长度小于PUCCH的TTI长度的情况。
为解决上述技术问题,本发明实施例提供了如下的方法。
实施例1
请参阅图6,图6所示为本发明实施例的上行信息传输方法的流程图,如图6所示,所述方法包括:
步骤601,用户设备确定上行数据信息以及上行控制信息;
上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度;
其中,上行控制信息包括混合自动重传请求(HARQ-ACK)信息、信道状态信息(CSI)、调度请求(SR)信息中的至少一种。
需要说明的是,信道状态信息包括CQI信息,PMI信息,RI信息中的至少一种。
需要说明的是,步骤601中不限定用户设备确定上行数据信息以及上行控制信息的时间顺序。用户设备可以先确定上行数据信息,再确定上行控制信息;用户设备也可以先确定上行控制信息,再确定上行数据信息;用户设备还可以同时确定上行数据信息和上行控制信息。
在具体实施步骤601的过程中,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,或者,上行数据信息对应的时域资源的长度小于上行控制信息对应的时域资源的长度。
在具体实施步骤601的过程中,可选的,上行数据信息对应的时域资源的长度为上行数据信息对应的PUSCH的长度,上行控制信息对应的时域资源的长度为上行控制信息对应的PUCCH的长度。可选的,上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,上行控制信息对应的时域资源的长度小于1毫秒。可选的,上行数据信息对应的时域资源的长度为第一传输时间间隔TTI时长,上行控制信息对应的时域资源的长度为第二传输时间间隔TTI时长,第二TTI时长小于1毫秒。进一步可选的,上行数据信息对应的时域资源的长度为1ms,上行控制信息对应的时域资源的长度为0.5ms或0.25ms或4个符号或3个符号或2个符号或1个符号;或者,上行数据信息对应的时域资源的长度和上行控制信息对应的时域资源的长度均小于1ms,例如上行数据信息对应的时域资源的长度为0.5ms,上行控制信息对应的时域资源的长度为0.25ms或4个 符号或3个符号或2个符号或1个符号。
在具体实施步骤601的过程中,可选的,上行数据信息对应的时域资源的长度小于上行控制信息对应的时域资源的长度,上行数据信息对应的时域资源的长度小于1毫秒。可选的,上行数据信息对应的时域资源的长度为第一传输时间间隔TTI时长,上行控制信息对应的时域资源的长度为第二传输时间间隔TTI时长,上行数据信息对应的时域资源的长度小于1毫秒。进一步可选的,上行控制信息对应的时域资源的长度为1ms,上行数据信息对应的时域资源的长度为0.5ms或0.25ms或4个符号或3个符号或2个符号或1个符号;或者,上行控制信息对应的时域资源的长度和上行数据信息对应的时域资源的长度均小于1ms,例如上行控制信息对应的时域资源的长度为0.5ms,上行数据信息对应的时域资源的长度为0.25ms或4个符号或3个符号或2个符号或1个符号。
在具体实施步骤601的过程中,可选的,基站通过预定义的方式使用户设备确定上行数据信息对应的时域资源和/或上行控制信息对应的时域资源。可选的,基站为用户设备分配上行数据信息对应的时域资源和/或上行控制信息对应的时域资源。进一步可选的,基站通过RRC信令或MAC信令或物理层信令等方式将上行数据信息对应的时域资源的资源分配信息和/或上行控制信息对应的时域资源的资源分配信息通知给用户设备。进一步可选的,该RRC信令或MAC信令或物理层信令可以承载在本载波上,也可以承载在非本载波上。
在具体实施步骤601的过程中,可选的,用户设备接收基站发送的指示信息,指示信息包括上行数据信息对应的时域资源的资源分配信息和/或上行控制信息对应的时域资源的资源分配信息。需要说明的是,上行数据信息对应的时域资源的资源分配信息可以是上行数据信息对应的时域资源的长度的指示信息,可以是上行数据信息对应的PUSCH的TTI长度的指示信息,可以是上行数据信息对应的上行授权(UL grant)里的PUSCH信道资源的指示信息,也可以是包括时域资源指示,和/或频域资源指示,和/或空域资源指示,和/或码资源指示的上行数据信息对应的资源分配信息。上行控制信息对应的时域资源的资源分配信息可以是上行控制信息对应的时域资源的长度的指示信息,可以是上行控制信息对应的PUCCH的TTI长度的指示信息,可以是上行控制信息对应的PUCCH信道资源的指示信息,也可以是包括时域资源指示,和/或频域资源指示,和/或空域资源指示,和/或码资源指示的上行控制信息对应的资源分配信息。
需要说明的是,步骤601中,上行数据信息对应的时域资源或上行控制信息对应的 时域资源是预分配给用户设备的用于传输上行数据信息或上行控制信息的时域资源,该上行数据信息或上行控制信息实际传输时使用的时域资源不一定是该预分配的上行数据信息或上行控制信息对应的全部的时域资源。
步骤602,当上行数据信息对应的时域资源与上行控制信息对应的时域资源有重叠,用户设备在该重叠的时域资源上传输第一信息。
第一信息包括第二信息和第三信息中的至少一种;
其中,该第二信息包括该上行控制信息中的部分信息或该上行控制信息中的全部信息,该第三信息包括该上行数据信息中的部分信息或该上行数据信息中的全部信息。
具体来说,第一信息可以包括以下八种情况:
上行控制信息中的部分信息;
上行控制信息中的全部信息;
上行数据信息中的部分信息;
上行数据信息中的全部信息;
上行控制信息中的部分信息和上行数据信息中的部分信息;
上行控制信息中的部分信息和上行数据信息中的全部信息;
上行控制信息中的全部信息和上行数据信息中的部分信息;
上行控制信息中的部分信息和上行数据信息中的全部信息。
为便于描述,本发明的所有实施例中,“上行控制信息中的部分信息或上行控制信息中的全部信息”也可以描述为“上行控制信息中的部分信息或全部信息”或“上行控制信息的部分或全部”,三者表示相同的含义,同理,“上行控制信息中的部分信息”与“上行控制信息的部分”表示相同含义,“上行控制信息中的全部信息”与“上行控制信息的全部”表示相同含义;“上行数据信息中的部分信息或上行数据信息中的全部信息”也可以描述为“上行数据信息中的部分信息或全部信息”或“上行数据信息的部分或全部”,三者表示相同的含义,同理,“上行数据信息中的部分信息”与“上行数据信息的部分”表示相同含义,“上行数据信息中的全部信息”与“上行数据信息的全部”表示相同含义。
在具体实施步骤602的过程中,可选的,用户设备确定上行数据信息对应的时域资源与上行控制信息对应的时域资源有重叠。可选的,上行数据信息对应的时域资源与上行控制信息对应的时域资源的重叠方式可以是上行数据信息对应的时域资源中包括 上行控制信息对应的时域资源中的全部资源或部分资源。可选的,上行数据信息对应的时域资源与上行控制信息对应的时域资源的重叠方式可以是上行控制信息对应的时域资源中包括上行数据信息对应的时域资源中的全部资源或部分资源。可选的,该重叠的时域资源的长度小于1ms,例如可以是1个或几个符号,也可以是一个时隙。可选的,基站向用户设备发送重叠的时域资源的指示信息,具体的,该重叠的时域资源的指示信息可以包括重叠的时域资源的长度,重叠的时域资源的符号标号,重叠的时域资源的时隙标号,重叠的时域资源的起始位置,重叠的时域资源的结束位置等中的至少一种。进一步可选的,基站通过RRC信令或MAC信令或物理层信令等方式将该重叠的时域资源的指示信息通知给用户设备,该RRC信令或MAC信令或物理层信令可以承载在本载波上,也可以承载在非本载波上。
需要说明的是,上行控制信息对应的资源或上行数据信息对应的资源包括时域上的资源,还包括频域上的资源、码资源、空间天线端口的资源等中的至少一种。上述重叠指上行数据信息对应的资源与上行控制信息对应的资源在时域上有重叠,对于在频域上,和/或码域上,和/或空域上,上行数据信息对应的资源和上行控制信息对应的资源可以重叠,也可以不重叠,本发明实施例中对此并不限定。
需要说明的是,本发明实施例中以1个上行控制信息对应的时域资源与1个上行数据信息对应的时域资源有重叠为例具体说明,当出现多个上行控制信息对应的时域资源与1个上行数据信息对应的时域资源有重叠或多个上行数据信息对应的时域资源与1个上行控制信息对应的时域资源有重叠的情况时,处理方法和1个上行控制信息对应的时域资源与1个上行数据信息对应的时域资源有重叠的情况类似,在此不再赘述。
在具体实施步骤602的过程中,可选的,第一信息包括上行控制信息的部分或全部。可选的,第一信息包括上行数据信息的部分或全部。可选的,第一信息包括上行控制信息的部分或全部,以及上行数据信息的部分或全部。可选的,第一信息的内容是预定义的。可选的,第一信息的内容是用户设备接收基站发送的第一信息的内容指示信息确定的。进一步可选的,基站通过RRC信令或MAC信令或物理层信令等方式将该第一信息的指示信息通知给用户设备,该RRC信令或MAC信令或物理层信令可以承载在本载波上,也可以承载在非本载波上。
在具体实施步骤602的过程中,可选的,由于该重叠的时域资源可以是上行控制信息对应的时域资源中的部分时域资源,上行控制信息的部分可以指第一信息包括上行 控制信息的全部信息中的部分信息。
在具体实施步骤602的过程中,可选的,由于该重叠的时域资源可以是上行数据信息对应的时域资源中的部分时域资源,上行数据信息的部分可以指第一信息包括上行数据信息的全部信息中的部分信息。
需要说明的是,上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种,其中混合自动重传请求信息是对用户设备接收到的下行数据包的应答信息,调度请求信息是向基站请求上行传输资源的信息,信道状态信息是向基站上报用户设备的下行信道状态的信息。在具体实施步骤602的过程中,可选的,当该上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少2种时,上行控制信息的部分可以指上行控制信息中不包括上述至少2种信息中的至少1种。一般情况下,当上行控制信息包括上述三种信息中的至少两种时,可以认为混合自动重传请求信息和/或调度请求信息的优先级高于信道状态信息。可选的,当上行控制信息包括混合自动重传请求信息或调度请求信息中的至少一种,以及信道状态信息时,上行控制信息的部分可以指上行控制信息中除信道状态信息外的其他信息。
本发明实施例中,根据第一信息的内容的不同,作为可选的,具体有以下几种情形。
情形一:第一信息包括第二信息,即第一信息包括上行控制信息的部分或全部。
即,用户设备在上行数据信息对应的时域资源与上行控制信息对应的时域资源中重叠的时域资源上不传输上行数据信息,从而在该重叠的时域资源上只传输上行控制信息的部分或全部。
下面以图7至图9为例说明情形一。
图7所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。其中,上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,上行数据信息对应的时域资源中包括上行控制信息对应的时域资源中的全部资源。如图7所示,假设上行控制信息对应的时域资源的长度为4个符号,具体对应符号0,1,2,3,用于传输上行控制信息;上行数据信息对应的时域资源的长度为7个符号,具体对应符号0到6,用于传输上行数据信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号0,1,2,3上有 重叠。其中,上行载波上的符号0,1,2,3用7209表示,上行载波上的符号4,5,6用7210表示。在图7所示的例子中,上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。
图8所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。其中,上行数据信息对应的时域资源的长度小于上行控制信息对应的时域资源的长度,上行控制信息对应的时域资源中包括上行数据信息对应的时域资源中的全部资源。如图8所示,假设上行数据信息对应的时域资源的长度为4个符号,具体对应符号0,1,2,3,用于传输上行数据信息;上行控制信息对应的时域资源的长度为7个符号,具体对应符号0到6,用于传输上行控制信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号0,1,2,3上有重叠。其中,上行载波上的符号0,1,2,3用8209表示,上行载波上的符号4,5,6用8210表示。在图8所示的例子中,上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。
图9所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。其中,上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,上行数据信息对应的时域资源中包括上行控制信息对应的时域资源中的部分资源。如图9所示,假设上行数据信息对应的时域资源的长度为3个符号,具体对应符号0,1,2,用于传输上行数据信息;上行控制信息对应的时域资源的长度为2个符号,具体对应符号2和符号3,用于传输上行控制信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号2上有重叠。其中,上行载波上的符号0,1用9209表示,上行载波上的符号2用9210表示,上行载波上的符号3用9211表示。在图9所示的例子中,上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。
用户设备原应在上行控制信息对应的资源上传输上行控制信息,在上行数据信息对应的资源上传输上行数据信息。当上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠,由于用户设备上行发送的单载波特性,用户设备可以在重叠的时域资源上传输上行控制信息的部分或全部。例如用户设备在图7中7209表示的符号 上,或图8中8209表示的符号上,或图9中9210表示的符号上传输上行控制信息的部分或全部。
可选的,用户设备在重叠的时域资源上传输上行控制信息的部分或全部可以为用户设备在上行控制信息对应的资源中重叠的时域资源上传输上行控制信息的部分或全部。例如用户设备在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上传输上行控制信息的部分或全部。在该实施例中,可选的,用户设备使用原有的传输上行控制信息的格式在上行控制信息对应的资源上传输上行控制信息。
可选的,用户设备在重叠的时域资源上传输上行控制信息的部分或全部可以为用户设备在上行数据信息对应的资源中重叠的时域资源上传输上行控制信息的部分或全部。例如用户设备在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上传输上行控制信息的部分或全部。进一步可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上使用PUCCH传输上行控制信息的格式传输该上行控制信息的部分或全部。
图7中,72091为左上角2*4的区域,72092为左下角4*4的区域。
图8中,82091为左上角2*4的区域,82092为左下角4*4的区域。
图9中,92101为符号2上部2*1的区域,92102为符号2下部4*1的区域。
需要说明的是,通常情况下,上行数据信息包括的内容多于上行控制信息包括的内容,因此分配给用户的用于传输上行数据信息的频域资源也大于用户传输上行控制信息的频域资源。例如上行控制信息对应的频域资源为2个PRB,上行数据信息对应的频域资源为4个PRB。可选的,用户设备在上行数据信息对应的资源中重叠的时域资源中预定义的资源上传输上行控制信息的部分或全部。例如用户设备在上行数据信息对应的4个PRB中预定义的2个PRB上传输上行控制信息的部分或全部。可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上重复传输上行控制信息的部分或全部。例如用户设备在上行数据信息对应的4个PRB中每2个PRB上重复传输上行控制信息的部分或全部。可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上使用与上行数据信息相同的调制方式传输上行控制信息的部分或全部。
可选的,接收侧使用用于解调上行数据信息的参考信号对上行控制信息进行解调。可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上除了传输上行控制 信息的部分或全部,还传输参考信号。可选的,接收侧使用该参考信号对上行控制信息或上行数据信息进行解调。
可选的,用户设备在上行数据信息对应的时域资源中不包括该重叠的时域资源的时域资源上传输上行数据信息的部分或全部。用户设备在该重叠的时域资源上,例如图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上不传输上行数据信息。可选的,用户设备在上行数据信息对应的时域资源上不传输上行数据信息。例如,在图8所示的情况中,用户设备丢掉原计划在82092上传输的上行数据包。
本发明实施例的方法,用户设备在重叠的时域资源上仅传输上行控制信息的部分或全部,可以保证优先级较高的上行控制信息得到传输。
情形二:第一信息包括第三信息,即第一信息包括上行数据信息的部分或全部。
即,用户设备在上行数据信息对应的时域资源与上行控制信息对应的时域资源中重叠的时域资源上不传输上行控制信息,从而在该重叠的时域资源上只传输上行数据信息的部分或全部。
同样以图7,图8,或图9为例进行说明,用户设备在图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上传输上行数据信息的部分或全部。可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上传输上行数据信息的部分或全部,例如用户设备在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上传输上行数据信息的部分或全部。可选的,用户设备在上行控制信息对应的资源中重叠的时域资源上传输上行数据信息的部分或全部,例如用户设备在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上传输上行数据信息的部分或全部。
需要说明的是,上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种,其中混合自动重传请求信息是对用户设备接收到的下行数据包的应答信息,调度请求信息是向基站请求上行传输资源的信息,信道状态信息是向基站上报用户设备的下行信道状态的信息。一般情况下,当上行控制信息包括上述三种信息中的至少两种时,可以认为混合自动重传请求信息和/或调度请求信息的优先级高于信道状态信息。可选的,用户设备在上行数据信息对应的时域资源与上行控制信 息对应的时域资源中重叠的时域资源上只传输上行数据信息的部分或全部,其中,上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,用户设备在上行控制信息对应的时域资源中不包括该重叠的时域资源的时域资源上传输上行控制信息的部分或全部。用户设备在该重叠的时域资源上,例如图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上不传输上行控制信息。可选的,用户设备在上行控制信息对应的时域资源上不传输上行控制信息。例如,在图7所示的情况中,用户设备丢掉原计划在72091上传输的上行控制信息。
本发明实施例的方法,用户设备在重叠的时域资源上仅传输上行数据信息的部分或全部,可以保证上行数据信息的解调性能。
情形三:第一信息包括第二信息和第三信息,即第一信息包括上行控制信息的部分或全部,以及上行数据信息的部分或全部。
即,用户设备在上行控制信息对应的时域资源与上行数据信息对应的时域资源中重叠的时域资源上传输上行控制信息的部分或全部,以及上行数据信息的部分或全部。
同样以图7,图8或图9所给的示意图进行说明。用户设备原应在上行控制信息对应的资源上传输上行控制信息,在上行数据信息对应的资源上传输上行数据信息。当上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠,用户设备可以在重叠的时域资源上传输第一信息。例如用户设备在图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上传输上行控制信息的部分或全部,以及上行数据信息的部分或全部。
可选的,用户设备在重叠的时域资源上传输第一信息可以为用户设备在上行控制信息对应的资源中重叠的时域资源上传输上行控制信息的部分或全部,以及上行数据信息的部分或全部。例如用户设备在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上传输上行控制信息的部分或全部,以及上行数据信息的部分或全部。
可选的,用户设备在重叠的时域资源上传输第一信息可以为用户设备在上行数据信息对应的资源中重叠的时域资源上传输上行控制信息的部分或全部,以及上行数据信息的部分或全部。例如用户设备在图7中72092表示的资源上,或图8中82092表示的 资源上,或图9中92102表示的资源上传输上行控制信息的部分或全部,以及上行数据信息的部分或全部。
可选的,用户设备在重叠的时域资源上传输第一信息可以为用户设备在上行控制信息对应的资源中重叠的时域资源上传输上行控制信息的部分或全部,在上行数据信息对应的资源中重叠的时域资源上传输上行数据信息的部分或全部。例如用户设备在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上传输上行控制信息的部分或全部;在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上传输上行数据信息的部分或全部。
可选的,用户设备将第一信息中的第二信息和第一信息中的第三信息分别进行编码后在上行数据信息对应的资源中重叠的时域资源上传输。进一步可选的,上行控制信息和上行数据信息占用不同的时域资源,和/或频域资源,和/或空域资源,和/或码域资源。
可选的,用户设备将第一信息中的第二信息和第一信息中的第三信息进行联合编码后在上行数据信息对应的资源中重叠的时域资源上传输。
可选的,为了保持上行单载波特性,第一信息中的第二信息和第一信息中的第三信息使用相同的调制方式。
可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上传输第一信息可以为用户设备在上行数据信息对应的资源中重叠的时域资源中预定义的资源上传输该第一信息中的第二信息。可选的,该预定义的资源所在的时域位置是根据HARQ反馈时序确定的。下面以图10进行说明。
图10所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。
如图10所示,假设上行控制信息对应的时域资源的长度为4个符号,具体对应符号0,1,2,3,用于传输上行控制信息;上行数据信息对应的时域资源的长度为7个符号,具体对应符号0到6,用于传输上行数据信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号0,1,2,3上有重叠。上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。根据HARQ反馈时序,HARQ-ACK信息应在上行控制信息对应的时域资源上传输,因此可选的,预定义的资源的位置在时域上可以是 在符号0,1,2,3中的至少一个符号上,在频域上可以是在上行数据信息对应的资源中最后一个或几个RB上,该预定义的资源在频域上可以是连续分布的,如图10中预定义的资源1,也可以是离散分布的,如图10中预定义的资源2。预定义的资源的位置在频域上还可以是在上行数据信息对应的资源中第一个或前几个RB上,如图10中预定义的资源3。
可选的,用户设备在上行数据信息对应的资源中重叠的时域资源中预定义的资源上不传输该第一信息中的第三信息,在上行数据信息对应的资源中重叠的时域资源中除预定义的资源外的资源上传输该第一信息中的上行第三信息,即第一信息中的第二信息和第一信息中的第三信息占用不同的时频资源。可选的,用户设备可以通过打孔或速率匹配的方式在预定义的资源上传输该第一信息中的第二信息。
可选的,接收侧使用用于解调上行数据信息的参考信号对上行控制信息进行解调。可选的,用户设备在上行数据信息对应的资源中重叠的时域资源上除了传输第一信息,还传输参考信号。可选的,接收侧使用该参考信号对上行控制信息或上行数据信息进行解调。
在具体实施步骤602的过程中,可选的,该重叠的时域资源上传输第一信息的方式包括重复,频分复用,时分复用,码分复用,打孔,速率匹配,联合编码等中的至少一种。可选的,重叠的时域资源上传输第一信息的方式是预定义的。可选的,重叠的时域资源上传输第一信息的方式是用户设备接收基站发送的重叠的时域资源上传输第一信息的方式的指示信息确定的。进一步可选的,基站通过RRC信令或MAC信令或物理层信令等方式将该重叠的时域资源上传输第一信息的方式的指示信息通知给用户设备,该RRC信令或MAC信令或物理层信令可以承载在本载波上,也可以承载在非本载波上。
本发明实施例的方法,用户设备在重叠的时域资源上通过复用的方式传输上行控制信息的部分或全部,以及上行数据信息的部分或全部,可以保证在对上行数据信息的解调性能影响较小的情况下传输优先级较高的上行控制信息。
本发明实施例中,情形一用户设备在重叠的时域资源上仅传输上行控制信息的部分或全部,可以保证优先级较高的上行控制信息得到传输;情形二用户设备在重叠的时域资源上仅传输上行数据信息的部分或全部,可以保证上行数据信息的解调性能;情形三在重叠的时域资源上通过复用的方式传输上行控制信息的部分或全部,以及上 行数据信息的部分或全部,可以保证在对上行数据信息的解调性能影响较小的情况下传输优先级较高的上行控制信息。
实施例2
本发明上述方法主要从应用于用户设备一侧描述,用户设备传输第一信息,基站接收第一信息,因此,本发明还提供了一种上行控制信息的传输方法上行信息传输的方法,应用于基站侧。
图11所示为本发明实施例的上行信息传输方法的流程图,如图11所示,所述方法包括:
步骤1101,基站在上行数据信息对应的时域资源上接收上行数据信息,在上行控制信息对应的时域资源上接收上行控制信息。
上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种。
步骤1102,当上行数据信息对应的时域资源与上行控制信息对应的时域资源有重叠,基站在重叠的时域资源上接收第一信息。
第一信息包括第二信息和第三信息中的至少一种;
其中,该第二信息包括该上行控制信息中的部分信息或该上行控制信息中的全部信息,该第三信息包括该上行数据信息中的部分信息或该上行数据信息中的全部信息。
需要说明的是,基站接收上行控制信息和上行数据信息没有必然的先后顺序。
需要说明的是,在本发明实施例提出的方法中,上行控制信息包括的内容、上行控制信息对应的时域资源的长度、上行控制信息对应的时域资源的长度的确定方法等与在本发明实施例1中描述的上行控制信息包括的内容、上行控制信息对应的时域资源的长度、上行控制信息对应的时域资源的长度的确定方法等相同,此处不再赘述。
需要说明的是,在本发明实施例提出的方法中,上行数据信息包括的内容、上行数据信息对应的时域资源的长度、上行数据信息对应的时域资源的长度的确定方法等与在本发明实施例1中描述的上行数据信息包括的内容、上行数据信息对应的时域资源的长度、上行数据信息对应的时域资源的长度的确定方法等相同,此处不再赘述。
需要说明的是,上行控制信息对应的时域资源的长度与上行数据信息对应的时域 资源的长度之间的关系与在本发明实施例1中描述的上行控制信息对应的时域资源的长度与上行数据信息对应的时域资源的长度之间的关系相同,此处不再赘述。
需要说明的是,在本发明实施例提出的方法中,第一信息的包括内容、表示形式、承载资源、发送方式等的方法与在本发明实施例1中描述的第一信息的包括内容、表示形式、承载资源、发送方式等的方法相同,此处不再赘述。
本实施例中也根据第一信息的内容的不同,分为三种情形。
情形一:第一信息包括第二信息,即第一信息包括上行控制信息的部分或全部。
情形二:第一信息包括第三信息,即第一信息包括上行数据信息的部分或全部。
情形三:第一信息包括第二信息和第三信息,即第一信息包括上行控制信息的部分或全部,以及上行数据信息的部分或全部。
情形一即基站在上行数据信息对应的时域资源与上行控制信息对应的时域资源中重叠的时域资源上不接收上行数据信息,从而在该重叠的时域资源上只接收上行控制信息的部分或全部。
下面以图7至图9为例具体说明情形一。
图7所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。其中,上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,上行数据信息对应的时域资源中包括上行控制信息对应的时域资源中的全部资源。如图7所示,假设上行控制信息对应的时域资源的长度为4个符号,具体对应符号0,1,2,3,用于传输上行控制信息;上行数据信息对应的时域资源的长度为7个符号,具体对应符号0到6,用于传输上行数据信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号0,1,2,3上有重叠。其中,上行载波上的符号0,1,2,3用7209表示,上行载波上的符号4,5,6用7210表示。在图7所示的例子中,上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。
图8所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。其中,上行数据信息对应的时域资源的长度小于上行控制信息对应的时域资源的长度,上行控制信息对应的时域资源中包括 上行数据信息对应的时域资源中的全部资源。如图8所示,假设上行数据信息对应的时域资源的长度为4个符号,具体对应符号0,1,2,3,用于传输上行数据信息;上行控制信息对应的时域资源的长度为7个符号,具体对应符号0到6,用于传输上行控制信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号0,1,2,3上有重叠。其中,上行载波上的符号0,1,2,3用8209表示,上行载波上的符号4,5,6用8210表示。在图8所示的例子中,上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。
图9所示为本发明实施例的同一个上行载波上上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠的示意图。其中,上行数据信息对应的时域资源的长度大于上行控制信息对应的时域资源的长度,上行数据信息对应的时域资源中包括上行控制信息对应的时域资源中的部分资源。如图9所示,假设上行数据信息对应的时域资源的长度为3个符号,具体对应符号0,1,2,用于传输上行数据信息;上行控制信息对应的时域资源的长度为2个符号,具体对应符号2和符号3,用于传输上行控制信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号2上有重叠。其中,上行载波上的符号0,1用9209表示,上行载波上的符号2用9210表示,上行载波上的符号3用9211表示。在图9所示的例子中,上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。
基站原应在上行控制信息对应的资源上接收上行控制信息,在上行数据信息对应的资源上接收上行数据信息。当上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠,由于用户设备上行发送的单载波特性,用户设备可以在重叠的时域资源上传输上行控制信息的部分或全部,同理,基站可以在重叠的时域资源上接收上行控制信息的部分或全部。例如基站在图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上接收上行控制信息的部分或全部。
可选的,基站在重叠的时域资源上接收上行控制信息的部分或全部可以为基站在上行控制信息对应的资源中重叠的时域资源上接收上行控制信息的部分或全部。例如基站在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上接收上行控制信息的部分或全部。在该实施例中,可选的,基站使用原有的上行控制信息的格式在上行控制信息对应的资源上接收上行控制信息。
可选的,基站在重叠的时域资源上接收上行控制信息的部分或全部可以为基站在上行数据信息对应的资源中重叠的时域资源上接收上行控制信息的部分或全部。例如基站在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上接收上行控制信息的部分或全部。进一步可选的,基站在上行数据信息对应的资源中重叠的时域资源上使用PUCCH对应的传输格式接收该上行控制信息的部分或全部。
图7中,72091为左上角2*4的区域,72092为左下角4*4的区域。
图8中,82091为左上角2*4的区域,82092为左下角4*4的区域。
图9中,92101为符号2上部2*1的区域,92102为符号2下部4*1的区域。
本发明实施例的方法,用户设备在重叠的时域资源上仅传输上行控制信息的部分或全部,相应的,基站在重叠的时域资源上仅接收上行控制信息的部分或全部,可以保证优先级较高的上行控制信息得到传输。
情形二即基站在上行数据信息对应的时域资源与上行控制信息对应的时域资源中重叠的时域资源上不接收上行控制信息,从而在该重叠的时域资源上只接收上行数据信息的部分或全部。
同样以图7,图8,或图9为例进行说明,基站在图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上接收上行数据信息的部分或全部。可选的,基站在上行数据信息对应的资源中重叠的时域资源上接收上行数据信息的部分或全部,例如基站在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上接收上行数据信息的部分或全部。可选的,基站在上行控制信息对应的资源中重叠的时域资源上接收上行数据信息的部分或全部,例如基站在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上接收上行数据信息的部分或全部。
需要说明的是,上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种,其中混合自动重传请求信息是对用户设备接收到的下行数据包的应答信息,调度请求信息是向基站请求上行传输资源的信息,信道状态信息是向基站上报用户设备的下行信道状态的信息。一般情况下,当上行控制信息包括上述三种信息中的至少两种时,可以认为混合自动重传请求信息和/或调度请求信息的优先级 高于信道状态信息。可选的,用户设备在上行数据信息对应的时域资源与上行控制信息对应的时域资源中重叠的时域资源上只传输上行数据信息的部分或全部,相应的,基站在上行数据信息对应的时域资源与上行控制信息对应的时域资源中重叠的时域资源上只接收上行数据信息的部分或全部,其中,上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
本发明实施例的方法,用户设备在重叠的时域资源上仅传输上行数据信息的部分或全部,相应的,基站在重叠的时域资源上仅接收上行数据信息的部分或全部,可以保证上行数据信息的解调性能。
情形三即基站在上行控制信息对应的时域资源与上行数据信息对应的时域资源中重叠的时域资源上接收上行控制信息的部分或全部,以及上行数据信息的部分或全部。
同样以图7,图8或图9所给的示意图进行说明。基站原应在上行控制信息对应的资源上接收上行控制信息,在上行数据信息对应的资源上接收上行数据信息。当上行控制信息对应的时域资源与上行数据信息对应的时域资源有重叠,基站可以在重叠的时域资源上接收第一信息。例如基站在图7中7209表示的符号上,或图8中8209表示的符号上,或图9中9210表示的符号上接收上行控制信息的部分或全部,以及上行数据信息的部分或全部。
可选的,基站在重叠的时域资源上接收第一信息可以为基站在上行控制信息对应的资源中重叠的时域资源上接收第一信息。例如基站在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上接收上行控制信息的部分或全部,以及上行数据信息的部分或全部。
可选的,基站在重叠的时域资源上接收第一信息可以为基站在上行数据信息对应的资源中重叠的时域资源上接收第一信息。例如基站备在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上接收上行控制信息的部分或全部,以及上行数据信息的部分或全部。
可选的,基站在重叠的时域资源上接收第一信息可以为基站在上行控制信息对应的资源中重叠的时域资源上接收上行控制信息的部分或全部,在上行数据信息对应的资源中重叠的时域资源上接收上行数据信息的部分或全部。例如基站在图7中72091表示的资源上,或图8中82091表示的资源上,或图9中92101表示的资源上接收上行控制 信息的部分或全部;在图7中72092表示的资源上,或图8中82092表示的资源上,或图9中92102表示的资源上接收上行数据信息的部分或全部。
可选的,用户设备将第一信息中的第二信息和第一信息中的第三信息分别进行编码后在上行数据信息对应的资源中重叠的时域资源上传输,相应的基站在上行数据信息对应的资源中重叠的时域资源上分别接收第一信息中的第二信息和第一信息中的第三信息。进一步可选的,上行控制信息和上行数据信息占用不同的时域资源,和/或频域资源,和/或空域资源,和/或码域资源。
可选的,用户设备将第一信息中的第二信息和第一信息中的第三信息进行联合编码后在上行数据信息对应的资源中重叠的时域资源上传输,基站接收上述联合编码后的信息。
可选的,为了保持上行单载波特性,第一信息中的第二信息和第一信息中的第三信息使用相同的调制方式,相应的,基站使用相同的调制方式对第一信息中的第二信息和第一信息中的第三信息进行解调。
可选的,基站在上行数据信息对应的资源中重叠的时域资源上接收第一信息可以为基站在上行数据信息对应的资源中重叠的时域资源中预定义的资源上接收该第一信息中的第二信息。可选的,该预定义的资源所在的时域位置是根据HARQ反馈时序确定的。下面以图10进行说明。
如图10所示,假设上行控制信息对应的时域资源的长度为4个符号,具体对应符号0,1,2,3,用于传输上行控制信息;上行数据信息对应的时域资源的长度为7个符号,具体对应符号0到6,用于传输上行数据信息。上行控制信息对应的时域资源与上行数据信息对应的时域资源在符号0,1,2,3上有重叠。上行控制信息对应的资源与上行数据信息对应的资源在频域上没有重叠。根据HARQ反馈时序,HARQ-ACK信息应在上行控制信息对应的时域资源上传输,因此可选的,预定义的资源的位置在时域上可以是在符号0,1,2,3中的至少一个符号上,在频域上可以是在上行数据信息对应的资源中最后一个或几个RB上,该预定义的资源在频域上可以是连续分布的,如图10中预定义的资源1,也可以是离散分布的,如图10中预定义的资源2。预定义的资源的位置在频域上还可以是在上行数据信息对应的资源中第一个或前几个RB上,如图10中预定义的资源3。
可选的,基站在上行数据信息对应的资源中重叠的时域资源中预定义的资源上不接收该第一信息中的第三信息,在上行数据信息对应的资源中重叠的时域资源中除预定义的资源外的资源上接收该第一信息中的第三信息,即第一信息中的第二信息和第一信息中的第三信息占用不同的时频资源。可选的,用户设备可以通过打孔或速率匹配的方式在预定义的资源上传输该第一信息中的第二信息。
可选的,基站使用用于解调上行数据信息的参考信号对上行控制信息进行解调。
可选的,基站在上行数据信息对应的资源中重叠的时域资源上除了接收第一信息,还接收参考信号。可选的,基站使用该参考信号对上行控制信息或上行数据信息进行解调。
在具体实施步骤602的过程中,可选的,该重叠的时域资源上传输第一信息的方式包括重复,频分复用,时分复用,码分复用,打孔,速率匹配,联合编码等中的至少一种。可选的,重叠的时域资源上传输第一信息的方式是预定义的。可选的,重叠的时域资源上传输第一信息的方式是用户设备接收基站发送的重叠的时域资源上传输第一信息的方式的指示信息确定的。进一步可选的,基站通过RRC信令或MAC信令或物理层信令等方式将该重叠的时域资源上传输第一信息的方式的指示信息通知给用户设备,该RRC信令或MAC信令或物理层信令可以承载在本载波上,也可以承载在非本载波上。
本发明实施例的方法,用户设备在重叠的时域资源上通过复用的方式传输上行控制信息的部分或全部,以及上行数据信息的部分或全部,相应的,基站在重叠的时域资源上接收上行控制信息的部分或全部,以及上行数据信息的部分或全部,可以保证在对上行数据信息的解调性能影响较小的情况下传输优先级较高的上行控制信息。
本发明实施例中,情形一在重叠的时域资源上仅传输上行控制信息的部分或全部,可以保证优先级较高的上行控制信息得到传输;情形二在重叠的时域资源上仅传输上行数据信息的部分或全部,可以保证上行数据信息的解调性能;情形三在重叠的时域资源上通过复用的方式传输上行控制信息的部分或全部,以及上行数据信息的部分或全部,可以保证在对上行数据信息的解调性能影响较小的情况下传输优先级较高的上行控制信息。
实施例3
基于与实施例1的同一发明构思,本发明实施例中还提供了一种传输上行信息的用户设备,由于一种传输上行信息的用户设备对应的方法为本发明实施例1传输上行信息的方法,因此本发明实施例传输上行信息的用户设备的实施可以参见该方法的实施,重复之处不再赘述。
图12所示为本发明实施例的传输装置的示意图,如图12所示,所述装置包括:
处理器1201,用于确定上行数据信息以及上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
收发器1202,用于在上行数据信息对应的时域资源上传输上行数据信息,在上行控制信息对应的时域资源上传输上行控制信息,当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,在所述重叠的时域资源上传输第一信息。
所述第一信息包括第二信息和第三信息中的至少一种,其中,所述第二信息包括所述上行控制信息的部分信息或所述上行控制信息的全部信息,所述第三信息包括所述上行数据信息的部分信息或所述上行数据信息的全部信息。
可选的,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
可选的,所述第一信息包括所述第二信息,所述收发器1202还用于以下至少一个:
在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息;
在上行控制信息对应的资源中所述重叠的时域资源上传输所述第二信息。
可选的,所述收发器1202在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息,包括以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式传输所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第二信息:
在所述上行数据信息对应的资源中所述重叠的时域资源上重复传输所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式传输所述第二信息。
可选的,所述收发器1202还用于:
在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
可选的,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,所述第一信息包括所述第三信息,所述收发器1202还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第三信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第三信息。
可选的,所述第一信息包括所述第二信息和所述第三信息,所述收发器1202还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第一信息。
可选的,所述收发器1202在上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,包括以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第一信息中的所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上不传输所述第一信息中的所述第三信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上传输所述第一信息中的所述第三信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式传输所述第一信息中的所述第二信息和所述第三信息.
可选的,所述收发器1202还用于在所述上行数据信息对应的资源中所述重叠的时 域资源上还传输参考信号。
可选的,所述收发器1202还用于接收基站发送的指示信息,所述指示信息中包括以下信息中的至少一种:
所述上行控制信息对应的时域资源的资源分配信息;
所述上行数据信息对应的时域资源的资源分配信息;
所述重叠的时域资源的指示信息;
所述第一信息包括内容的指示信息;
所述重叠的时域资源上传输所述第一信息的方式的指示信息。
本发明实施例的装置,可以解决当出现对应不同长度的时域资源的上行控制信息和上行数据信息且其对应的时域资源上发生冲突时上行控制信息或上行数据信息的传输问题。
实施例4
基于与实施例2的同一发明构思,本发明实施例中还提供了一种传输上行信息的基站,由于一种传输上行信息的基站对应的方法为本发明实施例2传输上行信息的方法,因此本发明实施例传输上行信息的基站的实施可以参见该方法的实施,重复之处不再赘述。
和上述相对应,本发明实施例还提供了的应用于基站的一种上行控制信息的传输装置,应用于基站,所述装置包括:
收发器,用于在上行数据信息对应的时域资源上接收上行数据信息,在上行控制信息对应的时域资源上接收上行控制信息,处理器,用于对接收到的上行数据信息或上行控制信息进行解调,其中,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,所述收发器还用于在所述重叠的时域资源上接收第一信息,所述处理器还用于对接收到的第一信息进行解调,所述第一信息包括第二信息和第三信息中的至少一种,
其中,所述第二信息包括所述上行控制信息的部分信息或所述上行控制信息的全部信息,所述第三信息包括所述上行数据信息的部分信息或所述上行数据信息的全部 信息。
可选的,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
可选的,所述第一信息包括所述第二信息,所述收发器还用于以下至少一个:
在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息;
在上行控制信息对应的资源中所述重叠的时域资源上接收所述第二信息。
可选的,所述收发器在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息,包括以至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式接收所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第二信息:
在所述上行数据信息对应的资源中所述重叠的时域资源上重复接收所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式接收所述第二信息。
可选的,所述收发器还用于所述上行数据信息对应的资源中所述重叠的时域资源上接收参考信号;
所述处理器还用于根据所述参考信号对所述第二信息进行解调。
可选的,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,所述第一信息包括所述第三信息,所述收发器还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第三信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第三信息。
可选的,所述第一信息包括所述第二信息和所述第三信息,所述收发器还用于以 下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第一信息。
可选的,所述收发器在所述上行数据信息对应的资源中重叠的时域资源上接收所述第一信息,包括以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第一信息中的所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上接收所述第一信息中的所述第三信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上接收经过所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式接收所述第一信息中的所述第二信息和所述第三信息。
可选的,所述收发器还用于在所述上行数据信息对应的资源中所述重叠的时域资源上接收参考信号;
所述处理器还用于根据所述参考信号对所述第一信息进行解调。
可选的,所述收发器还用于发送指示信息至用户设备,所述指示信息中包括以下信息中的至少一种:
所述上行控制信息对应的时域资源的资源分配信息;
所述上行数据信息对应的时域资源的资源分配信息;
所述重叠的时域资源的指示信息;
所述第一信息包括内容的指示信息;
所述重叠的时域资源上传输所述第一信息的方式的指示信息。
本发明实施例的装置,可以解决当出现对应不同长度的时域资源的上行控制信息和上行数据信息且其对应的时域资源上发生冲突时上行控制信息或上行数据信息的传输问题。
实施例5
基于与实施例1的同一发明构思,本发明实施例中还提供了一种传输上行信息的传输装置,由于一种传输上行信息的传输装置对应的方法为本发明实施例1传输上行信息的方法,因此本发明实施例传输上行信息的传输装置的实施可以参见该方法的实施,重复之处不再赘述。
图13所示为本发明实施例的传输装置的示意图,如图13所示,所述装置包括:
处理单元1301,用于确定上行数据信息以及上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
收发单元1302,用于在上行数据信息对应的时域资源上传输上行数据信息,在上行控制信息对应的时域资源上传输上行控制信息,当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,在所述重叠的时域资源上传输第一信息;
所述第一信息包括第二信息和第三信息中的至少一种,其中,所述第二信息包括所述上行控制信息的部分信息或所述上行控制信息的全部信息,所述第三信息包括所述上行数据信息的部分信息或所述上行数据信息的全部信息。
可选的,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
可选的,所述第一信息包括所述第二信息,所述收发单元1302还用于以下至少一个:
在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息;
在上行控制信息对应的资源中所述重叠的时域资源上传输所述第二信息。
可选的,所述收发单元1302在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息,包括以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式传输所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第二信息:
在所述上行数据信息对应的资源中所述重叠的时域资源上重复传输所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式传输所述第二信息。
可选的,所述收发单元1302还用于:
在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
可选的,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,所述第一信息包括所述第三信息,所述收发单元1302还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第三信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第三信息。
可选的,所述第一信息包括所述第二信息和所述第三信息,所述收发单元1302还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第一信息。
可选的,所述收发单元1302在上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,包括以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第一信息中的所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上不传输所述第一信息中的所述第三信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上传输所述第一信息中的所述第三信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式传输所述第一信息中的所述第二信息和所述第三信息.
可选的,所述收发单元1302还用于在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
可选的,所述收发单元1302还用于接收基站发送的指示信息,所述指示信息中包括以下信息中的至少一种:
所述上行控制信息对应的时域资源的资源分配信息;
所述上行数据信息对应的时域资源的资源分配信息;
所述重叠的时域资源的指示信息;
所述第一信息包括内容的指示信息;
所述重叠的时域资源上传输所述第一信息的方式的指示信息。
本发明实施例的装置,可以解决当出现对应不同长度的时域资源的上行控制信息和上行数据信息且其对应的时域资源上发生冲突时上行控制信息或上行数据信息的传输问题。
实施例6
基于与实施例2的同一发明构思,本发明实施例中还提供了一种传输上行信息的基站,由于一种传输上行信息的基站对应的方法为本发明实施例2传输上行信息的方法,因此本发明实施例传输上行信息的基站的实施可以参见该方法的实施,重复之处不再赘述。
和上述相对应,本发明实施例还提供了的应用于基站的一种上行控制信息的传输装置,应用于基站,所述装置包括:
收发单元,用于在上行数据信息对应的时域资源上接收上行数据信息,在上行控制信息对应的时域资源上接收上行控制信息,处理单元,用于对接收到的上行数据信息或上行控制信息进行解调,其中,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重 叠,所述收发单元还用于在所述重叠的时域资源上接收第一信息,所述处理单元还用于对接收到的第一信息进行解调,所述第一信息包括第二信息和第三信息中的至少一种,
其中,所述第二信息包括所述上行控制信息的部分信息或所述上行控制信息的全部信息,所述第三信息包括所述上行数据信息的部分信息或所述上行数据信息的全部信息。
可选的,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
可选的,所述第一信息包括所述第二信息,所述收发单元还用于以下至少一个:
在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息;
在上行控制信息对应的资源中所述重叠的时域资源上接收所述第二信息。
可选的,所述收发单元在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息,包括以至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式接收所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第二信息:
在所述上行数据信息对应的资源中所述重叠的时域资源上重复接收所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式接收所述第二信息。
可选的,所述收发单元还用于所述上行数据信息对应的资源中所述重叠的时域资源上接收参考信号;
所述处理单元还用于根据所述参考信号对所述第二信息进行解调。
可选的,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状 态信息且不包括混合自动重传请求信息和调度请求信息。
可选的,所述第一信息包括所述第三信息,所述收发单元还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第三信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第三信息。
可选的,所述第一信息包括所述第二信息和所述第三信息,所述收发单元还用于以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息;
在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第一信息。
可选的,所述收发单元在所述上行数据信息对应的资源中重叠的时域资源上接收所述第一信息,包括以下至少一个:
在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第一信息中的所述第二信息;
在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上接收所述第一信息中的所述第三信息;
在所述上行数据信息对应的资源中所述重叠的时域资源上接收经过所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式接收所述第一信息中的所述第二信息和所述第三信息。
可选的,所述收发单元还用于在所述上行数据信息对应的资源中所述重叠的时域资源上接收参考信号;
所述处理单元还用于根据所述参考信号对所述第一信息进行解调。
可选的,所述收发单元还用于发送指示信息至用户设备,所述指示信息中包括以下信息中的至少一种:
所述上行控制信息对应的时域资源的资源分配信息;
所述上行数据信息对应的时域资源的资源分配信息;
所述重叠的时域资源的指示信息;
所述第一信息包括内容的指示信息;
所述重叠的时域资源上传输所述第一信息的方式的指示信息。
本发明实施例的装置,可以解决当出现对应不同长度的时域资源的上行控制信息和上行数据信息且其对应的时域资源上发生冲突时上行控制信息或上行数据信息的传输问题。
本发明实施例提供了一种上行信息传输方法和传输装置,在上行控制信息和上行数据信息产生冲突的时候,可以保证优先级较高的上行控制信息得到传输,或可以保证上行数据信息的解调性能,或可以保证在对上行数据信息的解调性能影响较小的情况下传输优先级较高的上行控制信息。
对于系统实施例而言,由于其基本对应于方法实施例,所以相关之处参见方法实施例的部分说明即可。以上所描述的系统实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性劳动的情况下,即可以理解并实施。
本发明可以在由计算机执行的计算机可执行指令的一般上下文中描述,例如程序模块。一般地,程序模块包括执行特定任务或实现特定抽象数据类型的例程、程序、对象、组件、数据结构等等。也可以在分布式计算环境中实践本发明,在这些分布式计算环境中,由通过通信网络而被连接的远程处理设备来执行任务。在分布式计算环境中,程序模块可以位于包括存储设备在内的本地和远程计算机存储介质中。
本领域普通技术人员可以理解实现上述方法实施方式中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,所述的程序可以存储于计算机可读取存储介质中,这里所称得的存储介质,如:ROM、RAM、磁碟、光盘等。
还需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还 存在另外的相同要素。
以上所述仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。本文中应用了具体个例对本发明的原理及实施方式进行了闸述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处。综上所述,本说明书内容不应理解为对本发明的限制。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,均包含在本发明的保护范围内。

Claims (44)

  1. 一种上行信息传输的方法,其特征在于,所述方法包括:
    用户设备确定上行数据信息以及上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
    当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,所述用户设备在所述重叠的时域资源上传输第一信息,所述第一信息包括第二信息和第三信息中的至少一种;
    其中,所述第二信息包括所述上行控制信息中的部分信息或所述上行控制信息中的全部信息,所述第三信息包括所述上行数据信息中的部分信息或所述上行数据信息中的全部信息。
  2. 如权利要求1所述的方法,其特征在于,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
    所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
    所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
  3. 如权利要求1或2所述的方法,其特征在于,所述第一信息包括所述第二信息,所述方法还包括以下步骤中的至少一个:
    所述用户设备在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息;
    所述用户设备在上行控制信息对应的资源中所述重叠的时域资源上传输所述第二信息。
  4. 如权利要求3所述的方法,其特征在于,所述所述用户设备在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息,包括以下步骤中的至少一个:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述 上行控制信息对应的格式传输所述第二信息;
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第二信息:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上重复传输所述第二信息;
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式传输所述第二信息。
  5. 如权利要求4所述的方法,其特征在于,所述方法还包括:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
  6. 如权利要求1或2所述的方法,其特征在于,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
  7. 如权利要求1,2或6中任一项所述的方法,其特征在于,所述第一信息包括所述第三信息,所述方法还包括以下步骤中的至少一个:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第三信息;
    所述用户设备在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第三信息。
  8. 如权利要求1或2所述的方法,其特征在于,所述第一信息包括所述第二信息和所述第三信息,所述方法还包括以下步骤中的至少一个:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息;
    所述用户设备在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第一信息。
  9. 如权利要求8所述的方法,其特征在于,所述所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,包括以下步骤中的至少一个:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第一信息中的所述第二信息;
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上传输所述第一信息中的所述第三信息;
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式传输所述第一信息中的所述第二信息和所述第三信息。
  10. 如权利要求9所述的方法,其特征在于,所述方法还包括:
    所述用户设备在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
  11. 如权利要求1至10中任一项所述的方法,其特征在于,所述方法还包括:
    所述用户设备接收基站发送的指示信息,所述指示信息中包括以下信息中的至少一种:
    所述上行控制信息对应的时域资源的资源分配信息;
    所述上行数据信息对应的时域资源的资源分配信息;
    所述重叠的时域资源的指示信息;
    所述第一信息包括内容的指示信息;
    所述重叠的时域资源上传输所述第一信息的方式的指示信息。
  12. 一种上行信息传输的方法,其特征在于,所述方法包括:
    基站在上行数据信息对应的时域资源上接收上行数据信息,在上行控制信息对应 的时域资源上接收上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
    当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,所述基站在所述重叠的时域资源上接收第一信息,所述第一信息包括第二信息和第三信息中的至少一种;
    其中,所述第二信息包括所述上行控制信息中的部分信息或所述上行控制信息中的全部信息,所述第三信息包括所述上行数据信息中的部分信息或所述上行数据信息中的全部信息。
  13. 如权利要求12所述的方法,其特征在于,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
    所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
    所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
  14. 如权利要求12或13所述的方法,其特征在于,所述第一信息包括所述第二信息,所述方法还包括以下步骤中的至少一个:
    所述基站在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息;
    所述基站在上行控制信息对应的资源中所述重叠的时域资源上接收所述第二信息。
  15. 如权利要求14所述的方法,其特征在于,所述所述基站在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息,包括以下步骤中的至少一个:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式接收所述第二信息;
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源 上接收所述第二信息:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上合并接收所述第二信息;
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式接收所述第二信息。
  16. 如权利要求15所述的方法,其特征在于,所述方法还包括:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上还接收参考信号;
    所述基站根据所述参考信号对所述第二信息进行解调。
  17. 如权利要求12或13所述的方法,其特征在于,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
  18. 如权利要求12,13或17中任一项所述的方法,其特征在于,所述第一信息包括所述第三信息,所述方法还包括以下步骤中的至少一个:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第三信息;
    所述基站在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第三信息。
  19. 如权利要求12或13所述的方法,其特征在于,所述第一信息包括所述第二信息和所述第三信息,所述方法还包括以下步骤中的至少一个:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息;
    所述基站在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第一信息。
  20. 如权利要求19所述的方法,其特征在于,所述所述基站在所述上行数据信息对应的资源中重叠的时域资源上接收所述第一信息,包括以下步骤中的至少一个:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第一信息中的所述第二信息;
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上接收所述第一信息中的所述第三信息;
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式接收所述第一信息中的所述第二信息和所述第三信息。
  21. 如权利要求20所述的方法,其特征在于,所述方法还包括:
    所述基站在所述上行数据信息对应的资源中所述重叠的时域资源上还接收参考信号;
    所述基站根据所述参考信号对所述第一信息进行解调。
  22. 如权利要求12至21中任一项所述的方法,其特征在于,所述方法还包括:
    所述基站发送指示信息至用户设备,所述指示信息中包括以下信息中的至少一种:
    所述上行控制信息对应的时域资源的资源分配信息;
    所述上行数据信息对应的时域资源的资源分配信息;
    所述重叠的时域资源的指示信息;
    所述第一信息包括内容的指示信息;
    所述重叠的时域资源上传输所述第一信息的方式的指示信息。
  23. 一种上行控制信息的传输装置,其特征在于,所述装置包括:
    处理器,用于确定上行数据信息以及上行控制信息,上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
    收发器,用于当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,在所述重叠的时域资源上传输第一信息,所述第一信息包括第二信息和第三信息中的至少一种;
    其中,所述第二信息包括所述上行控制信息中的部分信息或所述上行控制信息中的全部信息,所述第三信息包括所述上行数据信息中的部分信息或所述上行数据信息中的全部信息。
  24. 如权利要求23所述的装置,其特征在于,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
    所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
    所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
  25. 如权利要求23或24所述的装置,其特征在于,所述第一信息包括所述第二信息,所述收发器还用于以下至少一个:
    在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息;
    在上行控制信息对应的资源中所述重叠的时域资源上传输所述第二信息。
  26. 如权利要求25所述的装置,其特征在于,所述收发器在上行数据信息对应的资源中所述重叠的时域资源上传输所述第二信息,包括以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式传输所述第二信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第二信息:
    在所述上行数据信息对应的资源中所述重叠的时域资源上重复传输所述第二信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式传输所述第二信息。
  27. 如权利要求26所述的装置,其特征在于,所述收发器还用于:
    在所述上行数据信息对应的资源中所述重叠的时域资源上还传输参考信号。
  28. 如权利要求23或24所述的装置,其特征在于,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
  29. 如权利要求23,24或28中任一项所述的装置,其特征在于,所述第一信息包括所述第三信息,所述收发器还用于以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第三信息;
    在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第三信息。
  30. 如权利要求23或24所述的装置,其特征在于,所述第一信息包括所述第二信息和所述第三信息,所述收发器还用于以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息;
    在所述上行控制信息对应的资源中所述重叠的时域资源上传输所述第一信息。
  31. 如权利要求30所述的装置,其特征在于,所述收发器在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,包括以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上传输所述第一信息中的所述第二信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上传输所述第一信息中的所述第三信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源上传输所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
    在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式传输所述第一信息中的所述第二信息和所述第三信息。
  32. 如权利要求31所述的装置,其特征在于,所述收发器还用于在所述上行数据信息对应的资源中所述重叠的时域资源上传输参考信号。
  33. 如权利要求23至32中任一项所述的装置,其特征在于,所述收发器还用于接收基站发送的指示信息,所述指示信息中包括以下信息中的至少一种:
    所述上行控制信息对应的时域资源的资源分配信息;
    所述上行数据信息对应的时域资源的资源分配信息;
    所述重叠的时域资源的指示信息;
    所述第一信息包括内容的指示信息;
    所述重叠的时域资源上传输所述第一信息的方式的指示信息。
  34. 一种上行控制信息的传输装置,其特征在于,所述装置包括:
    收发器,用于在上行数据信息对应的时域资源上接收上行数据信息,在上行控制信息对应的时域资源上接收上行控制信息;
    处理器,用于解调所述上行数据信息和所述上行控制信息;
    其中,所述上行数据信息对应的时域资源的长度不等于所述上行控制信息对应的时域资源的长度,所述上行控制信息包括混合自动重传请求信息、信道状态信息、调度请求信息中的至少一种;
    当所述上行数据信息对应的时域资源与所述上行控制信息对应的时域资源有重叠,所述收发器还用于在所述重叠的时域资源上接收第一信息,所述处理器还用于解调所述第一信息;
    所述第一信息包括第二信息和第三信息中的至少一种;
    其中,所述第二信息包括所述上行控制信息中的部分信息或所述上行控制信息中的全部信息,所述第三信息包括所述上行数据信息中的部分信息或所述上行数据信息中的全部信息。
  35. 如权利要求34所述的装置,其特征在于,所述上行数据信息对应的时域资源的长度不等于上行控制信息对应的时域资源的长度,包括:
    所述上行数据信息对应的时域资源的长度大于所述上行控制信息对应的时域资源的长度;或者,
    所述上行数据信息对应的时域资源的长度小于所述上行控制信息对应的时域资源的长度。
  36. 如权利要求34或35所述的装置,其特征在于,所述第一信息包括所述第二信息,所述收发器还用于以下至少一个:
    在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息;
    在上行控制信息对应的资源中所述重叠的时域资源上接收所述第二信息。
  37. 如权利要求36所述的装置,其特征在于,所述收发器在上行数据信息对应的资源中所述重叠的时域资源上接收所述第二信息,包括以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源上使用所述上行控制信息对应的格式接收所述第二信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第二信息:
    在所述上行数据信息对应的资源中所述重叠的时域资源上重复接收所述第二信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源上使用与所述上行数据信息相同的调制方式接收所述第二信息。
  38. 如权利要求37所述的装置,其特征在于,所述收发器还用于在所述上行数据信息对应的资源中所述重叠的时域资源上接收参考信号;
    所述处理器还用于根据所述参考信号对所述第二信息进行解调。
  39. 如权利要求34或35所述的装置,其特征在于,所述第一信息包括所述第三信息,其中,所述上行控制信息包括信道状态信息且不包括混合自动重传请求信息和调度请求信息。
  40. 如权利要求34,35或39中任一项所述的装置,其特征在于,所述第一信息包括所述第三信息,所述收发器还用于以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第三信息;
    在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第三信息。
  41. 如权利要求34或35所述的装置,其特征在于,所述第一信息包括所述第二信息和所述第三信息,所述收发器还用于以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源上接收所述第一信息;
    在所述上行控制信息对应的资源中所述重叠的时域资源上接收所述第一信息。
  42. 如权利要求41所述的装置,其特征在于,所述收发器在所述上行数据信息对应的资源中重叠的时域资源上接收所述第一信息,包括以下至少一个:
    在所述上行数据信息对应的资源中所述重叠的时域资源中预定义的资源上接收所述第一信息中的所述第二信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源中除预定义的资源外的资源上接收所述第一信息中的所述第三信息;
    在所述上行数据信息对应的资源中所述重叠的时域资源上接收经过所述第一信息,其中,所述第一信息中的所述第二信息和所述第一信息中的所述第三信息占用不同的时频资源;
    在所述上行数据信息对应的资源中所述重叠的时域资源上使用相同的调制方式接收所述第一信息中的所述第二信息和所述第三信息。
  43. 如权利要求42所述的装置,其特征在于,所述收发器还用于在所述上行数据信息对应的资源中所述重叠的时域资源上接收参考信号;
    所述处理器还用于根据所述参考信号对所述第一信息进行解调。
  44. 如权利要求34至43中任一项所述的装置,其特征在于,所述收发器还用于发送指示信息至用户设备,所述指示信息中包括以下信息中的至少一种:
    所述上行控制信息对应的时域资源的资源分配信息;
    所述上行数据信息对应的时域资源的资源分配信息;
    所述重叠的时域资源的指示信息;
    所述第一信息包括内容的指示信息;
    所述重叠的时域资源上传输所述第一信息的方式的指示信息。
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