WO2013166923A1 - Csi反馈信令的指示配置方法及基站 - Google Patents
Csi反馈信令的指示配置方法及基站 Download PDFInfo
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- WO2013166923A1 WO2013166923A1 PCT/CN2013/074793 CN2013074793W WO2013166923A1 WO 2013166923 A1 WO2013166923 A1 WO 2013166923A1 CN 2013074793 W CN2013074793 W CN 2013074793W WO 2013166923 A1 WO2013166923 A1 WO 2013166923A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0621—Feedback content
- H04B7/0626—Channel coefficients, e.g. channel state information [CSI]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0048—Allocation of pilot signals, i.e. of signals known to the receiver
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0053—Allocation of signaling, i.e. of overhead other than pilot signals
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0053—Allocation of signaling, i.e. of overhead other than pilot signals
- H04L5/0057—Physical resource allocation for CQI
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0091—Signaling for the administration of the divided path
- H04L5/0094—Indication of how sub-channels of the path are allocated
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. TPC [Transmission Power Control], power saving or power classes
- H04W52/04—TPC
- H04W52/18—TPC being performed according to specific parameters
- H04W52/24—TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters
- H04W52/243—TPC being performed according to specific parameters using SIR [Signal to Interference Ratio] or other wireless path parameters taking into account interferences
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/02—Selection of wireless resources by user or terminal
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/21—Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access, e.g. scheduled or random access
- H04W74/08—Non-scheduled or contention based access, e.g. random access, ALOHA, CSMA [Carrier Sense Multiple Access]
- H04W74/0833—Non-scheduled or contention based access, e.g. random access, ALOHA, CSMA [Carrier Sense Multiple Access] using a random access procedure
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0636—Feedback format
- H04B7/0645—Variable feedback
- H04B7/0647—Variable feedback rate
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/08—Testing, supervising or monitoring using real traffic
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/02—Terminal devices
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/08—Access point devices
Definitions
- the present invention relates to the field of communications, and in particular to an indication configuration method and a base station for csi feedback signaling.
- LTE Long Term Evolution
- the Long Term Evolution (LTE) system has been researching R11 technology accurately after several versions of R8/9/10. At present, some R8 products are gradually commercialized, and R9 and R10 are subject to further product planning. In the R8 and R9 phases, R10 adds many new features based on the former two, such as DMRS (Demodulation Reference Signal), CSI-RS (Channel State Information Reference Signal).
- DMRS Demodulation Reference Signal
- CSI-RS Channel State Information Reference Signal
- the technology for solving the interference problem between cells mainly considers the cell interference avoidance under the isomorphic network in the early stage of the R10 phase, and the mainstream considers elCIC technology and CoMP (Coordinated Multi-point) technology.
- CoMP Coordinatd Multi-point
- CoMP is that multiple nodes cooperate to send data to one or more UEs at the same time-frequency resource or different time-frequency resources. Such a technique can reduce interference between cells, improve throughput at the edge of the cell, and expand cell coverage.
- LTE defines a PDCCH (Physical Downlink Control Channel) bearer scheduling allocation and other control information.
- PDCCH Physical Downlink Control Channel
- Each PDCCH is composed of a number of CCEs (Control Channel Elements), and the number of CCEs per subframe is determined by the PDCCH. The number and downstream bandwidth are determined.
- the UE obtains the PDCCH by blind detection in the search space, and the search space is divided into a common search space and a UE-specific search space.
- the common search space refers to an area that all UEs search for, and the space carries the cell-specific information.
- the dedicated search space is a spatial range that a single UE will search for, and the dedicated search spaces of multiple UEs may overlap, but the general initial search location is different.
- the UE working mode and the Radio Network Temporary Identity (RNTI) type for the Cyclic Redundancy Check (CRC) scrambling of the PDCCH are notified by the high layer signaling.
- the search space and aggregation level L and the number of candidate PDCCHs see Table 1 for the relationship between them.
- the aggregation level is the number of CCEs occupied by the PDCCH.
- the user equipment When performing blind detection in the user-specific search space, the user equipment first according to the user identifier (UE ID) and the child The initial position of the blind detection is calculated by the frame number, etc., and then detected in the search space until the PDCCH assigned to itself is detected. Table 1. PDCCH candidate set
- Table 2 it is a schematic diagram of the UE-specific search space, the possible first CCE location and its corresponding aggregation level. Table 2 Correspondence between the aggregation level and the first CCE location The first CCE is in the user-specific search space.
- the assumptions about feedback and interference definitions are discussed in detail.
- the main point of view is to study channel measurement and interference measurement separately, channel measurement and interference independent configuration, and may support different CSI- Aggregation feedback of RS resources, including aggregated PMI feedback and aggregated CQI feedback.
- the overhead of feedback and the downlink control signaling are related to the size of the CoMP measurement set, it is necessary to first discuss and limit the CoMP measurement set size, so that feedback and downlink control signaling can obtain further discussion convergence.
- the initial definition of the CoMP measurement set size is no more than 2 or 3, which can properly converge for further feedback and control signaling research.
- the present invention provides an indication configuration method and a base station for feedback signaling to solve at least the problem of how to configure the terminal side to feed back the CSI required by the base station side.
- the different aggregation modes of the CSI-RS resources and/or the CSI of the interference hypothesis may be multiple CSIs in one carrier or multiple CSIs in multiple carriers.
- a method for configuring an indication of CSI feedback signaling including: a base station side notifying a CSI-RS resource used by a terminal side to measure CSI by using a first high-level signaling of UE-Specific, where CSI
- the RS resource includes at least one of the following: a time-frequency location of the CSI-RS resource in the subframe, an antenna port number configuration of the CSI-RS resource, a CSI-RS resource period and a subframe offset, and a sequence indication of the CSI-RS resource.
- power control information of the CSI-RS resource the base station side instructs the terminal side to feed back CSI corresponding to the CSI-RS resource.
- the method further includes: the base station side notifying, by using the second high-level signaling of the UE-Specific, the candidate configuration of the CSI to be fed back in the multiple CSI-RS resources on the terminal side A
- the base station side notifies the candidate configuration set of the CSI to be fed back in the multiple CSI-RS resources of the terminal side by using the second high-level signaling of the UE-Specific, and the base station side uses the bitmap sequence to notify the terminal-side candidate configuration set, where
- the length of the bitmap sequence is 3 or 4 or 7 or 8 respectively corresponding to different aggregation and/or interference hypothesis modes of CSI, and each bit in the bimap sequence corresponds to different aggregation and/or interference hypothesis measurement feedback modes of the configured CSI-RS resources.
- the base station side instructs the terminal side to feed back the CSI corresponding to the CSI-RS resource, including: the base station side triggers the signaling bit and/or through the DCI Format 0 or DCI format 4 or the random access response or the uplink scheduling grant signaling. Or the DCI format 0 or the DCI format 4 of the terminal, or the resource location where the random access response or the uplink scheduling grant signaling is located, to dynamically indicate the CSI corresponding to the terminal selection feedback; wherein the CSI-RS resource includes The first high layer signaling notifies the terminal side of the CSI-RS resource for measuring CSI or the second high layer signaling to notify the terminal side of the candidate configuration set.
- the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located includes at least one of the following information: a starting location of the corresponding CCE, a corresponding aggregation level, a corresponding subframe number, and a corresponding system.
- the frame number corresponds to the area indication of the high layer signaling configuration.
- the feedback trigger signaling bit in DCI Format 0 or DCI format 4 or random access response or uplink scheduling grant signaling is 1 bit, where 0 means no triggering CSI-
- the CSI of the RS resource, 1 indicates the CSI that triggers the CSI-RS resource.
- the feedback trigger signaling bit in DCI Format 0 or DCI format 4 or random access response or uplink scheduling grant signaling is 2 bits, where 00 indicates no triggering
- the CSI of any one CSI-RS resource, 01-11, respectively, indicates the CSI that triggers different aggregation modes of CSI-RS resources and/or interference assumptions.
- the feedback trigger signaling bits in the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling are 1 bit, and pass the DCI Format 0 or The DCI format 4 or the resource location of the random access response or the uplink scheduling grant signaling and the feedback trigger signaling 1 bit indicate the different aggregation modes of the CSI-RS resources and/or the CSI of the interference hypothesis.
- the number of CSI-RS resources is 2 or 3
- different aggregation of the CSI-RS resources of the terminal side feedback is indicated by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located.
- the base station side notifies the different aggregation modes of the N CSI-RS resources of the candidate side and/or the CSI of the interference hypothesis through the second high layer signaling of the UE-Specific, Wherein N>0; and the resource location where the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling is located indicates the different aggregation modes of the CSI-RS resources and/or the CSI of the interference hypothesis.
- the base station side notifies the different aggregation modes of the N CSI-RS resources of the candidate side and/or the CSI of the interference hypothesis through the second high layer signaling of the UE-Specific, Wherein, N>0; and the feedback triggering signaling in the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling is used to indicate that the terminal side feeds back different aggregation modes and/or interference hypotheses of the CSI-RS resources.
- CSI the number of CSI-RS resources is 2 or 3
- the base station side notifies the different aggregation modes of the N CSI-RS resources of the candidate side and/or the CSI of the interference hypothesis through the second high layer signaling of the UE-Specific, Wherein, N>0; and through DCI Format 0 or DCI format 4 or random access response or uplink scheduling grant signaling feedback trigger signaling and DCI Format 0 or DCI format 4 or random access response or uplink scheduling grant signaling
- the location of the resource is used to indicate the different aggregation modes of the CSI-RS resources and/or the CSI of the interference hypothesis.
- a base station including: a first notification module, configured to pass
- the first high layer signaling of the UE-Specific is used to notify the terminal side of the CSI-RS resource for measuring the CSI, where the CSI-RS resource includes at least one of the following: a time-frequency location of the CSI-RS resource in the subframe, and a CSI-RS resource.
- the base station further includes: a second notification module, configured to notify, by using the second high-level signaling of the UE-Specific, that the terminal-side multiple CSI-RS resources need to be fed back, if the CSI-RS resources are multiple A set of candidate configurations for CSI.
- the second notification module includes: a candidate notification sub-module, configured to notify the terminal-side candidate configuration set by a bitmap sequence, wherein the length of the bitmap sequence is 3 or 4 or 7 or 8, and each bit in the bimap sequence is configured correspondingly Different aggregation and/or interference hypothesis measurement feedback methods for CSI-RS resources.
- the indication module comprises: a dynamic indication submodule, configured to trigger the signaling bit and/or the terminal side blindly detected by the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling
- the DCI Format 0 or DCI format 4 of the terminal or the resource location where the random access response or the uplink scheduling grant signaling is located dynamically indicates the CSI corresponding to the terminal selection feedback.
- the base station side flexibly configures the terminal side to feed back various CSI information, so that the base station side can flexibly and dynamically obtain CSI, thereby achieving accurate link adaptation and data transmission, and reducing terminal side uplink.
- the overhead of feedback and the effect of measuring complexity is provided to the terminal side blindly detected by the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling.
- FIG. 2 is a structural block diagram of a base station indicating configuration CSI according to an embodiment of the present invention.
- FIG. 1 is a flowchart of an indication configuration method of CSI feedback signaling according to an embodiment of the present invention.
- the method includes: Step S102: The base station side notifies the CSI-RS resource used by the terminal side to measure the CSI by using the UE-Specific high-level signaling, where the CSI-RS resource used for measuring the CSI includes at least: The time-frequency position of the corresponding CSI-RS resource in one subframe, the number of antenna ports corresponding to the CSI-RS resource, the period corresponding to the CSI-RS resource, and the subframe offset, corresponding to the sequence indication of the CSI-RS resource, corresponding to Power control information of CSI-RS resources.
- Step S104 The base station side instructs the terminal to select a CSI resource corresponding to the feedback by using physical layer dynamic signaling.
- the terminal side is flexibly configured to feed back various CSI information, so that the base station side can flexibly and dynamically obtain CSI, thereby accurately performing link adaptive adjustment and data transmission, and reducing terminal side.
- the CSI-RS resource used for measuring the CSI may be provided in multiple sets. In the case of multiple sets of CSI-RS resources, the base station side may also pass the UE-Specific high-level letter before step S104.
- the notification terminal side is configured to instruct the terminal side to feed back the candidate configuration set of the CSI feedback by the terminal required by the base station (step S1022).
- the candidate configuration set of the UE-Specific high-level signaling notification terminal side for indicating the feedback CSI required by the terminal-side feedback base station may adopt a sequence notification manner of a bitmap, and the length of the fixed bitmap sequence is 3 or 4 or 7 or 8, wherein each bit in the bimap sequence corresponds to a different aggregation and/or interference hypothesis measurement feedback manner of the configured CSI-RS resources.
- the dynamic indication terminal selects, in the candidate set, the CSI resources corresponding to the feedback, including: DCI
- the resource location where the uplink scheduling authorization signaling is located includes at least one of the following information: a starting position of the corresponding CCE, a corresponding aggregation level, and a corresponding subframe number. Corresponding system frame number.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 1
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the feedback of the terminal required by the base station.
- the candidate configuration set of the CSI is not enabled, or the base station side does not need to configure the corresponding high layer signaling to the terminal side.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI fo r mat 4 or the feedback trigger signaling bit in the random access response or the uplink scheduling grant signaling is 1 bit, where 0 means no The CSI of one CSI-RS resource that triggers the high-level configuration, and 1 indicates the CSI of a CSI-RS resource that triggers the high-level configuration.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 2
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the feedback of the terminal required by the base station.
- the candidate configuration set of the CSI is not enabled, or the base station side does not need to configure the corresponding high layer signaling to the terminal side.
- the candidate set is a high-level signaling configuration terminal-side CSI-RS resource measurement set, which is used to dynamically instruct the terminal to select a feedback corresponding CSI resource in the candidate set, including DCI Format 0 or DCI format 4 or a random access response or an uplink scheduling authorization letter.
- the feedback triggering signaling bit in the command is 2 bits, 00 represents the CSI of any CSI-RS resource that does not trigger the high-level configuration, and 01-11 respectively represents different aggregation modes and/or interference assumptions of the CSI-RS resources that trigger the high-level configuration.
- CSI is 2 bits, 00 represents the CSI of any CSI-RS resource that does not trigger the high-level configuration, and 01-11 respectively represents different aggregation modes and/or interference assumptions of the CSI-RS resources that trigger the high-level configuration.
- CSI is 2 bits, 00 represents the CSI
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 2
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the feedback of the terminal required by the base station.
- the candidate configuration set of the CSI is not enabled, or the base station side does not need to configure the corresponding high layer signaling to the terminal side.
- the candidate set is a high-level signaling configuration terminal-side CSI-RS resource measurement set, which is used to dynamically instruct the terminal to select a feedback corresponding CSI resource in the candidate set, including DCI Format 0 or DCI format 4 or a random access response or
- the feedback trigger signaling bit in the uplink scheduling grant signaling is 1 bit.
- the resource location where the DCI Format 0 or DCI format 4 or the random access response or the uplink scheduling grant signaling is located needs to be considered to determine the feedback CSI-RS resource.
- CSI for different aggregation methods and/or interference assumptions.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 2
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the CSI required by the terminal for feedback.
- the candidate configuration set is not enabled, or the base station side does not need to configure corresponding high-level signaling to the terminal side.
- the candidate set is a high-level signaling configuration terminal-side CSI-RS resource measurement set, which is used to dynamically instruct the terminal to select a feedback corresponding CSI resource in the candidate set, including DCI Format 0 or DCI format 4 or a random access response or an uplink scheduling authorization letter.
- the location of the resource is used to determine the different aggregation modes of the feedback CSI-RS resources and/or the CSI of the interference hypothesis.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 2
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the CSI required by the terminal for feedback.
- the candidate configuration set notifies the different aggregation modes of the 2 candidate CSI-RS resources of the UE candidate and/or the CSI of the interference hypothesis.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located to determine different aggregation modes of the feedback CSI-RS resource and / or interfere with the assumed CSI.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 2
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the CSI required by the terminal for feedback.
- the candidate configuration set notifies the different aggregation modes of the 2 candidate CSI-RS resources of the UE candidate and/or the CSI of the interference hypothesis.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes DCI Format 0 or DCI format 4 or the feedback trigger signaling bit in the random access response or uplink scheduling grant signaling is 2 bits, and 00 indicates that the high level is not triggered.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 2
- the UE-Specific high-level signaling informs the terminal side to indicate that the terminal side feeds back the CSI required by the terminal for feedback.
- the candidate configuration set notifies the different aggregation modes of the 2 candidate CSI-RS resources of the UE candidate and/or the CSI of the interference hypothesis.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI format 4 or the feedback trigger signaling bit in the random access response or the uplink scheduling grant signaling is 1 bit, and the DCI Format needs to be considered.
- the UE-Specific high-level signaling informs the terminal side that the CSI-RS resource number used for measuring the CSI is 3
- the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feedback the feedback of the terminal required by the base station.
- the candidate configuration set of the CSI is not enabled, or the base station side does not need to configure the corresponding high layer signaling to the terminal side.
- the candidate set is a high-level signaling configuration terminal-side CSI-RS resource measurement set, which is used to dynamically instruct the terminal to select a feedback corresponding CSI resource in the candidate set, including DCI Format 0 or DCI format 4 or a random access response or an uplink scheduling authorization letter.
- the feedback triggering signaling bit in the command is 1 bit.
- the resource location where the DCI Format 0 or DCI format 4 or the random access response or the uplink scheduling grant signaling is located needs to be considered to determine different aggregation modes of the feedback CSI-RS resources and/or Or interfere with the assumed CSI.
- the UE-Specific high-level signaling informs the terminal side that the CSI-RS resource number used for measuring the CSI is 3
- the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feedback the feedback of the terminal required by the base station.
- the candidate configuration set of the CSI is not enabled, or the base station side does not need to configure the corresponding high layer signaling to the terminal side.
- the candidate set is a high-level signaling configuration terminal-side CSI-RS resource measurement set, which is used to dynamically instruct the terminal to select a feedback corresponding CSI resource in the candidate set, including DCI Format 0 or DCI format 4 or a random access response or an uplink scheduling authorization letter.
- the feedback triggering signaling bit in the command is 2 bits.
- the resource location where the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling is located needs to be considered to determine different aggregation modes of the feedback CSI-RS resources and/or Or interfere with the assumed CSI.
- the UE-Specific high-level signaling informs the terminal side that the CSI-RS resource number used for measuring the CSI is 3
- the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feed back the CSI required by the base station for feedback.
- the candidate configuration set notifies the different aggregation modes of the 3 candidate CSI-RS resources of the UE candidate and/or the interference hypothesis CSI.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI format 4 or the feedback trigger signaling bit in the random access response or the uplink scheduling grant signaling is 1 bit, where 0 indicates that the high layer is not triggered.
- the CSI of any one of the CSI-RS resources in the configured candidate set, 1 indicates the CSI that triggers different aggregation modes and/or interference hypotheses of CSI-RS resources in the high-level configuration candidate set.
- the UE-Specific high-level signaling informs the terminal side that the CSI-RS resource number used for measuring the CSI is 3
- the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feed back the CSI required by the base station for feedback.
- the candidate configuration set notifies the different aggregation modes of the 3 candidate CSI-RS resources of the UE candidate and/or the interference hypothesis CSI.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI format 4 or the feedback trigger signaling bit in the random access response or the uplink scheduling grant signaling is 1 bit, where 0 indicates that the high layer is not triggered.
- the CSI of any one of the CSI-RS resources in the configured candidate set, 1 indicates the CSI that triggers different aggregation modes and/or interference hypotheses of CSI-RS resources in the high-level configuration candidate set.
- the UE-Specific high-level signaling informs the terminal side that the number of CSI-RS resources used for measuring the CSI is 3, the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feedback the terminal feedback required by the base station.
- the candidate configuration set of the CS1 notifies the different aggregation modes of the 3 candidate CSI-RS resources of the UE candidate and/or the CSI of the interference hypothesis.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes DCI Format 0 or DCI format 4 or the feedback trigger signaling bit in the random access response or uplink scheduling grant signaling is 2 bits, and 00 indicates that the high level is not triggered.
- the UE-Specific high-level signaling informs the terminal side that the CSI-RS resource number used for measuring the CSI is 3
- the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feed back the CSI required by the base station for feedback.
- the candidate configuration set notifies the different aggregation modes of the 3 candidate CSI-RS resources of the UE candidate and/or the interference hypothesis CSI.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI format 4 or the feedback trigger signaling bit in the random access response or the uplink scheduling grant signaling is 1 bit, and the DCI Format needs to be considered. 0 or DCI format 4 or the resource location where the random access response or uplink scheduling grant signaling is located to determine the different aggregation modes of the feedback CSI-RS resources and/or the CSI of the interference hypothesis.
- the UE-Specific high-level signaling informs the terminal side that the CSI-RS resource number used for measuring the CSI is 3
- the UE-Specific high-level signaling informs the terminal side to instruct the terminal side to feed back the CSI required by the base station for feedback.
- the candidate configuration set notifies the different aggregation modes of the 3 candidate CSI-RS resources of the UE candidate and/or the interference hypothesis CSI.
- the CSI resource for dynamically instructing the terminal to select the feedback in the candidate set includes the DCI Format 0 or the DCI format 4 or the feedback trigger signaling bit in the random access response or the uplink scheduling grant signaling is 2 bits, and the DCI Format needs to be considered. 0 or DCI format 4 or the resource location where the random access response or uplink scheduling grant signaling is located to determine the different aggregation modes of the feedback CSI-RS resources and/or the CSI of the interference hypothesis.
- the different aggregation modes in the foregoing embodiments refer to at least one of whether to trigger feedback CSI, selection feedback of different CSIs, and selection feedback of different CSI combinations or aggregations.
- the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling in the foregoing embodiment refers to the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling authorization signal including the terminal feedback trigger signaling.
- make. 2 is a structural block diagram of a base station indicating configuration CSI according to an embodiment of the present invention. As shown in FIG.
- the base station includes: a first notification module 10, configured to notify, by using a first high-level signaling of the UE-Specific, a CSI-RS resource used by the terminal side to measure CSI; and an indication module 20 configured to indicate the terminal side
- the CSI corresponding to the CSI-RS resource is fed back.
- the first notification module 10 is coupled to the indication module 20.
- the terminal side is flexibly configured to feed back various CSI information, so that the base station side can flexibly and dynamically obtain CSI, thereby accurately performing link adaptive adjustment and data transmission, and reducing terminal side.
- the overhead of uplink feedback and the effect of measurement complexity is provided to notify, by using a first high-level signaling of the UE-Specific, a CSI-RS resource used by the terminal side to measure CSI; and an indication module 20 configured to indicate the terminal side
- the CSI corresponding to the CSI-RS resource is fed back.
- the first notification module 10 is coupled to the indication module 20.
- the terminal side is flexibly configured
- the base station further includes: a second notification module 30, configured to notify, by using the second high-level signaling of the UE-Specific, that the terminal-side multiple CSI-RS resources need to be fed back, if the CSI-RS resources are multiple A set of candidate configurations for CSI.
- the second notification module includes: a candidate notification sub-module, configured to notify the terminal-side candidate configuration set by using a bitmap sequence, where the length of the bitmap sequence is 3 or 4 or 7 or 8, and each bit in the bimap sequence is configured correspondingly. Different aggregation and/or interference hypothesis measurement feedback methods for CSI-RS resources.
- the indication module includes: a dynamic indication sub-module, configured to trigger the signaling bit and/or the terminal side blindly detected by the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling.
- the DCI Format 0 or DCI format 4 of the terminal or the resource location where the random access response or the uplink scheduling grant signaling is located dynamically indicates the CSI corresponding to the terminal selection feedback.
- Embodiment 1 In this embodiment, assuming that UE1 is a user of R11 or a more advanced version, the base station side notifies UE1 through the UE-Specific high-level signaling that the CSI-RS resource is used for measuring CSI.
- the candidate set is a set of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling To trigger whether the UE1 feeds back the CSI of the corresponding CSI-RS resource, where 0 indicates that the CSI of one CSI-RS resource of the upper layer configuration is not triggered, and 1 indicates the CSI of one CSI-RS resource that triggers the high layer configuration.
- Embodiment 2 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 through the UE-Specific high-level signaling that the CSI-RS resource is used for measuring CSI.
- the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is a set of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit 2 bits through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the resource and the first IMR combined with the calculated CSI 10 indicates that one CSI-RS resource that triggers the feedback high-level configuration and the second IMR (Interference Measurement Resource) combined with the calculated CSI, 11 reserved or indicates the trigger feedback high level.
- the configured one CSI-RS resource and the third IMR are combined with the calculated CSI.
- Embodiment 3 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 through the UE-Specific high-level signaling that the CSI-RS resource for CSI is measured.
- the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is a set of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the IMR is combined with the calculated CSI, and the resource location of the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling is used to determine the CSI of the different aggregation modes and/or interference hypotheses of the feedback CSI-RS resources.
- the candidate set is a set of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the IMR is combined with the calculated CSI, and the resource location of the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling is used to determine the CSI of the different aggregation modes and/or interference hypotheses of the feedback CSI-RS resources.
- DCI Format 0 or DCI format 4 or the random access response or the subframe in which the uplink scheduling grant signaling is located is an even subframe
- select one of the feedback high-level configurations select one of the feedback high-level configurations.
- the CSI-RS resource and the first IMR are combined with the calculated CSI.
- the DCI Format 0 or the DCI format 4 or the subframe in which the random access response or the uplink scheduling grant signaling is located is an odd subframe, the CSI that selects the feedback high layer configuration is selected.
- the RS resource and the second IMR are combined with the calculated CSI.
- Embodiment 5 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 through the UE-Specific high-level signaling that the CSI-RS resource is used for measuring CSI.
- the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is a set of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the IMR is combined with the calculated CSI, and the resource location of the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling grant signaling is used to determine the CSI of the different aggregation modes and/or interference hypotheses of the feedback CSI-RS resources.
- the DCI Format 0 or the DCI format 4 or the subframe in which the random access response or the uplink scheduling grant signaling is located is an even system frame
- select a CSI that is fed back to the upper layer configuration select a CSI that is fed back to the upper layer configuration.
- the RS resource and the second IMR are combined with the calculated CSI.
- Embodiment 6 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- Embodiment 7 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure the corresponding height on the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling To trigger whether the UE1 feeds back the CSI of the corresponding CSI-RS resource, where 0 indicates that the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration is triggered, and 1 indicates that the aggregation mode of the two sets of CSI-RS resources that trigger the feedback of all possible high-level configurations is triggered. / or interfere with the assumed CSI.
- Embodiment 8 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- 0 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration
- 1 represents the aggregation mode and/or the aggregation of the two sets of CSI-RS resources that trigger the feedback high-level configuration.
- the CSI in which the aggregation mode and/or the interference hypothesis is fed back is determined by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located.
- the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that two sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- 0 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration
- 1 represents the aggregation mode and/or the aggregation of the two sets of CSI-RS resources that trigger the feedback high-level configuration.
- the CSI to which the aggregation mode and/or the interference hypothesis is fed back is the resource of the DCI Format 0 or the DCI format 4 or the random access response or the uplink scheduling authorization signaling.
- the source location is determined.
- DCI Format 0 or DCI format 4 or the subframe in which the random access response or uplink scheduling grant signaling is located is an even system frame
- select the first aggregation mode and/or the interference assumed CSI of the upper layer configuration if DCI Format 0
- the subframe in which the DCI format 4 or the random access response or the uplink scheduling grant signaling is located is an odd system frame
- the second aggregation mode of the upper layer configuration and/or the CSI of the interference hypothesis are selected.
- UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that two sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- 0 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration
- 1 represents the aggregation mode and/or the aggregation of the two sets of CSI-RS resources that trigger the feedback high-level configuration.
- the CSI in which the aggregation mode and/or the interference hypothesis is fed back is determined by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located.
- the DCI Format 0 or the DCI format 4 or the subframe in which the random access response or the uplink scheduling grant signaling is located is an even subframe
- the first aggregation mode of the feedback high layer configuration and/or the CSI of the interference hypothesis is selected, if DCI Format 0
- the subframe where the DCI format 4 or the random access response or the uplink scheduling grant signaling is located is an odd subframe
- the second aggregation mode of the upper layer configuration and/or the CSI of the interference hypothesis are selected.
- Embodiment 1 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit 2 bits through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- Mode and/or interference measurement mode 10 indicates a second aggregation mode and/or interference measurement mode of CSI that triggers two sets of CSI-RS resources configured in a higher layer, and 11 indicates CSI that triggers two sets of CSI-RS resources of a high-level configuration.
- the third mode of polymerization and/or the method of interference measurement is the third mode of polymerization and/or the method of interference measurement.
- Example twelve it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit 2 bits through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the second aggregation mode and/or the interference measurement mode where 10 represents the third and fourth aggregation modes and/or interference measurement modes of the CSI that trigger the two sets of CSI-RS resources configured in the upper layer, and 11 represents the two layers that trigger the high layer configuration.
- the fifth and sixth aggregation modes and/or interference measurement methods of CSI for CSI-RS resources where 00 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration, and 01 represents the first type of the CSI that triggers the two sets of CSI-RS resources configured by the upper layer.
- the second aggregation mode and/or the interference measurement mode where 10 represents the third and fourth aggregation modes and/or interference measurement modes of the CSI that trigger the two sets of CSI-RS resources configured in the upper layer, and 11 represents the two layers that trigger the high layer configuration.
- the fifth and sixth aggregation modes and/or interference measurement methods of CSI for CSI-RS resources where 00 represents the CSI of the two sets of
- One aggregation mode and/or interference measurement mode CSI may be DCI format 0 or DCI format 4 or random access response by CSI of aggregation mode and/or interference hypothesis. Or the location of the resource where the uplink scheduling authorization signaling is located is determined. If the DCE Format 0 or DCI format 4 or the CCE starting position of the random access response or the uplink scheduling grant signaling is nCCE, off S et, and nCCE, off Se t is the offset of the actual DCI relative to the blind detection start position.
- Embodiment 13 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit 2 bits through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the second aggregation mode and/or the interference measurement mode where 10 represents the third and fourth aggregation modes and/or interference measurement modes of the CSI that trigger the two sets of CSI-RS resources configured in the upper layer, and 11 represents the two layers that trigger the high layer configuration.
- the fifth and sixth aggregation modes and/or interference measurement methods of CSI for CSI-RS resources where 00 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration, and 01 represents the first type of the CSI that triggers the two sets of CSI-RS resources configured by the upper layer.
- the second aggregation mode and/or the interference measurement mode where 10 represents the third and fourth aggregation modes and/or interference measurement modes of the CSI that trigger the two sets of CSI-RS resources configured in the upper layer, and 11 represents the two layers that trigger the high layer configuration.
- the fifth and sixth aggregation modes and/or interference measurement methods of CSI for CSI-RS resources where 00 represents the CSI of the two sets of
- One aggregation mode and/or interference measurement mode CSI may be DCI format 0 or DCI format 4 or random access response by CSI of aggregation mode and/or interference hypothesis. Or the location of the resource where the uplink scheduling authorization signaling is located is determined.
- DCI Format 0 or DCI If format 4 or random access response or uplink scheduling grant signaling is in an even subframe, select the first aggregation mode and/or interference hypothesis CSI of the upper layer configuration, if DCI Format 0 or DCI format 4 or random When the subframe in which the access response or the uplink scheduling grant signaling is located is an odd subframe, the second aggregation mode of the upper layer configuration and/or the CSI of the interference hypothesis are selected.
- the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that two sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is two sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit 2 bits through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- the second aggregation mode and/or the interference measurement mode where 10 represents the third and fourth aggregation modes and/or interference measurement modes of the CSI that trigger the two sets of CSI-RS resources configured in the upper layer, and 11 represents the two layers that trigger the high layer configuration.
- the fifth and sixth aggregation modes and/or interference measurement methods of CSI for CSI-RS resources where 00 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration, and 01 represents the first type of the CSI that triggers the two sets of CSI-RS resources configured by the upper layer.
- the second aggregation mode and/or the interference measurement mode where 10 represents the third and fourth aggregation modes and/or interference measurement modes of the CSI that trigger the two sets of CSI-RS resources configured in the upper layer, and 11 represents the two layers that trigger the high layer configuration.
- the fifth and sixth aggregation modes and/or interference measurement methods of CSI for CSI-RS resources where 00 represents the CSI of the two sets of
- One aggregation mode and/or interference measurement mode CSI may be DCI format 0 or DCI format 4 or random access response by CSI of aggregation mode and/or interference hypothesis. Or the location of the resource where the uplink scheduling authorization signaling is located is determined.
- DCI Format 0 or DCI format 4 or the subframe where the random access response or uplink scheduling grant signaling is located is an even system frame
- select the first aggregation mode of the feedback high-level configuration and/or the CSI of the interference hypothesis if DCI Format 0 Or, when the subframe where the DCI format 4 or the random access response or the uplink scheduling grant signaling is located is an odd system frame, the second aggregation mode of the upper layer configuration and/or the CSI of the interference hypothesis are selected.
- Embodiment 15 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows: Trigger resource 1 ( xy). The first bit represents whether the X represents the CSI of the first CSI-RS resource that is configured to be fed back, the second bit represents whether the y represents the CSI of the second CSI-RS resource that is configured to be fed back, and 0 indicates that the corresponding CSI is not fed back. 1 indicates the CSI corresponding to the feedback.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 1 bit, where 0 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, and 1 indicates the CSI of the CSI-RS resource in the candidate set.
- Embodiment 16 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- the candidate set can be defined as follows: Trigger resource 1 (xyz) where the first bit x represents the CSI of the first CSI-RS resource that is fed back, and the second bit y represents the second CSI of the feedback configuration.
- the CSI of the RS resource, the third bit z represents whether to feed back the CSI of the first CSI-RS resource and the second CSI-RS resource aggregation, 0 means not to feed back the corresponding CSI, and 1 means to feedback the corresponding CSI.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 1 bit, where 0 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, and 1 indicates the CSI of the CSI-RS resource in the candidate set.
- the bits in different Trigger resources may represent different IMR assumptions for the same or different CSI-RS resources.
- Embodiment 17 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows:
- Trigger resource 1 (xl yl zl )
- Trigger resource 2 ( x2 y2 z2 )
- Trigger resource 3 ( x3 y3 z3 )
- the first bit xn represents whether to feed back the CSI of the first CSI-RS resource configured
- the second bit yn represents whether to feed back the CSI of the configured second CSI-RS resource
- the third bit zn represents whether the feedback is
- the CSI of one CSI-RS resource and the second CSI-RS resource aggregation 0 means that the corresponding CSI is not fed back, and 1 means that the corresponding CSI is fed back.
- the bits in different Trigger resources may represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 2 bits, where 00 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, 01 indicates the CSI of the Trigger resource 1 in the triggering candidate set, 10 indicates the CSI of the Trigger resource 2 in the triggering candidate set, and 11 indicates the CSI of the Trigger resource 3 in the triggering candidate set.
- Embodiment 18 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of two sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows:
- Trigger resource 1 ( x2 y2 z2 ) Trigger resource 3 ( x3 y3 z3 ) Trigger resource 4 ( x4 y4 z4 ) Trigger resource 5 ( x5 y5 z5 )
- Trigger resource 6 (x6 y6 z6 ), where the first bit xn represents whether to feed back the CSI of the first CSI-RS resource configured, and the second bit yn represents whether to feed back the CSI of the configured second CSI-RS resource,
- the third bit zn represents whether to feed back the CSI of the first CSI-RS resource and the second CSI-RS resource aggregation, where 0 indicates that the corresponding CSI is not fed back, and 1 indicates that the corresponding CSI is fed back.
- the bits in different Trigger resources can represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the UE1 to feed back the CSI-RS resource in the corresponding candidate set by using DCI Format 0 or DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 2 bits.
- the CSI of the source where 00 indicates that the CSI of the CSI-RS resource in the feedback candidate set is not triggered, 01 indicates the CSI of the Trigger resource 1 and the Trigger resource 2 in the trigger candidate set, and 10 indicates the Trigger resource 3 and the Trigger resource 4 in the trigger candidate set.
- the CSI, 11 indicates the CSI of the Trigger resource 5 and the Trigger resource 6 in the candidate set. In addition, you need to choose to feed back an aggregation method and/or interference measurement method from every two Trigger resources.
- the CSI may be determined by the aggregation mode and/or the interference assumed CSI by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located. If the DCE Format 0 or DCI format 4 or the CCE starting position of the random access response or the uplink scheduling grant signaling is nCCE, off S et, and nCCE, off Se t is the offset of the actual DCI relative to the blind detection start position.
- Embodiment 19 assumes that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side does not need to configure corresponding high-layer signaling to the terminal side.
- the candidate set is three sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- Embodiment 20 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that three sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is three sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- Embodiment 2 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that three sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is three sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- 0 represents the CSI of the three sets of CSI-RS resources that do not trigger the high-level configuration
- 1 represents the aggregation mode and/or the aggregation of the three sets of CSI-RS resources that trigger the feedback high-level configuration.
- the CSI in which the aggregation mode and/or the interference hypothesis is fed back is determined by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located.
- Embodiment 22 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that three sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is three sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- 0 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration
- 1 represents the aggregation mode and/or the aggregation of the two sets of CSI-RS resources that trigger the feedback high-level configuration.
- the CSI in which the aggregation mode and/or the interference hypothesis is fed back is determined by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located.
- DCI Format 0 or DCI format 4 or the subframe in which the random access response or uplink scheduling grant signaling is located is an even system frame
- select the first aggregation mode and/or the interference assumed CSI of the upper layer configuration if DCI Format 0
- the subframe in which the DCI format 4 or the random access response or the uplink scheduling grant signaling is located is an odd system frame
- the second aggregation mode of the upper layer configuration and/or the CSI of the interference hypothesis are selected.
- Example twenty-three it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side When the UE-Specific high-level signaling informs the UE1 that three sets of CSI-RS resources for measuring CSI are used, the base station side does not need to configure the corresponding high-layer signaling to the terminal side.
- the candidate set is three sets of CSI-RS resources for measuring CSI configured on the base station side, and the base station side triggers the signaling bit by 1 bit through DCI Format 0 or DCI format 4 or feedback in the random access response or uplink scheduling grant signaling.
- 0 represents the CSI of the two sets of CSI-RS resources that do not trigger the high-level configuration
- 1 represents the aggregation mode and/or the aggregation of the two sets of CSI-RS resources that trigger the feedback high-level configuration.
- the CSI in which the aggregation mode and/or the interference hypothesis is fed back is determined by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located.
- the DCI Format 0 or the DCI format 4 or the subframe in which the random access response or the uplink scheduling grant signaling is located is an even subframe
- the first aggregation mode of the feedback high layer configuration and/or the CSI of the interference hypothesis is selected, if DCI Format 0
- the subframe where the DCI format 4 or the random access response or the uplink scheduling grant signaling is located is an odd subframe
- the second aggregation mode of the upper layer configuration and/or the CSI of the interference hypothesis are selected.
- Embodiment Twenty-four it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows:
- Trigger resource 1 (xl yl zl )
- Trigger resource 2 ( x2 y2 z2 )
- Trigger resource 3 ( x3 y3 z3 ) where the first bit xn represents whether to feed back the CSI of the first CSI-RS resource configured, and the second bit yn represents whether to feed back the CSI of the configured second CSI-RS resource,
- the three bits zn represent whether to feed back the CSI of the third CSI-RS resource, 0 means not to feed back the corresponding CSI, and 1 means to feedback the corresponding CSI.
- any two or three bits of the same Trigger resource are 1, it indicates that the corresponding two or three CSI-RS resourece need to aggregate feedback.
- the bits in different Trigger resources may also represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 2 bits, where 00 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, and 01 indicates the trigger candidate.
- the CSI of the Trigger resource 1 in the set, 10 indicates the CSI of the Trigger resource 2 in the candidate set, and 11 indicates the CSI of the Trigger resource 3 in the candidate set.
- Embodiment 25 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows:
- Trigger resource 1 (xl yl zl ), where the first bit xn represents whether to feed back the CSI of the first CSI-RS resource configured, and the second bit yn represents whether to feed back the CSI of the configured second CSI-RS resource,
- the third bit zn represents whether to feed back the CSI of the third CSI-RS resource, 0 means not to feed back the corresponding CSI, and 1 means to feedback the corresponding CSI.
- any two or three bits of the same Trigger resource are 1, it means that the corresponding two or three CSI-RS resourece need to aggregate feedback.
- the bits in different Trigger resources can also represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 1 bit, where 0 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, and 1 indicates the CSI of the Trigger resource 1 in the candidate set.
- Embodiment 26 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of three sets of CSI-RS resources for measuring CSI through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows:
- Trigger resource 1 (xl yl zl xxl yyl zzl mil )
- Trigger resource 2 (x2 y2 z2 xx2 yy2 zz2 nn2 )
- Trigger resource 3 (x3 y3 z3 xx3 yy3 zz3 nn3 ) where the first bit xn represents whether to feed back the CSI of the first CSI-RS resource configured, and the second bit yn represents whether the second CSI-RS of the feedback configuration CSI of the resource, the third bit represents whether the feedback is matched
- the aggregation or interference interference CSI of various combinations of CSI-RS resources 0 indicates that the corresponding CSI is not fed back, and 1 indicates the CSI corresponding to the feedback.
- the bits in different Trigger resources may also represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 2 bits, where 00 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, 01 indicates the CSI of the Trigger resource 1 in the triggering candidate set, 10 indicates the CSI of the Trigger resource 2 in the triggering candidate set, and 11 indicates the CSI of the Trigger resource 3 in the triggering candidate set.
- Embodiment 27 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of the CSI-RS resources of three CSIs through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- the candidate set can be defined as follows: Trigger resource 1 (xl yl zl xxl yyl zzl mil )
- Trigger resource 2 (x2 y2 z2 xx2 yy2 zz2 nn2 )
- Trigger resource 3 (x3 y3 z3 xx3 yy3 zz3 nn3 )
- Trigger resource 4 (x4 y4 z4 xx4 yy4 zz4 nn4 )
- Trigger resource 5 (x5 y5 z5 xx5 yy5 zz5 nn5 )
- the bits in different Trigger resources can also represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the UE1 to feed back the CSI-RS resource in the corresponding candidate set by using DCI Format 0 or DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 2 bits.
- the CSI of the source where 00 indicates that the CSI of the CSI-RS resource in the feedback candidate set is not triggered, 01 indicates the CSI of the Trigger resource 1 and the Trigger resource 2 in the trigger candidate set, and 10 indicates the Trigger resource 3 and the Trigger resource 4 in the trigger candidate set.
- the CSI, 11 indicates the CSI of the Trigger resource 5 and the Trigger resource 6 in the candidate set. In addition, you need to choose to feed back an aggregation method and/or interference measurement method from every two Trigger resources.
- the CSI may be determined by the aggregation mode and/or the interference assumed CSI by the DCI Format 0 or the DCI format 4 or the resource location where the random access response or the uplink scheduling grant signaling is located. If the DCE Format 0 or DCI format 4 or the CCE starting position of the random access response or the uplink scheduling grant signaling is nCCE, off S et, and nCCE, off Se t is the offset of the actual DCI relative to the blind detection start position.
- Embodiment 28 it is assumed that UE1 is a user of R11 or a more advanced version, and the base station side notifies UE1 of the CSI-RS resources of three CSIs through UE-Specific high layer signaling.
- the base station side configures the terminal side corresponding CSI feedback restriction set high layer signaling, that is, the candidate set.
- Candidate sets can be defined as follows:
- Trigger resource 1 (xl yl zl xxl yyl zzl mil )
- Trigger resource 2 (x2 y2 z2 xx2 yy2 zz2 nn2 )
- Trigger resource 3 (x3 y3 z3 xx3 yy3 zz3 nn3 )
- Trigger resource 4 (x4 y4 z4 xx4 yy4 zz4 nn4 )
- Trigger resource 5 (x5 y5 z5 xx5 yy5 zz5 nn5 )
- Trigger resource 6 (x6 y6 z6 xx6 yy6 zz6 nn6), where the first bit xn represents whether to feed back the CSI of the first CSI-RS resource configured, and the second bit yn represents whether the second CSI-RS of the feedback configuration
- the assumed CSI, 0 indicates that the corresponding CSI is not fed back, and 1 indicates the CSI corresponding to the feedback.
- the bits in different Trigger resources can also represent different IMR assumptions for the same or different CSI-RS resources.
- the base station side triggers the CSI of the CSI-RS resource in the corresponding candidate set by using the DCI Format 0 or the DCI format 4 or the feedback of the random access response or the uplink scheduling grant signaling to trigger the signaling bit 2 bits, where 00 indicates The CSI of the CSI-RS resource in the feedback candidate set is not triggered, 01 indicates the CSI of the Trigger resource 1 and the Trigger resource 2 in the trigger candidate set, 10 indicates the CSI of the Trigger resource 3 and the Trigger resource 4 in the trigger candidate set, and 11 indicates the trigger candidate.
- the CSI may be DCI format 0 or DCI format 4 or random access response or uplink scheduling authorization letter by the aggregation mode and/or interference hypothesis CSI. Let the location of the resource be determined. If DCI Format 0 or DCI format 4 or the subframe in which the random access response or the uplink scheduling grant signaling is located is an even system frame, select the CSI of the first Trigger resource that is fed back to the upper layer configuration, if DCI Format 0 or DCI format 4 or When the subframe in which the random access response or the uplink scheduling grant signaling is located is an odd system frame, the CSI of the second Trigger resource configured by the upper layer is selected.
- Embodiment 29 For Embodiments 1 to 27, the base station side configures different measurement set sizes for the terminal side, that is, the number of CSI-RS resources configured by the upper layer is different, and the number of candidate set configurations and the configured number of Trigger resourece and/or the configuration are different.
- Physical layer dynamic notification method Moreover, the combination method of various signaling of the above embodiment can be freely configured, and is not limited only to the method of the above embodiment.
- the IMR can be notified to the terminal side through the UE-Specific high-level signaling, and one set of IMR can be configured for multiple CSI-RS resources, or multiple sets of IMR can be configured for multiple CSI-RS resources.
- an indication configuration software for CSI feedback signaling is provided, which is used to execute the technical solution described in the foregoing embodiments.
- a storage medium is also provided, the software being stored, including but not limited to an optical disk, a floppy disk, a hard disk, a rewritable memory, and the like.
- modules or steps of the present invention can be implemented by a general-purpose computing device, which can be concentrated on a single computing device or distributed over a network composed of multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device, such that they may be stored in the storage device by the computing device and, in some cases, may be different from the order herein.
- the steps shown or described are performed, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps are fabricated as a single integrated circuit module.
- the invention is not limited to any specific combination of hardware and software.
- the above are only the preferred embodiments of the present invention, and are not intended to limit the present invention, and various modifications and changes can be made to the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and scope of the present invention are intended to be included within the scope of the present invention.
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RU2014149125A RU2622396C2 (ru) | 2012-05-10 | 2013-04-26 | Способ инструктирования о конфигурации сигнализации обратной связи для передачи информации о состоянии канала (CSI) и базовая станция |
JP2015510619A JP6419067B2 (ja) | 2012-05-10 | 2013-04-26 | Csiフィードバックシグナルの指示配置方法及び基地局 |
US14/400,029 US9749991B2 (en) | 2012-05-10 | 2013-04-26 | Method for instructing CSI feedback signaling configuration and base station |
EP13787073.9A EP2852072B1 (en) | 2012-05-10 | 2013-04-26 | Csi feedback signaling instruction configuration method and base station |
US15/688,333 US10349383B2 (en) | 2012-05-10 | 2017-08-28 | Method for instructing CSI feedback signaling configuration and base station |
US16/427,207 US10924246B2 (en) | 2012-05-10 | 2019-05-30 | Method for instructing CSI feedback signaling configuration and base station |
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JP2015520982A (ja) | 2015-07-23 |
CN110365382A (zh) | 2019-10-22 |
CN110365382B (zh) | 2022-06-21 |
US10349383B2 (en) | 2019-07-09 |
EP2852072B1 (en) | 2018-08-29 |
US20190281583A1 (en) | 2019-09-12 |
RU2014149125A (ru) | 2016-07-10 |
EP2852072A1 (en) | 2015-03-25 |
US20170359803A1 (en) | 2017-12-14 |
CN103391174B (zh) | 2019-06-11 |
CN103391174A (zh) | 2013-11-13 |
EP2852072A4 (en) | 2015-07-08 |
US10924246B2 (en) | 2021-02-16 |
JP6419067B2 (ja) | 2018-11-07 |
US9749991B2 (en) | 2017-08-29 |
US20150098347A1 (en) | 2015-04-09 |
RU2622396C2 (ru) | 2017-06-15 |
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