WO2024094045A1 - 信息上报的方法及装置、终端及网络侧设备 - Google Patents
信息上报的方法及装置、终端及网络侧设备 Download PDFInfo
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- WO2024094045A1 WO2024094045A1 PCT/CN2023/128985 CN2023128985W WO2024094045A1 WO 2024094045 A1 WO2024094045 A1 WO 2024094045A1 CN 2023128985 W CN2023128985 W CN 2023128985W WO 2024094045 A1 WO2024094045 A1 WO 2024094045A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/10—Scheduling measurement reports ; Arrangements for measurement reports
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0453—Resources in frequency domain, e.g. a carrier in FDMA
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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
- H04W72/23—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
Definitions
- the present disclosure belongs to the field of communication technology, and particularly relates to a method and device for reporting information, a terminal, and a network-side device.
- the current cross-link interference (CLI) measurement and reporting mechanism is a full-bandwidth measurement and reporting in the same frequency band, that is, the interference and useful signal are located in the same frequency band in the frequency domain.
- the terminal needs to average the measurement results of all resource blocks (RB) in the configured measurement bandwidth and then report them to the network side device.
- the network side equipment can only send downlink signals or receive uplink signals at the same time. Due to the limited uplink resources, the uplink coverage and latency performance of the TDD spectrum are limited. In the sub-band full-duplex technology, different sub-bands are configured as different transmission directions within a carrier, so that there are both downlink and uplink transmission opportunities at the same time, which can reduce the latency of the TDD system. In addition, due to the increase in uplink transmission resources, the uplink coverage can be improved.
- the uplink transmission signal may cause strong interference to the downlink reception of other terminals.
- the current CLI measurement and reporting mechanism in the same frequency band cannot be applied to inter-subband CLI measurement and reporting.
- the embodiments of the present disclosure provide a method and apparatus for reporting information, a terminal, and a network-side device.
- the present disclosure provides an information reporting method, which is applied to a network side device, including:
- the configuration information including the first The size and/or frequency domain order of frequency domain resources;
- I of the first frequency domain resources constitute one second frequency domain resource, where I is an integer greater than 1.
- the size of the (i+1)th first frequency domain resource is larger than or smaller than the size of the i-th first frequency domain resource;
- the size of the (i+1)th first frequency domain resource is N times or 1/N of the size of the i-th first frequency domain resource;
- i is a positive integer less than 1
- N is an integer greater than 1.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- the measurement amount of the i-th first frequency domain resource where i is an integer greater than or equal to 1 and less than 1; or,
- the method after receiving a measurement amount of the second frequency domain resource reported by the terminal, the method further includes:
- an adjustment instruction is sent to the terminal, instructing to reduce the size of the jth first frequency domain resource, where j is an integer greater than or equal to 1 and less than I.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- the K measurement amounts of the second frequency domain resources reported by the receiving terminal are as follows:
- the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource is the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource.
- the measurement amount of the first first frequency domain resource of the first second frequency domain resource the difference between the measurement amount of the i+1th first frequency domain resource and the measurement amount of the i-th first frequency domain resource; the k+1th second a difference between a measurement amount of the jth first frequency domain resource of the frequency domain resource and a measurement amount of the jth first frequency domain resource of the kth second frequency domain resource;
- K is an integer greater than 1
- k is an integer greater than or equal to 1 and less than K
- i is an integer greater than or equal to 1 and less than I
- j is an integer greater than or equal to 1 and less than I.
- the measurement quantity is received signal strength RSSI or signal to interference plus noise ratio SINR.
- the present disclosure provides an information reporting method, which is applied to a terminal and includes:
- Channel state information and/or cross-link interference information are reported for each of the first frequency domain resources.
- I of the first frequency domain resources constitute one second frequency domain resource, where I is an integer greater than 1.
- the size of the (i+1)th first frequency domain resource is larger than or smaller than the size of the i-th first frequency domain resource;
- the size of the (i+1)th first frequency domain resource is N times or 1/N of the size of the i-th first frequency domain resource;
- i is a positive integer less than 1
- N is an integer greater than 1.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- the measurement amount of the i-th first frequency domain resource where i is an integer greater than or equal to 1 and less than 1; or,
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- K measurement amounts of the second frequency domain resources include:
- the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource is the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource.
- the measurement amount of the first first frequency domain resource of the first second frequency domain resource the difference between the measurement amount of the i+1th first frequency domain resource and the measurement amount of the i-th first frequency domain resource; the difference between the measurement amount of the j-th first frequency domain resource of the k+1th second frequency domain resource and the measurement amount of the j-th first frequency domain resource of the k-th second frequency domain resource;
- K is an integer greater than 1
- k is an integer greater than or equal to 1 and less than K
- i is an integer greater than or equal to 1 and less than I
- j is an integer greater than or equal to 1 and less than I.
- the measurement quantity is received signal strength RSSI or signal to interference plus noise ratio SINR.
- the present disclosure provides an information reporting device, which is applied to a network side device and includes a processor and a transceiver.
- the transceiver is used to send configuration information of multiple first frequency domain resources to the terminal, the configuration information including the size and/or frequency domain order of the first frequency domain resources; and receive channel state information and/or cross-link interference information of each first frequency domain resource reported by the terminal.
- the embodiment of the present disclosure provides an information reporting device, which is applied to a terminal and includes a transceiver and a processor.
- the transceiver is used to obtain configuration information of multiple first frequency domain resources predefined or sent by a network side device, and the configuration information includes the size and/or frequency domain order of the first frequency domain resources; and report channel state information and/or cross-link interference information for each of the first frequency domain resources.
- An embodiment of the present disclosure provides a terminal, including a processor and a memory, wherein the memory stores a program or instruction that can be run on the processor, and when the program or instruction is executed by the processor, the steps of the above-mentioned information reporting method are implemented.
- An embodiment of the present disclosure provides a network side device, including a processor and a memory, wherein the memory stores a program or instruction that can be run on the processor, and when the program or instruction is executed by the processor, the steps of the above-mentioned information reporting method are implemented.
- An embodiment of the present disclosure provides a readable storage medium, on which a program or instruction is stored.
- the program or instruction is executed by a processor, the steps of the above-mentioned information reporting method are implemented.
- the terminal may obtain a plurality of first Configuration information of frequency domain resources, the configuration information includes the size and/or frequency domain order of the first frequency domain resources. That is, the scheme provided by the embodiment of the present disclosure supports the configuration of sizes for different frequency domain resources respectively, making it possible to configure different sizes for different first frequency domain resources. In the case of inter-subband CLI, the resource blocks that are closer to the uplink subband/frequency domain resources/BWP within the downlink subband/frequency domain resources/BWP will be more strongly interfered, and the scheme of this embodiment supports the configuration of different sizes for different first frequency domain resources, so that the frequency domain resources for measuring channel state information and/or cross-link interference are uneven.
- the reporting granularity can be finer at locations where interference is more intense, and the reporting granularity can be coarser at locations where interference is weaker. This can more accurately reflect the interference situation, allowing the network-side equipment to accurately obtain the interference situation at different frequency domain locations.
- FIG1 is a block diagram of a wireless communication system to which the embodiments of the present disclosure may be applied;
- FIG2 is a flow chart of a method for reporting network-side device-side information according to an embodiment of the present disclosure
- FIG3 is a schematic diagram of a process of a method for reporting information on a terminal side according to an embodiment of the present disclosure
- FIG4 is a schematic diagram of a first frequency domain resource according to an embodiment of the present disclosure.
- FIG5 is a second schematic diagram of the first frequency domain resource according to an embodiment of the present disclosure.
- FIG6 is a third schematic diagram of the first frequency domain resource according to an embodiment of the present disclosure.
- FIG. 7 is a schematic diagram of the structure of an apparatus for reporting information according to an embodiment of the present disclosure.
- FIG8 is a schematic diagram of the structure of a terminal and a network side device according to an embodiment of the present disclosure.
- first, second, etc. in the description and claims of the present disclosure are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the terms used in this way can be interchangeable under appropriate circumstances, so that the embodiments of the present disclosure can be used in other ways than those shown or described herein.
- the order of implementation is not limited to those described above, and the objects distinguished by “first” and “second” are usually of the same type, and the number of objects is not limited.
- the first object can be one or more.
- “and/or” in the specification and claims means at least one of the connected objects, and the character “/" generally means that the related objects are in an "or” relationship.
- LTE Long Term Evolution
- LTE-A Long Term Evolution
- CDMA Code Division Multiple Access
- TDMA Time Division Multiple Access
- FDMA Frequency Division Multiple Access
- OFDMA Orthogonal Frequency Division Multiple Access
- SC-FDMA Single-carrier Frequency Division Multiple Access
- NR New Radio
- 6G 6th Generation
- FIG1 shows a block diagram of a wireless communication system to which the embodiments of the present disclosure can be applied.
- the wireless communication system includes a terminal 11 and a network side device 12 .
- the terminal 11 can be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer) or a notebook computer, a personal digital assistant (Personal Digital Assistant, PDA), a handheld computer, a netbook, an ultra-mobile personal computer (ultra-mobile personal computer, UMPC), a mobile Internet device (Mobile Internet Device, MID), an augmented reality (augmented reality, AR)/virtual reality (virtual reality, VR) device, a robot, a wearable device (Wearable Device), a vehicle-mounted device (Vehicle User Equipment, VUE), a pedestrian terminal (Pedestrian User Equipment, PUE), a smart home (home equipment with wireless communication functions, such as refrigerators, televisions, washing machines or furniture, etc.), a game console, a personal computer (personal computer, PC
- the network side device 12 may include an access network device or a core network device, wherein the access network device 12 may also be referred to as a radio access network device, a radio access network (RAN), a radio access network function or a radio access network unit.
- the access network device 12 may include a network side device, a wireless local area network (WLAN) access point or a WiFi node, etc.
- WLAN wireless local area network
- the network side device may be referred to as a node B, an evolved node B (eNB), an access point, a base transceiver station (BTS), a radio network side device, a radio transceiver, a basic service set (BSS), an extended service set (ESS), a home node B, a home evolved node B, a transmitting and receiving point (TRP) or some other appropriate term in the field, as long as the same technical effect is achieved, the network side device is not limited to a specific technical vocabulary, it should be noted that in the embodiment of the present disclosure, only the network side device in the NR system is used as an example for introduction, and the specific type of the network side device is not limited.
- the present disclosure provides an information reporting method, which is applied to a network side device, as shown in FIG2 , and includes:
- Step 101 Sending configuration information of a plurality of first frequency domain resources to a terminal, where the configuration information includes the size and/or frequency domain order of the first frequency domain resources;
- Step 102 Receive channel state information and/or cross-link interference information of each of the first frequency domain resources reported by the terminal.
- a terminal may obtain configuration information of a plurality of first frequency domain resources predefined or sent by a network side device, and the configuration information includes the size and/or frequency domain order of the first frequency domain resources. That is, the scheme provided by the embodiment of the present disclosure supports the configuration of sizes for different frequency domain resources, making it possible to configure different sizes for different first frequency domain resources.
- the resource blocks closer to the uplink subband/frequency domain resources/BWP in the downlink subband/frequency domain resources/bandwidth part (Bandwith Part, BWP) will be more strongly interfered
- the scheme of this embodiment supports the configuration of different sizes for different first frequency domain resources, so that the frequency domain resources for measuring channel state information and/or cross-link interference are uneven, so that through this non-uniform division method of reporting frequency domain resources, the reporting granularity can be finer at the location where the interference is stronger, and the reporting granularity can be coarser at the location where the interference is weaker, so that the interference situation can be more accurately reflected, so that the network side device can accurately obtain the interference situation at different frequency domain locations.
- the size of the first frequency domain resource is the bandwidth of the measurement subband
- the downlink subband/frequency domain resource/BWP can be defined as the second frequency domain resource
- the second frequency domain resource includes multiple first frequency domain resources determined by the size of the first frequency domain resource.
- I of the first frequency domain resources constitute one second frequency domain resource, where I is an integer greater than 1.
- the size of the (i+1)th first frequency domain resource is larger than or smaller than the size of the i-th first frequency domain resource;
- the size of the (i+1)th first frequency domain resource is N times or 1/N of the size of the i-th first frequency domain resource;
- i is a positive integer less than 1
- N is an integer greater than 1.
- the number of first frequency domain resources included in different downlink sub-bands/frequency domain resources/BWPs may be the same or different.
- the network side device may configure the size of the measurement sub-band included in the downlink sub-band/frequency domain resource/BWP, that is, the size of the first frequency domain resource.
- a downlink subband/frequency domain resource/BWP includes measurement subband (report subband) #1, report subband #2, report subband #3, etc.
- the network side device can configure the size of the measurement subband: report subband size #1, report subband size #2, report subband size #3, etc., where the sizes of the measurement subbands have an increasing relationship, for example: report subband size #1 ⁇ report subband size #2 ⁇ report subband size #3 ⁇ ....
- the values of X and N may be configured by the network side device or predefined by the protocol.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- the measurement amount of the i-th first frequency domain resource where i is an integer greater than or equal to 1 and less than 1; or,
- the terminal reports the absolute value of the measurement amount for the first frequency domain resource #1, for the first frequency domain resource #2, the difference of the measurement amount of the first frequency domain resource #2 relative to the measurement amount of the first frequency domain resource #1 is reported, for the first frequency domain resource #3, the difference of the measurement amount of the first frequency domain resource #3 relative to the measurement amount of the first frequency domain resource #2 is reported, and so on.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- the K measurement amounts of the second frequency domain resources reported by the receiving terminal are as follows:
- the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource is the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource.
- the measurement amount of the first first frequency domain resource of the first second frequency domain resource the difference between the measurement amount of the i+1th first frequency domain resource and the measurement amount of the i-th first frequency domain resource; the difference between the measurement amount of the j-th first frequency domain resource of the k+1th second frequency domain resource and the measurement amount of the j-th first frequency domain resource of the k-th second frequency domain resource;
- K is an integer greater than 1
- k is an integer greater than or equal to 1 and less than K
- i is an integer greater than or equal to 1 and less than I
- j is an integer greater than or equal to 1 and less than I.
- reporting the difference in the measured value for first frequency domain resources having the same first frequency domain resource number or having a corresponding relationship can further reduce the bit overhead of the feedback signaling.
- the terminal reports the absolute value of the measurement quantity for the first frequency domain resource #1 of the second frequency domain resource #1; for the first frequency domain resource #2 of the second frequency domain resource #1, the terminal reports the difference between the measurement quantity of the first frequency domain resource #2 and the measurement quantity of the first frequency domain resource #1; for the first frequency domain resource #3, the terminal reports the difference between the measurement quantity of the first frequency domain resource #3 and the measurement quantity of the first frequency domain resource #2, and so on.
- the difference between the measurement amount of the first frequency domain resource #1’ and the measurement amount of the first frequency domain resource #1 of the second frequency domain resource #1 is reported; for the first frequency domain resource #2’ of the second frequency domain resource #2, the difference between the measurement amount of the first frequency domain resource #2’ and the measurement amount of the first frequency domain resource #2 of the second frequency domain resource #1 is reported, and so on.
- the difference between the measurement amount of the first frequency domain resource #1′′ and the measurement amount of the first frequency domain resource #1’ of the second frequency domain resource #2 is reported; for the first frequency domain resource #2′′ of the second frequency domain resource #3, the difference between the measurement amount of the first frequency domain resource #2′′ and the measurement amount of the first frequency domain resource #2’ of the second frequency domain resource #2 is reported, and so on.
- This embodiment can greatly reduce the signaling overhead of reporting by reporting the difference in the measurement quantity.
- the measurement quantity is received signal strength (Received Signal Strength Indication, RSSI) or signal to interference plus noise ratio (Signal to Interference plus Noise Ratio, SINR).
- RSSI Received Signal Strength Indication
- SINR Signal to Interference plus Noise Ratio
- the method after receiving a measurement amount of the second frequency domain resource reported by the terminal, the method further includes:
- an adjustment instruction is sent to the terminal, instructing to reduce the size of the jth first frequency domain resource, where j is an integer greater than or equal to 1 and less than I.
- the network side device can adjust the measurement subband bandwidth according to the measurement quantity of the terminal. For example, the measurement quantities of the terminal for report subband size#1 and report subband size#2 are too different, and the apparent reporting is not detailed enough. The network side device cannot determine which PRBs have excessive interference within report subband#1. The size of report subband#1 can be further reduced, so that the terminal can perform measurement reporting on a finer-grained measurement subband, allowing the network side device to accurately obtain the interference conditions at different frequency domain locations.
- the size of the first frequency domain resource is proportional to D, where D is the frequency domain distance between the first frequency domain resource and the uplink subband/frequency domain resource/BWP.
- the multiple first frequency domain resources in the second frequency domain resources may be determined according to the sizes and predefined order of the multiple first frequency domain resources.
- the size of the first frequency domain resource to be used may be determined according to the frequency domain distance between the physical resources in the second frequency domain resource (downlink subband/frequency domain resource/BWP DL subband) and the physical resources in the third frequency domain resource (uplink subband/frequency domain resource/BWP uplink (Uplink, UL subband)).
- the first frequency domain resource may be selected according to the order of increasing frequency domain distance and in the order of increasing size of the first frequency domain resource.
- the first frequency domain resource is determined from the starting position of the second frequency domain resource (the lowest point of the frequency domain position) in the order of increasing size of the first frequency domain resource. If the frequency domain position of the third frequency domain resource (uplink subband/frequency domain resource/BWP UL subband) is higher than the second frequency domain resource, the first frequency domain resource is determined from the ending position of the second frequency domain resource (the highest point of the frequency domain position) in the order of increasing size of the first frequency domain resource.
- the frequency domain resources are divided into three sub-bands, namely downlink subband/frequency domain resources/BWP1 (DL subband 1/DL BWP 1), uplink subband/frequency domain resources/BWP (UL subband/UL BWP) and downlink subband/frequency domain resources/BWP2 (DL subband 2/DL BWP 2).
- BWP1 downlink subband/frequency domain resources/BWP1
- uplink subband/frequency domain resources/BWP UL subband/UL BWP
- downlink subband/frequency domain resources/BWP2 DL subband 2/DL BWP 2
- the network side device configuration or protocol predefines I first frequency domain resource sizes, such as report subband size#1, report subband size#2, report subband size#3, acrossreport subband size#I. Among them, report subband size#1 ⁇ report subband size#2 ⁇ report subband size#3 ⁇ .... ⁇ report subband size#I.
- the second frequency domain resource DL subband 1 For the second frequency domain resource DL subband 1, its frequency domain position is higher than the third frequency domain resource UL subband. Then the first frequency domain resource #1 is determined according to report subband size #1 at a position closer to the UL subband, and then the first frequency domain resource #2 is determined according to report subband size #2, and so on, as shown in Figure 5.
- the first frequency domain resource #1' is determined according to report subband size#1 at a position closer to the UL subband, and then the first frequency domain resource #2' is determined according to report subband size#2, and so on, as shown in Figure 6.
- inter-subband CLI is mainly caused by the interference terminal sending uplink signals in the UL subband leaking into the DL subband of the interfered terminal, this leakage is non-flat, and the closer the DL subband is to the UL subband, the stronger the interference is felt by the PRB.
- the measurement quantity is the average value of interference on all PRBs, and the terminal will only report one value, so the network side equipment cannot know which PRBs receive greater interference.
- the terminal needs to report 8 measurement quantities, but the interference felt on the PRBs far away is already very weak, and the interference measurement results reported by the 4 measurement subbands included in the last 20MHz are the same and redundant, which increases the reporting overhead.
- the measurement subband is divided in a gradually increasing manner, so that the terminal can perform more detailed measurements in the PRB area closer to the UL subband position and perform more rough measurements in the PRB area farther from the UL subband position, which not only enables the network-side device to accurately obtain the interference conditions at different frequency domain positions, but also reduces the reporting overhead of the measurement results.
- the terminal only needs to feedback 4 measurement quantities, but the granularity of feedback within the first 21MHz (first measurement subband + second measurement subband + third measurement subband) is small, and the measurement results can be provided accurately.
- the present disclosure provides an information reporting method, which is applied to a terminal, as shown in FIG3 , and includes:
- Step 201 obtaining configuration information of a plurality of first frequency domain resources predefined or sent by a network side device, wherein the configuration information includes the size and/or frequency domain order of the first frequency domain resources;
- Step 202 Report channel state information and/or cross-link interference information for each of the first frequency domain resources.
- a terminal can obtain configuration information of multiple first frequency domain resources that are predefined or sent by a network-side device, and the configuration information includes the size and/or frequency domain order of the first frequency domain resources. That is, the scheme provided by the embodiment of the present disclosure supports configuring the sizes of different frequency domain resources separately, making it possible to configure different sizes for different first frequency domain resources. In the case of inter-subband CLI, resource blocks that are closer to the uplink subband/frequency domain resources/BWP within the downlink subband/frequency domain resources/BWP will be more strongly interfered with, and the scheme of this embodiment supports configuring different sizes for different first frequency domain resources, so that the frequency domain resources for measuring channel state information and/or cross-link interference are uneven.
- the reporting granularity can be finer in locations where interference is more severe, and the reporting granularity can be coarser in locations where interference is weaker. This This can more accurately reflect the interference situation, allowing network-side devices to accurately obtain the interference situation at different frequency domain locations.
- the measurement quantity is received signal strength RSSI or signal to interference plus noise ratio SINR.
- the terminal determines the RB position for measuring RSSI within each first frequency domain resource (measurement subband). At these RB positions, the network side device does not send any signal. The terminal can measure the intensity of interference caused by signals transmitted by other terminals on the UL subband leaking to these RBs at these positions.
- the terminal measures the strength of the useful signal and the interference signal in each first frequency domain resource (measurement subband) and calculates the SINR value.
- the strength of the interference signal is the strength of the interference caused by the terminal sending the signal on the UL subband leaking into the first frequency domain resource (measurement subband).
- I of the first frequency domain resources constitute one second frequency domain resource, where I is an integer greater than 1.
- the size of the (i+1)th first frequency domain resource is greater than or less than the size of the i-th first frequency domain resource;
- the size of the (i+1)th first frequency domain resource is N times or 1/N of the size of the i-th first frequency domain resource;
- i is a positive integer less than 1
- N is an integer greater than 1.
- the number of first frequency domain resources included in different downlink sub-bands/frequency domain resources/BWPs may be the same or different.
- the network side device may configure or predefine the size of the measurement sub-band included in the downlink sub-band/frequency domain resource/BWP, that is, the size of the first frequency domain resource.
- a downlink subband/frequency domain resource/BWP includes measurement subband (report subband) #1, report subband #2, report subband #3, etc.
- the network side device can configure or predefine the size of the measurement subband by protocol: report subband size #1, report subband size #2, report subband size #3, etc., where the sizes of the measurement subbands have an increasing relationship, for example: report subband size #1 ⁇ report subband size #2 ⁇ report subband size #3 ⁇ ....
- the values of X and N may be configured by the network side device or predefined by the protocol.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- the measurement amount of the i-th first frequency domain resource where i is an integer greater than or equal to 1 and less than 1; or,
- the terminal reports the absolute value of the measurement amount for the first frequency domain resource #1, for the first frequency domain resource #2, the difference of the measurement amount of the first frequency domain resource #2 relative to the measurement amount of the first frequency domain resource #1 is reported, for the first frequency domain resource #3, the difference of the measurement amount of the first frequency domain resource #3 relative to the measurement amount of the first frequency domain resource #2 is reported, and so on.
- I of the first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the method further includes:
- K measurement amounts of the second frequency domain resources include:
- the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource is the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource.
- the measurement amount of the first first frequency domain resource of the first second frequency domain resource the difference between the measurement amount of the i+1th first frequency domain resource and the measurement amount of the i-th first frequency domain resource; the difference between the measurement amount of the j-th first frequency domain resource of the k+1th second frequency domain resource and the measurement amount of the j-th first frequency domain resource of the k-th second frequency domain resource;
- K is an integer greater than 1
- k is an integer greater than or equal to 1 and less than K
- i is an integer greater than or equal to 1 and less than I
- j is an integer greater than or equal to 1 and less than I.
- reporting the difference of the measured amount for the first frequency domain resources with the same first frequency domain resource number or with a corresponding relationship can further reduce the feedback signaling. bit overhead.
- the terminal reports the absolute value of the measurement quantity for the first frequency domain resource #1 of the second frequency domain resource #1; for the first frequency domain resource #2 of the second frequency domain resource #1, the terminal reports the difference between the measurement quantity of the first frequency domain resource #2 and the measurement quantity of the first frequency domain resource #1; for the first frequency domain resource #3, the terminal reports the difference between the measurement quantity of the first frequency domain resource #3 and the measurement quantity of the first frequency domain resource #2, and so on.
- the difference between the measurement amount of the first frequency domain resource #1’ and the measurement amount of the first frequency domain resource #1 of the second frequency domain resource #1 is reported; for the first frequency domain resource #2’ of the second frequency domain resource #2, the difference between the measurement amount of the first frequency domain resource #2’ and the measurement amount of the first frequency domain resource #2 of the second frequency domain resource #1 is reported, and so on.
- the difference between the measurement amount of the first frequency domain resource #1′′ and the measurement amount of the first frequency domain resource #1’ of the second frequency domain resource #2 is reported; for the first frequency domain resource #2′′ of the second frequency domain resource #3, the difference between the measurement amount of the first frequency domain resource #2′′ and the measurement amount of the first frequency domain resource #2’ of the second frequency domain resource #2 is reported, and so on.
- This embodiment can greatly reduce the signaling overhead of reporting by reporting the difference in the measurement quantity.
- the embodiment of the present disclosure provides an information reporting device, which is applied to a network side device, as shown in FIG7 , and includes a processor 32 and a transceiver 31.
- the transceiver 31 is used to send configuration information of multiple first frequency domain resources to the terminal, the configuration information including the size and/or frequency domain order of the first frequency domain resources; and receive channel state information and/or cross-link interference information of each first frequency domain resource reported by the terminal.
- I of the first frequency domain resources constitute one second frequency domain resource, where I is an integer greater than 1.
- the size of the (i+1)th first frequency domain resource is larger than or smaller than the size of the i-th first frequency domain resource;
- the size of the (i+1)th first frequency domain resource is N times or 1/N of the size of the i-th first frequency domain resource;
- i is a positive integer less than 1
- N is an integer greater than 1.
- I of the first frequency domain resources constitute one second frequency domain resource, and I is greater than 1, the transceiver 31 is further configured to receive a measurement amount of the second frequency domain resource reported by the terminal, the measurement amount of the second frequency domain resource comprising:
- the measurement amount of the i-th first frequency domain resource where i is an integer greater than or equal to 1 and less than 1; or,
- the transceiver 31 is also used to send an adjustment instruction to the terminal to instruct to reduce the size of the jth first frequency domain resource when the difference between the measured amounts of the jth first frequency domain resource and the j+1th first frequency domain resource is greater than a preset first threshold, where j is an integer greater than or equal to 1 and less than I.
- I first frequency domain resources constitute one second frequency domain resource
- I is an integer greater than 1
- the transceiver 31 is further used to receive measurement amounts of K second frequency domain resources reported by the terminal, and the measurement amounts of the K second frequency domain resources include:
- the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource is the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource.
- the measurement amount of the first first frequency domain resource of the first second frequency domain resource the difference between the measurement amount of the i+1th first frequency domain resource and the measurement amount of the i-th first frequency domain resource; the difference between the measurement amount of the j-th first frequency domain resource of the k+1th second frequency domain resource and the measurement amount of the j-th first frequency domain resource of the k-th second frequency domain resource;
- K is an integer greater than 1
- k is an integer greater than or equal to 1 and less than K
- i is an integer greater than or equal to 1 and less than I
- j is an integer greater than or equal to 1 and less than I.
- the measurement quantity is received signal strength RSSI or signal to interference plus noise ratio SINR.
- the embodiment of the present disclosure provides an information reporting device, which is applied to a terminal, as shown in FIG7 , and includes a processor 32 and a transceiver 31.
- the transceiver 31 is used to obtain configuration information of multiple first frequency domain resources predefined or sent by a network side device, and the configuration information includes the size and/or frequency domain order of the first frequency domain resources; and report channel state information and/or cross-link interference information for each of the first frequency domain resources.
- I of the first frequency domain resources constitute one second frequency domain resource, where I is an integer greater than 1.
- the size of the (i+1)th first frequency domain resource is greater than or less than the size of the i-th first frequency domain resource;
- the size of the (i+1)th first frequency domain resource is N times or 1/N of the size of the i-th first frequency domain resource;
- i is a positive integer less than 1
- N is an integer greater than 1.
- I first frequency domain resources constitute one second frequency domain resource
- I is an integer greater than 1
- the transceiver 31 is further used to report a measurement amount of the second frequency domain resource to the network side device, and the measurement amount of the second frequency domain resource includes:
- the measurement amount of the i-th first frequency domain resource where i is an integer greater than or equal to 1 and less than 1; or,
- I first frequency domain resources constitute one second frequency domain resource, I is an integer greater than 1, and the transceiver 31 is further used to report the measurement amount of K second frequency domain resources to the network side device, and the measurement amount of the K second frequency domain resources includes:
- the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource is the measurement amount of the i-th first frequency domain resource of the k-th second frequency domain resource.
- the measurement amount of the first first frequency domain resource of the first second frequency domain resource the difference between the measurement amount of the i+1th first frequency domain resource and the measurement amount of the i-th first frequency domain resource; the difference between the measurement amount of the j-th first frequency domain resource of the k+1th second frequency domain resource and the measurement amount of the j-th first frequency domain resource of the k-th second frequency domain resource;
- K is an integer greater than 1
- k is an integer greater than or equal to 1 and less than K
- i is an integer greater than or equal to 1 and less than I
- j is an integer greater than or equal to 1 and less than I.
- the measurement quantity is received signal strength RSSI or signal to interference plus noise ratio SINR.
- An embodiment of the present disclosure provides a terminal, as shown in FIG8 , including a processor 42 and a memory 41 , wherein the memory 41 stores programs or instructions that can be executed on the processor 42 , and when the programs or instructions are executed by the processor 42 , the steps of the method for reporting information as described above are implemented.
- An embodiment of the present disclosure provides a network side device, as shown in FIG8 , including a processor 42 and a memory 41, wherein the memory 41 stores programs or instructions that can be run on the processor 42, and when the programs or instructions are executed by the processor 42, the steps of the method for reporting information as described above are implemented.
- the present disclosure also provides a readable storage medium on which a program or instruction is stored.
- a program or instruction is stored on which a program or instruction is stored.
- the method for reporting the information described above is implemented.
- Each process can achieve the same technical effect, and will not be described here to avoid repetition.
- the processor is the processor in the terminal described in the above embodiment.
- the readable storage medium includes a computer readable storage medium, such as a computer read-only memory ROM, a random access memory RAM, a magnetic disk or an optical disk.
- the disclosed embodiment further provides a chip, which includes a processor and a communication interface, wherein the communication interface is coupled to the processor, and the processor is used to run programs or instructions to implement the various processes of the above-mentioned information reporting method embodiment, and can achieve the same technical effect. To avoid repetition, it will not be repeated here.
- chip mentioned in the embodiments of the present disclosure may also be referred to as a system-level chip, a system chip, a chip system or a system-on-chip chip, etc.
- the embodiments of the present disclosure further provide a computer program/program product, which is stored in a storage medium and is executed by at least one processor to implement the various processes of the above-mentioned information reporting method embodiment and can achieve the same technical effect. To avoid repetition, it will not be described here.
- the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, or optical disk), and includes a number of instructions for enabling a terminal (which may be a mobile phone, computer, server, air conditioner, or network device, etc.) to execute the methods described in the various embodiments of the present disclosure.
- a storage medium such as ROM/RAM, magnetic disk, or optical disk
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Abstract
本公开提出了一种信息上报的方法及装置、终端及网络侧设备,属于通信技术领域。本公开实施例的信息上报的方法,应用于网络侧设备,向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
Description
相关申请的交叉引用
本申请主张在2022年11月4日在中国提交的中国专利申请号No.202211375676.X的优先权,其全部内容通过引用包含于此。
本公开属于通信技术领域,具体涉及一种信息上报的方法及装置、终端及网络侧设备。
目前的跨链路干扰(cross link interference,CLI)测量上报机制是一种相同频段下全带宽的测量和上报,也即是干扰和有用信号在频域上位于相同的频段内,终端需要在配置的测量带宽上对所有资源块(Resource Block,RB)的测量结果进行平均再上报给网络侧设备。
现有的时分双工(Time Division Duplexing,TDD)频谱中,在同一个时刻网络侧设备只能进行下行信号发送或者上行信号的接收,由于上行资源受限,TDD频谱的上行覆盖和时延性能受到局限。在子带全双工技术中,在一个载波内将不同的子带配置为不同的传输方向,实现在一个时刻既有下行的传输机会又有上行的传输机会,可以降低TDD系统的时延,另外由于增加了上行传输资源,可以提高上行的覆盖。
但是由于一个小区内会同时存在上行的发送终端和下行的接收终端,上行的发送信号会对其他终端的下行接收造成强烈的干扰,目前同频段的CLI测量上报机制无法适用于子带间的(inter-subband)的CLI测量和上报。
发明内容
本公开实施例提供一种信息上报的方法及装置、终端及网络侧设备。
本公开实施例提供一种信息上报的方法,应用于网络侧设备,包括:
向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一
频域资源的大小和/或频域顺序;
接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
一些实施例中,所述I个所述第一频域资源中,
第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或
第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;
其中,i为小于I的正整数,N为大于1的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
接收所述终端上报的一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:
第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,
第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
一些实施例中,接收终端上报的一个所述第二频域资源的测量量之后,所述方法还包括:
在第j个第一频域资源和第j+1个第一频域资源的测量量的差值大于预设第一阈值时,向所述终端发送调整指令,指示降低第j个第一频域资源的大小,j为大于等于1小于I的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
接收终端上报的K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:
第k个第二频域资源的第i个第一频域资源的测量量;或者,
第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二
频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;
其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
一些实施例中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
本公开实施例提供了一种信息上报的方法,应用于终端,包括:
获取预定义或网络侧设备发送的多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;
对每一个所述第一频域资源进行信道状态信息和/或跨链路干扰信息的上报。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
一些实施例中,所述I个所述第一频域资源中,
第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或
第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;
其中,i为小于I的正整数,N为大于1的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
向网络侧设备上报一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:
第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,
第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
向网络侧设备上报K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:
第k个第二频域资源的第i个第一频域资源的测量量;或者,
第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;
其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
一些实施例中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
本公开实施例提供了一种信息上报的装置,应用于网络侧设备,包括处理器和收发机,
所述收发机用于向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
本公开实施例提供了一种信息上报的装置,应用于终端,包括收发机和处理器,
所述收发机用于获取预定义或网络侧设备发送的多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;对每一个所述第一频域资源进行信道状态信息和/或跨链路干扰信息的上报。
本公开实施例提供了一种终端,包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如上所述的信息上报的方法的步骤。
本公开实施例提供了一种网络侧设备,包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如上所述的信息上报的方法的步骤。
本公开实施例提供了一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如上所述的信息上报的方法的步骤。
在本公开实施例中,终端可以获取预定义或网络侧设备发送的多个第一
频域资源的配置信息,配置信息包括第一频域资源的大小和/或频域顺序。即,本公开实施例提供的方案支持针对不同频域资源分别进行大小的配置,使得为不同的第一频域资源配置不同的大小成为可能。在inter-subband CLI情况下,在下行子带/频域资源/BWP内部距离上行子带/频域资源/BWP更近的资源块受到的干扰会更强烈,而本实施例的方案,支持为不同第一频域资源配置不同的大小,从而使得进行信道状态信息和/或跨链路干扰的测量的频域资源是不均匀的,这样通过这种非均匀的上报频域资源的划分方式,可以在受到干扰更强烈的位置上报粒度更细,在干扰较为弱的地方上报粒度较粗,这样可以更加准确的反应干扰情况,让网络侧设备可以精准获取不同频域位置的干扰情况。
图1是本公开实施例可应用的一种无线通信系统的框图;
图2是本公开实施例网络侧设备侧信息上报的方法的流程示意图;
图3是本公开实施例终端侧信息上报的方法的流程示意图;
图4是本公开实施例第一频域资源的示意图之一;
图5是本公开实施例第一频域资源的示意图之二;
图6是本公开实施例第一频域资源的示意图之三;
图7是本公开实施例信息上报的装置的结构示意图;
图8是本公开实施例终端和网络侧设备的结构示意图。
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员所获得的所有其他实施例,都属于本公开保护的范围。
本公开的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便本公开的实施例能够以除了在这里图示或描
述的那些以外的顺序实施,且“第一”、“第二”所区别的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”一般表示前后关联对象是一种“或”的关系。
值得指出的是,本公开实施例所描述的技术不限于长期演进型(Long Term Evolution,LTE)/LTE的演进(LTE-Advanced,LTE-A)系统,还可用于其他无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency Division Multiple Access,SC-FDMA)和其他系统。本公开实施例中的术语“系统”和“网络”常被可互换地使用,所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。以下描述出于示例目的描述了新空口(New Radio,NR)系统,并且在以下大部分描述中使用NR术语,但是这些技术也可应用于NR系统应用以外的应用,如第6代(6th Generation,6G)通信系统。
图1示出本公开实施例可应用的一种无线通信系统的框图。无线通信系统包括终端11和网络侧设备12。其中,终端11可以是手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)或称为笔记本电脑、个人数字助理(Personal Digital Assistant,PDA)、掌上电脑、上网本、超级移动个人计算机(ultra-mobile personal computer,UMPC)、移动上网装置(Mobile Internet Device,MID)、增强现实(augmented reality,AR)/虚拟现实(virtual reality,VR)设备、机器人、可穿戴式设备(Wearable Device)、车载设备(Vehicle User Equipment,VUE)、行人终端(Pedestrian User Equipment,PUE)、智能家居(具有无线通信功能的家居设备,如冰箱、电视、洗衣机或者家具等)、游戏机、个人计算机(personal computer,PC)、柜员机或者自助机等终端侧设备,可穿戴式设备包括:智能手表、智能手环、智能耳机、智能眼镜、智能首饰(智能手镯、智能手链、智能戒指、智能项链、智能脚镯、智能脚链等)、智能腕带、智能服装等。需要说明的是,在本公开实施例并不限定终端
11的具体类型。网络侧设备12可以包括接入网设备或核心网设备,其中,接入网设备12也可以称为无线接入网设备、无线接入网(Radio Access Network,RAN)、无线接入网功能或无线接入网单元。接入网设备12可以包括网络侧设备、无线局域网(Wireless Local Area Network,WLAN)接入点或WiFi节点等,网络侧设备可被称为节点B、演进节点B(Evolved Node B,eNB)、接入点、基收发机站(Base Transceiver Station,BTS)、无线电网络侧设备、无线电收发机、基本服务集(Basic Service Set,BSS)、扩展服务集(Extended Service Set,ESS)、家用B节点、家用演进型B节点、发送接收点(Transmitting Receiving Point,TRP)或所述领域中其他某个合适的术语,只要达到相同的技术效果,所述网络侧设备不限于特定技术词汇,需要说明的是,在本公开实施例中仅以NR系统中的网络侧设备为例进行介绍,并不限定网络侧设备的具体类型。
本公开实施例提供一种信息上报的方法,应用于网络侧设备,如图2所示,包括:
步骤101:向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;
步骤102:接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
在本公开实施例中,终端可以获取预定义或网络侧设备发送的多个第一频域资源的配置信息,配置信息包括第一频域资源的大小和/或频域顺序。即,本公开实施例提供的方案支持针对不同频域资源分别进行大小的配置,使得为不同的第一频域资源配置不同的大小成为可能。在inter-subband CLI情况下,在下行子带/频域资源/带宽部分(Bandwith Part,BWP)内部距离上行子带/频域资源/BWP更近的资源块受到的干扰会更强烈,而本实施例的方案,支持为不同第一频域资源配置不同的大小,从而使得进行信道状态信息和/或跨链路干扰的测量的频域资源是不均匀的,这样通过这种非均匀的上报频域资源的划分方式,可以在受到干扰更强烈的位置上报粒度更细,在干扰较为弱的地方上报粒度较粗,这样可以更加准确的反应干扰情况,让网络侧设备可以精准获取不同频域位置的干扰情况。
其中,第一频域资源大小即是测量子带的带宽,下行子带/频域资源/BWP可以定义为第二频域资源,第二频域资源包括多个由第一频域资源的大小确定的第一频域资源。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
所述I个所述第一频域资源中,
第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或
第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;
其中,i为小于I的正整数,N为大于1的整数。
本实施例中,不同下行子带/频域资源/BWP包括的第一频域资源的数量可以相同,也可以不同。对于一个下行子带/频域资源/BWP,网络侧设备可以配置下行子带/频域资源/BWP包括的测量子带的大小,即第一频域资源的大小。
例如,一个下行子带/频域资源/BWP包括测量子带(report subband)#1,report subband#2,report subband#3等,网络侧设备可以配置测量子带的大小:report subband size#1,report subband size#2,report subband size#3等,其中测量子带的大小之间具有递增的关系,例如:report subband size#1<report subband size#2<report subband size#3<….。
或者,可以根据预定义的规则确定测量子带的大小,比如网络侧设备配置或者协议预定义第一个第一频域资源(测量子带)的大小,例如X个物理资源块(Physical Resource Block,PRB),其他的第一频域资源分别是前一个第一频域资源的N倍,N>1,例如report subband size#2=N*report subband size#1,report subband size#3=N*report subband size#2,依次类推。其中,X和N的取值可以由网络侧设备配置或者协议预定义。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
接收所述终端上报的一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:
第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,
第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
本实施例中,对于除第一个第一频域资源之外的其他第一频域资源的测量量仅进行差值的上报,这样可以降低上报信令的比特开销。在一个下行(Downlink,DL)子带(subband)内,终端针对第一频域资源#1进行测量量的绝对值上报,对于第一频域资源#2,进行第一频域资源#2的测量量相对于第一频域资源#1的测量量的差值的上报,对于第一频域资源#3,进行第一频域资源#3的测量量相对于第一频域资源#2的测量量的差值的上报,以此类推。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
接收终端上报的K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:
第k个第二频域资源的第i个第一频域资源的测量量;或者,
第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;
其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
对于多个第二频域资源,对于具有相同第一频域资源编号或者具有对应关系的第一频域资源进行测量量的差值的上报,能够进一步降低反馈信令的bit开销。
比如,对于第二频域资源#1,终端针对第二频域资源#1的第一频域资源#1进行测量量的绝对值上报,对于第二频域资源#1的第一频域资源#2,进行第一频域资源#2的测量量相对于第一频域资源#1的测量量的差值的上报,对于第一频域资源#3,进行第一频域资源#3的测量量相对于第一频域资源#2的测量量的差值的上报,以此类推。
对于第二频域资源#2的第一频域资源#1’,进行第一频域资源#1’的测量量相对于第二频域资源#1的第一频域资源#1的测量量的差值的上报;对于第二频域资源#2的第一频域资源#2’,进行第一频域资源#2’的测量量相对于第二频域资源#1的第一频域资源#2的测量量的差值的上报,以此类推。
对于第二频域资源#3的第一频域资源#1”,进行第一频域资源#1”的测量量相对于第二频域资源#2的第一频域资源#1’的测量量的差值的上报;对于第二频域资源#3的第一频域资源#2”,进行第一频域资源#2”的测量量相对于第二频域资源#2的第一频域资源#2’测量量的差值的上报,以此类推。
本实施例通过上报测量量的差值,可以大大降低上报的信令开销。
一些实施例中,所述测量量为接收信号强度(Received Signal Strength Indication,RSSI)或信号干扰噪声比(Signal to Interference plus Noise Ratio,SINR)。
一些实施例中,接收终端上报的一个所述第二频域资源的测量量之后,所述方法还包括:
在第j个第一频域资源和第j+1个第一频域资源的测量量的差值大于预设第一阈值时,向所述终端发送调整指令,指示降低第j个第一频域资源的大小,j为大于等于1小于I的整数。
本实施例中,网络侧设备可以根据终端的测量量进行测量子带带宽的调整,例如终端分别针对report subband size#1和report subband size#2的测量量差别过大,表面上报不够精细,网络侧设备无法在report subband#1内部确定哪些PRB的干扰过大,可以进一步减小report subband#1的大小,这样终端可以在更细粒度的测量子带上进行测量上报,让网络侧设备可以精准获取不同频域位置的干扰情况。
一些实施例中,每个下行子带/频域资源/BWP包括的多个第一频域资源中,第一频域资源的大小与D成正比,D为第一频域资源与上行子带/频域资源/BWP的频域距离。
本实施例中,可以根据多个第一频域资源的大小和预定义的顺序确定第二频域资源内的多个第一频域资源。
具体的,可以根据第二频域资源(下行子带/频域资源/BWP DL subband)内的物理资源与第三频域资源(上行子带/频域资源/BWP上行(Uplink,UL subband))的物理资源的频域距离确定使用的第一频域资源大小。具体的,可以根据频域距离递增的顺序,按照第一频域资源的大小递增的顺序选择第一频域资源。
如果第三频域资源(上行子带/频域资源/BWP UL subband)频域位置低于第二频域资源,则从第二频域资源的起始位置(频域位置最低点)按照第一频域资源的大小递增的顺序确定第一频域资源。如果第三频域资源(上行子带/频域资源/BWP UL subband)频域位置高于第二频域资源,则从第二频域资源的结束位置(频域位置最高点)按照第一频域资源的大小递增的顺序确定第一频域资源。
如图4所示,频域资源上划分了三个子带,分别为下行子带/频域资源/BWP1(DL subband 1/DL BWP 1),上行子带/频域资源/BWP(UL subband/UL BWP)和下行子带/频域资源/BWP2(DL subband 2/DL BWP 2)。
网络侧设备配置或协议预定义I个第一频域资源大小,例如report subband size#1,report subband size#2,report subband size#3,…..report subband size#I。其中report subband size#1<report subband size#2<report subband size#3<….<report subband size#I。
对于第二频域资源DL subband 1,其频域位置高于第三频域资源UL subband,则在距离UL subband较近的位置根据report subband size#1确定第一频域资源#1,接着根据report subband size#2确定第一频域资源#2,依次类推,如图5所示。
对于第二频域资源DL subband 2,其频域位置低于第三频域资源UL subband,则在距离UL subband较近的位置根据report subband size#1确定第一频域资源#1’,接着根据report subband size#2确定第一频域资源#2’,依次类推,如图6所示。
由于inter-subband CLI主要是由于干扰终端在UL subband内发送上行信号泄漏到受扰终端的DL subband内部,这种泄漏是一种非平坦的,距离UL subband的位置越近的DL subband的PRB感受的干扰越强烈。假设40MHz的
DL subband,如果采用全带宽的测量上报,测量量是所有PRB上干扰的均值,终端只会上报1个值,这样网络侧设备是无法知道到底哪些PRB收到的干扰较大。如果是按照均匀分布的测量子带进行测量上报,例如每5MHz作为测量上报粒度,终端需要上报8个测量量,但是在距离较远的PRB上感受的干扰已经很微弱,最后20MHz内包括的4个测量子带的上报的干扰测量结果相同并且是冗余的,增加了上报的开销。
本实施例中,采用测量子带的大小逐渐递增的划分方式,可以让终端在距离UL subband位置更近的PRB区域进行较为细致的测量,在距离UL subband位置更远的PRB区域进行较为粗略的测量,既实现了让网络侧设备可以精准获取不同频域位置的干扰情况,又可以降低测量结果的上报开销。例如按照第一个测量子带的大小为3MHz,第二个测量子带的大小为6MHz,第三个测量子带的大小为12MHz,第四个测量子带的大小为24MHz的上报粒度,终端只需要反馈4个测量量,但是在前21MHz(第一个测量子带+第二个测量子带+第三个测量子带)内反馈的粒度较小,可以精准提供测量结果。
本公开实施例提供了一种信息上报的方法,应用于终端,如图3所示,包括:
步骤201:获取预定义或网络侧设备发送的多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;
步骤202:对每一个所述第一频域资源进行信道状态信息和/或跨链路干扰信息的上报。
在本公开实施例中,终端可以获取预定义或网络侧设备发送的多个第一频域资源的配置信息,配置信息包括第一频域资源的大小和/或频域顺序。即,本公开实施例提供的方案支持针对不同频域资源分别进行大小的配置,使得为不同的第一频域资源配置不同的大小成为可能。在inter-subband CLI情况下,在下行子带/频域资源/BWP内部距离上行子带/频域资源/BWP更近的资源块受到的干扰会更强烈,而本实施例的方案,支持为不同第一频域资源配置不同的大小,从而使得进行信道状态信息和/或跨链路干扰的测量的频域资源是不均匀的,这样通过这种非均匀的上报频域资源的划分方式,可以在受到干扰更强烈的位置上报粒度更细,在干扰较为弱的地方上报粒度较粗,这
样可以更加准确的反应干扰情况,让网络侧设备可以精准获取不同频域位置的干扰情况。
一些实施例中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
具体的,对于RSSI,终端确定每个第一频域资源(测量子带)内的测量RSSI的RB位置,在这些RB位置上,网络侧设备不发送任何信号,终端在这些位置就可以测量其他终端在UL subband上发送信号泄漏到这些RB上的干扰的强度。
对于SINR,终端在每个第一频域资源(测量子带)内分别测量有用信号和干扰信号的强度,并计算SINR值。其中干扰信号的强度就是终端在UL subband上发送信号泄漏到第一频域资源(测量子带)内的干扰的强度。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
所述I个所述第一频域资源中,第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或
第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;
其中,i为小于I的正整数,N为大于1的整数。
本实施例中,不同下行子带/频域资源/BWP包括的第一频域资源的数量可以相同,也可以不同。对于一个下行子带/频域资源/BWP,网络侧设备可以配置或协议预定义下行子带/频域资源/BWP包括的测量子带的大小,即第一频域资源的大小。
例如,一个下行子带/频域资源/BWP包括测量子带(report subband)#1,report subband#2,report subband#3等,网络侧设备可以配置或协议预定义测量子带的大小:report subband size#1,report subband size#2,report subband size#3等,其中测量子带的大小之间具有递增的关系,例如:report subband size#1<report subband size#2<report subband size#3<….。
或者,可以根据预定义的规则确定测量子带的大小,比如网络侧设备配置或者协议预定义第一个第一频域资源(测量子带)的大小,例如X个PRB(物理资源块),其他的第一频域资源分别是前一个第一频域资源的N倍,
N>1,例如report subband size#2=N*report subband size#1,report subband size#3=N*report subband size#2,依次类推。其中,X和N的取值可以由网络侧设备配置或者协议预定义。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
向网络侧设备上报一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:
第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,
第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
本实施例中,对于除第一个第一频域资源之外的其他第一频域资源的测量量仅进行差值的上报,这样可以降低上报信令的比特开销。在一个DL subband内,终端针对第一频域资源#1进行测量量的绝对值上报,对于第一频域资源#2,进行第一频域资源#2的测量量相对于第一频域资源#1的测量量的差值的上报,对于第一频域资源#3,进行第一频域资源#3的测量量相对于第一频域资源#2的测量量的差值的上报,以此类推。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:
向网络侧设备上报K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:
第k个第二频域资源的第i个第一频域资源的测量量;或者,
第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;
其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
对于多个第二频域资源,对于具有相同第一频域资源编号或者具有对应关系的第一频域资源进行测量量的差值的上报,能够进一步降低反馈信令的
bit开销。
比如,对于第二频域资源#1,终端针对第二频域资源#1的第一频域资源#1进行测量量的绝对值上报,对于第二频域资源#1的第一频域资源#2,进行第一频域资源#2的测量量相对于第一频域资源#1的测量量的差值的上报,对于第一频域资源#3,进行第一频域资源#3的测量量相对于第一频域资源#2的测量量的差值的上报,以此类推。
对于第二频域资源#2的第一频域资源#1’,进行第一频域资源#1’的测量量相对于第二频域资源#1的第一频域资源#1的测量量的差值的上报;对于第二频域资源#2的第一频域资源#2’,进行第一频域资源#2’的测量量相对于第二频域资源#1的第一频域资源#2的测量量的差值的上报,以此类推。
对于第二频域资源#3的第一频域资源#1”,进行第一频域资源#1”的测量量相对于第二频域资源#2的第一频域资源#1’的测量量的差值的上报;对于第二频域资源#3的第一频域资源#2”,进行第一频域资源#2”的测量量相对于第二频域资源#2的第一频域资源#2’测量量的差值的上报,以此类推。
本实施例通过上报测量量的差值,可以大大降低上报的信令开销。
本公开实施例提供了一种信息上报的装置,应用于网络侧设备,如图7所示,包括处理器32和收发机31,
所述收发机31用于向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
一些实施例中,所述I个所述第一频域资源中,
第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或
第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;
其中,i为小于I的正整数,N为大于1的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于
1的整数,所述收发机31还用于接收所述终端上报的一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:
第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,
第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
一些实施例中,所述收发机31还用于在第j个第一频域资源和第j+1个第一频域资源的测量量的差值大于预设第一阈值时,向所述终端发送调整指令,指示降低第j个第一频域资源的大小,j为大于等于1小于I的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述收发机31还用于接收终端上报的K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:
第k个第二频域资源的第i个第一频域资源的测量量;或者,
第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;
其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
一些实施例中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
本公开实施例提供了一种信息上报的装置,应用于终端,如图7所示,包括处理器32和收发机31,
所述收发机31用于获取预定义或网络侧设备发送的多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;对每一个所述第一频域资源进行信道状态信息和/或跨链路干扰信息的上报。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
一些实施例中,所述I个所述第一频域资源中,
第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和
/或
第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;
其中,i为小于I的正整数,N为大于1的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述收发机31还用于向网络侧设备上报一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:
第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,
第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
一些实施例中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述收发机31还用于向网络侧设备上报K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:
第k个第二频域资源的第i个第一频域资源的测量量;或者,
第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;
其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
一些实施例中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
本公开实施例提供了一种终端,如图8所示,包括处理器42和存储器41,所述存储器41存储可在所述处理器42上运行的程序或指令,所述程序或指令被所述处理器42执行时实现如上所述的信息上报的方法的步骤。
本公开实施例提供了一种网络侧设备,如图8所示,包括处理器42和存储器41,所述存储器41存储可在所述处理器42上运行的程序或指令,所述程序或指令被所述处理器42执行时实现如上所述的信息上报的方法的步骤。
本公开实施例还提供一种可读存储介质,所述可读存储介质上存储有程序或指令,该程序或指令被处理器执行时实现上述信息上报的方法实施例的
各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,所述处理器为上述实施例中所述的终端中的处理器。所述可读存储介质,包括计算机可读存储介质,如计算机只读存储器ROM、随机存取存储器RAM、磁碟或者光盘等。
本公开实施例另提供了一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现上述信息上报的方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本公开实施例提到的芯片还可以称为系统级芯片,系统芯片,芯片系统或片上系统芯片等。
本公开实施例另提供了一种计算机程序/程序产品,所述计算机程序/程序产品被存储在存储介质中,所述计算机程序/程序产品被至少一个处理器执行以实现上述信息上报的方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
需要说明的是,在本文中,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、物品或者装置不仅包括那些要素,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、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本公开实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所描述的特征可在其他示例中被组合。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对相关技术做出贡献的部分可以以计算机软件产品的
形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本公开各个实施例所述的方法。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本公开的保护之内。
Claims (18)
- 一种信息上报的方法,应用于网络侧设备,所述方法包括:向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
- 根据权利要求1所述的信息上报的方法,其中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
- 根据权利要求2所述的信息上报的方法,其中,所述I个所述第一频域资源中,第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;其中,i为小于I的正整数,N为大于1的整数。
- 根据权利要求1所述的信息上报的方法,其中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:接收所述终端上报的一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
- 根据权利要求4所述的信息上报的方法,其中,接收终端上报的一个所述第二频域资源的测量量之后,所述方法还包括:在第j个第一频域资源和第j+1个第一频域资源的测量量的差值大于预设第一阈值时,向所述终端发送调整指令,指示降低第j个第一频域资源的大小,j为大于等于1小于I的整数。
- 根据权利要求1所述的信息上报的方法,其中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:接收终端上报的K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:第k个第二频域资源的第i个第一频域资源的测量量;或者,第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
- 根据权利要求4或6所述的信息上报的方法,其中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
- 一种信息上报的方法,应用于终端,所述方法包括:获取预定义或网络侧设备发送的多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;对每一个所述第一频域资源进行信道状态信息和/或跨链路干扰信息的上报。
- 根据权利要求8所述的信息上报的方法,其中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数。
- 根据权利要求9所述的信息上报的方法,其中,所述I个所述第一频域资源中,第i+1个第一频域资源的大小大于或小于第i个第一频域资源的大小;和/或第i+1个第一频域资源的大小为第i个第一频域资源的大小的N倍或1/N;其中,i为小于I的正整数,N为大于1的整数。
- 根据权利要求8所述的信息上报的方法,其中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:向网络侧设备上报一个所述第二频域资源的测量量,一个所述第二频域资源的测量量包括:第i个第一频域资源的测量量,i为大于等于1小于I的整数;或者,第1个第一频域资源的测量量,以及,第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值,i为大于等于1小于I的整数。
- 根据权利要求8所述的信息上报的方法,其中,I个所述第一频域资源组成一个第二频域资源,I为大于1的整数,所述方法还包括:向网络侧设备上报K个所述第二频域资源的测量量,所述K个所述第二频域资源的测量量包括:第k个第二频域资源的第i个第一频域资源的测量量;或者,第一个第二频域资源的第1个第一频域资源的测量量;第i+1个第一频域资源的测量量相对于第i个第一频域资源的测量量的差值;第k+1个第二频域资源的第j个第一频域资源的测量量相对于第k个第二频域资源第j个第一频域资源的测量量的差值;其中,K为大于1的整数,k为大于等于1小于K的整数,i为大于等于1小于I的整数,j为大于等于1小于等于I的整数。
- 根据权利要求11或12所述的上报的方法,其中,所述测量量为接收信号强度RSSI或信号干扰噪声比SINR。
- 一种信息上报的装置,应用于网络侧设备,所述信息上报的装置包括处理器和收发机,所述收发机用于向终端发送多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;接收所述终端上报的每一个所述第一频域资源的信道状态信息和/或跨链路干扰信息。
- 一种信息上报的装置,应用于终端,所述信息上报的装置包括收发机和处理器,所述收发机用于获取预定义或网络侧设备发送的多个第一频域资源的配置信息,所述配置信息包括所述第一频域资源的大小和/或频域顺序;对每一个所述第一频域资源进行信道状态信息和/或跨链路干扰信息的上报。
- 一种终端,包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求8至13任一项所述的信息上报的方法的步骤。
- 一种网络侧设备,包括处理器和存储器,所述存储器存储可在所述 处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至7任一项所述的信息上报的方法的步骤。
- 一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如权利要求1-7任一项所述的信息上报的方法,或者实现如权利要求8至13任一项所述的信息上报的方法的步骤。
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|---|---|---|---|---|
| US20110200127A1 (en) * | 2010-02-12 | 2011-08-18 | Wook Bong Lee | Feedback Method and Apparatus for Multiple Base Stations in a Wireless Communication System Supporting Single Base Station MIMO Communication and Multiple Base Stations MIMO Communication |
| WO2015149333A1 (zh) * | 2014-04-03 | 2015-10-08 | 华为技术有限公司 | 一种csi报告方法和设备 |
| CN113287268A (zh) * | 2018-11-02 | 2021-08-20 | 瑞典爱立信有限公司 | 用于预编码矩阵指示和信道质量指示的独立子带大小 |
| CN115209556A (zh) * | 2021-04-08 | 2022-10-18 | 维沃移动通信有限公司 | 传输资源确定方法和设备 |
-
2022
- 2022-11-04 CN CN202211375676.XA patent/CN117998444A/zh active Pending
-
2023
- 2023-11-01 WO PCT/CN2023/128985 patent/WO2024094045A1/zh not_active Ceased
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20110200127A1 (en) * | 2010-02-12 | 2011-08-18 | Wook Bong Lee | Feedback Method and Apparatus for Multiple Base Stations in a Wireless Communication System Supporting Single Base Station MIMO Communication and Multiple Base Stations MIMO Communication |
| WO2015149333A1 (zh) * | 2014-04-03 | 2015-10-08 | 华为技术有限公司 | 一种csi报告方法和设备 |
| CN113287268A (zh) * | 2018-11-02 | 2021-08-20 | 瑞典爱立信有限公司 | 用于预编码矩阵指示和信道质量指示的独立子带大小 |
| CN115209556A (zh) * | 2021-04-08 | 2022-10-18 | 维沃移动通信有限公司 | 传输资源确定方法和设备 |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2026061356A1 (zh) * | 2024-09-20 | 2026-03-26 | 维沃移动通信有限公司 | 无线通信方法、第一设备及第二设备 |
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| Publication number | Publication date |
|---|---|
| CN117998444A (zh) | 2024-05-07 |
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