Information generation method and apparatus, information receiving method and apparatus, and terminal, network device and storage medium

By measuring cross-link interference at the terminal and mapping the results to UCI bits, the CLI problem in full-duplex communication is solved, achieving efficient communication quality management and resource conservation.

WO2026006931A1PCT designated stage Publication Date: 2026-01-08BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
PCT/CN2024/102781
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-06-30
Publication Date
2026-01-08

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Abstract

The present disclosure relates to the technical field of communications, and specifically relates to an information generation method and apparatus, an information receiving method and apparatus, and a terminal, a network device and a storage medium. The information generation method comprises: performing measurement on cross-link interference (CLI); obtaining a first CLI measurement result, wherein the first CLI measurement result is carried in at least one of the following: a first part of a channel state information (CSI) report and a second part of the CSI report; and mapping the first CLI measurement result into an uplink control information (UCI) bit. On the basis of the present disclosure, a terminal maps a CLI measurement result into a UCI bit, such that the terminal can subsequently conveniently send the UCI bit to a network device by means of a channel, and thus the network device can determine CLI and then perform a corresponding management operation, so as to reduce the CLI, thereby ensuring a good communication quality of the terminal.
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Description

Information generation, receiving method and device, terminal, network device and storage medium TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of communication, and in particular, to an information generation method, an information receiving method, an information generation device, an information receiving device, a terminal, a network device, a communication system and a storage medium. BACKGROUND

[0002] With the development of communication technology, in order to improve the communication efficiency, the network device can allocate frequency domain subbands to the terminal on the frequency domain resource corresponding to the time domain resource, so as to realize the full duplex communication of the network device on the time domain resource. However, this case will cause some technical problems for the communication of the terminal.

[0003] SUMMARY

[0004] According to a first aspect of an embodiment of the present disclosure, an information generation method is provided, which is executed by a terminal, and the method comprises: measuring cross-link interference CLI; obtaining a first CLI measurement result, wherein the first CLI measurement result is carried in at least one of the following: a first part of a channel state information CSI report, a second part of the CSI report; and mapping the first CLI measurement result into uplink control information UCI bits.

[0005] According to a second aspect of an embodiment of the present disclosure, an information generation method is provided, which is executed by a network device, and the method comprises: receiving uplink control information UCI bits sent by a terminal, wherein the UCI bits are mapped with a first CLI measurement result obtained by the terminal by measuring cross-link interference CLI, and the first CLI measurement result is carried in at least one of the following: a first part of a channel state information CSI report, a second part of the CSI report.

[0006] According to a third aspect of an embodiment of the present disclosure, an information generation device is provided, and the device comprises: a receiving module configured to measure cross-link interference CLI; obtain a first CLI measurement result, wherein the first CLI measurement result is carried in at least one of the following: a first part of a channel state information CSI report, a second part of the CSI report; and a processing module configured to map the first CLI measurement result into uplink control information UCI bits.

[0007] According to a fourth aspect of embodiments of the present disclosure, an information generation apparatus is provided, the apparatus comprising: a receiving module configured to receive uplink control information (UCI) bits transmitted by a terminal, wherein a first cross-link interference (CLI) measurement result measured by the terminal is mapped in the UCI bits, and the first CLI measurement result is carried in at least one of: a first part of a channel state information (CSI) report, and a second part of the CSI report.

[0008] According to a fifth aspect of embodiments of the present disclosure, a terminal is provided, comprising: one or more processors; a memory coupled to the one or more processors, the memory having stored thereon executable instructions that, as a result of being executed by the one or more processors, cause the terminal to perform the information generation method of the first aspect or any one of the optional implementation of the first aspect.

[0009] According to a sixth aspect of embodiments of the present disclosure, a network device is provided, comprising: one or more processors; a memory coupled to the one or more processors, the memory having stored thereon executable instructions that, as a result of being executed by the one or more processors, cause the network device to perform the information receiving method of the second aspect.

[0010] According to a seventh aspect of embodiments of the present disclosure, a communication system is provided, comprising a terminal and a network device, wherein the terminal is configured to implement the information generation method of the first aspect, and the network device is configured to implement the information receiving method of the second aspect.

[0011] According to an eighth aspect of embodiments of the present disclosure, a storage medium is provided, the storage medium storing instructions that, when executed on a communication device, cause the communication device to perform the information generation method of the first aspect, and the network device is configured to implement the information receiving method of the second aspect.

[0012] According to a ninth aspect of embodiments of the present disclosure, a program product is provided, which, when executed by a communication device, causes the communication device to perform the method described in any one of the first aspect and the second aspect.

[0013] According to a tenth aspect of embodiments of the present disclosure, a computer program is provided, which, when executed on a computer, causes the computer to perform the method described in any one of the first aspect and the second aspect.

[0014] According to embodiments of the present disclosure, the terminal maps the CLI measurement result into the UCI bits, which facilitates the terminal to subsequently transmit the UCI bits to the network device through a channel, so that the network device can determine the CLI, and accordingly perform management operations to reduce the CLI, thereby ensuring good communication quality of the terminal.

[0015] According to an embodiment of the present disclosure, the terminal carries the first CLI measurement result through the first part of the CSI report and / or the second part of the CSI report, and the first CLI measurement result is mapped into UCI bits, which is beneficial for the terminal to subsequently send the UCI bits to the network device through a channel, so that the network device can determine the CLI, and then perform corresponding management operations to reduce the CLI, thereby ensuring good communication quality of the terminal; on the other hand, by sending the CSI report (for example, the first part of the CSI report and / or the second part of the CSI report) to the network device, the first CLI measurement result can be sent to the network device, so that it is not necessary to carry the first CLI measurement result through a separate information, which is beneficial for saving communication resource overhead. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0017] FIG. 1A is a schematic architecture diagram of a communication system according to an embodiment of the present disclosure.

[0018] FIG. 1B is a schematic diagram of a sub-band according to an embodiment of the present disclosure.

[0019] FIG. 2 is an interaction schematic diagram of an information generation method according to an embodiment of the present disclosure.

[0020] FIG. 3 is a schematic flowchart of an information generation method according to an embodiment of the present disclosure.

[0021] FIG. 4 is a schematic flowchart of an information receiving method according to an embodiment of the present disclosure.

[0022] FIG. 5 is a schematic block diagram of an information generation apparatus according to an embodiment of the present disclosure.

[0023] FIG. 6 is a schematic block diagram of an information receiving apparatus according to an embodiment of the present disclosure.

[0024] FIG. 7A is a schematic structural diagram of a communication device according to an embodiment of the present disclosure.

[0025] FIG. 7B is a schematic structural diagram of a chip according to an embodiment of the present disclosure. DETAILED DESCRIPTION

[0026] Embodiments of the present disclosure propose an information generation method, an information receiving method, an information generation apparatus, an information receiving apparatus, a terminal, a network device, and a storage medium.

[0027] In a first aspect, embodiments of the present disclosure provide a method for generating information, performed by a terminal, the method comprising: measuring cross-link interference (CLI); obtaining a first CLI measurement result, the first CLI measurement result being carried in at least one of: a first part of a channel state information (CSI) report, a second part of the CSI report; and mapping the first CLI measurement result into uplink control information (UCI) bits.

[0028] In the above embodiments, the terminal carries the first CLI measurement result through the first part of the CSI report and / or the second part of the CSI report, and the first CLI measurement result is mapped into the UCI bits, which is beneficial for the terminal to subsequently send the UCI bits to a network device through a channel, so that the network device can determine the CLI, and then perform corresponding management operations to reduce the CLI, thereby ensuring good communication quality of the terminal; on the other hand, by sending the CSI report (e.g., the first part of the CSI report and / or the second part of the CSI report) to the network device, the first CLI measurement result can be sent to the network device, so that it is not necessary to carry the first CLI measurement result through a separate information, which is beneficial for saving communication resource overhead.

[0029] In combination with some embodiments of the first aspect. In some embodiments, the first CLI measurement result includes at least one of: a wideband CLI measurement result; a subband CLI measurement result.

[0030] In combination with some embodiments of the first aspect. In some embodiments, the mapping of the first CLI measurement result into the UCI bits includes: mapping the CSI report into the UCI bits according to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of the CLI measurement result carried by the CSI report.

[0031] In combination with some embodiments of the first aspect. In some embodiments, the priority index is determined based on at least one of: a type of the CSI report; a serving cell index; a configurable maximum number of cells; an index of the CSI report; a configurable maximum number of reporting configurations; and a CSI carrying a corresponding measurement result.

[0032] In combination with some embodiments of the first aspect. In some embodiments, the mapping relationship includes n CSI reports, and a priority index Pri icsi is determined based on the following formula:

[0033] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells• M s • k + M s • c + s

[0034] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y = 3 corresponds to an aperiodic CSI report transmitted on a PUCCH; c is a serving cell index; N cells is a configurable maximum number of cells; s is an index of a CSI report; M s is a configurable maximum number of reporting configurations; k corresponds to a CSI carrying corresponding measurement results.

[0035] In some embodiments in combination with the first aspect. In some embodiments, k = a first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

[0036] In some embodiments in combination with the first aspect. In some embodiments, a CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits, and a CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits; wherein the first part of bits is before the second part of bits, or the second part of bits is before the first part of bits.

[0037] In some embodiments of the first aspect, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, or the CSI report carrying the subband CLI measurement result is mapped to the first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, the CSI report carrying the wideband CLI measurement result is mapped to the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or the CSI report is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0038] In some embodiments of the first aspect, the first CLI measurement result comprises at least one of the following information fields: a number of at least one CLI reference signal; a resource index of at least one CLI reference signal; a measurement value corresponding to at least one CLI reference signal; at least one capability index.

[0039] In some embodiments of the first aspect, the measurement value corresponding to the at least one CLI reference signal comprises: a reference measurement value corresponding to the at least one CLI reference signal; a difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

[0040] In some embodiments of the first aspect, the type of the CLI reference signal comprises at least one of: a sounding reference signal used to determine a reference signal received power; a reference signal used to determine a received signal strength indication of the CLI.

[0041] In some embodiments of the first aspect, the mapping of the first CLI measurement result into the UCI bits comprises: mapping each information field in the at least one information field into the UCI bits according to a bit width corresponding to the information field.

[0042] In some embodiments of the first aspect. In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in a first part of the CSI report; or, the wideband CLI measurement result and the subband CLI measurement result are carried in a second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report.

[0043] In a second aspect, embodiments of the present disclosure provide an information generation method, implemented by a network device, the method comprising: receiving uplink control information (UCI) bits sent by a terminal, wherein a first cross-link interference (CLI) measurement result obtained by the terminal by measuring the CLI is mapped in the UCI bits, and the first CLI measurement result is carried in at least one of the following: a first part of a channel state information (CSI) report, a second part of the CSI report.

[0044] In some embodiments of the second aspect. In some embodiments, the first CLI measurement result comprises at least one of the following: a wideband CLI measurement result; a subband CLI measurement result.

[0045] In some embodiments of the second aspect. In some embodiments, the mapping of the first CLI measurement result into the UCI bits comprises: mapping the CSI report into the UCI bits according to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of the CLI measurement result carried by the CSI report.

[0046] In some embodiments of the second aspect. In some embodiments, the priority index is determined based on at least one of the following: a type of the CSI report; a serving cell index; a configurable maximum number of cells; an index of the CSI report; a configurable maximum number of reporting configurations; a CSI carrying a corresponding measurement result.

[0047] In some embodiments of the second aspect. In some embodiments, the mapping relationship includes n CSIs, and a priority index Pri icsi is determined based on the following formula:

[0048] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s• c + s;

[0049] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y = 3 corresponds to an aperiodic CSI report transmitted on a PUCCH; c is a serving cell index; N cells is a configurable maximum number of cells; s is an index of a CSI report; M s is a configurable maximum number of reporting configurations; k corresponds to a CSI carrying corresponding measurement results.

[0050] Some embodiments in combination with the second aspect. In some embodiments, k = a first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

[0051] Some embodiments in combination with the second aspect. In some embodiments, a CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits, and a CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits; wherein the first part of bits is before the second part of bits, or the second part of bits is before the first part of bits.

[0052] In some embodiments of the second aspect. In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits; or, the CSI report carrying the subband CLI measurement result is mapped to the first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, the CSI report carrying the wideband CLI measurement result is mapped to the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits; or, the CSI report is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or, is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0053] In some embodiments of the second aspect. In some embodiments, the first CLI measurement result comprises at least one information field including at least one of: a number of at least one CLI reference signal; a resource index of at least one CLI reference signal; a measurement value corresponding to at least one CLI reference signal; at least one capability index.

[0054] In some embodiments of the second aspect. In some embodiments, the measurement value corresponding to the at least one CLI reference signal comprises at least one of: a reference measurement value corresponding to the at least one CLI reference signal; a difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

[0055] In some embodiments of the second aspect. In some embodiments, the type of the CLI reference signal comprises at least one of: a sounding reference signal used for determining a reference signal received power; a reference signal used for determining a received signal strength indication of the CLI.

[0056] In some embodiments of the second aspect. In some embodiments, the at least one information field is mapped to the UCI bits based on a bit width corresponding to each information field in the at least one information field.

[0057] In some embodiments of the second aspect. In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in a first part of a CSI report; or, the wideband CLI measurement result and the subband CLI measurement result are carried in a second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report.

[0058] In a third aspect, embodiments of the present disclosure provide an information generation apparatus, comprising: a receiving module configured to measure a cross-link interference (CLI); obtain a first CLI measurement result, the first CLI measurement result being carried in at least one of: a first part of a channel state information (CSI) report, a second part of the CSI report; and a processing module configured to map the first CLI measurement result into uplink control information (UCI) bits.

[0059] In a fourth aspect, embodiments of the present disclosure provide an information generation apparatus, comprising: a receiving module configured to receive uplink control information (UCI) bits sent by a terminal, wherein the UCI bits have mapped therein a first cross-link interference (CLI) measurement result obtained by the terminal by measuring a CLI, the first CLI measurement result being carried in at least one of: a first part of a channel state information (CSI) report, a second part of the CSI report.

[0060] In a fifth aspect, embodiments of the present disclosure provide a terminal, comprising: one or more processors; and a memory coupled to the one or more processors, the memory having stored thereon executable instructions that, as a result of being executed by the one or more processors, cause the terminal to perform the information generation method of the first aspect or any one of the optional embodiments of the first aspect.

[0061] In a sixth aspect, embodiments of the present disclosure provide a network device, comprising: one or more processors; and a memory coupled to the one or more processors, the memory having stored thereon executable instructions that, as a result of being executed by the one or more processors, cause the network device to perform the information receiving method of the second aspect or any one of the optional embodiments of the second aspect.

[0062] In a seventh aspect, embodiments of the present disclosure provide a communication system, comprising a terminal configured to implement the information generation method of the first aspect or any of the optional embodiments of the first aspect, and a network device configured to implement the information receiving method of the second aspect or any of the optional embodiments of the second aspect.

[0063] In an eighth aspect, embodiments of the present disclosure provide a storage medium storing instructions that, when executed on a communication device, cause the communication device to perform the information generation method of the first aspect or any of the optional embodiments of the first aspect, and the network device configured to implement the information receiving method of the second aspect or any of the optional embodiments of the second aspect.

[0064] In a ninth aspect, embodiments of the present disclosure provide a program product that, when executed on a communication device, causes the communication device to perform the method of the first aspect or any of the optional embodiments of the first aspect, the second aspect or any of the optional embodiments of the second aspect.

[0065] In a tenth aspect, embodiments of the present disclosure provide a computer program that, when executed on a computer, causes the computer to perform the method of the first aspect or any of the optional embodiments of the first aspect, the second aspect or any of the optional embodiments of the second aspect.

[0066] It can be understood that the above information generation and receiving apparatus, communication device, communication system, storage medium, program product, and computer program are all used to execute the method proposed in the embodiments of the present disclosure. Therefore, the beneficial effects that can be achieved thereby can refer to the beneficial effects in the corresponding method, which will not be described here again.

[0067] Embodiments of the present disclosure provide information generation and receiving methods and apparatuses, terminals, network devices, and storage media. In some embodiments, the information generation and receiving method and the information processing method, communication method, and the like can be replaced with each other, the information generation and receiving apparatus and the information processing apparatus, communication apparatus, and the like can be replaced with each other, and the information processing system, communication system, and the like can be replaced with each other.

[0068] The embodiments of the present disclosure are not exhaustive, but only illustrate some embodiments, and are not specific limitations on the protection scope of the present disclosure. In the case of no contradiction, each step in an embodiment can be implemented as an independent embodiment, and the steps can be combined arbitrarily, for example, the scheme after removing part of the steps in an embodiment can also be implemented as an independent embodiment, and the order of the steps in an embodiment can be exchanged arbitrarily, in addition, the optional implementation in an embodiment can be combined arbitrarily; in addition, the embodiments can be combined arbitrarily, for example, part or all steps of different embodiments can be combined arbitrarily, an embodiment can be combined with optional implementation of other embodiments.

[0069] In each embodiment of the present disclosure, the terms and / or descriptions between the embodiments are consistent if there is no special description and logical conflict, and can be referred to each other, and the technical features in different embodiments can be combined to form new embodiments according to their inherent logical relationship.

[0070] The terms used in the embodiments of the present disclosure are only for the purpose of describing the specific embodiments, and not as a limitation on the present disclosure.

[0071] In the embodiments of the present disclosure, unless otherwise specified, the elements expressed in singular form, such as "one", "a", "the", "above", "said", "preceding", "this" and the like, can represent "one and only one", and can also represent "one or more", "at least one" and the like.

[0072] For example, in the case of using articles such as "a", "an", "the" and the like in translation, the noun after the article can be understood as singular expression, and can also be understood as plural expression.

[0073] In the embodiments of the present disclosure, "a plurality of" means two or more.

[0074] In some embodiments, the terms "at least one of", "one or more", "a plurality of", "multiple" and the like can be replaced with each other.

[0075] In some embodiments, the notation "at least one of A and B", "A and / or B", "A in one case, B in another", "in response to one case A, in response to another case B", etc., may include the following technical solutions depending on the situation: in some embodiments, A (execute A regardless of B); in some embodiments, B (execute B regardless of A); in some embodiments, execution is selected from A and B (A and B are selectively executed); in some embodiments, A and B (both A and B are executed). The same applies when there are more branches such as A, B, C, etc.

[0076] In some embodiments, the notation "A or B" may include the following technical solutions, depending on the situation: in some embodiments, A (execution of A regardless of B); in some embodiments, B (execution of B regardless of A); in some embodiments, execution is selected from A and B (A and B are selectively executed). The same applies when there are more branches such as A, B, C, etc.

[0077] The prefixes such as "first" and "second" in the embodiments of this disclosure are only for distinguishing different descriptive objects and do not constitute restrictions on the position, order, priority, number or content of the descriptive objects. For the description of the descriptive objects, please refer to the description in the claims or the context of the embodiments. The use of prefixes should not constitute unnecessary restrictions.

[0078] For example, if the descriptive object is "field," then the ordinal numbers preceding "field" in "first field" and "second field" do not restrict the position or order of the "fields." "First" and "second" do not restrict whether the "fields" they modify are in the same message, nor do they restrict the order of "first field" and "second field." Similarly, if the descriptive object is "level," then the ordinal numbers preceding "level" in "first level" and "second level" do not restrict the priority between "levels." Furthermore, the number of descriptive objects is not limited by ordinal numbers; there can be one or more. For example, in "first device," the number of "devices" can be one or more. In addition, objects modified by different prefixes can be the same or different. For example, if the descriptive object is "device," then "first device" and "second device" can be the same device or different devices, and their types can be the same or different. Similarly, if the descriptive object is "information," then "first information" and "second information" can be the same information or different information, and their content can be the same or different.

[0079] In some embodiments, “including A,” “containing A,” “for indicating A,” and “carrying A” can be interpreted as directly carrying A or indirectly indicating A.

[0080] In some embodiments, the terms “in response to,” “in response to determining,” “in the event that,” “when,” “if,” “upon,” and the like can be replaced with each other.

[0081] In some embodiments, the terms “greater than,” “greater than or equal to,” “not less than,” “more than,” “more than or equal to,” “not less than,” “higher than,” “higher than or equal to,” “not lower than,” “above,” and the like can be replaced with each other, and the terms “less than,” “less than or equal to,” “not greater than,” “fewer than,” “fewer than or equal to,” “not more than,” “lower than,” “lower than or equal to,” “not higher than,” “below,” and the like can be replaced with each other.

[0082] In some embodiments, an apparatus and the like can be interpreted as an entity, and can also be interpreted as virtual, and the name thereof is not limited to the name described in the embodiments, and the terms “apparatus,” “equipment,” “device,” “circuit,” “network element,” “node,” “function,” “unit,” “section,” “system,” “network,” “chip,” “chip system,” “entity,” “subject,” and the like can be replaced with each other.

[0083] In some embodiments, “network” can be interpreted as an apparatus (for example, an access network device, a core network device, and the like) included in the network.

[0084] In some embodiments, the terms “access network device (AN device),” “radio access network device (RAN device),” “base station (BS),” “radio base station,” “fixed station,” “node,” “access point,” “transmission point (TP),” “reception point (RP),” “transmission / reception point (TRP),” “panel,” “antenna panel,” “antenna array,” “cell,” “macro cell,” “small cell,” “femto cell,” “pico cell,” “sector,” “cell group,” “serving cell,” “carrier,” “component carrier,” “bandwidth part (BWP),” and the like can be used interchangeably.

[0085] In some embodiments, the terms "terminal," "terminal device," "user equipment (UE)," "user terminal," "mobile station (MS)," "mobile terminal (MT)," "subscriber station," "mobile unit," "subscriber unit," "wireless unit," "remote unit," "mobile device," "wireless device," "wireless communication device," "remote device," "mobile subscriber station," "access terminal," "mobile terminal," "wireless terminal," "remote terminal," "handset," "user agent," "mobile client," "client," and so on can be replaced with each other.

[0086] In some embodiments, the access network device, the core network device, or the network device can be replaced with a terminal. For example, the embodiments of the present disclosure can also be applied to a structure in which communication between the access network device, the core network device, or the network device and the terminal is replaced with communication between a plurality of terminals (e.g., device-to-device (D2D), vehicle-to-everything (V2X), etc.). In this case, the terminal can also be configured to have all or part of the functions of the access network device. In addition, the terms "uplink," "downlink," and the like can also be replaced with terms corresponding to the inter-terminal communication (e.g., "side"). For example, the uplink channel, the downlink channel, and the like can be replaced with the side channel, and the uplink, the downlink, and the like can be replaced with the sidelink.

[0087] In some embodiments, the terminal can be replaced with the access network device, the core network device, or the network device. In this case, the access network device, the core network device, or the network device can also be configured to have all or part of the functions of the terminal.

[0088] In some embodiments, the data, information, etc. can be obtained in compliance with the laws and regulations of the country in which the location is situated.

[0089] In some embodiments, the data, information, etc. can be obtained after obtaining the consent of the user.

[0090] In addition, each element, each row, or each column in the table of the embodiments of the present disclosure can be implemented as an independent embodiment, and any combination of any element, any row, or any column can also be implemented as an independent embodiment.

[0091] FIG. 1A is a schematic diagram of an architecture of a communication system according to an embodiment of the present disclosure.

[0092] As shown in FIG. 1, the communication system 100 includes a terminal 101 and a network device 102, where the network device includes at least one of the following: an access network device, a core network device.

[0093] In some embodiments, the terminal 101 includes at least one of the following, but is not limited thereto: a mobile phone, a wearable device, an Internet of Things device, a communication-capable automobile, a smart automobile, a Pad, a computer with wireless transceiver function, a virtual reality (VR) terminal device, an augmented reality (AR) terminal device, a wireless terminal device in industrial control, a wireless terminal device in self-driving, a wireless terminal device in remote medical surgery, a wireless terminal device in smart grid, a wireless terminal device in transportation safety, a wireless terminal device in smart city, a wireless terminal device in smart home, and the like.

[0094] In some embodiments, the access network device is, for example, a node or device that accesses a terminal to a wireless network, and the access network device can include at least one of an evolved NodeB (eNB) in a 5G communication system, a next generation eNB (ng-eNB), a next generation NodeB (gNB), a node B (NB), a home node B (HNB), a home evolved node B (HeNB), a wireless backhaul device, a radio network controller (RNC), a base station controller (BSC), a base transceiver station (BTS), a base band unit (BBU), a mobile switching center, a base station in a 6G communication system, an open base station (Open RAN), a cloud base station (Cloud RAN), a base station in other communication systems, an access node in a Wi-Fi system, but is not limited thereto.

[0095] In some embodiments, the core network device can be one device including one or more network elements, or can be multiple devices or device groups including all or part of the one or more network elements described above. The network element can be virtual or physical. The core network includes, for example, at least one of an evolved packet core (EPC), a 5G core network (5GCN), and a next generation core (NGC).

[0096] In some embodiments, the technical solutions of the present disclosure can be applied to an Open RAN architecture, at which time the interfaces between or within the access network devices involved in the embodiments of the present disclosure can become internal interfaces of the Open RAN, and the processes and information interactions between these internal interfaces can be realized by software or programs.

[0097] In some embodiments, the access network device can be composed of a central unit (CU) and a distributed unit (DU), where the CU can also be referred to as a control unit. The CU-DU structure can split the protocol layers of the access network device, and some of the protocol layers are controlled by the CU, and the remaining part or all of the protocol layers are distributed in the DU and controlled by the CU, but is not limited thereto.

[0098] It can be understood that the communication system described in the embodiments of the present disclosure is for more clearly illustrating the technical solutions of the embodiments of the present disclosure, and does not constitute a limitation on the technical solutions proposed by the embodiments of the present disclosure. Those skilled in the art can know that, with the evolution of system architecture and the appearance of new business scenarios, the technical solutions proposed by the embodiments of the present disclosure are also applicable to similar technical problems.

[0099] The following embodiments of the present disclosure can be applied to the communication system 100 shown in FIG. 1A or part of the subject, but are not limited thereto. The subjects shown in FIG. 1A are exemplary, and the communication system can include all or part of the subjects in FIG. 1A, or other subjects other than FIG. 1A. The number and form of each subject is arbitrary, each subject can be physical or virtual, the connection relationship between each subject is exemplary, each subject can not be connected or can be connected, the connection can be in any way, can be direct connection or indirect connection, can be wired connection or wireless connection.

[0100] Embodiments of the present disclosure can be applied to Long Term Evolution (LTE), LTE-Advanced (LTE-A), LTE-Beyond (LTE-B), SUPER 3G, IMT-Advanced, 4th generation mobile communication system (4G), 5th generation mobile communication system (5G), 5G new radio (NR), Future Radio Access (FRA), New-Radio Access Technology (RAT), New Radio (NR), New radio access (NX), Future generation radio access (FX), Global System for Mobile communications (GSM (registered trademark)), CDMA2000, Ultra Mobile Broadband (UMB), IEEE 802.11 (Wi-Fi (registered trademark)), IEEE 802.16 (WiMAX (registered trademark)), IEEE 802.20, Ultra-WideBand (UWB), Bluetooth (Bluetooth (registered trademark)), Public Land Mobile Network (PLMN) network, Device-to-Device (D2D) system, Machine to Machine (M2M) system, Internet of Things (IoT) system, Vehicle-to-Everything (V2X), system using other communication methods, next-generation system expanded based thereon, and the like. Further, a plurality of systems can be applied in combination (for example, combination of LTE or LTE-A and 5G, and the like).

[0101] FIG. 1B is a schematic diagram illustrating a sub-band according to an embodiment of the present disclosure.

[0102] As shown in FIG. 1B, taking 5 time slots slot#n to slot#n+4 as an example, the time slot structure pattern of the 5 time slots is DFFFU, where D represents that the corresponding time slot is a downlink time slot, F represents that the corresponding time slot is a flexible time slot, and U represents that the corresponding time slot is an uplink time slot.

[0103] The network device can configure an uplink sub-band in the frequency domain resource corresponding to slot#n+1 to slot#n+3. In the case where the 3 flexible time slots of slot#n+1 to slot#n+3 are used for downlink transmission, the network device can perform uplink transmission in the uplink sub-band corresponding to the 3 time slots and can perform downlink transmission in the frequency domain resource (for example, referred to as a downlink sub-band) outside the uplink sub-band corresponding to the 3 time slots, so that full-duplex communication can be realized in the 3 time slots configured with the uplink sub-band.

[0104] In some embodiments, a guard band (GB) can also be provided between the uplink sub-band and the downlink sub-band to realize frequency domain isolation of the uplink sub-band and the downlink sub-band.

[0105] It should be noted that, in the time domain unit configured with the sub-band, although the network device can realize full-duplex communication, the terminal can still only perform half-duplex communication, that is, can only perform uplink communication or downlink communication in a single time domain unit.

[0106] The terminal supporting SBFD can be referred to as an SBFD terminal. When the SBFD terminal is configured with a sub-band on the frequency domain resource corresponding to certain time domain units, there can be a case of cross-link interference (CLI).

[0107] For example, SBFD terminal #1 and SBFD terminal #2 are configured with uplink sub-bands in the frequency domain resource corresponding to certain downlink time slots, and legacy terminal #3 is not configured with an uplink sub-band in the frequency domain resource corresponding to the downlink time slots.

[0108] When the SBFD terminal #1 performs uplink communication in the uplink sub-band corresponding to the downlink time slot and the legacy terminal performs downlink communication in the downlink time slot, there will be CLI between the SBFD terminal #1 and the legacy terminal. When the SBFD terminal #1 performs uplink communication in the uplink sub-band corresponding to the downlink time slot and the SBFD terminal #2 performs downlink communication in the frequency domain resource outside the uplink sub-band corresponding to the downlink time slot, there will be CLI between the SBFD terminal #1 and the SBFD terminal #2. The existence of the CLI will affect the communication quality of the terminal.

[0109] It should be noted that the CLI in the embodiments of the present disclosure can include a layer 1 (LI) UE-to-UE CLI, can also include a layer 2 (L2) UE-to-UE CLI, and can also include other types of CLI.

[0110] FIG. 2 is an interaction schematic diagram of an information generation method according to an embodiment of the present disclosure.

[0111] As shown in FIG. 2, the information generation method can include the following steps:

[0112] In step S201, cross-link interference (CLI) is measured; a first CLI measurement result is obtained.

[0113] For example, the CLI measurement result can also be referred to as a CLI report, or referred to as a CLI measurement value.

[0114] In some embodiments, the first CLI measurement result is carried in at least one of the following: a first part of a channel state information (CSI) report, a second part of the CSI report.

[0115] In step S202, the first CLI measurement result is mapped into uplink control information (UCI) bits.

[0116] In some embodiments, the terminal can send the UCI bits to the network device in a physical uplink shared channel (PUSCH), a physical uplink control channel (PUCCH), or the like.

[0117] In some embodiments, the network device can determine the CLI measurement result of the terminal, for example, the first CLI measurement result, according to the received UCI bits, and perform CLI interference management to reduce the CLI, thereby ensuring good communication quality of the terminal.

[0118] According to embodiments of the present disclosure, the terminal carries the first CLI measurement result through the first part of the CSI report and / or the second part of the CSI report, and the first CLI measurement result is mapped into the UCI bits, on the one hand, facilitating the terminal to subsequently send the UCI bits to the network device through a channel, so that the network device can determine the CLI, and then perform corresponding management operations to reduce the CLI, thereby ensuring good communication quality of the terminal; on the other hand, by sending the CSI report (for example, the first part of the CSI report and / or the second part of the CSI report) to the network device, the first CLI measurement result can be sent to the network device, so that it is not necessary to carry the first CLI measurement result through a separate information, which is conducive to saving communication resource overhead.

[0119] In some embodiments, for a CSI report, if the reporting quantity therein is Reference Signal Receiving Power (RSRP), and the CSI report contains a subband report, the CSI report can contain two parts, and the CSI in this case can be referred to as two part CSI.

[0120] For example, the information field contained in the first part of the CSI report (CSI part 1) can be as shown in Table 1:

[0121] Table 1

[0122] As shown in Table 1, for the first part (CSI part 1) of the CSI report (CSI report #n) numbered n, the information field (CSI field) therein can include, for example, a Resource Indicator (RI) of a Channel State Information Reference Signal (CSI-RS), which can be referred to as CRI for short; a wideband Channel Quality indication (CQI) of a first Transport Block (TB); a subband differential CQI of the first TB, and the like. The related information field can refer to Table 1, which will not be described here. It should be noted that the tables shown in Table 6.3.1.1.2 and the like in Table 1 can refer to the tables defined in the conventional mechanism (for example, 3GPP protocol), which will not be described here.

[0123] For example, the information field contained in the first part of the CSI report (CSI part 2) can be as shown in Table 2:

[0124] Table 2

[0125] As shown in Table 2, for the second part (CSI part 2) of the CSI report #n, the information fields (CSI fields) therein can include, for example, the subband difference CQI of the second TB, etc. The relevant information fields can refer to Table 2, which is not described herein again. It should be noted that the tables shown in Table 1, such as Table 6.3.1.1.2, can refer to the tables defined in the conventional mechanism (for example, the 3GPP protocol), which is not described herein again.

[0126] In some embodiments, the wideband and the subband in the first part of the CSI report, the second part of the CSI report can be the frequency domain range for which the CSI is measured, wherein the frequency domain range of the wideband can contain the frequency domain range of the subband, for example, the wideband can contain a plurality of (for example, 10 or the like) subbands. For example, the wideband can be the frequency domain resource corresponding to the time domain unit in the SBFD scenario, and the subband can be the uplink subband, the downlink subband, the guard band, etc. configured in the frequency domain resource corresponding to the time domain unit in the SBFD scenario.

[0127] In some embodiments, the first CLI test result includes at least one of:

[0128] a wideband CLI measurement result;

[0129] a subband CLI measurement result.

[0130] In some embodiments, the wideband and the subband in the first CLI test result can be the frequency domain range for which the CLI is measured, wherein the frequency domain range of the wideband can contain the frequency domain range of the subband, for example, the wideband can contain a plurality of (for example, 10 or the like) subbands. For example, the wideband can be the frequency domain resource corresponding to the time domain unit in the SBFD scenario, and the subband can be the uplink subband, the downlink subband, the guard band, etc. configured in the frequency domain resource corresponding to the time domain unit in the SBFD scenario.

[0131] The following is exemplarily described through several embodiments, when the first CLI test result contains a wideband CLI measurement result and a subband CLI measurement result, the centralized situation of the CSI report carrying the wideband CLI measurement result and the subband CLI measurement result.

[0132] In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in the first part of the CSI report.

[0133] In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in the second part of the CSI report.

[0134] In some embodiments, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report.

[0135] In some embodiments, the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report.

[0136] In some embodiments, in the case that the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report, or the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report:

[0137] For mapping of different types of CSI (i.e. CSI reporting of different types of CLI measurement results), exemplary, the terminal maps the UCI bits one by one based on the order of first part, then second part;

[0138] For mapping of different CSI reports of the same type: corresponding to the different CSI reports of the first part and the second part, the terminal maps the UCI bits one by one based on the size of the priority index corresponding to the CSI report.

[0139] Regarding the first part, it can be a wideband CSI report carrying CLI measurement results in the CSI report;

[0140] Regarding the second part, it can be a subband CSI report carrying CLI measurement results in the CSI report.

[0141] Regarding the first part and / or the second part, the information field therein can include one or more of the following:

[0142] The number of at least one CLI reference signal;

[0143] The resource index (RI) of at least one CLI reference signal;

[0144] The measurement value corresponding to at least one CLI reference signal;

[0145] The resource index of the CSI-RS and / or SSB;

[0146] The measurement value corresponding to the CSI-RS and / or SSB;

[0147] At least one capability index.

[0148] It should be noted that the above several examples are described in the case that the CSI report includes two parts, and in some embodiments, the CSI report in the embodiments of the present disclosure can include only one part, that is, the CSI report is one part CSI. In this case, the wideband CLI measurement result and the subband CLI measurement result can carry the one part of the CSI report.

[0149] In some embodiments, the mapping of the first CLI measurement result into the UCI bits includes: mapping the CSI report into the UCI bits according to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of the CLI measurement result carried by the CSI report.

[0150] In some embodiments, the technical solutions of the present disclosure are exemplarily described by taking, as an example, the mapping of the CSI report into the UCI bits according to the mapping relationship between the priority index corresponding to the CSI report and the UCI bits.

[0151] For example, in the case that the CSI report carries the CLI measurement result, in order to map the CLI measurement result into the UCI bits, the CSI report can be first mapped into the UCI bits, and then the CLI measurement result included in the CSI report can be further mapped into the UCI bits to which the CSI report is mapped.

[0152] In the embodiment, the CSI report can be mapped into the UCI bits according to the mapping relationship between the CSI report and the UCI bits, for example. The mapping relationship between the CSI report and the UCI bits can be indicated by the network device, or can be predefined (for example, agreed by the protocol), and the present disclosure does not limit this.

[0153] For example, taking the case that the UCI bits include A bits as an example, the A bits are a0 to a A-1 In the case that the CSI report includes the first part and the second part, the A bits can include the UCI bits to which the first part of the CSI report is mapped, or can include the UCI bits to which the second part of the CSI report is mapped, or in the case that the CSI report is one part CSI report, the A bits can be the UCI bits to which the one part of the CSI report is mapped. The CSI report includes n CSI reports, which are CSI report#1 to CSI report#n, and the mapping relationship between the CSI report and the UCI bits can be as shown in Table 3:

[0154] Table 3

[0155] As shown in Table 3, n CSI reports can be mapped into A UCI bits, and one CSI report can be mapped into one or more UCI bits. For example, in n CSI reports, at least one CSI report is used to carry the CLI measurement result, wherein 1, 2,.. n are priority indexes, or size indexes presented in order from small to large based on the priority indexes, e.g., the priority index of CSI report #1 is smaller than the priority index of CSI report 2.

[0156] In some embodiments, in the mapping relationship, the CSI report is corresponding to the UCI bit based on the priority index.

[0157] For example, for each CSI report, the priority index of the CSI report can be determined. For example, the CSI reports can be mapped into the UCI bits in order from high to low according to the priority indexes, or the CSI reports can be mapped into the UCI bits in order from low to high according to the priority indexes, and the specific mapping order is not limited by the present disclosure.

[0158] Taking the example of mapping the CSI reports into the UCI bits in order from high to low according to the priority indexes, the CSI report with a high priority index can correspond to a bit with a relatively high position in the UCI bits, and thus can be mapped onto a UCI bit with a relatively high position, while the CSI report with a high priority index can be mapped onto a UCI bit with a relatively low position.

[0159] For example, the UCI bit with a relatively high position can be transmitted preferentially relative to the UCI bit with a relatively low position.

[0160] In some embodiments, the mapping relationship includes n CSI reports, and the priority index Pri icsi is determined based on the following formula:

[0161] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s · c + s;

[0162] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH);

[0163] y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH;

[0164] y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH);

[0165] y = 3 corresponds to aperiodic CSI report transmitted on physical PUCCH;

[0166] c is a service cell index;

[0167] Ncells is a configurable maximum number of cells, which can be determined based on the value of the high-level parameter maxNrofServingCells;

[0168] s is an index of a CSI report, for example, the index can be determined based on the reportConfigID sent by the network device;

[0169] M s is a configurable maximum number of reporting configurations, for example, M s may be determined based on the value of the high-level parameter maxNrofCSI-ReportConfigurations;

[0170] k corresponds to a CSI carrying corresponding measurement results.

[0171] In some embodiments, k = 0 corresponds to a CSI report carrying layer 1 (L1) reference signal receiving power (RSRP) or layer 1 signal to interference and noise ratio (SINR);

[0172] k = 1 corresponds to a CSI report not carrying layer 1 reference signal receiving power or layer 1 signal to interference and noise ratio;

[0173] k = a first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

[0174] In some embodiments, the CSI report can be obtained by measuring the channel state information reference signal (CSI-RS), the synchronization signal block (SSB).

[0175] In some embodiments, the measurement results obtained by measuring the CSI-RS, SSB, etc. can be represented by L1-RSRP, L1-SINR, and in some embodiments, the CSI report can carry the measurement results such as L1-RSRP, L1-SINR, or can not carry the measurement results such as L1-RSRP, L1-SINR.

[0176] Therefore, when determining the CSI report priority index based on the formula in the foregoing example, whether the CSI report carries the L1-RSRP, L1-SINR, or the like, can be represented by the parameter k therein.

[0177] Further, in the embodiments of the present disclosure, the CSI report can also carry the CLI measurement result, and therefore, when determining the CSI report priority index based on the formula in the foregoing example, whether the CSI report carries the CLI measurement result can also be represented by the parameter k therein.

[0178] The first value can be 0 or 1, or, in order to distinguish the case where the CSI report carries the CLI measurement result from the case where the CSI report carries the L1-RSRP, L1-SINR, or the like, the first value can be a value other than 0 and 1, and the first value is 2, that is, when the CSI report carries the CLI measurement result, k = 2.

[0179] Exemplarily:

[0180] The value of k is determined based on different reporting types.

[0181] In some embodiments, the priority of the CLI report corresponds to the existing beam mechanism, and then one value of k is determined based on the following definition: for the CSI report carrying L1-RSRP or L1-SINR or SRS-RSRP or CLI-RSSI, k = 0, and for the CSI report not carrying L1-RSRP or not carrying L1-SINR or not carrying SRS-RSRP or not carrying CLI-RSSI, k = 1.

[0182] In some embodiments, the priority of the CLI report corresponds to the existing mechanism, and for the CSI report carrying L1-RSRP or L1-SINR, k = 0, and for the CSI report not carrying L1-RSRP or not carrying L1-SINR (including the CSI report carrying SRS-RSRP or CLI-RSSI), k = 1.

[0183] In some embodiments, the priority of the CLI report corresponds to the existing mechanism, and for the CSI report carrying L1-RSRP or L1-SINR or SRS-RSRP, k = 0, and for the CSI report not carrying L1-RSRP or not carrying L1-SINR or not carrying SRS-RSRP (including the CSI report carrying CLI-RSSI), k = 1.

[0184] In some embodiments, the CLI report corresponds to a lower priority than the CSI report, and the value of k is defined based on the following: k = 0 for the CSI report carrying L1-RSRP or L1-SINR, k = 1 for the CSI report not carrying L1-RSRP or not carrying L1-SINR, and k = 2 for the CLI report corresponding to SRS-RSRP or CLI-RSSI.

[0185] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits, and the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits; wherein the first part of the UCI bits is before the second part of the UCI bits, or the second part of the UCI bits is before the first part of the UCI bits.

[0186] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, and the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0187] In some embodiments, the CSI report carrying the subband CLI measurement result is mapped to a first part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, and the CSI report carrying the wideband CLI measurement result is mapped to a second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits.

[0188] In some embodiments, the CSI report is mapped to a first part of the UCI bits or a second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or is mapped to a first part of the UCI bits or a second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0189] The above embodiments mainly exemplarily illustrate the case of mapping the CSI report to the UCI bits according to the mapping relationship between the priority index corresponding to the CSI report and the UCI bits. The following several embodiments exemplarily illustrate the case of mapping the CSI report to the UCI bits according to the type of the CLI measurement result carried by the CSI report.

[0190] It should be noted that, as to the above two mapping manners, the CSI report can be mapped into the UCI bits based on only one of the two mapping manners, or the CSI report can be mapped into the UCI bits in combination of the two mapping manners.

[0191] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped into the first part of the UCI bits, and the CSI report carrying the subband CLI measurement result is mapped into the second part of the UCI bits.

[0192] In some embodiments, the first part of the bits is before the second part of the bits.

[0193] In some embodiments, the second part of the bits is before the first part of the bits.

[0194] It should be noted that, as to whether the first part of the bits is before the second part of the bits, or the second part of the bits is before the first part of the bits, the network device can indicate, or a predefined rule (for example, a protocol agreement) can be specified, and the present disclosure does not limit this.

[0195] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped into the first part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits.

[0196] In some embodiments, the CSI report carrying the subband CLI measurement result is mapped into the first part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0197] It should be noted that, as to whether the CSI report carrying the wideband CLI measurement result is mapped into the first part of the UCI bits, or the CSI report carrying the subband CLI measurement result is mapped into the first part of the UCI bits, the network device can indicate, or a predefined rule (for example, a protocol agreement) can be specified, and the present disclosure does not limit this.

[0198] For example, taking the UCI bits including A bits as an example, the A bits are a0 to a A-1 In the case that the CSI report includes a first part and a second part, the A bits can include the UCI bits mapped by the first part of the CSI report, or the UCI bits mapped by the second part of the CSI report, or in the case that the CSI report is a one-part CSI report, the A bits can be the UCI bits mapped by the one-part CSI report. The mapping relationship between the CSI report and the UCI bits can be as shown in Table 4:

[0199] Table 4

[0200] As shown in Table 4, a CSI report carrying wideband CLI measurement results can be denoted as Wideband CSI report, and a CSI report carrying subband CLI measurement results can be denoted as Subband CSI report.

[0201] For example, for i n Wideband CSI reports and j n Wideband CSI report#i1to Wideband CSI report#i n The UCI bits mapped in the UCI bit sequence (e.g., the first part of bits) can be mapped in Subbandd CSI report#j1to Subband CSI report#j n Before the UCI bits mapped in the UCI bit sequence (e.g., the second part of bits).

[0202] In some embodiments, mapping the CLI measurement results into the UCI bits comprises: mapping the at least one information field into the UCI bits according to the bit width corresponding to each information field in the at least one information field.

[0203] In some embodiments, in the case of determining to map the CSI report into the UCI bits, for the UCI bits mapped by the CSI report, the side CLI measurement results in the CSI report can be mapped into the UCI bits according to the bit width corresponding to each information field in the at least one information.

[0204] In some embodiments, since the CSI report can be obtained by measuring the reference signals such as CSI-RS, SSB, etc., the CSI report can contain at least one of the following information fields:

[0205] Resource index of the CSI-RS and / or SSB;

[0206] Measurement value corresponding to the CSI-RS and / or SSB.

[0207] For example, the measurement value corresponding to the CSI-RS and / or SSB is RSRP, the resource index of the CSI-RS (i.e., the RI of the CSI-RS) can be denoted as CRI, and the resource index of the SSB can be denoted as SSBRI. Therefore, in the case of the CSI report carrying the CLI measurement results, the information fields in the CSI report can include at least one of the following:

[0208] a number of the at least one CLI reference signal;

[0209] a resource indicator (RI) of the at least one CLI reference signal;

[0210] a measurement value corresponding to the at least one CLI reference signal;

[0211] a resource indicator of the CSI-RS and / or SSB;

[0212] a measurement value corresponding to the CSI-RS and / or SSB;

[0213] at least one capability index.

[0214] For example, the measurement value corresponding to the CLI reference signal includes, but is not limited to, RSRP, RSSI, etc.

[0215] For example, the resource indicator of the CLI reference signal can be determined based on the reference signal contained in the set and / or list of the CLI reference signal. For example, the set of the CLI reference signal contains 4 CLI reference signals, and the resource indicators of the 4 CLI reference signals can be from 1 to 4. For example, the CLI reference signal is SRS, and the resource indicators of the SRS, SRS-RI, can include SRS-RI#1, SRS-RI#2, SRS-RI#3, and SRS-RI#4.

[0216] In some embodiments, the mapping of the at least one information field to the UCI bits according to the bit width corresponding to each information field in the at least one information field can be considered for the information field in the CSI.

[0217] For example, taking the determination of the CSI report based on n reference signals and / or the determination of the CLI measurement result based on n CLI reference signals as an example, the number of each information field contained in the CSI report can be n. For example, taking n = 4 as an example, the information field contained in the CSI report can be as shown in Table 5:

[0218] Table 5

[0219] In some embodiments, the measurement value corresponding to the at least one CLI reference signal includes:

[0220] a reference measurement value corresponding to the at least one CLI reference signal;

[0221] a difference between the measurement value (e.g., a measurement value other than the reference measurement value) corresponding to the at least one CLI reference signal and the reference measurement value.

[0222] For example, taking the CLI reference signal including SRS as an example, as shown in Table 5, the resource indexes of the 4 CLI reference signals are SRSRI#1, SRSRI#2, SRSRI#3, and SRSRI#4 respectively. The 4 measurement values SRS-RSRP#1, SRS-RSRP#2, SRS-RSRP#3, and SRS-RSRP#4 correspond to the resource indexes of the 4 CLI reference signals one by one, for example, SRS-RSRP#1 is a measurement value determined based on SRSRI#1, SRS-RSRP#2 is a measurement value determined based on SRSRI#2, SRS-RSRP#3 is a measurement value determined based on SRSRI#3, and SRS-RSRP#4 is a measurement value determined based on SRSRI#4.

[0223] For example, the reference measurement value corresponding to the CLI reference signal can be a specific measurement value, such as the maximum measurement value or the minimum measurement value.

[0224] Taking the maximum measurement value as an example, for example, in the "Reference SRS-RSRP or CLI-RSSI#1" shown in Table 5, SRS-RSRP#1 is the maximum measurement value of the SRS used to determine the RSRP of the CLI, and CLI-RSSI#1 is the maximum measurement value of the reference signal used to determine the RSSI of the CLI.

[0225] In the "Differential SRS-RSRP or CLI-RSSI#2" shown in Table 5, Differential SRS-RSRP#2 is the difference between the measurement value SRS-RSRP#2 of the SRS used to determine the RSRP of the CLI relative to SRS-RSRP#1, and Differential CLI-RSSI#2 is the difference between the measurement value CLI-RSSI#2 of the reference signal used to determine the RSSI of the CLI relative to CLI-RSSI#1.

[0226] The meanings of "Differential SRS-RSRP or CLI-RSSI#3" and "Differential SRS-RSRP or CLI-RSSI#4" are similar and will not be repeated here.

[0227] In some embodiments, the number (Num of SRS or RSSI) of at least one CLI reference signal can be determined based on at least one of the following ways:

[0228] Network device signaling configuration determination; for example, based on CSI report related configuration signaling (e.g. nrofReportedRS) configuration, the CLI measurement result obtained based on each CLI reference signal corresponds to the index of the reported CLI RS in one-to-one correspondence;

[0229] Predefined manner determination; in this case, if the number of CLI reference signals is n, and the actual number of CLI reference signals configured by the network device is less than n, then the information field of the CLI reference signal corresponding to the unconfigured reference signal can be reserved;

[0230] Terminal reporting determination; for example, the terminal reports based on the first N bits of any table of the present disclosure, the number of CLI reference signals can be equal to the related value of N, such as N or 2N, etc. For example, N is determined based on the CLI reference signal configured by the terminal.

[0231] It should be noted that in the case of carrying the CLI measurement result through the CSI report, the information field in the CLI measurement result is also included in the CSI report, so the information field in the CLI measurement result can also be used as the information field in the CSI report.

[0232] As shown in Table 5, under the condition that the number of reported reference signals is based on terminal reporting, the CLI measurement result can include an information field of the number of at least one CLI reference signal, such as "Num of SRS or RSSI" in Table 5, which is used to represent the number of SRS corresponding to the measurement result reported by the terminal, or used to represent the number of reference signals corresponding to the measurement result RSSI reported by the terminal.

[0233] For example, taking the CLI reference signal including SRS as an example, as shown in Table 5, the resource indexes of the 4 CLI reference signals are SRSRI#1, SRSRI#2, SRSRI#3, and SRSRI#4. The 4 measurement values SRS-RSRP#1, SRS-RSRP#2, SRS-RSRP#3, and SRS-RSRP#4 correspond to the 4 CLI reference signals in one-to-one correspondence, for example, SRS-RSRP#1 is a measurement value determined based on SRSRI#1 (e.g. as a reference measurement value in Table 5), SRS-RSRP#2 is a measurement value determined based on SRSRI#2, SRS-RSRP#3 is a measurement value determined based on SRSRI#3, and SRS-RSRP#4 is a measurement value determined based on SRSRI#4.

[0234] Differential SRS-RSRP#2 is the difference of the measurement value SRS-RSRP#2 of the SRS used for determining the CSI report relative to SRS-RSRP#1, Differential SRS-RSRP#3 is the difference of the measurement value SRS-RSRP#3 of the SRS used for determining the CSI report relative to SRS-RSRP#1, Differential SRS-RSRP#4 is the difference of the measurement value SRS-RSRP#4 of the SRS used for determining the CSI report relative to SRS-RSRP#1.

[0235] For example, taking Differential SRS-RSRP#2 as an example, when considering CLI measurement on L (L is greater than or equal to 1) subbands, Differential SRS-RSRP#2 can contain the CLI measurement results of the L subbands, and the CLI measurement results of the L subbands can not contain the reference measurement value.

[0236] For example, when considering CLI measurement on L (L is greater than or equal to 1) subbands, there will be L CSI reports carrying subband CLI measurement results, and the Differential SRS-RSRP or CLI-RSSI#i (i can be any value from 1 to 4, for example) information field in Table 5 can contain L sub-information fields.

[0237] For example, for Differential SRS-RSRP#i, L sub-information fields can be contained, respectively Differential SRS-RSRP for subband#0 to Differential SRS-RSRP for subband#L, for example, Differential SRS-RSRP for subband#i (i belongs to 0 to L) indicates the difference of SRS-RSRP relative to the reference SRS-RSRP obtained by performing CLI measurement on subband#i.

[0238] For example, for Differential CLI-RSSI#i, L sub-information fields can be contained, respectively Differential CLI-RSSI for subband#0 to Differential CLI-RSSI for subband#L, for example, Differential CLI-RSSI for subband#i (i belongs to 0 to L) indicates the difference of CLI-RSSI relative to the reference CLI-RSSI obtained by performing CLI measurement on subband#i.

[0239] Then, when considering the CSI report carrying the subband CLI measurement results, the bit width of each information field in Table 5 can be defined in Table k1, for example, Table k1 is Table 6, and Table 6 can be as follows:

[0240] Table 6

[0241] As shown in Table 6, the bit width corresponding to the resource index of the CLI reference signal can be determined based on the CLI reference signal set and / or the number of CLI reference signals in Table 5 and / or the CLI reference signal list, for example , etc.

[0242] The bit width of the information field such as Reference SRS-RSRP, Differential SRS-RSRP for subband#0 to Differential SRS-RSRP for subband#L, Reference CLI-RSSI, Differential CLI-RSSI for subband#0 to Differential CLI-RSSI for subband#L, etc. can be indicated by the network device, for example, the network device can indicate through RRC signaling, DCI, MAC CE, etc. or be predefined (for example, agreed by the protocol), for example, in Table 6, N = 7, N1 = 7, M = 4, M1 = 4.

[0243] In addition, in some embodiments, the network device can also indicate (for example, indicate through RRC signaling, DCI, MAC CE, etc.) which reference signals the terminal can report the CLI measurement results, for example, the resource index of the CLI reference signal shown in any of the above tables can correspond to the CLI reference signal indicated by the MAC CE.

[0244] For example, when considering the CSI report carrying the subband CLI measurement results, when the subband CLI measurement results correspond to the odd and even indexes of the subbands, the Differential SRS-RSRP or CLI-RSSI#i (i can be any value from 1 to 4, for example) information field in Table 5 can include the measurement results of the CLI measurement of the odd-indexed subbands and the measurement results of the CLI measurement of the even-indexed subbands.

[0245] For example, for Differential SRS-RSRP#i, the measurement results of CLI measurement on odd-indexed subbands include: Differential SRS-RSRP for subband#o 0 to Differential SRS-RSRP for even subband#o n ; the measurement results of CLI measurement on even-indexed subbands include: Differential SRS-RSRP for even subband#e 0 to Differential SRS-RSRP for even subband#e n . For example, Differential SRS-RSRP for subband#o i (i belongs to 0 to n) represents the difference value of SRS-RSRP obtained by CLI measurement on subband#o i , relative to the reference SRS-RSRP, Differential SRS-RSRP for subband#e i (i belongs to 0 to n) represents the difference value of SRS-RSRP obtained by CLI measurement on subband#e i , relative to the reference SRS-RSRP.

[0246] For example, for Differential CLI-RSSI#i, the measurement results of CLI measurement on odd-indexed subbands include: Differential CLI-RSSI for subband#o 0 to Differential CLI-RSSI for even subband#o n ; the measurement results of CLI measurement on even-indexed subbands include: Differential CLI-RSSI for even subband#e 0 to Differential CLI-RSSI for even subband#e n . For example, Differential CLI-RSSI for subband#o i (i belongs to 0 to n) represents the difference value of CLI-RSSI obtained by CLI measurement on subband#o i , relative to the reference CLI-RSSI, Differential CLI-RSSI for subband#e i (i belongs to 0 to n) represents the difference value of CLI-RSSI obtained by CLI measurement on subband#e iCLI-RSSI, the difference of CLI-RSSI with respect to the reference CLI-RSSI.

[0247] Then in the CSI report carrying the subband CLI measurement results, the subband CLI measurement results corresponding to the odd and even indexes of the subbands, the bit width of each information field in Table 5 can be defined in Table k1, for example, Table k1 is Table 7, and Table 7 can be as follows:

[0248] Table 7

[0249] As shown in Table 7, the bit width corresponding to the resource index of the CLI reference signal can be determined based on the CLI reference signal set and / or the number of CLI reference signals in Table 5 and / or the CLI reference signal list, for example , and the like.

[0250] The bit width of the information field such as Reference SRS-RSRP, Differential SRS-RSRP for subband#o0 to Differential SRS-RSRP for even subband#o n , Differential SRS-RSRP for even subband#e0 to Differential SRS-RSRP for even subband#e n , Reference CLI-RSSI, Differential CLI-RSSI for subband#o0 to Differential CLI-RSSI for even subband#o n , Differential CLI-RSSI for even subband#e0 to Differential CLI-RSSI for even subband#e n , and the like can be indicated by the network device, for example, the network device can indicate by RRC signaling, DCI, MAC CE, or the like; or predefined (for example, agreed by the protocol), for example, N=7, N1=7, M=4, M1=4 in Table 6.

[0251] In some embodiments, in Table 5, only the information field corresponding to the reference measurement value of one CLI reference signal, that is, Reference SRS-RSRP or CLI-RSSI#1, is included, and the other differences are calculated with respect to the one reference measurement value.

[0252] In some embodiments, for M reference signals, e.g. M=4 in Table 5, 4 reference measurements can be determined, and for L subbands, LxM measurements can be obtained based on the CLI of each subband measured by each reference signal, and each reference signal corresponds to L subband CLI side measurement results.

[0253] In this case, the information field in Table 5 can be adjusted, e.g. the reference measurement corresponding to M reference signals, i.e. the difference between the CLI side measurement result of L subbands corresponding to each reference signal and the reference measurement result of the corresponding reference signal, and the information field contained in the CSI report can be as shown in Table 8 as follows:

[0254] Table 8

[0255] It should be noted that Table 8 only shows part of the simplified information field, e.g. Differential SRS-RSRP or CLI-RSSI#1, which can include L sub-information fields.

[0256] For example, for Differential SRS-RSRP#i, there are L sub-information fields, respectively Differential SRS-RSRP for subband#0 to Differential SRS-RSRP for subband#L.

[0257] For example, for Differential CLI-RSSI#i, there are L sub-information fields, respectively Differential CLI-RSSI for subband#0 to Differential CLI-RSSI for subband#L.

[0258] For example, for a specific RS and / or at least one subband corresponding to at least one CLI measurement result, the reference CLI quantity is only one. For M RSs corresponding to at least one CLI measurement result, the reference CLI quantity has M. The differential CLI measurement result is the difference between the maximum CLI measurement result and the reported CLI measurement result. The subband CLI measurement result can be a wideband CLI measured based on a specific RS, or a subband CLI measured based on a specific RS and a specific subband (if configured), which will not be described here.

[0259] The bit width of each information field in Table 8 can be defined in Table k1, e.g. Table k1 is Table 6, and Table 6 can refer to the previous embodiments, which will not be described here.

[0260] In the above embodiments, for example, in the embodiment shown in Table 5, when considering the information field in the CLI measurement result, it is considered together for different CLI reference signals, and the bit width of different CLI reference signals is defined together, for example, SRS-RSRP and CLI-RSSI in Table 5.

[0261] In some embodiments, different CLI reference signals can be considered separately, and the bit width of different CLI reference signals can be defined separately.

[0262] For example, taking the determination of the CLI measurement result based on n CLI reference signals SRS-RSRP as an example, the number of each information field contained in the CSI report can be n. For example, taking n = 4 as an example, the information field contained in the CLI measurement result can be as shown in Table 9:

[0263] Table 9

[0264] As shown in Table 9, only the relevant information field containing SRS-RSRP.

[0265] It should be noted that in the case of carrying the CLI measurement result through the CSI report, the information field in the CLI measurement result is also contained in the CSI report, and therefore the information field in the CLI measurement result can also be used as the information field in the CSI report.

[0266] As shown in Table 9, under the condition that the number of reported reference signals is based on the terminal report, the CLI measurement result can contain an information field of the number of at least one CLI reference signal, for example, “Num of SRS” in Table 9, for representing the number of SRS corresponding to the measurement result reported by the terminal.

[0267] For example, taking the CLI reference signal including SRS as an example, as shown in Table 9, the resource indexes of the four CLI reference signals are SRSRI#1, SRSRI#2, SRSRI#3, and SRSRI#4 respectively. The four measurement values SRS-RSRP#1, SRS-RSRP#2, SRS-RSRP#3, and SRS-RSRP#4 correspond to the resource indexes of the four CLI reference signals one by one, for example, SRS-RSRP#1 is a measurement value determined based on SRSRI#1 (for example, as a reference measurement value in Table 9), SRS-RSRP#2 is a measurement value determined based on SRSRI#2, SRS-RSRP#3 is a measurement value determined based on SRSRI#3, and SRS-RSRP#4 is a measurement value determined based on SRSRI#4.

[0268] Differential SRS-RSRP#2 is the difference of the measured value SRS-RSRP#2 relative to SRS-RSRP#1, Differential SRS-RSRP#3 is the difference of the measured value SRS-RSRP#3 relative to SRS-RSRP#1, Differential SRS-RSRP#4 is the difference of the measured value SRS-RSRP#4 relative to SRS-RSRP#1.

[0269] In some embodiments, the bit width of each information field in Table 9 can be defined in Table k2.

[0270] For example, when considering CLI measurement on L (L is greater than or equal to 1) subbands, there will be L CSI reports carrying subband CLI measurement results, and the Differential SRS-RSRP or CLI-RSSI#i (i can be any value from 1 to 4, for example) information field in Table 9 can contain L sub-information fields.

[0271] For example, for Differential SRS-RSRP#i, it can contain L sub-information fields, namely Differential SRS-RSRP for subband#0 to Differential SRS-RSRP for subband#L.

[0272] In this case, Table k2 is Table 10, which can be as follows:

[0273] Table 10

[0274] As shown in Table 10, the bit width corresponding to the resource index of the CLI reference signal can be determined based on the CLI reference signal set and / or the number of CLI reference signals in Table 9 and / or the CLI reference signal list, for example etc.

[0275] The bit width of the information fields such as reference SRS-RSRP, Differential SRS-RSRP for subband#0 to Differential SRS-RSRP for subband#L, etc. can be indicated by the network device, for example, the network device can indicate it through RRC signaling, DCI, MAC CE, etc. or be predefined (for example, agreed by the protocol), for example, N=7 and M=4 in Table 10.

[0276] For example, in considering a CSI report carrying subband CLI measurement results, the subband CLI measurement results correspond to odd and even indexes of subbands, the Differential SRS-RSRP#i (i can be any value from 1 to 4, for example) information field in Table 5 can include measurement results of CLI measurement on odd-indexed subbands and measurement results of CLI measurement on even-indexed subbands.

[0277] For example, for Differential SRS-RSRP#i, the measurement results of CLI measurement on odd-indexed subbands include: Differential SRS-RSRP for subband#o0 to Differential SRS-RSRP for even subband#o n ; and the measurement results of CLI measurement on even-indexed subbands include: Differential SRS-RSRP for even subband#e0 to Differential SRS-RSRP for even subband#e n .

[0278] In this case, table k2 is Table 11, which can be as follows:

[0279] Table 11

[0280] As shown in Table 11, the bit width corresponding to the resource index of the CLI reference signal can be determined based on the CLI reference signal set and / or the number of CLI reference signals in Table 9 and / or the CLI reference signal list, for example , etc.

[0281] The bit width of the information field of the reference SRS-RSRP, Differential SRS-RSRP for subband#o0 to Differential SRS-RSRP for even subband#o n , Differential SRS-RSRP for even subband#e0 to Differential SRS-RSRP for even subband#e n , etc. can be indicated by the network device, for example, the network device can indicate it through RRC signaling, DCI, MAC CE, etc.; or predefined (for example, agreed by the protocol), for example, N=7 and M=4 in Table 11.

[0282] In some embodiments, for M reference signals, e.g., M = 4 in Table 9, 4 reference measurement values can be determined, and for L subbands, L x M measurement values can be obtained based on the measurement of the CLI of each subband by each reference signal, and the CLI side measurement result of L subbands corresponding to each reference signal.

[0283] In this case, the information field in Table 9 can be adjusted, e.g., the reference measurement value corresponding to the M reference signals, i.e., the difference between the CLI side measurement result of L subbands corresponding to each reference signal and the reference measurement result of the corresponding reference signal, and the information field contained in the CSI report can be as shown in Table 12:

[0284] Table 12

[0285] It should be noted that Table 12 only illustrates part of the simplified information field, e.g., Differential SRS-RSRP or CLI-RSSI#1, which can specifically include L sub-information fields.

[0286] For example, for Differential SRS-RSRP#i, the L sub-information fields are Differential SRS-RSRP for subband#0 to Differential SRS-RSRP for subband#L, respectively.

[0287] For example, for Differential CLI-RSSI#i, the L sub-information fields are Differential CLI-RSSI for subband#0 to Differential CLI-RSSI for subband#L, respectively.

[0288] The bit width of each information field in Table 12 can be defined in Table k2, e.g., Table k2 is Table 10 or Table 11, and Table 10 and Table 11 can refer to the foregoing embodiments, which will not be described herein.

[0289] The communication method related to the embodiments of the present disclosure can include at least one of step S201 to step S202. For example, step S201 can be implemented as an independent embodiment, step S202 can be implemented as an independent embodiment, and step S201+S202 can be implemented as an independent embodiment, but is not limited thereto.

[0290] In some embodiments, steps S201 and S202 can be exchanged in order or executed simultaneously.

[0291] In some embodiments, step S201 is optional, and one or more of the steps can be omitted or replaced in different embodiments.

[0292] In some embodiments, step S202 is optional, and one or more of the steps can be omitted or replaced in different embodiments.

[0293] In some embodiments, other optional implementations described before or after the description of Figure 2 can be referred to.

[0294] In a first aspect, embodiments of the present disclosure provide an information generation method. Figure 3 is a schematic flowchart of an information generation method according to an embodiment of the present disclosure. The information generation method shown in the present embodiment can be executed by a terminal.

[0295] As shown in Figure 3, the information generation method can include the following steps:

[0296] In step S301, cross-link interference CLI is measured; a first CLI measurement result is obtained, which is carried in at least one of the following: a first part of a channel state information CSI report, a second part of the CSI report.

[0297] In step S302, the first CLI measurement result is mapped into uplink control information UCI bits.

[0298] It should be noted that the embodiment shown in Figure 3 can be implemented independently, or can be implemented in combination with at least one other embodiment of the present disclosure. The specific implementation can be selected as needed, and the present disclosure does not limit it.

[0299] In some embodiments, the first CLI test result includes at least one of the following: a wideband CLI measurement result; a sub-band CLI measurement result.

[0300] In some embodiments, the mapping of the first CLI measurement result into the UCI bits includes: according to the mapping relationship between the priority index corresponding to the CSI report and the UCI bits, and / or the type of the CLI measurement result carried by the CSI report, the CSI report is mapped into the UCI bits.

[0301] In some embodiments, the priority index is determined based on at least one of the following: the type of the CSI report; the serving cell index; the configurable maximum number of cells; the index of the CSI report; the configurable maximum number of reporting configurations; the CSI carrying the corresponding measurement result.

[0302] In some embodiments, the mapping relationship contains n CSI, and the i-th CSI report in the n CSI reports has a priority index Pri icsi is determined based on the following formula:

[0303] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s · c + s

[0304] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y = 3 corresponds to an aperiodic CSI report transmitted on a physical PUCCH; c is a serving cell index; N cells is a configurable maximum number of cells; s is an index of a CSI report; M s is a configurable maximum number of reporting configurations; and k corresponds to a CSI carrying corresponding measurement results.

[0305] In some embodiments, k = a first value, and the CSI report corresponding to the first value carries CLI measurement results, wherein the first value is 0 or 1 or another value.

[0306] In some embodiments, a CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits, and a CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits; wherein the first part of bits is before the second part of bits, or the second part of bits is before the first part of bits.

[0307] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits; or, the CSI report carrying the subband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, the CSI report carrying the wideband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits; or, the CSI report is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0308] In some embodiments, the first CLI measurement result comprises at least one of the following information fields: a number of at least one CLI reference signal; a resource index of at least one CLI reference signal; a measurement value corresponding to at least one CLI reference signal; at least one capability index.

[0309] In some embodiments, the measurement value corresponding to the at least one CLI reference signal comprises: a reference measurement value corresponding to the at least one CLI reference signal; a difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

[0310] In some embodiments, the type of the CLI reference signal comprises at least one of the following: a sounding reference signal used to determine a reference signal received power; a reference signal used to determine a received signal strength indication of the CLI.

[0311] In some embodiments, the mapping of the first CLI measurement result into the UCI bits comprises: mapping the at least one information field into the UCI bits according to a bit width corresponding to each information field in the at least one information field.

[0312] In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in a first part of the CSI report; or, the wideband CLI measurement result and the subband CLI measurement result are carried in a second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report.

[0313] The optional implementation of the first aspect and the optional implementation of the optional embodiment of the first aspect can refer to the optional implementation in the embodiment shown in FIG. 3 and other associated parts in the embodiment related to FIG. 3, which will not be described here again.

[0314] In a second aspect, the embodiments of the present disclosure provide an information receiving method. FIG. 4 is a schematic flowchart of an information receiving method according to an embodiment of the present disclosure. The information receiving method shown in the present embodiment can be executed by a network device.

[0315] As shown in FIG. 4, the information receiving method can include the following steps:

[0316] In step S401, uplink control information (UCI) bits sent by a terminal are received, wherein a first cross-link interference (CLI) measurement result obtained by the terminal by measuring the CLI is mapped in the UCI bits, and the first CLI measurement result is carried in at least one of the following: a first part of a channel state information (CSI) report, a second part of the CSI report.

[0317] It should be noted that the embodiment shown in FIG. 4 can be independently implemented, or can be implemented in combination with at least one other embodiment of the present disclosure. The specific implementation can be selected as needed, and the present disclosure does not limit it.

[0318] In some embodiments, the first CLI measurement result includes at least one of the following: a wideband CLI measurement result; a subband CLI measurement result.

[0319] In some embodiments, the mapping of the first CLI measurement result into the UCI bits includes: mapping the CSI report into the UCI bits according to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of the CLI measurement result carried by the CSI report.

[0320] In some embodiments, the priority index is determined based on at least one of the following: a type of the CSI report; a serving cell index; a configurable maximum number of cells; an index of the CSI report; a configurable maximum number of reporting configurations; and a CSI carrying a corresponding measurement result.

[0321] In some embodiments, the mapping relationship contains n CSI, the i-th CSI report in the n CSI reports has a priority index Pri icsi is determined based on the following formula:

[0322] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s · c + s;

[0323] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y = 3 corresponds to an aperiodic CSI report transmitted on a physical PUCCH; c is a serving cell index; N cells is a configurable maximum number of cells; s is an index of a CSI report; M s is a configurable maximum number of reporting configurations; and k corresponds to a CSI carrying corresponding measurement results.

[0324] In some embodiments, k = a first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

[0325] In some embodiments, a CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits, and a CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits; wherein the first part of bits is before the second part of bits, or the second part of bits is before the first part of bits.

[0326] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits; or, the CSI report carrying the subband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, the CSI report carrying the wideband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits; or, the CSI report is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0327] In some embodiments, the first CLI measurement result comprises at least one information field including at least one of: a number of at least one CLI reference signal; a resource index of at least one CLI reference signal; a measurement value corresponding to at least one CLI reference signal; at least one capability index.

[0328] In some embodiments, the measurement value corresponding to the at least one CLI reference signal comprises at least one of: a reference measurement value corresponding to the at least one CLI reference signal; a difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

[0329] In some embodiments, the type of the CLI reference signal comprises at least one of: a sounding reference signal used to determine a reference signal received power; a reference signal used to determine a received signal strength indication of the CLI.

[0330] In some embodiments, the at least one information field is mapped to the UCI bits based on a bit width corresponding to each information field in the at least one information field.

[0331] In some embodiments of the second aspect. In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in a first part of the CSI report; or, the wideband CLI measurement result and the subband CLI measurement result are carried in a second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report.

[0332] The optional implementation of the second aspect and the optional embodiments of the second aspect can refer to the optional implementation of the embodiments shown in FIG. 2 and other associated parts of the embodiments related to FIG. 2, which will not be described herein again.

[0333] The technical solutions of the present disclosure will be described below by way of several embodiments.

[0334] Embodiment 1:

[0335] The embodiments of the present disclosure mainly consider the mapping order between the corresponding reported CLI quantity and UCI bits in the scenario that the terminal reports the CSI report #n corresponding to the wideband CLI and the CSI report #m corresponding to the subband CLI based on the same part CSI, e.g., one part CSI, part 1 CSI, part 2 CSI. Exemplarily, the CSI can be CRI / RSRP, SSBRI / RSRP, CRI / SINR, SSBRI / SINR, or other CSI, which is not limited by the present disclosure.

[0336] UCI mapping between CLI reports:

[0337] As described above, if the corresponding CLI quantity is carried based on the CSI framework, the corresponding CLI report can be the CSI report carrying the CLI quantity or the existing CSI quantity. For the sake of simplifying the description, the present disclosure will define the CSI report carrying the CLI quantity or the existing CSI quantity. For at least one CSI report, the mapping order between the CSI report and the UCI bits is determined based on at least one of the following:

[0338] The priority index size corresponding to the CLI report is one-to-one corresponding to the UCI;

[0339] The mapping order of UCI bits is based on the one-to-one correspondence between the reporting type (e.g., wideband, subband) and the corresponding priority index size of the CLI report.

[0340] The priority index corresponding to the CLI report:

[0341] If the mapping order of UCI bits is based on the one-to-one correspondence between the reporting type (e.g., wideband, subband) and the corresponding priority index size of the CLI report, one example scenario can be determined based on Table 3.

[0342] Exemplarily, the corresponding index of the CSI report is determined based on the priority index formula, which can be referred to in the foregoing embodiments and will not be described here.

[0343] The CSI report can carry existing CSI quantity or CLI quantity, which is not limited by the present application.

[0344] Under the condition that the CSI report carries CLI quantity, the reporting content in the specific CSI report is based on the following definition.

[0345] The reporting type (e.g., wideband, subband) and the priority index corresponding to the CLI report:

[0346] If the mapping order of UCI bits is based on the one-to-one correspondence between the reporting type (e.g., wideband, subband) and the corresponding priority index size of the CLI report, one example scenario can be defined based on Table 4.

[0347] Exemplarily, the corresponding priority index of the CSI report is determined based on the above priority index formula, which will not be described here.

[0348] The CSI report can carry existing CSI quantity or CLI quantity, which is not limited by the present application.

[0349] Under the condition that the CSI report carries CLI quantity, the reporting content in the specific CSI report is based on the following definition.

[0350] The CLI field contained in the specific CLI report:

[0351] For the CSI report carrying CLI quantity, the corresponding field contained therein includes one or more of the following:

[0352] at least one CLI RS corresponds to an index;

[0353] a reference CLI quantity;

[0354] a differential CLI quantity.

[0355] Exemplarily, the CLI RS can be an SRS-RSRP resource, a CLI-RSSI resource, or other resources, which are not limited in the present application.

[0356] Exemplarily, the CLI quantity can be SRS-RSRP, CLI-RSSI, or other CLI quantities, which are not limited in the present application.

[0357] Example 1

[0358] Taking the CLI RS as an SRS-RSRP resource or a CLI-RSSI resource, and taking the CLI quantity as SRS-RSRP or CLI-RSSI as an example, one possible mapping table is shown in Table 5.

[0359] Reporting the CLI-RS quantity: the reported CLI RS quantity M is determined based on one or more of the following:

[0360] Signaling configuration determination: exemplarily, based on the CSI report related configuration signaling, e.g., nrofReportedRS, the corresponding CLI quantity is one-to-one corresponding to the reported CLI RS index.

[0361] Predefined manner determination: exemplarily, the corresponding reported CLI RS is 4, and if the actual configured RS quantity is less than 4, the corresponding CLI RS field is reserved.

[0362] Terminal reporting determination: if the corresponding reported CLI RS quantity is determined based on terminal reporting, in one possible implementation, the terminal reports based on the first N bits of Table 5, exemplarily, N is determined based on the CLI RS configured by the terminal.

[0363] Reference CLI quantity: the maximum value of the CLI quantity corresponding to the at least one subband (if configured) or wideband corresponding to the at least one RS pair; exemplary, for the at least one RS and / or the at least one subband corresponding to the at least one CLI quantity, the reference CLI quantity is only one. The corresponding differential CLI quantity is the difference between the maximum CLI quantity and the reported CLI quantity. The subband CLI quantity can be a wideband CLI measured based on a specific RS, or a subband CLI measured based on a specific subband (if configured) of a specific RS, which will not be described here.

[0364] Differential CLI quantities among CLI RSs: corresponding to different differential CLI quantities and corresponding to the CLI RS based on the reporting order of the CLI RS one-to-one, or based on the index of the CLI RS one-to-one. Exemplary, the mapping relationship can be as shown in Table 6 above.

[0365] The number of bits occupied by the index corresponding to the CLI RS: exemplary, the number of bits occupied by the index corresponding to the CLI RS is determined based on at least one of the following methods:

[0366] The number of RSs contained in the CLI RS set and / or list is determined, e.g., the number of RSs in Table 6 above or

[0367] The number of RSs indicated by signaling, exemplary, the reportable RS is indicated based on MAC CE signaling, the index corresponding to the CLI RS is one-to-one corresponding to the RS indicated by the MAC CE, e.g., or The number of RSs indicated by the MAC CE;

[0368] Predefined manner, exemplary, the number of bits occupied is 6;

[0369] Differential CLI quantities among subbands: As mentioned before, for a certain subband, the corresponding differential CLI quantity is equal to the difference between the reference quantity and the differential quantity. If the corresponding reference CLI quantity corresponds to the CLI quantity of subband #n, the terminal does not need to report the corresponding differential CLI quantity. The mapping order of differential CLI quantities of different subbands and UCI is determined based on at least one of the following rules:

[0370] The mapping order is based on the size order of the indexes corresponding to the subbands, e.g., from small to large or from large to small. For example, based on the order from small to large, the corresponding exemplary description is shown in Table 4.

[0371] The mapping order is based on the size order of the indexes corresponding to the subbands, e.g., from small to large or from large to small. For example, based on the order from small to large, the corresponding exemplary description is shown in Table 4.

[0372] The number of bits occupied by the CLI quantity or the differential CLI quantity: For example, the number of bits is determined based on a predefined or signaling indication. For example, based on the predefined manner, N = 7, N1 = 7, M = 4 or M1 = 4.

[0373] Example 2:

[0374] For example, the CLI RS is SRS-RSRP resource or CLI-RSSI resource, the reported CLI quantity is SRS-RSRP, or CLI-RSSI. One possible mapping table is shown in Table 8.

[0375] Reference CLI quantity: the maximum value of the CLI quantity corresponding to the at least one subband (if configured) or wideband corresponding to the specific RS pair; exemplary, for the at least one CLI quantity corresponding to the specific RS and / or at least one subband, the reference CLI quantity is only one. For the at least one CLI quantity corresponding to M RSs, the reference CLI quantity has M. The differential CLI quantity is the difference between the maximum CLI quantity and the reported CLI quantity. The subband CLI quantity can be a wideband CLI measured based on a specific RS, or a subband CLI based on a specific subband (if configured) of a specific RS, which will not be described here.

[0376] Example 3:

[0377] Another possible implementation, the reported SRS-RSRP and CLI-RSSI corresponding to the CLI quantity are based on different tables respectively. Taking the SRS-RSRP and example 1 scheme as an example, an exemplary table is shown in Table 9.

[0378] The corresponding scheme of RSSI is similar to SRS-RSRP, which will not be described here. For specific implementation, please refer to example 1, which will not be described here.

[0379] Taking the SRS-RSRP and example 2 scheme as an example, an exemplary table is shown in Table 12.

[0380] The corresponding scheme of RSSI is similar to SRS-RSRP, which will not be described here. For specific implementation, please refer to example 1, which will not be described here.

[0381] Example 2:

[0382] The embodiment of the present application mainly considers the mapping order between the reported CLI quantity and the UCI bits in the case that the terminal reports the CSI report#n corresponding to the wideband CLI and the CSI report#m corresponding to the subband CLI based on different part CSI, e.g., part 1 CSI and part 2 CSI. For example, the terminal can report the CLI corresponding to the wideband based on part 1 CSI and report the CLI corresponding to the subband based on part 2 CSI. For example, the terminal can report the CLI corresponding to the subband based on part 1 CSI and report the CLI corresponding to the wideband based on part 2 CSI. For example, the CSI can be CRI / RSRP, SSBRI / RSRP, CRI / SINR, SSBRI / SINR, or other CSI, and the present application does not limit this.

[0383] In the following, the embodiment of the present application takes the case that the terminal reports the CLI corresponding to the wideband based on part 1 CSI and reports the CLI corresponding to the subband based on part 2 CSI as an example to describe the specific application scheme.

[0384] The specific mapping rule includes:

[0385] Mapping of different types of CSI: for example, the terminal one-to-one corresponds to the UCI based on the order of part 1 CSI and then part 2 CSI.

[0386] Mapping of different CSI reports of the same type: corresponding to different reports of part 1 or part 2 CSI, the terminal one-to-one corresponds based on the size of the priority index of the report.

[0387] Specific CSI report in part 1 CSI: for the wideband CSI report carrying the CLI quantity, the corresponding field contained therein includes one or more of the following:

[0388] At least one CLI RS corresponding index;

[0389] At least one CLI RS corresponding CLI quantity;

[0390] At least one capability index;

[0391] Reported CLI RS quantity;

[0392] Part 2 CSI within specific CSI report: for subband CSI report carrying CLI quantity, the corresponding implementation is similar to embodiment 1, which is not described here.

[0393] In some embodiments, the name of information and the like is not limited to the name described in the embodiments, and the terms of "information", "message", "signal", "signaling", "report", "configuration", "indication", "instruction", "command", "channel", "parameter", "domain", "field", "symbol", "symbol", "codebook", "codeword", "code point", "bit", "data", "program", "chip", and the like can be replaced with each other.

[0394] In some embodiments, the terms of "downlink control information (DCI)", "downlink (DL) assignment", "DL DCI", "uplink (UL) grant", "UL DCI", and the like can be replaced with each other.

[0395] In some embodiments, the terms of "physical downlink shared channel (PDSCH)", "DL data", and the like can be replaced with each other, and the terms of "physical uplink shared channel (PUSCH)", "UL data", and the like can be replaced with each other.

[0396] In some embodiments, the terms of "synchronization signal (SS)", "synchronization signal block (SSB)", "reference signal (RS)", "pilot", "pilot signal", and the like can be replaced with each other.

[0397] In some embodiments, the terms "moment", "time point", "time", "time position" and the like can be replaced with each other, and the terms "duration", "time period", "time window", "window", "time" and the like can be replaced with each other.

[0398] In some embodiments, the terms "acquire", "obtain", "get", "receive", "transmit", "bidirectional transmission", "send and / or receive" and the like can be replaced with each other, which can be interpreted as receiving from other subjects, acquiring from protocols, acquiring from higher layers, obtaining by self-processing, autonomously implementing and the like.

[0399] In some embodiments, the terms "send", "transmit", "report", "issue", "transmit", "bidirectional transmission", "send and / or receive" and the like can be replaced with each other.

[0400] Corresponding to the foregoing embodiments of the information generation method and the information receiving method, the disclosure also provides embodiments of an information generation device and an information receiving device.

[0401] FIG. 5 is a schematic block diagram of an information generation device according to an embodiment of the disclosure. For example, the information generation device can be arranged in a terminal. As shown in FIG. 5, the information generation device includes a receiving module 501 and a processing module 502.

[0402] In some embodiments, the receiving module is configured to measure cross-link interference (CLI); obtain a first CLI measurement result, the first CLI measurement result being carried in at least one of: a first part of a channel state information (CSI) report, a second part of the CSI report; and the processing module is configured to map the first CLI measurement result into uplink control information (UCI) bits.

[0403] In some embodiments, the first CLI test result includes at least one of: a wideband CLI measurement result; a sub-band CLI measurement result.

[0404] In some embodiments, the mapping of the first CLI measurement result into the UCI bits includes:

[0405] According to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of the CLI measurement result carried by the CSI report, the CSI report is mapped into the UCI bits.

[0406] In some embodiments, the priority index is determined based on at least one of: a type of the CSI report; a serving cell index; a configurable maximum number of cells; an index of the CSI report; a configurable maximum number of reporting configurations; and a CSI carrying a corresponding measurement result.

[0407] In some embodiments, the mapping relationship contains n CSI, the i-th CSI report in the n CSI reports has a priority index Pri icsi is determined based on the following formula:

[0408] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s · c + s

[0409] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y = 3 corresponds to an aperiodic CSI report transmitted on a physical PUCCH; c is a serving cell index; N cells is a configurable maximum number of cells; s is an index of a CSI report; M s is a configurable maximum number of reporting configurations; k corresponds to a CSI carrying corresponding measurement results.

[0410] In some embodiments, k = a first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

[0411] In some embodiments, a CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits, and a CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits; wherein the first part of bits is before the second part of bits, or the second part of bits is before the first part of bits.

[0412] In some embodiments, the CSI report carrying the wideband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, the CSI report carrying the subband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits; or, the CSI report carrying the subband CLI measurement result is mapped to a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits, the CSI report carrying the wideband CLI measurement result is mapped to a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits; or, the CSI report is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or is mapped to the first part of the UCI bits or the second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

[0413] In some embodiments, the first CLI measurement result comprises at least one of the following information fields: a number of at least one CLI reference signal; a resource index of at least one CLI reference signal; a measurement value corresponding to at least one CLI reference signal; at least one capability index.

[0414] In some embodiments, the measurement value corresponding to the at least one CLI reference signal comprises: a reference measurement value corresponding to the at least one CLI reference signal; a difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

[0415] In some embodiments, the type of the CLI reference signal comprises at least one of the following: a sounding reference signal used to determine a reference signal received power; a reference signal used to determine a received signal strength indication of the CLI.

[0416] In some embodiments, the processing module is configured to map the at least one information field to the UCI bits according to a bit width corresponding to each information field in the at least one information field.

[0417] In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in a first part of a CSI report; or, the wideband CLI measurement result and the subband CLI measurement result are carried in a second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report.

[0418] FIG. 6 is a schematic block diagram illustrating an information receiving apparatus according to an embodiment of the present disclosure. For example, the information receiving apparatus can be arranged in a network device. As shown in FIG. 6, the information receiving apparatus includes a receiving module 601 and a processing module 602.

[0419] In some embodiments, the receiving module is configured to receive uplink control information (UCI) bits sent by a terminal, wherein a first cross-link interference (CLI) measurement result obtained by the terminal by measuring the CLI is mapped in the UCI bits, and the first CLI measurement result is carried in at least one of the following: a first part of a channel state information (CSI) report, a second part of the CSI report.

[0420] In some embodiments, the first CLI measurement result includes at least one of the following: a wideband CLI measurement result; a subband CLI measurement result.

[0421] In some embodiments, the mapping of the first CLI measurement result into the UCI bits includes mapping the CSI report into the UCI bits according to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of the CLI measurement result carried by the CSI report.

[0422] In some embodiments, the priority index is determined based on at least one of the following: a type of the CSI report; a serving cell index; a configurable maximum number of cells; an index of the CSI report; a configurable maximum number of reporting configurations; and a CSI carrying a corresponding measurement result.

[0423] In some embodiments, the mapping relationship includes n CSIs, and a priority index Pri of an i-th CSI report in the n CSI reports is determined based on the following formula: icsi is determined based on the following formula:

[0424] Pri icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + Ms • c + s;

[0425] wherein y = 0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y = 1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y = 2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y = 3 corresponds to an aperiodic CSI report transmitted on a PUCCH; c is a serving cell index; N cells is a configurable maximum number of serving cells; s is an index of a CSI report; M s is a configurable maximum number of reporting configurations; k corresponds to a CSI carrying corresponding measurement results.

[0426] In some embodiments, k = a first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

[0427] In some embodiments, a CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits, and a CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits; wherein the first part of bits is before the second part of bits, or the second part of bits is before the first part of bits.

[0428] In some embodiments, the CSI report carrying wideband CLI measurement results is mapped to a first part of bits in the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying wideband CLI measurement results and the UCI bits, and the CSI report carrying subband CLI measurement results is mapped to a second part of bits in the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying subband CLI measurement results and the UCI bits; or, the CSI report carrying subband CLI measurement results is mapped to a first part of bits in the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying subband CLI measurement results and the UCI bits, and the CSI report carrying wideband CLI measurement results is mapped to a second part of bits in the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying wideband CLI measurement results and the UCI bits; or, the CSI report is mapped to a first part of bits or a second part of bits in the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying wideband CLI measurement results and the UCI bits, or based on a mapping relationship between an index priority corresponding to the CSI report carrying subband CLI measurement results and the UCI bits.

[0429] In some embodiments, the first CLI measurement result comprises at least one information field of: a number of at least one CLI reference signal; a resource index of at least one CLI reference signal; a measurement value corresponding to at least one CLI reference signal; at least one capability index.

[0430] In some embodiments, the measurement value corresponding to the at least one CLI reference signal comprises: a reference measurement value corresponding to the at least one CLI reference signal; a difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

[0431] In some embodiments, the type of the CLI reference signal comprises at least one of: a sounding reference signal used for determining a reference signal received power; a reference signal used for determining a received signal strength indication of the CLI.

[0432] In some embodiments, each information field in the at least one information field is mapped into the UCI bits based on a bit width corresponding to the information field.

[0433] In some embodiments, the wideband CLI measurement result and the subband CLI measurement result are carried in a first part of the CSI report; or, the wideband CLI measurement result and the subband CLI measurement result are carried in a second part of the CSI report; or, the wideband CLI measurement result is carried in the first part of the CSI report, and the subband CLI measurement result is carried in the second part of the CSI report; or, the wideband CLI measurement result is carried in the second part of the CSI report, and the subband CLI measurement result is carried in the first part of the CSI report.

[0434] In some embodiments, the processing module is configured to determine the CSI report corresponding to the UCI bits according to a mapping relationship between the CSI report and the UCI bits, and / or determine the information field corresponding to the UCI bits according to a bit width corresponding to each information field in the at least one information field.

[0435] For the device embodiments, since they basically correspond to the method embodiments, the relevant parts are described in the part of the method embodiments. The device embodiments described above are merely illustrative, wherein the modules described as separate components can or can not be physically separated, and the components displayed as modules can or can not be physical modules, i.e., they can be located in one place or distributed on multiple network modules. Some or all of the modules can be selected to achieve the purposes of the embodiments according to actual needs. Those skilled in the art can understand and implement without creative labor.

[0436] The embodiments of the present disclosure further provide a device for implementing any of the above methods, for example, a device comprising units or modules for implementing the steps performed by the terminal in any of the above methods. For another example, another device is provided, comprising units or modules for implementing the steps performed by the network equipment (such as an access network device, a core network function node, a core network device, etc.) in any of the above methods.

[0437] It should be understood that the division of each unit or module in the above device is only a logical function division, and all or part of the units or modules can be integrated into one physical entity or physically separated in actual implementation. In addition, the units or modules in the device can be implemented in the form of processor invoking software: for example, the device comprises a processor connected with a memory, the memory stores instructions, and the processor invokes the instructions stored in the memory to implement any of the above methods or to implement the functions of each unit or module of the device, wherein the processor is a general processor such as a central processing unit (CPU) or a microprocessor, and the memory is a memory in the device or a memory outside the device. Alternatively, the units or modules in the device can be implemented in the form of hardware circuit, and the functions of part or all of the units or modules can be implemented by the design of the hardware circuit, and the hardware circuit can be understood as one or more processors; for example, in one implementation, the hardware circuit is an application-specific integrated circuit (ASIC), and the functions of part or all of the units or modules are implemented by the design of the logical relationship between the elements in the circuit; for another example, in another implementation, the hardware circuit is a programmable logic device (PLD), and taking a field programmable gate array (FPGA) as an example, it can include a large number of logic gate circuits, and the connection relationship between the logic gate circuits is configured by a configuration file, so as to implement the functions of part or all of the units or modules. All units or modules of the above device can be implemented in the form of processor invoking software, or all units or modules can be implemented in the form of hardware circuit, or part of the units or modules are implemented in the form of processor invoking software, and the remaining part is implemented in the form of hardware circuit.

[0438] In the embodiments of the present disclosure, the processor is a circuit with signal processing capability. In one implementation, the processor can be a circuit with instruction reading and running capability, such as a central processing unit (CPU), a microprocessor, a graphics processing unit (GPU) (which can be understood as a microprocessor), a digital signal processor (DSP), and the like. In another implementation, the processor can implement certain functions through a logical relationship of a hardware circuit, and the logical relationship of the hardware circuit is fixed or reconfigurable. For example, the processor is a hardware circuit implemented by an application-specific integrated circuit (ASIC) or a programmable logic device (PLD), such as an FPGA. In the reconfigurable hardware circuit, the processor loads a configuration document to implement the configuration of the hardware circuit. It can be understood that the processor loads instructions to implement the functions of the above part or all units or modules. In addition, the hardware circuit can also be designed for artificial intelligence, which can be understood as an ASIC, such as a neural network processing unit (NPU), a tensor processing unit (TPU), a deep learning processing unit (DPU), and the like.

[0439] FIG. 7A is a structural schematic diagram of a communication device 7100 according to an embodiment of the present disclosure. The communication device 7100 can be a network device (for example, an access network device, a core network device, and the like), or a terminal (for example, a user equipment, and the like), or a chip, a chip system, or a processor supporting the network device to implement any of the above methods, or a chip, a chip system, or a processor supporting the terminal to implement any of the above methods. The communication device 7100 can be used to implement the methods described in the above method embodiments, and details can be referred to the descriptions in the above method embodiments.

[0440] As shown in FIG. 7A, the communication device 7100 includes one or more processors 7101. The processor 7101 can be a general processor or a special-purpose processor, etc., such as a baseband processor or a central processing unit. The baseband processor can be configured to process communication protocols and communication data, and the central processing unit can be configured to control a communication apparatus (e.g., a base station, a baseband chip, a terminal device, a terminal device chip, a DU or a CU, etc.), execute programs, and process data of the programs. Optionally, the communication device 7100 is configured to perform any of the above methods. Optionally, the one or more processors 7101 are configured to invoke instructions to cause the communication device 7100 to perform any of the above methods.

[0441] In some embodiments, the communication device 7100 further includes one or more transceivers 7102. When the communication device 7100 includes one or more transceivers 7102, the transceiver 7102 performs at least one of the communication steps (e.g., steps S201 and S202, but not limited to) in the above methods, and the processor 7101 performs at least one of the other steps (e.g., steps S201 and S202, but not limited to). In optional embodiments, the transceiver can include a receiver and / or a transmitter, which can be separate or integrated together. Optionally, the terms transceiver, transceiving unit, transceiver, transceiving circuit, interface circuit, interface, etc. can be replaced by each other, and the terms transmitter, transmitting unit, transmitter, transmitting circuit, etc. can be replaced by each other, and the terms receiver, receiving unit, receiver, receiving circuit, etc. can be replaced by each other.

[0442] In some embodiments, the communication device 7100 further includes one or more memories 7103 for storing data. Optionally, all or part of the memory 7103 can also be outside the communication device 7100. In optional embodiments, the communication device 7100 can include one or more interface circuits 7104. Optionally, the interface circuit 7104 is connected to the memory 7102, and the interface circuit 7104 can be configured to receive data from the memory 7102 or other devices, and can be configured to send data to the memory 7102 or other devices. For example, the interface circuit 7104 can read data stored in the memory 7102 and send the data to the processor 7101.

[0443] The communication device 7100 described in the above embodiments can be a network device or a terminal, but the scope of the communication device 7100 described in the present disclosure is not limited thereto, and the structure of the communication device 7100 can not be limited by FIG. 7A. The communication device can be a standalone device or can be part of a larger device. For example, the communication device can be: 1) a standalone integrated circuit (IC), or a chip, or a chip system or subsystem; (2) a set of one or more ICs, which can optionally also include storage components for storing data, programs; (3) an ASIC, such as a modem; (4) a module that can be embedded in other devices; (5) a receiver, a terminal device, a smart terminal device, a cellular phone, a wireless device, a handset, a mobile unit, a vehicle-mounted device, a network device, a cloud device, an artificial intelligence device, and the like; (6) other devices, and the like.

[0444] FIG. 7B is a structural schematic diagram of a chip 7200 according to an embodiment of the present disclosure. For the case where the communication device 7100 is a chip or a chip system, the structural schematic diagram of the chip 7200 shown in FIG. 7B can be referred to, but is not limited thereto.

[0445] The chip 7200 includes one or more processors 7201. The chip 7200 is configured to perform any of the above methods.

[0446] In some embodiments, the chip 7200 further includes one or more interface circuits 7202. Optionally, the terms interface circuit, interface, transceiver pin, and the like can be replaced with each other. In some embodiments, the chip 7200 further includes one or more memories 7203 for storing data. Optionally, all or part of the memory 7203 can be outside the chip 7200. Optionally, the interface circuit 7202 is connected to the memory 7203, and the interface circuit 7202 can be configured to receive data from the memory 7203 or other devices, and the interface circuit 7202 can be configured to send data to the memory 7203 or other devices. For example, the interface circuit 7202 can read data stored in the memory 7203 and send the data to the processor 7201.

[0447] In some embodiments, the interface circuit 7202 performs at least one of the communication steps (such as steps S201, S202, but not limited thereto) of transmitting and / or receiving in the above methods. The interface circuit 7202 performing the communication steps such as transmitting and / or receiving in the above methods means that the interface circuit 7202 performs data interaction between the processor 7201, the chip 7200, the memory 7203, or a transceiver device. In some embodiments, the processor 7201 performs at least one of the other steps (such as steps S201, S202, but not limited thereto).

[0448] The modules and / or devices described in various embodiments of the virtual device, the physical device, the chip, etc. can be combined or separated according to circumstances. Alternatively, part or all of the steps can also be performed by a plurality of modules and / or devices in cooperation, which is not limited here.

[0449] The disclosure further provides a storage medium having instructions stored thereon, which, when executed on the communication device 7100, causes the communication device 7100 to perform any of the above methods. Alternatively, the storage medium is an electronic storage medium. Alternatively, the storage medium is a computer readable storage medium, but is not limited to this, and it can also be a storage medium readable by other devices. Alternatively, the storage medium can be a non-transitory storage medium, but is not limited to this, and it can also be a transitory storage medium.

[0450] The disclosure further provides a program product, which, when executed by the communication device 7100, causes the communication device 7100 to perform any of the above methods. Alternatively, the program product is a computer program product.

[0451] The disclosure further provides a computer program, which, when executed on a computer, causes the computer to perform any of the above methods.

Claims

1. An information generation method characterized by comprising: The method is performed by a terminal, and the method comprises: performing measurement on cross link interference (CLI); obtaining a first CLI measurement result, the first CLI measurement result being carried in at least one of: a first part of a channel state information (CSI) report, a second part of the CSI report; mapping the first CLI measurement result into uplink control information (UCI) bits.

2. The method of claim 1, wherein, The first CLI measurement result comprises at least one of: a wideband CLI measurement result; a subband CLI measurement result.

3. The method of claim 2, wherein, The mapping of the first CLI measurement result into UCI bits comprises: mapping the CSI report into the UCI bits according to a mapping relationship between a priority index corresponding to the CSI report and the UCI bits, and / or a type of CLI measurement result carried by the CSI report.

4. The method of claim 3, wherein, The priority index is determined based on at least one of: a type of CSI report; a serving cell index; a configurable maximum number of serving cells; an index of CSI report; a configurable maximum number of reporting configurations; a CSI carrying a corresponding measurement result.

5. The method of claim 4, wherein, The mapping relationship contains n CSIs, and a priority index Pri of an i-th CSI report in the n CSI reports icsi is determined based on the following formula: icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s · c + s; y=0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y=1 corresponds to a semi-persistent CSI report transmitted on a PUSCH; y=2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y=3 corresponds to an aperiodic CSI report transmitted on a physical PUCCH; c is a serving cell index; N cells is the configurable maximum number of cells; s is an index of CSI report; M s is a configurable maximum reporting configuration number; k corresponds to a CSI carrying a corresponding measurement result.

6. The method of claim 5, wherein, k=first value, corresponding to a CSI report carrying a CLI measurement result, wherein the first value is 0 or 1 or other values.

7. The method of claim 3, wherein, A CSI report carrying a wideband CLI measurement result is mapped into a first part of the UCI bits, and a CSI report carrying a subband CLI measurement result is mapped into a second part of the UCI bits. The first part of the UCI bits is before the second part of the UCI bits, or the second part of the UCI bits is before the first part of the UCI bits.

8. The method of claim 7, wherein, The CSI report carrying a wideband CLI measurement result is mapped into a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying a wideband CLI measurement result and the UCI bits, and the CSI report carrying a subband CLI measurement result is mapped into a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying a subband CLI measurement result and the UCI bits; or The CSI report carrying a subband CLI measurement result is mapped into a first part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying a subband CLI measurement result and the UCI bits, and the CSI report carrying a wideband CLI measurement result is mapped into a second part of the UCI bits based on a mapping relationship between an index priority corresponding to the CSI report carrying a wideband CLI measurement result and the UCI bits; or The CSI report is mapped to the first part of UCI bits or the second part of UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or is mapped to the first part of UCI bits or the second part of UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the sub-band CLI measurement result and the UCI bits.

9. The method according to any one of claims 1 to 8, characterized in that, The first CLI measurement result includes at least one of the following information fields: The number of at least one CLI reference signal; The resource index of at least one CLI reference signal; The measurement value corresponding to at least one CLI reference signal; At least one capability index.

10. The method of claim 9, wherein, The measurement value corresponding to the at least one CLI reference signal includes: The reference measurement value corresponding to the at least one CLI reference signal; The difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

11. The method according to claim 9 or 10, characterized in that, The type of the CLI reference signal includes at least one of the following: A sounding reference signal used to determine a reference signal received power; A reference signal used to determine a received signal strength indication of the CLI.

12. The method according to any one of claims 9 to 11, characterized in that, The mapping of the first CLI measurement result into UCI bits includes: Mapping the at least one information field into the UCI bits according to the bit width corresponding to each information field in the at least one information field.

13. The method according to any one of claims 1 to 12, characterized in that, The wideband CLI measurement result and the sub-band CLI measurement result are carried in the first part of the CSI report; or The wideband CLI measurement result and the sub-band CLI measurement result are carried in the second part of the CSI report; or The wideband CLI measurement result is carried in the first part of the CSI report, and the sub-band CLI measurement result is carried in the second part of the CSI report; or The wideband CLI measurement result is carried in the second part of the CSI report, and the sub-band CLI measurement result is carried in the first part of the CSI report.

14. An information generation method characterized by comprising: A method performed by a network device, the method comprising: Receiving uplink control information (UCI) bits sent by a terminal, wherein the UCI bits have mapped therein first cross-link interference (CLI) measurement results obtained by the terminal by measuring the CLI, and the first CLI measurement results are carried in at least one of the following: a first part of a channel state information (CSI) report, and a second part of the CSI report.

15. The method of claim 14, wherein, The first CLI test result includes at least one of the following: Wideband CLI measurement result; Sub-band CLI measurement result.

16. The method of claim 15, wherein, The mapping of the first CLI measurement result into UCI bits includes: Mapping the CSI report into the UCI bits according to the mapping relationship between the priority index corresponding to the CSI report and the UCI bits, and / or the type of the CLI measurement result carried by the CSI report.

17. The method of claim 16, wherein, The priority index is determined based on at least one of the following: The type of the CSI report; The serving cell index; The maximum number of configurable serving cells; The index of the CSI report; The maximum number of configurable reporting configurations; CSI carrying corresponding measurement results.

18. The method of claim 17, wherein, The mapping relationship contains n CSIs, and a priority index Pri of an i-th CSI report in the n CSI reports icsi is determined based on the following formula: icsi (y, k, c, s) = 2 · N cells · M s · y + N cells · M s · k + M s · c + s; y=0 corresponds to an aperiodic CSI report transmitted on a physical uplink shared channel (PUSCH); y=1 corresponds to a semi-persistent CSI report transmitted on the PUSCH; y=2 corresponds to a semi-persistent CSI report transmitted on a physical uplink control channel (PUCCH); y=3 corresponds to an aperiodic CSI report transmitted on the PUCCH; c is a serving cell index; N cells is the configurable maximum number of cells; s is an index of the CSI report; M s is a configurable maximum reporting configuration number; k corresponds to a CSI carrying corresponding measurement results.

19. The method of claim 18, wherein, k=first value, corresponding to a CSI report carrying CLI measurement results, wherein the first value is 0 or 1 or other values.

20. The method of claim 16, wherein, The CSI report carrying the wideband CLI measurement result is mapped to the first part of the UCI bits, and the CSI report carrying the subband CLI measurement result is mapped to the second part of the UCI bits. The first part of the UCI bits is before the second part of the UCI bits, or the second part of the UCI bits is before the first part of the UCI bits.

21. The method of claim 20, wherein, The CSI report carrying the wideband CLI measurement result is mapped to the first part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, and the CSI report carrying the subband CLI measurement result is mapped to the second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits; or, The CSI report carrying the wideband CLI measurement result is mapped to the first part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, and the CSI report carrying the subband CLI measurement result is mapped to the second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits; or, The CSI report is mapped to the first part or the second part of the UCI bits based on the mapping relationship between the index priority corresponding to the CSI report carrying the wideband CLI measurement result and the UCI bits, or based on the mapping relationship between the index priority corresponding to the CSI report carrying the subband CLI measurement result and the UCI bits.

22. The method of any one of claims 14 to 21, wherein, The first CLI measurement result includes at least one of the following information fields: The number of at least one CLI reference signal; The resource index of at least one CLI reference signal; The measurement value corresponding to at least one CLI reference signal; At least one capability index.

23. The method of claim 22, wherein, The measurement value corresponding to the at least one CLI reference signal includes: The reference measurement value corresponding to the at least one CLI reference signal; The difference between the measurement value corresponding to the at least one CLI reference signal and the reference measurement value.

24. The method of claim 22 or 23, wherein, The type of the CLI reference signal includes at least one of the following: A sounding reference signal for determining a reference signal receiving power; Reference signals for determining received signal strength indication of CLI.

25. The method of any one of claims 22-24, wherein, The at least one information field is mapped into the UCI bits based on a bit width of each information field in the at least one information field.

26. The method of any one of claims 14 to 25, wherein, The wideband CLI measurement result and the subband CLI measurement result are carried in a first part of a CSI report; or, The wideband CLI measurement result and the subband CLI measurement result are carried in a second part of a CSI report; or, The wideband CLI measurement result is carried in a first part of a CSI report, and the subband CLI measurement result is carried in a second part of the CSI report; or The wideband CLI measurement result is carried in a second part of a CSI report, and the subband CLI measurement result is carried in a first part of the CSI report.

27. An information generation apparatus characterized by comprising: The apparatus comprises: The receiving module is configured to measure cross-link interference (CLI), and obtain a first CLI measurement result carried in at least one of a first part of a channel state information (CSI) report or a second part of the CSI report. The processing module is configured to map the first CLI measurement result into uplink control information (UCI) bits.

28. An information generation apparatus characterized by comprising: The apparatus comprises: The receiving module is configured to receive uplink control information (UCI) bits sent by a terminal, wherein the UCI bits have a first CLI measurement result measured by the terminal on cross-link interference (CLI) mapped therein, and the first CLI measurement result is carried in at least one of a first part of a channel state information (CSI) report or a second part of the CSI report.

29. A terminal, characterized by Comprise: One or more processors; A memory coupled to the one or more processors, the memory having stored thereon executable instructions that, as a result of being executed by the one or more processors, cause the terminal to perform the information generation method in any one of claims 1-13.

30. A network device, comprising: Comprise: One or more processors; A memory coupled to the one or more processors, the memory having stored thereon executable instructions that, as a result of being executed by the one or more processors, cause the network device to perform the information receiving method in any one of claims 14-26.

31. A communication system, characterized by Comprise a terminal and a network device, wherein the terminal is configured to implement the information generation method in any one of claims 1-13, and the network device is configured to implement the information receiving method in any one of claims 14-26.

32. A storage medium, the storage medium storing instructions, wherein, When the instructions are run on a communication device, the communication device is caused to perform the information generation method in any one of claims 1-13, and the network device is configured to implement the information receiving method in any one of claims 14-26.

33. A program product, characterized by When a program product is executed by a communication device, the communication device is caused to perform the information generation method in any one of claims 1-13, and the network device is configured to implement the information receiving method in any one of claims 14-26.

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