WO2025213974A1 - 基于事件触发的层一测量上报方法、设备、装置及存储介质 - Google Patents

基于事件触发的层一测量上报方法、设备、装置及存储介质

Info

Publication number
WO2025213974A1
WO2025213974A1 PCT/CN2025/079281 CN2025079281W WO2025213974A1 WO 2025213974 A1 WO2025213974 A1 WO 2025213974A1 CN 2025079281 W CN2025079281 W CN 2025079281W WO 2025213974 A1 WO2025213974 A1 WO 2025213974A1
Authority
WO
WIPO (PCT)
Prior art keywords
measurement
event
reporting
measurement reporting
report
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
PCT/CN2025/079281
Other languages
English (en)
French (fr)
Inventor
张不方
许萌
彭德坤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Datang Mobile Communications Equipment Co Ltd
Original Assignee
Datang Mobile Communications Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Datang Mobile Communications Equipment Co Ltd filed Critical Datang Mobile Communications Equipment Co Ltd
Publication of WO2025213974A1 publication Critical patent/WO2025213974A1/zh
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/54Allocation or scheduling criteria for wireless resources based on quality criteria
    • H04W72/542Allocation or scheduling criteria for wireless resources based on quality criteria using measured or perceived quality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Definitions

  • the present disclosure relates to the field of wireless communication technologies, and in particular to a method, device, apparatus, and storage medium for reporting layer 1 measurements based on event triggering.
  • the present disclosure provides a layer 1 measurement reporting method, device, apparatus and storage medium based on event triggering.
  • the present disclosure provides an event-triggered layer 1 measurement reporting method, applied to a terminal, comprising:
  • the measurement result carried in the current measurement report is determined based on the second measurement report configuration information.
  • the first measurement reporting configuration information includes one or more of the following:
  • a measurement report prohibit timer associated with a measurement report event where the measurement report prohibit timer is used to indicate that the terminal triggers a measurement report after the measurement report prohibit timer expires;
  • the first indication information is used to indicate that the terminal triggers a measurement report when a first condition is met, the first condition including: a change in the measurement result when the current measurement report event is triggered compared to the measurement result when the previous measurement report event is triggered is greater than a first threshold;
  • the second indication information is used to instruct the terminal to trigger a measurement report when a second condition is met, where the second condition includes: a change in the number of beams that meet the event when the current measurement report event is triggered compared to the number of beams that meet the event when the last measurement report event is triggered is greater than a second threshold;
  • the third indication information is used to instruct the terminal to trigger a measurement report when a third condition is met, where the third condition includes: a change in the measurement result of the first beam that meets the event is greater than a third threshold after the last measurement report, and the first beam has not been reported to the network;
  • the fourth indication information is used to instruct the terminal to trigger a measurement report when a fourth condition is met, the fourth condition including: a change in the measurement result of the second beam that meets the event after the last measurement report is greater than a fourth threshold, the second beam has been reported to the network, and the network has not been notified after the event is no longer met;
  • the fifth indication information is used to indicate that the terminal triggers a measurement report when the fifth condition is met, where the fifth condition includes at least one of the following: after the last measurement report, the number of newly added beams that meet the event is greater than the fifth threshold, and the newly added beams that meet the event are not reported to the network; after the last measurement report, the number of newly added beams that do not meet the event is greater than the fifth threshold, the newly added beams that do not meet the event have been reported to the network, and the network has not been notified after the event is not met;
  • the sixth indication information is used to indicate that when the beam with the best signal quality changes, the terminal triggers a measurement report.
  • the continuously periodically reported configuration information includes one or more of the following:
  • Indication information used to indicate whether periodic reporting after the initial measurement report needs to meet the measurement reporting event.
  • the second measurement reporting configuration information includes one or more of the following:
  • the seventh indication information is used to instruct the terminal to report the latest measurement result of the cell or beam corresponding to the measurement reporting event for which the measurement result has been reported to the network due to event triggering;
  • the eighth indication information is used to instruct the terminal to report the measurement result of the current serving cell
  • the ninth indication information is used to indicate whether the measurement result reported by the terminal includes the measurement result of the neighboring cell;
  • Tenth indication information the tenth indication information is used to indicate whether the terminal only reports the measurement results corresponding to the measurement reporting event that is met this time;
  • the eleventh indication information is used to indicate whether the terminal only reports the measurement result corresponding to the measurement reporting event that caused the current measurement report to be triggered;
  • the twelfth indication information is used to instruct the terminal to report only the index of the beam with the best signal quality among the beams that meet the event, without reporting the measurement result;
  • the thirteenth indication information is used to instruct the terminal to report only the index of the beam that meets the event, without reporting the measurement result;
  • the fourteenth indication information is used to instruct the terminal to report the index of the beam that does not meet the event, without reporting the measurement result;
  • the fifteenth indication information is used to instruct the terminal to report the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality when the beam with the best signal quality changes.
  • determining to trigger a measurement report based on the first measurement reporting configuration information includes:
  • the method further comprises:
  • a second operation is further performed for the measurement reporting event, where the second operation includes one or more of the following:
  • the method further comprises:
  • the first time the condition is satisfied is calculated from the time when the measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives the layer 1 measurement configuration information.
  • the most recent measurement report caused by a measurement reporting event is calculated from the time when a measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives layer 1 measurement configuration information.
  • the method further comprises:
  • start the measurement report prohibition timer associated with the measurement report event For each measurement report event that meets the triggering conditions during the current measurement report, start the measurement report prohibition timer associated with the measurement report event;
  • the reporting count counter associated with the measurement reporting event is incremented by one;
  • the reporting count counter associated with the measurement reporting event is incremented by one
  • the measurement results carried in this measurement report include one or more of the following:
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • the method further comprises:
  • the method further comprises:
  • the first measurement reporting configuration information and/or the second measurement reporting configuration information are determined based on the configuration identifier.
  • the method further comprises:
  • mapping indication information sent by a network device is received, where the mapping indication information is used to indicate, for at least one configuration identifier, first measurement reporting configuration information and/or second measurement reporting configuration information mapped by each configuration identifier.
  • the present disclosure further provides an event-triggered layer 1 measurement reporting method, applied to a network device, comprising:
  • the first measurement reporting configuration information is used by the terminal to determine to trigger a measurement report after determining that at least one measurement reporting event is satisfied; the second measurement reporting configuration information is used by the terminal to determine the measurement result carried in this measurement report when determining to perform measurement reporting.
  • the method further comprises:
  • mapping indication information is sent to the terminal, where the mapping indication information is used to indicate, for at least one configuration identifier, the first measurement reporting configuration information and/or the second measurement reporting configuration information mapped by each configuration identifier.
  • the present disclosure further provides a terminal, including a memory, a transceiver, and a processor;
  • a memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations:
  • the measurement result carried in this measurement reporting is determined based on the second measurement reporting configuration information.
  • the first measurement reporting configuration information includes one or more of the following:
  • a measurement report prohibit timer associated with a measurement report event where the measurement report prohibit timer is used to indicate that the terminal triggers a measurement report after the measurement report prohibit timer expires;
  • the first indication information is used to indicate that the terminal triggers a measurement report when a first condition is met, the first condition including: a change in the measurement result when the current measurement report event is triggered compared to the measurement result when the previous measurement report event is triggered is greater than a first threshold;
  • the second indication information is used to instruct the terminal to trigger a measurement report when a second condition is met, where the second condition includes: a change in the number of beams that meet the event when the current measurement report event is triggered compared to the number of beams that meet the event when the last measurement report event is triggered is greater than a second threshold;
  • the third indication information is used to instruct the terminal to trigger a measurement report when a third condition is met, where the third condition includes: a change in the measurement result of the first beam that meets the event is greater than a third threshold after the last measurement report, and the first beam has not been reported to the network;
  • the fourth indication information is used to instruct the terminal to trigger a measurement report when a fourth condition is met, the fourth condition including: a change in the measurement result of the second beam that meets the event after the last measurement report is greater than a fourth threshold, the second beam has been reported to the network, and the network has not been notified after the event is no longer met;
  • the fifth indication information is used to indicate that the terminal triggers a measurement report when the fifth condition is met, where the fifth condition includes at least one of the following: after the last measurement report, the number of newly added beams that meet the event is greater than the fifth threshold, and the newly added beams that meet the event are not reported to the network; after the last measurement report, the number of newly added beams that do not meet the event is greater than the fifth threshold, the newly added beams that do not meet the event have been reported to the network, and the network has not been notified after the event is not met;
  • the sixth indication information is used to indicate that when the beam with the best signal quality changes, the terminal triggers a measurement report.
  • the continuously periodically reported configuration information includes one or more of the following:
  • Indication information used to indicate whether periodic reporting after the initial measurement report needs to meet the measurement reporting event.
  • the second measurement reporting configuration information includes one or more of the following:
  • the seventh indication information is used to instruct the terminal to report the latest measurement result of the cell or beam corresponding to the measurement reporting event for which the measurement result has been reported to the network due to event triggering;
  • the eighth indication information is used to instruct the terminal to report the measurement result of the current serving cell
  • the ninth indication information is used to indicate whether the measurement result reported by the terminal includes the measurement result of the neighboring cell;
  • Tenth indication information the tenth indication information is used to indicate whether the terminal only reports the measurement results corresponding to the measurement reporting event that is met this time;
  • the eleventh indication information is used to indicate whether the terminal only reports the measurement result corresponding to the measurement reporting event that caused the current measurement report to be triggered;
  • the twelfth indication information is used to instruct the terminal to report only the index of the beam with the best signal quality among the beams that meet the event, without reporting the measurement result;
  • the thirteenth indication information is used to instruct the terminal to report only the index of the beam that meets the event, without reporting the measurement result;
  • the fourteenth indication information is used to instruct the terminal to report the index of the beam that does not meet the event, without reporting the measurement result;
  • the fifteenth indication information is used to instruct the terminal to report the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality when the beam with the best signal quality changes.
  • determining to trigger a measurement report based on the first measurement reporting configuration information includes:
  • the operations further include:
  • a second operation is further performed for the measurement reporting event, where the second operation includes one or more of the following:
  • the operations further include:
  • the first time the condition is satisfied is calculated from the time when the measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives the layer 1 measurement configuration information.
  • the most recent measurement report caused by a measurement reporting event is calculated from the time when a measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives layer 1 measurement configuration information.
  • the operations further include:
  • start the measurement report prohibition timer associated with the measurement report event For each measurement report event that meets the triggering conditions during the current measurement report, start the measurement report prohibition timer associated with the measurement report event;
  • the reporting count counter associated with the measurement reporting event is incremented by one;
  • the reporting count counter associated with the measurement reporting event is incremented by one
  • the measurement results carried in this measurement report include one or more of the following:
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • the operations further include:
  • the operations further include:
  • the first measurement reporting configuration information and/or the second measurement reporting configuration information are determined based on the configuration identifier.
  • the operations further include:
  • mapping indication information sent by a network device is received, where the mapping indication information is used to indicate, for at least one configuration identifier, first measurement reporting configuration information and/or second measurement reporting configuration information mapped by each configuration identifier.
  • the present disclosure further provides a network device, including a memory, a transceiver, and a processor;
  • a memory for storing a computer program; a transceiver for transmitting and receiving data under the control of the processor; and a processor for reading the computer program in the memory and performing the following operations:
  • the first measurement reporting configuration information is used by the terminal to determine to trigger a measurement report after determining that at least one measurement reporting event is satisfied; the second measurement reporting configuration information is used by the terminal to determine the measurement result carried in this measurement report when determining to perform measurement reporting.
  • the operations further include:
  • mapping indication information is sent to the terminal, where the mapping indication information is used to indicate, for at least one configuration identifier, the first measurement reporting configuration information and/or the second measurement reporting configuration information mapped by each configuration identifier.
  • an event-triggered layer 1 measurement reporting device comprising:
  • a first determining unit is configured to determine, after determining that at least one measurement reporting event is satisfied, to trigger a measurement report based on first measurement reporting configuration information
  • the second determining unit is configured to determine the measurement result carried in the current measurement report based on the second measurement report configuration information.
  • an event-triggered layer 1 measurement reporting device comprising:
  • a sending unit configured to send the first measurement reporting configuration information and/or the second measurement reporting configuration information to the terminal, or send a configuration identifier indicating the first measurement reporting configuration information and/or the second measurement reporting configuration information to the terminal;
  • the first measurement reporting configuration information is used by the terminal to determine to trigger a measurement report after determining that at least one measurement reporting event is satisfied; the second measurement reporting configuration information is used by the terminal to determine the measurement result carried in this measurement report when determining to perform measurement reporting.
  • the present disclosure also provides a non-transitory readable storage medium, which stores a computer program, and the computer program is used to enable the processor to execute the event-triggered layer 1 measurement reporting method described in the first aspect, or execute the event-triggered layer 1 measurement reporting method described in the second aspect.
  • the present disclosure further provides a communication device, in which a computer program is stored, and the computer program is used to enable the communication device to execute the event-triggered layer 1 measurement reporting method described in the first aspect, or to execute the event-triggered layer 1 measurement reporting method described in the second aspect.
  • the present disclosure also provides a processor-readable storage medium, which stores a computer program, and the computer program is used to enable the processor to execute the event-triggered layer 1 measurement reporting method described in the first aspect, or execute the event-triggered layer 1 measurement reporting method described in the second aspect.
  • the present disclosure also provides a chip product, in which a computer program is stored, and the computer program is used to enable the chip product to execute the event-triggered layer 1 measurement reporting method described in the first aspect above, or execute the event-triggered layer 1 measurement reporting method described in the second aspect above.
  • the present disclosure provides an event-triggered layer 1 measurement reporting method, device, apparatus, and storage medium. After determining that at least one measurement reporting event is satisfied, the UE can determine to trigger a measurement report based on first measurement reporting configuration information, thereby avoiding frequent triggering of unnecessary measurement reports and reducing reporting overhead. In the case of determining to perform measurement reporting, the UE can determine the measurement result carried in this measurement report based on the second measurement reporting configuration information, thereby effectively solving the problem of event-triggered layer 1 measurement reporting and improving the flexibility of event-triggered layer 1 measurement reporting.
  • FIG1 is a flow chart of a method for reporting layer 1 measurements based on event triggering according to an embodiment of the present disclosure
  • FIG2 is a second flow chart of a method for reporting layer 1 measurements based on event triggering provided by an embodiment of the present disclosure
  • FIG3 is a schematic diagram of the structure of a terminal provided in an embodiment of the present disclosure.
  • FIG4 is a schematic diagram of the structure of a network device provided in an embodiment of the present disclosure.
  • FIG5 is a schematic diagram of a structure of a layer 1 measurement reporting device based on event triggering according to an embodiment of the present disclosure
  • FIG6 is a second structural diagram of the event-triggered layer 1 measurement reporting device provided in an embodiment of the present disclosure.
  • the term "and/or” describes the association relationship between associated objects, indicating that three relationships can exist.
  • a and/or B can represent three situations: A exists alone, A and B exist simultaneously, and B exists alone.
  • the character "/" generally indicates that the associated objects are in an "or” relationship.
  • the term “plurality” refers to two or more than two, and other quantifiers are similar thereto.
  • first the terms “first,” “second,” and the like are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present disclosure can be implemented in an order other than that illustrated or described herein.
  • the objects distinguished by “first” and “second” are generally of the same type, and do not limit the number of objects.
  • the first object can be one or more.
  • LTM is introduced in New Radio (NR) mobility, that is, the network pre-configures LTM candidate cell configuration information and LTM L1 measurement configuration information for the UE.
  • the UE performs L1 measurement of the candidate cell based on the LTM L1 measurement configuration information and reports the LTM L1 measurement result to the network.
  • the network makes a cell change decision based on the L1 measurement result information reported by the UE. If the network decides that a cell change is required, the network will send a cell change command to the UE through the Media Access Control Control Element (MAC CE), which carries the identification information of the target cell.
  • MAC CE Media Access Control Control Element
  • the reference signal and reporting configuration of LTM L1 measurement are configured to the terminal through Radio Resource Control (RRC) signaling.
  • the terminal then performs measurement based on the configured L1 reference signal and reports the L1 measurement results on the corresponding physical channel through the configured reporting resources.
  • the reporting modes include periodic Physical Uplink Control Channel (PUCCH) reporting, semi-persistent PUCCH reporting, semi-persistent Physical Uplink Shared Channel (PUSCH) reporting and aperiodic PUSCH reporting.
  • FIG1 is a flow chart of a method for reporting layer 1 measurements based on event triggering according to an embodiment of the present disclosure. The method is applied to a terminal. As shown in FIG1 , the method includes the following steps:
  • Step 100 After determining that at least one measurement reporting event is satisfied, determine to trigger a measurement report based on first measurement reporting configuration information.
  • Step 101 Determine the measurement result carried in the current measurement report based on the second measurement report configuration information.
  • the first measurement reporting configuration information is used to configure the conditions or rules for the UE to initiate measurement reporting (i.e., report measurement results) after a measurement reporting event is satisfied (i.e., a threshold condition corresponding to the measurement reporting event is satisfied).
  • the second measurement reporting configuration information is used to configure the measurement results that the UE can carry in each measurement report.
  • the UE measurement evaluation finds that at least one measurement reporting event is satisfied, the UE determines whether to trigger a measurement report based on the first measurement reporting configuration information.
  • the UE When the UE determines to trigger a measurement report and performs the measurement report, it may determine the measurement result required to be carried in this measurement report based on the second measurement report configuration information.
  • the measurement reporting event may be for cell configuration or for beam configuration, which is not limited in the present disclosure.
  • the event-triggered layer 1 measurement reporting method can determine to trigger a measurement report based on the first measurement reporting configuration information after determining that at least one measurement reporting event is met, thereby avoiding frequent triggering of unnecessary measurement reports and reducing reporting overhead.
  • the UE can determine the measurement result carried by this measurement report based on the second measurement reporting configuration information, thereby effectively solving the problem of event-triggered layer 1 measurement reporting and improving the flexibility of event-triggered layer 1 measurement reporting.
  • the first measurement reporting configuration information includes one or more of the following:
  • the configuration information of the continuous periodic reporting is used to configure the UE to perform continuous periodic reporting.
  • the reporting in this disclosure refers to L1 measurement reporting. This concept remains consistent throughout the text and will not be repeated later.
  • the continuously periodically reported configuration information includes one or more of the following:
  • Indication information used to indicate whether periodic reporting after the initial measurement report needs to meet the measurement reporting event.
  • Single reporting can be understood as the UE triggering a measurement report only when the measurement reporting event is triggered (satisfied) for the first time.
  • a measurement report prohibition timer associated with a measurement report event is used to indicate that the terminal triggers a measurement report after the measurement report prohibition timer times out.
  • the first indication information is used to instruct the terminal to trigger a measurement report when a first condition is met.
  • the first condition includes: a change in a measurement result when the current measurement report event is triggered compared to a measurement result when the previous measurement report event is triggered is greater than a first threshold.
  • the measurement result may be a per-cell measurement result or a per-beam measurement result.
  • the specific type of the measurement result is not limited herein, and may be, for example, Reference Signal Receiving Power (RSRP), Reference Signal Receiving Quality (RSRQ), or other types of measurement results.
  • RSRP Reference Signal Receiving Power
  • RSRQ Reference Signal Receiving Quality
  • the measurement result may be the top N best measurement results (N ⁇ 1).
  • the change amount may be an increase or a decrease.
  • whether the change is specifically an increase or a decrease can be configured by the network.
  • the first threshold may be a threshold preconfigured by the network.
  • the first indication information may be the first threshold, that is, the first threshold is configured in the first measurement reporting configuration information, and the first threshold indicates that the UE triggers a measurement report when the first condition is met.
  • Second indication information which is used to indicate that the terminal triggers a measurement report when a second condition is met, and the second condition includes: the change in the number of beams that meet the event when this measurement report event is triggered compared to the number of beams that meet the event when the last measurement report event is triggered is greater than a second threshold.
  • a beam that satisfies an event refers to a beam whose measurement result satisfies a threshold condition corresponding to a measurement reporting event.
  • the number of beams that meet the event can be per cell, that is, the number of beams that meet the event when the measurement reporting event of this cell is triggered, and the number of beams that meet the event when the measurement reporting event was triggered last time are counted on a cell-by-cell basis.
  • the change amount may be an increase or a decrease.
  • whether the change is specifically an increase or a decrease can be configured by the network.
  • the second threshold may be a threshold preconfigured by the network or a preset threshold (eg, 1).
  • the second indication information may be the second threshold, that is, the second threshold is configured in the first measurement reporting configuration information, and the second threshold indicates that the UE triggers a measurement report when the second condition is met.
  • Third indication information which is used to indicate that the terminal triggers a measurement report when a third condition is met.
  • the third condition includes: after the last measurement report, the change in the measurement result of the first beam that meets the event is greater than a third threshold, and the first beam is not reported to the network.
  • the first beam may be one or more beams. For example, if, after the last measurement report, the measurement result change of at least one beam that meets the event is greater than the third threshold, and the at least one beam that meets the event is not reported to the network, it means that the third condition is met.
  • the change amount may be an increase or a decrease.
  • whether the change is specifically an increase or a decrease can be configured by the network.
  • the third threshold may be a threshold preconfigured by the network or a preset value or a default value (such as 1).
  • the third indication information may be the third threshold, that is, the third threshold is configured in the first measurement report configuration information, and the third threshold indicates that the UE triggers a measurement report when the third condition is met.
  • Fourth indication information which is used to indicate that the terminal triggers a measurement report when a fourth condition is met.
  • the fourth condition includes: after the last measurement report, the change in the measurement result of the second beam that meets the event is greater than a fourth threshold, the second beam has been reported to the network, and the network has not been notified after the event is no longer met.
  • the second beam may be one or more beams. For example, if, after the last measurement report, the measurement result change of at least one beam that meets the event is greater than the fourth threshold, and this at least one beam that meets the event has been reported to the network and has not been notified after the event is no longer met, then the fourth condition is met.
  • the change amount may be an increase or a decrease.
  • whether the change is specifically an increase or a decrease can be configured by the network.
  • the fourth threshold may be a threshold preconfigured by the network or a preset value or a default value (such as 1).
  • the fourth indication information may be the fourth threshold, that is, the fourth threshold is configured in the first measurement reporting configuration information, and the fourth threshold indicates that the UE triggers a measurement report when the fourth condition is met.
  • Fifth indication information which is used to indicate that the terminal triggers a measurement report when the fifth condition is met, and the fifth condition includes at least one of the following: after the last measurement report, the number of newly added beams that meet the event is greater than the fifth threshold, and the newly added beams that meet the event are not reported to the network; after the last measurement report, the number of newly added beams that do not meet the event is greater than the fifth threshold, the newly added beams that do not meet the event have been reported to the network, and the network has not been notified after the event is not met.
  • the fifth threshold may be a threshold preconfigured by the network or a preset value or a default value (eg, 1).
  • the fifth indication information may be the fifth threshold, that is, the fifth threshold is configured in the first measurement report configuration information, and the fifth threshold indicates that the UE triggers a measurement report when the fifth condition is met.
  • the fifth indication information may include indication information for reporting when newly added (i.e., the number of newly added beams that satisfy the event is greater than the fifth threshold, and the newly added beams that satisfy the event are not reported to the network) or when reduced (i.e., the number of newly added beams that do not satisfy the event is greater than the fifth threshold, the newly added beams that do not satisfy the event have been reported to the network, and the network has not been notified after the event is not satisfied.
  • the newly added beams that do not satisfy the event are the beams that satisfy the event that are reduced from the original beams that satisfy the event) or indication information for reporting in both cases.
  • the present disclosure does not limit whether the beam with the best signal quality satisfies the event.
  • the beam with the best signal quality may be the beam that satisfies the event or the beam that does not satisfy the event.
  • the beam with the best signal quality may be the beam with the best signal quality among the beams that satisfy the event or the beam with the best signal quality among all measured beams.
  • the second measurement reporting configuration information includes one or more of the following:
  • Seventh indication information which is used to instruct the terminal to report the latest measurement result of the cell or beam corresponding to the measurement reporting event for which the measurement result was reported to the network due to event triggering.
  • the eighth indication information is used to instruct the terminal to report the measurement result of the current serving cell.
  • the maximum number of measurement results reported may be the maximum number of measurement results reported for this report, or the maximum number of measurement results reported for each reporting cell.
  • the network may indicate whether the maximum number of reported measurement results is the maximum number of reported measurement results for this report, or the maximum number of reported measurement results for each reporting cell.
  • the maximum reported number of beams may be the maximum reported number of beams for this report, or the maximum reported number of beams for each reporting cell.
  • the network may indicate whether the maximum reported number of beams is the maximum reported number of beams for this report or the maximum reported number of beams for each reporting cell.
  • Tenth indication information which is used to indicate whether the terminal reports only the measurement results corresponding to the measurement reporting event that is satisfied this time.
  • Eleventh indication information which is used to indicate whether the terminal reports only the measurement result corresponding to the measurement reporting event that triggers the current measurement report.
  • Twelfth indication information which is used to instruct the terminal to report only the index of the beam with the best signal quality among the beams that meet the event, without reporting the measurement result.
  • the present disclosure does not limit whether the beam with the best signal quality satisfies the event.
  • the beam with the best signal quality may be the beam that satisfies the event or the beam that does not satisfy the event.
  • the beam with the best signal quality may be the beam with the best signal quality among the beams that satisfy the event or the beam with the best signal quality among all measured beams.
  • the fifteenth indication information is used to instruct the UE to report the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality only when the beam with the best signal quality changes, and not to report otherwise.
  • determining to trigger a measurement report based on the first measurement reporting configuration information includes:
  • How to determine whether a measurement reporting event is satisfied for the first time (or triggered for the first time) may depend on UE implementation or be determined based on corresponding UE variables.
  • the UE may maintain certain UE variables to record parameter information related to the measurement reporting event, wherein one or more UE variables may be used to determine whether the measurement reporting event is satisfied for the first time. Examples of UE variables are described below and are not repeated here.
  • the first time the condition is satisfied is calculated from the time when the measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives the L1 measurement configuration information.
  • how to determine whether the number of reports of a measurement reporting event is less than the maximum number of reports configured on the network side may depend on UE implementation or be determined based on a corresponding UE variable. For example, the UE maintains a UE variable for recording the number of times a measurement reporting event triggers a measurement report (such as variable 2 described below). The value of the UE variable is compared with the maximum number of reports configured on the network side to determine whether the number of reports of the measurement reporting event is less than the maximum number of reports configured on the network side.
  • how to determine whether the time interval from the most recent measurement report due to a measurement reporting event is greater than the reporting period configured on the network side may depend on the UE implementation or be determined based on the corresponding UE variable. For example, the UE maintains a certain UE variable for recording the absolute time information of the measurement reporting triggered by the measurement reporting event (such as variable 1 in the following text), subtracts the most recent measurement reporting time in the UE variable from the current time, and then compares it with the reporting period configured on the network side to determine whether the time interval from the most recent measurement report due to the measurement reporting event is greater than the reporting period configured on the network side.
  • variable 3 in the following text may also be used to determine whether the time interval from the most recent measurement report due to a measurement reporting event is greater than the reporting period configured on the network side. Please refer to the description below and will not be repeated here.
  • the most recent measurement report caused by a measurement reporting event is calculated from the time when a measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives L1 measurement configuration information.
  • determining whether the first condition is satisfied may depend on UE implementation or be determined based on a corresponding UE variable. For example, the UE may maintain a UE variable to record the change in the measurement result at the time of the current event trigger compared to the measurement result at the time of the previous event trigger (such as variable 4 described below). Whether the first condition is satisfied may be determined by comparing the value of the UE variable with a first threshold. Alternatively, determining whether the first condition is satisfied may be performed using variable 6 described below. This will be described below and will not be repeated here.
  • how to determine whether the second condition is satisfied may depend on the UE implementation or be determined based on a corresponding UE variable. For example, the UE maintains a UE variable for recording the change in the number of beams satisfying the event when the current event is triggered compared to the number of beams satisfying the event when the previous event is triggered (such as variable 5 described below). The value of the UE variable is compared with the second threshold to determine whether the second condition is satisfied. Alternatively, variable 7 described below may be used to determine whether the second condition is satisfied. Please refer to the description below and will not be repeated here.
  • how to determine whether the third condition is satisfied may depend on UE implementation or be determined based on corresponding UE variables. For example, the UE may maintain certain UE variables to record parameter information related to the third condition, such as the beam that meets the event, the measurement result of the beam, and the change in the measurement result of the beam. These UE variables can then be used to determine whether the third condition is satisfied.
  • how to determine whether the fourth condition is met may depend on UE implementation or be determined based on corresponding UE variables.
  • the UE may maintain certain UE variables to record parameter information related to the fourth condition, such as recording the beam that meets the event, the measurement result of the beam, the change in the measurement result of the beam, etc., so that these UE variables can be used to determine whether the fourth condition is met.
  • how to determine whether the fifth condition is met may depend on UE implementation or be determined based on corresponding UE variables.
  • the UE may maintain certain UE variables to record parameter information related to the fifth condition, such as recording beams that meet the event and beams that do not meet the event, so that these UE variables can be used to determine whether the fifth condition is met.
  • determining whether the beam with the best signal quality has changed may depend on UE implementation or may be determined based on a corresponding UE variable. For example, the UE may maintain a UE variable to record the beam with the best signal quality, and the UE variable may be used to determine whether the beam with the best signal quality has changed.
  • the method further comprises:
  • a second operation is further performed for the measurement reporting event, where the second operation includes one or more of the following:
  • the UE can directly determine whether to trigger subsequent measurement reports based on the reporting period and maximum reporting times configured by the network side, without depending on whether the measurement reporting event is satisfied.
  • the UE may directly trigger a report for the measurement reporting event after the measurement reporting prohibition timer associated with the measurement reporting event times out, without depending on whether the measurement reporting event is satisfied.
  • the UE still needs to trigger subsequent measurement reports according to the reporting period and maximum reporting times configured by the network side when the measurement reporting event is satisfied.
  • the UE still needs to trigger a measurement reporting for the measurement reporting event after the measurement reporting prohibition timer associated with the measurement reporting event times out, if the measurement reporting event is satisfied.
  • the method further comprises:
  • the UE Before executing the first operation, the UE needs to first determine whether the measurement reporting prohibition timer for the measurement reporting event has timed out, and when the measurement reporting prohibition timer times out, the UE executes the behavior specified in the first operation for the measurement reporting event.
  • the method further comprises:
  • the reporting number counter associated with the measurement reporting event is incremented by one;
  • the reporting times counter associated with the measurement reporting event is incremented by one
  • the measurement results carried in this measurement report include one or more of the following:
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the number of such measurement results does not exceed the maximum number of reported measurement results indicated in the second measurement reporting configuration information. For example, assuming that the maximum number of reported measurement results indicated in the second measurement reporting configuration information is Y, the number of reported measurement results of the current serving cell is ⁇ Y.
  • the number of the neighboring cells does not exceed the maximum number of cells reported indicated in the second measurement reporting configuration information. Assuming that the maximum number of cells reported indicated in the second measurement reporting configuration information is X, the number of neighboring cells ⁇ X.
  • the number of such measurement results does not exceed the maximum number of measurement results reported indicated in the second measurement reporting configuration information (if the maximum number of measurement results reported is for this report), or does not exceed the product of the maximum number of measurement results reported indicated in the second measurement reporting configuration information and the maximum number of cells reported (if the maximum number of measurement results reported is for each reporting cell). For example, assuming that the maximum number of measurement results reported indicated in the second measurement reporting configuration information is Y (for this report), the number of measurement results of neighboring cells reported is ⁇ Y.
  • the maximum number of measurement results reported indicated in the second measurement reporting configuration information is Y (for each reporting cell), and the maximum number of cells reported indicated in the second measurement reporting configuration information is X, the number of measurement results of neighboring cells reported is ⁇ X*Y.
  • the reported measurement results include one or more of the following:
  • the beam identifier may be an identifier of a beam that satisfies the event, or a beam identifier recommended by the UE.
  • the cell identifier when the reported measurement result includes a cell identifier, the cell identifier may be an identifier of a cell that meets a measurement reporting event triggering condition, or a cell identifier recommended by the UE.
  • the method further comprises:
  • the network side can configure the first measurement reporting configuration information and/or the second measurement reporting configuration information to the UE, so that after the measurement reporting event is met, the UE can determine to trigger a measurement report based on the first measurement reporting configuration information, and when it is determined to perform the measurement reporting, determine the measurement results required to be carried in this measurement report based on the second measurement reporting configuration information.
  • the method further comprises:
  • the first measurement reporting configuration information and/or the second measurement reporting configuration information are determined based on the configuration identifier.
  • each combination may correspond to a configuration identifier.
  • the network side sends the corresponding configuration identifier to the UE according to the combination to be configured to the UE, and the UE determines the specific first measurement reporting configuration information and/or second measurement reporting configuration information according to the configuration identifier sent by the network side.
  • various combinations may be agreed upon and each combination may be uniquely numbered (ie, a configuration identifier).
  • the UE may directly determine the specific first measurement reporting configuration information and/or the second measurement reporting configuration information based on the configuration identifier sent by the network.
  • the method further comprises:
  • mapping indication information sent by a network device is received, where the mapping indication information is used to indicate, for at least one configuration identifier, first measurement reporting configuration information and/or second measurement reporting configuration information mapped by each configuration identifier.
  • the mapping relationship between the configuration identifier and the first measurement reporting configuration information and/or the second measurement reporting configuration information may not be agreed upon by the protocol, but may be indicated to the UE by the network side.
  • the UE After the UE receives the configuration identifier sent by the network side, it determines the specific first measurement reporting configuration information and/or second measurement reporting configuration information based on the configuration identifier and the mapping indication information sent by the network side.
  • FIG2 is a second flow diagram of a method for reporting layer 1 measurements based on event triggering according to an embodiment of the present disclosure. The method is applied to a network device. As shown in FIG2 , the method includes the following steps:
  • Step 200 Send first measurement reporting configuration information and/or second measurement reporting configuration information to the terminal, or send a configuration identifier for indicating the first measurement reporting configuration information and/or the second measurement reporting configuration information to the terminal; wherein the first measurement reporting configuration information is used by the terminal to determine to trigger a measurement report after determining that at least one measurement reporting event is met; the second measurement reporting configuration information is used by the terminal to determine the measurement result carried in this measurement report when determining to perform measurement reporting.
  • the method further comprises:
  • mapping indication information is sent to the terminal, where the mapping indication information is used to indicate, for at least one configuration identifier, the first measurement reporting configuration information and/or the second measurement reporting configuration information mapped by each configuration identifier.
  • Example 1 The UE may trigger periodic measurement reporting for each measurement reporting event.
  • Step 1-1 The network side sends an RRC reconfiguration message, which carries the configuration related to the event-triggered L1 measurement (measurement object (which can be cell or beam level), measurement reporting event associated with the measurement object, measurement evaluation criteria, etc.).
  • the event-triggered L1 measurement which can be cell or beam level
  • measurement object which can be cell or beam level
  • measurement reporting event associated with the measurement object
  • measurement evaluation criteria etc.
  • the network further configures first measurement reporting configuration information and/or second measurement reporting configuration information to the UE.
  • the first measurement reporting configuration information carries at least one of the following:
  • the second measurement reporting configuration information carries at least one of the following:
  • the UE Instructs the UE to report the maximum number of beams, Z, when performing measurement reporting. Furthermore, the network indicates whether this is the maximum number of beams reported for this report, or the maximum number of beams reported for each reporting cell.
  • Step 1-2 The UE performs L1 measurement and evaluation based on the event-triggered L1 measurement configuration information provided by the network side.
  • the UE maintains a UE variable or an element of a UE variable for each measurement reporting event.
  • the UE variable is at least one of the following:
  • variable 1 The absolute time variable (hereinafter referred to as variable 1) of the measurement reporting triggered by the measurement reporting event (in some embodiments, a list is maintained for each measurement reporting event);
  • the UE variable is used to record the number of measurement reports triggered by the measurement reporting event (hereinafter referred to as variable 2);
  • the UE variable is used to record a time difference variable (hereinafter referred to as variable 3) between the measurement reporting event and the most recent measurement reporting event that meets and triggers the measurement reporting.
  • variable 3 a time difference variable
  • the UE will initialize the above UE variables respectively, such as initializing the above variables 1/2/3 to 0.
  • the UE performs any of the following operations (1) and (2):
  • Step 1-3-1 If the UE evaluates and finds that the measurement reporting event is satisfied, and the measurement reporting event is triggered for the first time (satisfied for the first time), the UE determines to trigger a measurement report.
  • the determination that the measurement reporting event is triggered for the first time may depend on UE implementation judgment, or may be determined based on the variable value being 0 in the corresponding UE variable.
  • Step 1-3-2 At each interval of the reporting cycle configured by the network side (without determining whether the measurement reporting event is satisfied), the UE performs the following operations:
  • the UE determines whether the number of reports exceeds the maximum number of reports configured on the network side:
  • the UE does not trigger a measurement report, and in some embodiments, stops the measurement evaluation for the event, or does not initiate a measurement report for the event of the measurement evaluation even if a subsequent measurement evaluation for the event finds that the condition is met;
  • the UE triggers a measurement report (not necessarily when the measurement reporting event is satisfied).
  • Step 1-4 If measurement reporting is triggered in the above steps 1-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • each time the UE performs a measurement report for each measurement reporting event that triggers this measurement report, the UE updates its corresponding UE variable, and the specific operations include at least one of the following:
  • variable 1 contains a list, add a new element to the list of variable 1, where the new element is the time reported for this measurement;
  • variable 1 contains a numerical value
  • the value in variable 1 is updated to the time reported by this measurement
  • variable 3 it is updated to the time difference between the current measurement report and the measurement report caused by the most recent measurement report event (when the report is triggered for the first time, the time difference is 0).
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Step 1-3-1 If the UE evaluates and finds that the measurement reporting event is satisfied, and the measurement reporting event is triggered for the first time (ie, because the measurement reporting event is satisfied and no measurement reporting has been triggered before), the UE determines to trigger a measurement report.
  • Step 1-3-2 If the UE evaluates and finds that the measurement reporting event is satisfied, but the measurement reporting event is not triggered for the first time, and the measurement reporting has been triggered and performed before due to the satisfaction of the measurement reporting event, the UE performs the following operations:
  • the UE determines whether the time difference between the current triggering time and the most recent measurement reporting time due to the measurement reporting event being met is greater than the reporting period configured on the network side:
  • the UE further determines whether the number of reports triggered by the measurement reporting event is greater than the maximum number of reports configured on the network side; if so, no measurement report is triggered; if not, a measurement report is triggered;
  • the UE does not trigger a measurement report.
  • the "UE determines whether the time difference between the time of this trigger and the time of the most recent measurement report due to the satisfaction of the measurement reporting event is greater than the reporting period configured on the network side” may depend on the UE implementation, and/or determine whether the corresponding UE variable 3 is greater than the reporting period, and/or subtract the time of the most recent measurement report triggering time in the corresponding UE variable 1 from the time when the current measurement reporting event is satisfied, and then determine whether the difference is greater than the reporting period.
  • the "UE determines whether the number of reports triggered by the measurement reporting event is greater than the maximum number of reports configured on the network side” may depend on the UE implementation, and/or determine the size between the value of the corresponding UE variable 2 and the maximum number of reports configured on the network side.
  • Step 1-4 If measurement reporting is triggered in step 3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • each time the UE performs a measurement report for each measurement reporting event that triggers this measurement report, the UE updates its corresponding UE variable, and the specific operations include at least one of the following:
  • variable 1 contains a list, add a new element to the list of variable 1, where the new element is the time reported for this measurement;
  • variable 1 contains a numerical value
  • the value in variable 1 is updated to the time reported by this measurement
  • variable 3 it is updated to the time difference between the current measurement report and the measurement report caused by the most recent measurement report event (when the report is triggered for the first time, the time difference is 0).
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Example 2 The UE triggers a single report for each measurement reporting event (reporting can be performed only when the event is met for the first time).
  • Step 2-1 The network side sends an RRC reconfiguration message, which carries the configuration related to the event-triggered L1 measurement (measurement object (which can be cell or beam level), measurement reporting event associated with the measurement object, measurement evaluation criteria, etc.).
  • the event-triggered L1 measurement which can be cell or beam level
  • measurement reporting event associated with the measurement object
  • measurement evaluation criteria etc.
  • the network further configures first measurement reporting configuration information and/or second measurement reporting configuration information to the UE.
  • the first measurement reporting configuration information carries at least one of the following:
  • Indication information of single reporting ie, the UE triggers measurement reporting only once when the event is triggered for the first time.
  • the second measurement reporting configuration information carries at least one of the following:
  • the UE Instructs the UE to report the maximum number of beams, Z, when performing measurement reporting. Furthermore, the network indicates whether this is the maximum number of beams reported for this report, or the maximum number of beams reported for each reporting cell.
  • Step 2-2 The UE performs L1 measurement and evaluation based on the event-triggered L1 measurement configuration information provided by the network side.
  • Step 2-3 If the UE evaluates and finds that the measurement reporting event is satisfied, and the measurement reporting event is triggered for the first time, the UE determines to trigger a measurement report.
  • the determining whether the measurement reporting event is triggered for the first time may depend on the UE implementation judgment.
  • Step 2-4 If measurement reporting is triggered in the above step 2-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Example 3 The UE triggers reporting based on corresponding reporting conditions (when the reporting conditions are met, the measurement reporting event triggers a measurement report).
  • Step 3-1 The network side sends an RRC reconfiguration message, which carries the configuration related to the event-triggered L1 measurement (measurement object (which can be cell or beam level), measurement reporting event associated with the measurement object, measurement evaluation criteria, etc.).
  • the event-triggered L1 measurement which can be cell or beam level
  • measurement object which can be cell or beam level
  • measurement reporting event associated with the measurement object
  • measurement evaluation criteria etc.
  • the network further configures first measurement reporting configuration information and/or second measurement reporting configuration information to the UE.
  • the first measurement reporting configuration information carries at least one of the following:
  • the UE triggers a measurement report; the measurement result can be the top N best measurement results (N ⁇ 1);
  • the second measurement reporting configuration information carries at least one of the following:
  • the UE Instructs the UE to report the maximum number of beams, Z, when performing measurement reporting. Furthermore, the network indicates whether this is the maximum number of beams reported for this report, or the maximum number of beams reported for each reporting cell.
  • Step 3-2 The UE performs L1 measurement and evaluation based on the event-triggered L1 measurement configuration information provided by the network side.
  • the UE maintains a UE variable or an element of a UE variable for each measurement reporting event.
  • the UE variable is at least one of the following:
  • the UE will initialize the above UE variables respectively, such as initializing the above variables 4/5/6/7 to 0.
  • step 3-3 for each measurement reporting event:
  • Step 3-3-1 If the UE evaluates and finds that the measurement reporting event is satisfied, and the measurement reporting event is triggered for the first time (ie, because the measurement reporting event is satisfied and no measurement reporting has been triggered before), the UE determines to trigger a measurement report.
  • Step 3-3-2 If the UE evaluates and finds that the measurement reporting event is satisfied, but the measurement reporting event is not triggered for the first time, and the measurement reporting has been triggered and performed before due to the satisfaction of the measurement reporting event, the UE performs one of the following operations:
  • the UE determines whether the change in the measurement result corresponding to the current measurement reporting event compared to the measurement result at the last event triggering (which can be per cell or per beam) exceeds a threshold pre-configured by the network.
  • the measurement result can be the top N best measurement results.
  • the UE If the threshold pre-configured by the network is exceeded, the UE triggers a measurement report.
  • the UE does not trigger a measurement report.
  • the UE determines whether a change in the number of beams that satisfy the event when this event is triggered compared to the number of beams that satisfy the event when the last event is triggered is greater than a threshold preconfigured by the network.
  • the UE If the threshold pre-configured by the network is exceeded, the UE triggers a measurement report.
  • the UE does not trigger a measurement report.
  • the "UE determines whether the change in the measurement result corresponding to when the current measurement reporting event is satisfied compared to the measurement result when the last event is triggered (which can be per cell, per beam) exceeds the network pre-configured threshold” may depend on the UE implementation, and/or determine the size between the variable 4 and the network pre-configured threshold, and/or subtract the corresponding measurement result recorded in the variable 6 from the measurement result corresponding to when the current measurement reporting event is satisfied, and determine the size between the obtained difference and the network pre-configured threshold.
  • the "UE determines whether the change in the number of beams that meet the event when this event is triggered is greater than the network pre-configured threshold compared to the number of beams that meet the event when the last event is triggered” may depend on the UE implementation, and/or determine the size between the variable 5 and the network pre-configured threshold, and/or subtract the corresponding number of beams that meet the threshold recorded in the variable 7 from the corresponding number of beams that meet the threshold when the measurement reporting event is met, and determine the size between the obtained difference and the network pre-configured threshold.
  • Step 3-3-3 In some embodiments, each time the UE evaluates and finds that the measurement reporting event is satisfied, the UE updates the corresponding UE variable for each measurement reporting event that triggers this measurement reporting, and the specific operations include at least one of the following:
  • variable 4 update it to the difference between the measurement result when the current measurement reporting event is met and the measurement result when the most recent measurement reporting event is met;
  • variable 5 update it to the difference between the number of beams that meet the event when the current measurement reporting event is met and the number of beams that meet the event when the most recent measurement reporting event is met;
  • variable 6 add the measurement result when the measurement reporting event is met to variable 6;
  • variable 7 add the number of beams that meet the event when the measurement reporting event is met to variable 7.
  • Step 3-4 If measurement reporting is triggered in the above step 3-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Example 4 The UE performs a single report according to the measurement reporting prohibition timer.
  • Step 4-1 The network side sends an RRC reconfiguration message, which carries the configuration related to the event-triggered L1 measurement (measurement object (which can be cell or beam level), measurement reporting event associated with the measurement object, measurement evaluation criteria, etc.).
  • the event-triggered L1 measurement which can be cell or beam level
  • measurement object which can be cell or beam level
  • measurement reporting event associated with the measurement object
  • measurement evaluation criteria etc.
  • the network further configures first measurement reporting configuration information and/or second measurement reporting configuration information to the UE.
  • the first measurement reporting configuration information carries at least one of the following:
  • the second measurement reporting configuration information carries at least one of the following:
  • the UE Instructs the UE to report the maximum number of beams, Z, when performing measurement reporting. Furthermore, the network indicates whether this is the maximum number of beams reported for this report, or the maximum number of beams reported for each reporting cell.
  • Step 4-2 The UE performs L1 measurement and evaluation based on the event-triggered L1 measurement configuration information provided by the network side.
  • the UE performs any of the following operations (1) and (2):
  • Step 4-3-1 If the UE evaluates and finds that the measurement reporting event is satisfied, and the measurement reporting event is triggered for the first time, the UE determines to trigger a measurement report.
  • Step 4-3-2 Whenever the measurement report prohibition timer expires, the UE triggers a measurement report.
  • Step 4-4 If measurement reporting is triggered in the above step 4-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the UE starts or restarts its corresponding measurement reporting prohibition timer.
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Step 4-3-1 If the UE evaluates and finds that the measurement reporting event is satisfied, and the measurement reporting event is triggered for the first time (ie, because the measurement reporting event is satisfied and no measurement reporting has been triggered before), the UE determines to trigger a measurement report.
  • Step 4-3-2 If the UE evaluates and finds that the measurement reporting event is satisfied, but the measurement reporting event is not triggered for the first time, and the measurement reporting has been triggered and performed before due to the satisfaction of the measurement reporting event, the UE performs the following operations:
  • the UE determines whether its associated measurement report prohibition timer has timed out. If so, the UE triggers a measurement report; if not, the UE does not trigger a measurement report.
  • Step 4-4 If measurement reporting is triggered in the above step 4-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the UE starts or restarts its corresponding measurement reporting prohibition timer.
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Example 5 The UE triggers subsequent periodic reporting according to the measurement reporting prohibition timer.
  • Step 5-1 The network side sends an RRC reconfiguration message, which carries the configuration related to the event-triggered L1 measurement (measurement object (which can be cell or beam level), measurement reporting event associated with the measurement object, measurement evaluation criteria, etc.).
  • the event-triggered L1 measurement which can be cell or beam level
  • measurement object which can be cell or beam level
  • measurement reporting event associated with the measurement object
  • measurement evaluation criteria etc.
  • the network further configures first measurement reporting configuration information and/or second measurement reporting configuration information to the UE.
  • the first measurement reporting configuration information carries at least one of the following:
  • the measurement reporting event is associated with a corresponding measurement reporting prohibition timer.
  • the second measurement reporting configuration information carries at least one of the following:
  • the UE Instructs the UE to report the maximum number of beams, Z, when performing measurement reporting. Furthermore, the network indicates whether this is the maximum number of beams reported for this report, or the maximum number of beams reported for each reporting cell.
  • Step 5-2 The UE performs L1 measurement and evaluation based on the event-triggered L1 measurement configuration information provided by the network side.
  • the UE maintains a UE variable or an element of a UE variable for each measurement reporting event.
  • the UE variable is at least one of the following:
  • variable 1 The absolute time variable (hereinafter referred to as variable 1) of the measurement reporting triggered by the measurement reporting event (in some embodiments, a list is maintained for each measurement reporting event);
  • the UE variable is used to record the number of measurement reports triggered by the measurement reporting event (hereinafter referred to as variable 2);
  • the UE variable is used to record a time difference variable (hereinafter referred to as variable 3) between the measurement reporting event and the most recent measurement reporting event that meets and triggers the measurement reporting.
  • variable 3 a time difference variable
  • the UE will initialize the above UE variables respectively, for example, initializing the above variables 1/2/3 to 0.
  • the initialization operation will be performed once each time the measurement reporting prohibition timer expires.
  • the UE performs any of the following operations (1) and (2):
  • Step 5-3-1 If the UE evaluates and finds that the measurement reporting event is met, and the measurement reporting event is triggered for the first time after the measurement reporting prohibition timer expires or the measurement reporting prohibition timer is not turned on, the UE determines to trigger a measurement report.
  • the determination that the measurement reporting event is triggered for the first time may depend on UE implementation judgment, or may be determined based on the variable value being 0 in the corresponding UE variable.
  • Step 5-3-2 At each interval of the reporting cycle configured by the network side (without determining whether the measurement reporting event is satisfied), the UE performs the following operations:
  • the UE determines whether the number of reports exceeds the maximum number of reports configured on the network side:
  • the UE If the maximum number of reports configured on the network side is exceeded, the UE:
  • No measurement report is triggered, and in some embodiments, the measurement evaluation for the event is stopped, or even if a subsequent measurement evaluation for the event finds that it is satisfied, no measurement report is initiated for the event of the measurement evaluation;
  • the UE If the maximum reporting times configured by the network side is not exceeded, the UE triggers a measurement report (without the need for the measurement reporting event to be satisfied).
  • Step 5-4 If measurement reporting is triggered in the above step 5-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the UE for each measurement reporting event that triggers measurement reporting, if it is the first time that measurement reporting is triggered (ie, the first time after receiving the configuration), the UE starts its corresponding measurement reporting prohibition timer.
  • each time the UE performs a measurement report for each measurement reporting event that triggers this measurement report, the UE updates its corresponding UE variable, and the specific operations include at least one of the following:
  • variable 1 contains a list, add a new element to the list of variable 1, where the new element is the time reported for this measurement;
  • variable 1 contains a numerical value
  • the value in variable 1 is updated to the time reported by this measurement
  • variable 3 it is updated to the time difference between the current measurement report and the measurement report caused by the most recent measurement report event (when the report is triggered for the first time, the time difference is 0).
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Step 5-3-1 If the UE evaluates and finds that the measurement reporting event is met, and the measurement reporting event is triggered for the first time after the measurement reporting prohibition timer expires or the measurement reporting prohibition timer is not turned on, the UE determines to trigger a measurement report.
  • Step 5-3-2 If the UE evaluates and finds that the measurement reporting event is satisfied, but the measurement reporting event is not triggered for the first time, and the measurement reporting has been triggered and performed before due to the satisfaction of the measurement reporting event, the UE performs the following operations:
  • the UE determines whether the time difference between the current triggering time and the most recent measurement reporting time due to the measurement reporting event being met is greater than the reporting period configured on the network side:
  • the UE further determines whether the number of reports triggered by the measurement reporting event is greater than the maximum number of reports configured by the network side. If so, no measurement report is triggered, and in some embodiments, the corresponding measurement report prohibition timer is started or restarted; if not, a measurement report is triggered.
  • the UE does not trigger a measurement report.
  • the "UE determines whether the time difference between the time of this trigger and the time of the most recent measurement report due to the satisfaction of the measurement reporting event is greater than the reporting period configured on the network side” may depend on the UE implementation, and/or determine whether the corresponding UE variable 3 is greater than the reporting period, and/or subtract the time of the most recent measurement report triggering time in the corresponding UE variable 1 from the time when the current measurement reporting event is satisfied, and then determine whether the difference is greater than the reporting period.
  • the "UE determines whether the number of reports triggered by the measurement reporting event is greater than the maximum number of reports configured on the network side” may depend on the UE implementation, and/or determine the size between the value of the corresponding UE variable 2 and the maximum number of reports configured on the network side.
  • Step 5-4 If measurement reporting is triggered in the above step 5-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the UE for each measurement reporting event that triggers measurement reporting, if it is the first time that measurement reporting is triggered (ie, the first time after receiving the configuration), the UE starts its corresponding measurement reporting prohibition timer.
  • each time the UE performs a measurement report for each measurement reporting event that triggers this measurement report, the UE updates its corresponding UE variable, and the specific operations include at least one of the following:
  • variable 1 contains a list, add a new element to the list of variable 1, where the new element is the time reported for this measurement;
  • variable 1 contains a numerical value
  • the value in variable 1 is updated to the time reported by this measurement
  • variable 3 it is updated to the time difference between the current measurement report and the measurement report caused by the most recent measurement report event (when the report is triggered for the first time, the time difference is 0).
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • Example 6 The UE triggers reporting based on corresponding reporting conditions according to the measurement reporting prohibition timer.
  • Step 6-1 The network side sends an RRC reconfiguration message, which carries the configuration related to the event-triggered L1 measurement (measurement object (which can be cell or beam level), measurement reporting event associated with the measurement object, measurement evaluation criteria, etc.).
  • the event-triggered L1 measurement which can be cell or beam level
  • measurement object which can be cell or beam level
  • measurement reporting event associated with the measurement object
  • measurement evaluation criteria etc.
  • the network further configures first measurement reporting configuration information and/or second measurement reporting configuration information to the UE.
  • the first measurement reporting configuration information carries at least one of the following:
  • the UE triggers a measurement report; the measurement result can be the top N best measurement results (N ⁇ 1);
  • the second measurement reporting configuration information carries at least one of the following:
  • the UE Instructs the UE to report the maximum number of beams, Z, when performing measurement reporting. Furthermore, the network indicates whether this is the maximum number of beams reported for this report, or the maximum number of beams reported for each reporting cell.
  • Step 6-2 The UE performs L1 measurement and evaluation based on the event-triggered L1 measurement configuration information provided by the network side.
  • the UE maintains a UE variable or an element of a UE variable for each measurement reporting event.
  • the UE variable is at least one of the following:
  • the UE will initialize the above UE variables respectively, for example, initializing the above variables 4/5/6/7 to 0.
  • the initialization operation will be performed once each time the measurement reporting prohibition timer expires.
  • Step 6-3-1 If the UE evaluates and finds that the measurement reporting event is met, and the measurement reporting event is triggered for the first time after the measurement reporting prohibition timer expires or when the measurement reporting prohibition timer is not enabled, the UE determines to trigger a measurement report.
  • Step 6-3-2 If the UE evaluates and finds that the measurement reporting event is satisfied, but the measurement reporting event is not triggered for the first time, and the measurement reporting prohibition timer expires, the UE performs one of the following operations:
  • the UE determines whether the change in the measurement result corresponding to the current measurement reporting event compared to the measurement result at the last event triggering (which can be per cell or per beam) exceeds a threshold pre-configured by the network.
  • the measurement result can be the top N best measurement results.
  • the UE If the threshold pre-configured by the network is exceeded, the UE triggers a measurement report.
  • the UE does not trigger a measurement report.
  • the UE determines whether a change in the number of beams that satisfy the event when this event is triggered compared to the number of beams that satisfy the event when the last event is triggered is greater than a threshold preconfigured by the network.
  • the UE If the threshold pre-configured by the network is exceeded, the UE triggers a measurement report.
  • the UE does not trigger a measurement report.
  • the "UE determines whether the change in the measurement result corresponding to when the current measurement reporting event is satisfied compared to the measurement result when the last event is triggered (which can be per cell, per beam) exceeds the network pre-configured threshold” may depend on the UE implementation, and/or determine the size between the variable 4 and the network pre-configured threshold, and/or subtract the corresponding measurement result recorded in the variable 6 from the measurement result corresponding to when the current measurement reporting event is satisfied, and determine the size between the obtained difference and the network pre-configured threshold.
  • the "UE determines whether the change in the number of beams that meet the event when this event is triggered is greater than the network pre-configured threshold compared to the number of beams that meet the event when the last event is triggered” may depend on the UE implementation, and/or determine the size between the variable 5 and the network pre-configured threshold, and/or subtract the corresponding number of beams that meet the threshold recorded in the variable 7 from the corresponding number of beams that meet the threshold when the measurement reporting event is met, and determine the size between the obtained difference and the network pre-configured threshold.
  • Step 6-3-3 each time the UE evaluates and finds that the measurement reporting event is satisfied, the UE updates the corresponding UE variable for each measurement reporting event that triggers this measurement reporting, and the specific operations include at least one of the following:
  • variable 4 update it to the difference between the measurement result when the current measurement reporting event is met and the measurement result when the most recent measurement reporting event is met;
  • variable 5 update it to the difference between the number of beams that meet the event when the current measurement reporting event is met and the number of beams that meet the event when the most recent measurement reporting event is met;
  • variable 6 add the measurement result when the measurement reporting event is met to variable 6;
  • variable 7 add the number of beams that meet the event when the measurement reporting event is met to variable 7.
  • Step 6-4 If measurement reporting is triggered in the above step 6-3 (due to evaluation of multiple measurement reporting events, there may be multiple measurement reports triggered simultaneously), the UE performs a measurement reporting operation.
  • the UE for each measurement reporting event that triggers measurement reporting, the UE starts its corresponding measurement reporting prohibition timer.
  • the measurement result carried in the measurement report initiated by the UE is determined according to the second measurement report configuration information configured by the network side. Specifically, the measurement result carried in the measurement report is at least one of the following:
  • the number of the measurement results is ⁇ Y;
  • the number of measurement results is ⁇ Y; in some embodiments, the number of measurement results is ⁇ X*Y; in some embodiments, the number of included neighboring cells is ⁇ X;
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • the methods and devices provided in the various embodiments of the present disclosure are based on the same application concept. Since the methods and devices solve problems based on similar principles, the implementation of the devices and methods can refer to each other, and the repeated parts will not be repeated.
  • FIG3 is a schematic structural diagram of a terminal provided by an embodiment of the present disclosure.
  • the terminal includes a memory 320 , a transceiver 310 , and a processor 300 ; wherein the processor 300 and the memory 320 may also be physically arranged separately.
  • the memory 320 is used to store computer programs; the transceiver 310 is used to send and receive data under the control of the processor 300.
  • the transceiver 310 is configured to receive and send data under the control of the processor 300 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically various circuits of one or more processors represented by processor 300 and memory represented by memory 320, linked together.
  • the bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and are therefore not further described in this disclosure.
  • the bus interface provides an interface.
  • the transceiver 310 may be a plurality of components, i.e., a transmitter and a receiver, providing a unit for communicating with various other devices on a transmission medium, such as a wireless channel, a wired channel, an optical cable, and other transmission media.
  • the user interface 330 may also be an interface capable of connecting external or internal devices as required, and the connected devices include but are not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the processor 300 is responsible for managing the bus architecture and general processing, and the memory 320 can store data used by the processor 300 when performing operations.
  • the processor 300 can be a central processing unit (CPU), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA) or a complex programmable logic device (CPLD).
  • the processor can also adopt a multi-core architecture.
  • the processor 300 calls the computer program stored in the memory 320 to execute any of the methods provided in the embodiments of the present disclosure according to the obtained executable instructions, for example: after determining that at least one measurement reporting event is met, determining to trigger a measurement report based on the first measurement reporting configuration information; and determining the measurement result carried in this measurement report based on the second measurement reporting configuration information.
  • the first measurement reporting configuration information includes one or more of the following:
  • a measurement report prohibit timer associated with a measurement report event where the measurement report prohibit timer is used to indicate that the terminal triggers a measurement report after the measurement report prohibit timer expires;
  • the first indication information is used to indicate that the terminal triggers a measurement report when a first condition is met, the first condition including: a change in the measurement result when the current measurement report event is triggered compared to the measurement result when the previous measurement report event is triggered is greater than a first threshold;
  • the second indication information is used to instruct the terminal to trigger a measurement report when a second condition is met, where the second condition includes: a change in the number of beams that meet the event when the current measurement report event is triggered compared to the number of beams that meet the event when the last measurement report event is triggered is greater than a second threshold;
  • the third indication information is used to instruct the terminal to trigger a measurement report when a third condition is met, where the third condition includes: a change in the measurement result of the first beam that meets the event is greater than a third threshold after the last measurement report, and the first beam has not been reported to the network;
  • the fourth indication information is used to instruct the terminal to trigger a measurement report when a fourth condition is met, the fourth condition including: a change in the measurement result of the second beam that meets the event after the last measurement report is greater than a fourth threshold, the second beam has been reported to the network, and the network has not been notified after the event is no longer met;
  • the fifth indication information is used to indicate that the terminal triggers a measurement report when the fifth condition is met, where the fifth condition includes at least one of the following: after the last measurement report, the number of newly added beams that meet the event is greater than the fifth threshold, and the newly added beams that meet the event are not reported to the network; after the last measurement report, the number of newly added beams that do not meet the event is greater than the fifth threshold, the newly added beams that do not meet the event have been reported to the network, and the network has not been notified after the event is not met;
  • the sixth indication information is used to indicate that when the beam with the best signal quality changes, the terminal triggers a measurement report.
  • the continuously periodically reported configuration information includes one or more of the following:
  • Indication information used to indicate whether periodic reporting after the initial measurement report needs to meet the measurement reporting event.
  • the second measurement reporting configuration information includes one or more of the following:
  • the seventh indication information is used to instruct the terminal to report the latest measurement result of the cell or beam corresponding to the measurement reporting event for which the measurement result has been reported to the network due to event triggering;
  • the eighth indication information is used to instruct the terminal to report the measurement result of the current serving cell
  • the ninth indication information is used to indicate whether the measurement result reported by the terminal includes the measurement result of the neighboring cell;
  • Tenth indication information the tenth indication information is used to indicate whether the terminal only reports the measurement results corresponding to the measurement reporting event that is met this time;
  • the eleventh indication information is used to indicate whether the terminal only reports the measurement result corresponding to the measurement reporting event that caused the current measurement report to be triggered;
  • the twelfth indication information is used to instruct the terminal to report only the index of the beam with the best signal quality among the beams that meet the event, without reporting the measurement result;
  • the thirteenth indication information is used to instruct the terminal to report only the index of the beam that meets the event, without reporting the measurement result;
  • the fourteenth indication information is used to instruct the terminal to report the index of the beam that does not meet the event, without reporting the measurement result;
  • the fifteenth indication information is used to instruct the terminal to report the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality when the beam with the best signal quality changes.
  • determining to trigger a measurement report based on the first measurement reporting configuration information includes:
  • the method further comprises:
  • a second operation is further performed for the measurement reporting event, where the second operation includes one or more of the following:
  • the method further comprises:
  • the first time the condition is satisfied is calculated from the time when the measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives the L1 measurement configuration information.
  • the most recent measurement report caused by a measurement reporting event is calculated from the time when a measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives L1 measurement configuration information.
  • the method further comprises:
  • start the measurement report prohibition timer associated with the measurement report event For each measurement report event that meets the triggering conditions during the current measurement report, start the measurement report prohibition timer associated with the measurement report event;
  • the reporting count counter associated with the measurement reporting event is incremented by one;
  • the reporting count counter associated with the measurement reporting event is incremented by one
  • the measurement results carried in this measurement report include one or more of the following:
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • the method further comprises:
  • the method further comprises:
  • the first measurement reporting configuration information and/or the second measurement reporting configuration information are determined based on the configuration identifier.
  • the method further comprises:
  • mapping indication information sent by a network device is received, where the mapping indication information is used to indicate, for at least one configuration identifier, first measurement reporting configuration information and/or second measurement reporting configuration information mapped by each configuration identifier.
  • FIG4 is a schematic structural diagram of a network device provided in an embodiment of the present disclosure.
  • the network device includes a memory 420 , a transceiver 410 , and a processor 400 ; wherein the processor 400 and the memory 420 may also be physically arranged separately.
  • the memory 420 is used to store computer programs; the transceiver 410 is used to send and receive data under the control of the processor 400.
  • the transceiver 410 is configured to receive and send data under the control of the processor 400 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically linking together various circuits of one or more processors represented by processor 400 and memory represented by memory 420.
  • the bus architecture may also link together various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are well known in the art and are therefore not further described in this disclosure.
  • the bus interface provides an interface.
  • the transceiver 410 may be a plurality of components, namely, a transmitter and a receiver, providing a unit for communicating with various other devices over a transmission medium, such as a wireless channel, a wired channel, an optical cable, or the like.
  • the processor 400 is responsible for managing the bus architecture and general processing, and the memory 420 can store data used by the processor 400 when performing operations.
  • the processor 400 may be a CPU, an ASIC, an FPGA or a CPLD, and the processor may also adopt a multi-core architecture.
  • the processor 400 is configured to execute any of the methods provided in the embodiments of the present disclosure according to the obtained executable instructions by calling the computer program stored in the memory 420, for example: sending first measurement reporting configuration information and/or second measurement reporting configuration information to the terminal, or sending a configuration identifier indicating the first measurement reporting configuration information and/or the second measurement reporting configuration information to the terminal; wherein the first measurement reporting configuration information is used by the terminal to determine to trigger a measurement report after determining that at least one measurement reporting event is satisfied; and the second measurement reporting configuration information is used by the terminal to determine the measurement result carried in this measurement report when determining to perform measurement reporting.
  • the method further comprises:
  • mapping indication information is sent to the terminal, where the mapping indication information is used to indicate, for at least one configuration identifier, the first measurement reporting configuration information and/or the second measurement reporting configuration information mapped by each configuration identifier.
  • FIG5 is a schematic diagram of a structure of a layer 1 measurement reporting device based on event triggering according to an embodiment of the present disclosure. As shown in FIG5 , the device includes:
  • a first determining unit 500 is configured to determine, after determining that at least one measurement reporting event is satisfied, to trigger a measurement report based on first measurement reporting configuration information;
  • the second determining unit 510 is configured to determine the measurement result carried in the current measurement report based on the second measurement report configuration information.
  • the first measurement reporting configuration information includes one or more of the following:
  • a measurement report prohibit timer associated with a measurement report event where the measurement report prohibit timer is used to indicate that the terminal triggers a measurement report after the measurement report prohibit timer expires;
  • the first indication information is used to indicate that the terminal triggers a measurement report when a first condition is met, the first condition including: a change in the measurement result when the current measurement report event is triggered compared to the measurement result when the previous measurement report event is triggered is greater than a first threshold;
  • the second indication information is used to instruct the terminal to trigger a measurement report when a second condition is met, where the second condition includes: a change in the number of beams that meet the event when the current measurement report event is triggered compared to the number of beams that meet the event when the last measurement report event is triggered is greater than a second threshold;
  • the third indication information is used to instruct the terminal to trigger a measurement report when a third condition is met, where the third condition includes: a change in the measurement result of the first beam that meets the event is greater than a third threshold after the last measurement report, and the first beam has not been reported to the network;
  • the fourth indication information is used to instruct the terminal to trigger a measurement report when a fourth condition is met, the fourth condition including: a change in the measurement result of the second beam that meets the event after the last measurement report is greater than a fourth threshold, the second beam has been reported to the network, and the network has not been notified after the event is no longer met;
  • the fifth indication information is used to indicate that the terminal triggers a measurement report when the fifth condition is met, where the fifth condition includes at least one of the following: after the last measurement report, the number of newly added beams that meet the event is greater than the fifth threshold, and the newly added beams that meet the event are not reported to the network; after the last measurement report, the number of newly added beams that do not meet the event is greater than the fifth threshold, the newly added beams that do not meet the event have been reported to the network, and the network has not been notified after the event is not met;
  • the sixth indication information is used to indicate that when the beam with the best signal quality changes, the terminal triggers a measurement report.
  • the configuration information reported continuously and periodically includes one or more of the following:
  • Indication information used to indicate whether periodic reporting after the initial measurement report needs to meet the measurement reporting event.
  • the second measurement reporting configuration information includes one or more of the following:
  • the seventh indication information is used to instruct the terminal to report the latest measurement result of the cell or beam corresponding to the measurement reporting event for which the measurement result has been reported to the network due to event triggering;
  • the eighth indication information is used to instruct the terminal to report the measurement result of the current serving cell
  • the ninth indication information is used to indicate whether the measurement result reported by the terminal includes the measurement result of the neighboring cell;
  • Tenth indication information the tenth indication information is used to indicate whether the terminal only reports the measurement results corresponding to the measurement reporting event that is met this time;
  • the eleventh indication information is used to indicate whether the terminal only reports the measurement result corresponding to the measurement reporting event that caused the current measurement report to be triggered;
  • the twelfth indication information is used to instruct the terminal to report only the index of the beam with the best signal quality among the beams that meet the event, without reporting the measurement result;
  • the thirteenth indication information is used to instruct the terminal to report only the index of the beam that meets the event, without reporting the measurement result;
  • the fourteenth indication information is used to instruct the terminal to report the index of the beam that does not meet the event, without reporting the measurement result;
  • the fifteenth indication information is used to instruct the terminal to report the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality when the beam with the best signal quality changes.
  • determining to trigger a measurement report based on the first measurement reporting configuration information includes:
  • the apparatus further comprises:
  • the first execution unit is configured to, when the measurement reporting event triggers a measurement report, further perform a second operation on the measurement reporting event, where the second operation includes one or more of the following:
  • the apparatus further includes a third determining unit configured to:
  • the first time the condition is satisfied is calculated from the time when the measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives the layer 1 measurement configuration information.
  • the most recent measurement report caused by a measurement reporting event is calculated from the time when a measurement reporting prohibition timer associated with the measurement reporting event times out, or from the time when the terminal receives layer 1 measurement configuration information.
  • the apparatus further comprises:
  • the second execution unit is configured to perform one or more of the following operations after performing a measurement report:
  • start the measurement report prohibition timer associated with the measurement report event For each measurement report event that meets the triggering conditions during the current measurement report, start the measurement report prohibition timer associated with the measurement report event;
  • the reporting count counter associated with the measurement reporting event is incremented by one;
  • the reporting count counter associated with the measurement reporting event is incremented by one
  • the measurement results carried in this measurement report include one or more of the following:
  • the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality is the index of the beam with the best signal quality and/or the measurement result of the beam with the best signal quality.
  • the measurement results include one or more of the following:
  • the apparatus further comprises:
  • the first receiving unit is configured to receive first measurement reporting configuration information and/or second measurement reporting configuration information sent by a network device.
  • the apparatus further comprises:
  • a second receiving unit configured to receive a configuration identifier sent by the network device
  • the fourth determining unit is configured to determine the first measurement reporting configuration information and/or the second measurement reporting configuration information based on the configuration identifier.
  • the apparatus further comprises:
  • the third receiving unit is configured to receive mapping indication information sent by the network device, where the mapping indication information is used to indicate, for at least one configuration identifier, the first measurement reporting configuration information and/or the second measurement reporting configuration information mapped by each configuration identifier.
  • FIG6 is a second structural diagram of an event-triggered layer 1 measurement reporting device according to an embodiment of the present disclosure. As shown in FIG6 , the device includes:
  • the sending unit 600 is configured to send the first measurement reporting configuration information and/or the second measurement reporting configuration information to the terminal, or send a configuration identifier indicating the first measurement reporting configuration information and/or the second measurement reporting configuration information to the terminal;
  • the first measurement reporting configuration information is used by the terminal to determine to trigger a measurement report after determining that at least one measurement reporting event is satisfied; the second measurement reporting configuration information is used by the terminal to determine the measurement result carried in this measurement report when determining to perform measurement reporting.
  • the sending unit 600 is further configured to:
  • mapping indication information is sent to the terminal, where the mapping indication information is used to indicate, for at least one configuration identifier, the first measurement reporting configuration information and/or the second measurement reporting configuration information mapped by each configuration identifier.
  • the division of units in the embodiments of the present disclosure is schematic and is merely a logical functional division. In actual implementation, other division methods may be used.
  • the functional units in the various embodiments of the present disclosure may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit.
  • the aforementioned integrated units may be implemented in the form of hardware or software functional units.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a processor-readable storage medium.
  • the computer software product is stored in a storage medium, including several instructions for enabling a computer device (which can be a personal computer, server, or network device, etc.) or a processor to execute all or part of the steps of the method described in each embodiment of the present disclosure.
  • the aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), magnetic disk or optical disk, and other media that can store program code.
  • an embodiment of the present disclosure further provides a non-transitory readable storage medium, which stores a computer program, and the computer program is used to enable a processor to execute the event-triggered layer 1 measurement reporting method provided in the above embodiments.
  • non-transitory readable storage medium provided in the embodiment of the present disclosure can implement all the method steps implemented in the above-mentioned method embodiment and can achieve the same technical effect.
  • the parts and beneficial effects of this embodiment that are the same as those in the method embodiment will not be described in detail here.
  • the non-transitory readable storage medium can be any available medium or data storage device that can be accessed by a computer, including but not limited to magnetic storage (such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.), optical storage (such as CDs, DVDs, BDs, HVDs, etc.), and semiconductor storage (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state drives (SSDs)), etc.
  • magnetic storage such as floppy disks, hard disks, magnetic tapes, magneto-optical disks (MO), etc.
  • optical storage such as CDs, DVDs, BDs, HVDs, etc.
  • semiconductor storage such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state drives (SSDs)
  • applicable systems may include the Global System of Mobile Communication (GSM) system, the Code Division Multiple Access (CDMA) system, the Wideband Code Division Multiple Access (WCDMA) general packet radio service (GPRS) system, the Long Term Evolution (LTE) system, the LTE frequency division duplex (FDD) system, the LTE time division duplex (TDD) system, the Long Term Evolution Advanced (LTE-A) system, the Universal Mobile Telecommunication System (UMTS), the Worldwide Interoperability for Microwave Access (WiMAX) system, and the 5G New Radio (NR) system.
  • GSM Global System of Mobile Communication
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • GPRS general packet radio service
  • LTE Long Term Evolution
  • FDD frequency division duplex
  • TDD LTE time division duplex
  • LTE-A Long Term Evolution Advanced
  • UMTS Universal Mobile Telecommunication System
  • WiMAX Worldwide Interoperability for Microwave Access
  • 5G New Radio NR
  • the terminal involved in the embodiments of the present disclosure may be a device that provides voice and/or data connectivity to a user, a handheld device with wireless connection function, or other processing equipment connected to a wireless modem, etc.
  • the name of the terminal may also be different.
  • the terminal may be called a user equipment (UE).
  • UE user equipment
  • a wireless terminal device may communicate with one or more core networks (CN) via a radio access network (RAN).
  • RAN radio access network
  • a wireless terminal device may be a mobile terminal device, such as a mobile phone (or "cellular" phone) and a computer with a mobile terminal device, for example, a portable, pocket-sized, handheld, computer-built-in or vehicle-mounted mobile device, which exchanges language and/or data with a radio access network.
  • a wireless terminal device may also be referred to as a system, subscriber unit, subscriber station, mobile station, mobile, remote station, access point, remote terminal, access terminal, user terminal, user agent, or user device, but is not limited to these terms in the embodiments of the present disclosure.
  • the network device involved in the embodiments of the present disclosure may be a base station, which may include multiple cells providing services to the terminal.
  • the base station may also be called an access point, or may be a device in the access network that communicates with the wireless terminal device through one or more sectors on the air interface, or other names.
  • the network device can be used to interchange received air frames with Internet Protocol (IP) packets, acting as a router between the wireless terminal device and the rest of the access network, wherein the rest of the access network may include an Internet Protocol (IP) communication network.
  • IP Internet Protocol
  • the network device may also coordinate the attribute management of the air interface.
  • the network device involved in the embodiments of the present disclosure may be a network device (Base Transceiver Station, BTS) in the Global System for Mobile communications (GSM) or Code Division Multiple Access (CDMA), or a network device (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or an evolved network device (evolutionary Node B, eNB or e-NodeB) in the Long Term Evolution (LTE) system, a 5G base station (gNB) in the 5G network architecture (next generation system), or a Home evolved Node B (HeNB), a relay node, a femto base station, a pico base station, etc., but is not limited in the embodiments of the present disclosure.
  • network devices may include centralized unit (CU) nodes and distributed unit (DU) nodes, and the centralized unit and the distributed unit may also be geographically separated.
  • Network devices and terminals can each use one or more antennas for Multiple Input Multiple Output (MIMO) transmission.
  • MIMO transmission can be either Single User MIMO (SU-MIMO) or Multi User MIMO (MU-MIMO).
  • SU-MIMO Single User MIMO
  • MU-MIMO Multi User MIMO
  • MIMO transmission can be 2D-MIMO, 3D-MIMO, FD-MIMO, or Massive-MIMO. It can also employ diversity transmission, precoding, or beamforming.
  • the embodiments of the present disclosure may be provided as methods, systems, or computer program products. Therefore, the present disclosure may take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Furthermore, the present disclosure may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage and optical storage, etc.) containing computer-usable program code.
  • a computer-usable storage media including but not limited to magnetic disk storage and optical storage, etc.
  • These computer-executable instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device produce a device for implementing the functions specified in one or more processes in the flowchart and/or one or more boxes in the block diagram.
  • processor-executable instructions may also be stored in a processor-readable memory that can direct a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the processor-readable memory produce a product including an instruction device that implements the functions specified in one or more processes in the flowchart and/or one or more boxes in the block diagram.
  • processor-executable instructions may also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, whereby the instructions executed on the computer or other programmable device provide steps for implementing the functions specified in one or more processes in the flowchart and/or one or more boxes in the block diagram.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Quality & Reliability (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

本公开提供一种基于事件触发的层一测量上报方法、设备、装置及存储介质,该方法包括:终端在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;基于第二测量上报配置信息确定本次测量上报携带的测量结果。

Description

基于事件触发的层一测量上报方法、设备、装置及存储介质
相关申请的交叉引用
本申请要求于2024年04月12日提交的申请号为202410443466.2,发明名称为“基于事件触发的层一测量上报方法、设备、装置及存储介质”的中国专利申请的优先权,其通过引用方式全部并入本文。
技术领域
本公开涉及无线通信技术领域,尤其涉及一种基于事件触发的层一测量上报方法、设备、装置及存储介质。
背景技术
相关技术中,针对基于事件触发的层一(Layer 1,L1)测量上报机制,事件触发与测量上报之间的关系尚未有相关结论。此外,对于终端(或称用户设备,User Equipment,UE)进行测量上报时携带的内容,当前也尚未有明确的方案。
发明内容
针对相关技术存在的问题,本公开提供一种基于事件触发的层一测量上报方法、设备、装置及存储介质。
第一方面,本公开提供一种基于事件触发的层一测量上报方法,应用于终端,包括:
在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;
基于第二测量上报配置信息确定本次测量上报携带的测量结果。
在一些实施例中,第一测量上报配置信息包含以下一项或多项:
连续的周期性上报的配置信息;
用于指示进行单次上报的指示信息;
测量上报事件关联的测量上报禁止定时器,测量上报禁止定时器用于指示当测量上报禁止定时器超时后,终端触发一次测量上报;
第一指示信息,第一指示信息用于指示在满足第一条件的情况下,终端触发一次测量上报,第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限;
第二指示信息,第二指示信息用于指示在满足第二条件的情况下,终端触发一次测量上报,第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限;
第三指示信息,第三指示信息用于指示在满足第三条件的情况下,终端触发一次测量上报,第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且第一波束未上报给网络;
第四指示信息,第四指示信息用于指示在满足第四条件的情况下,终端触发一次测量上报,第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,第二波束曾上报给网络,并且未在不满足事件后通知网络;
第五指示信息,第五指示信息用于指示在满足第五条件的情况下,终端触发一次测量上报,第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络;
第六指示信息,第六指示信息用于指示在信号质量最好的波束发生变化的情况下,终端触发一次测量上报。
在一些实施例中,连续的周期性上报的配置信息包含以下一项或多项:
用于指示进行连续的周期性上报的指示信息;
上报周期;
最大上报次数;
上报间隔;
用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
在一些实施例中,第二测量上报配置信息包含以下一项或多项:
第七指示信息,第七指示信息用于指示终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
第八指示信息,第八指示信息用于指示终端上报当前服务小区的测量结果;
第九指示信息,第九指示信息用于指示终端上报的测量结果中是否包含邻区的测量结果;
最大上报的小区数量;
最大上报的测量结果数量;
最大上报的波束数量;
第十指示信息,第十指示信息用于指示终端是否只上报本次满足的测量上报事件所对应的测量结果;
第十一指示信息,第十一指示信息用于指示终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
第十二指示信息,第十二指示信息用于指示终端只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
第十三指示信息,第十三指示信息用于指示终端只上报满足事件的波束的索引,无需上报测量结果;
第十四指示信息,第十四指示信息用于指示终端上报不满足事件的波束的索引,无需上报测量结果;
第十五指示信息,第十五指示信息用于指示终端在信号质量最好的波束发生变化的情况下,上报信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,基于第一测量上报配置信息确定触发一次测量上报,包括:
针对每个测量上报事件执行第一操作,第一操作包括以下一项或多项:
判断测量上报事件是否是首次满足,在测量上报事件是首次满足的情况下触发一次测量上报;
判断测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报;
判断距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报;
判断是否满足第一条件,在满足第一条件的情况下触发一次测量上报;
判断是否满足第二条件,在满足第二条件的情况下触发一次测量上报;
判断是否满足第三条件,在满足第三条件的情况下触发一次测量上报;
判断是否满足第四条件,在满足第四条件的情况下触发一次测量上报;
判断是否满足第五条件,在满足第五条件的情况下触发一次测量上报;
判断信号质量最好的波束是否发生变化,在信号质量最好的波束发生变化的情况下触发一次测量上报;
判断测量上报事件关联的测量上报禁止定时器是否超时,在测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
在一些实施例中,该方法还包括:
在测量上报事件触发了一次测量上报的情况下,针对测量上报事件还执行第二操作,第二操作包括以下一项或多项:
在无需测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在无需测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报;
在测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报。
在一些实施例中,该方法还包括:
在确定测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行第一操作。
在一些实施例中,首次满足是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到层一测量配置信息后开始计算的。
在一些实施例中,最近一次由于测量上报事件导致的测量上报,是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到层一测量配置信息后开始计算的。
在一些实施例中,该方法还包括:
在执行一次测量上报后,执行以下一项或多项操作:
针对每个本次测量上报时满足触发条件的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个本次测量上报时满足触发条件的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
针对每个触发本次测量上报的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个触发本次测量上报的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
在一些实施例中,本次测量上报携带的测量结果包括以下一项或多项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
当前服务小区的测量结果;
邻区的测量结果;
本次满足的测量上报事件所对应的测量结果;
导致本次测量上报被触发的测量上报事件所对应的测量结果;
满足事件的波束中信号质量最好的波束的索引;
满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
在一些实施例中,该方法还包括:
接收网络设备发送的第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该方法还包括:
接收网络设备发送的配置标识;
基于配置标识确定第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该方法还包括:
接收网络设备发送的映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
第二方面,本公开还提供一种基于事件触发的层一测量上报方法,应用于网络设备,包括:
向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
其中,第一测量上报配置信息用于终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;第二测量上报配置信息用于终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
在一些实施例中,该方法还包括:
向终端发送映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
第三方面,本公开还提供一种终端,包括存储器,收发机,处理器;
存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;
在确定执行测量上报的情况下,基于第二测量上报配置信息确定本次测量上报携带的测量结果。
在一些实施例中,第一测量上报配置信息包含以下一项或多项:
连续的周期性上报的配置信息;
用于指示进行单次上报的指示信息;
测量上报事件关联的测量上报禁止定时器,测量上报禁止定时器用于指示当测量上报禁止定时器超时后,终端触发一次测量上报;
第一指示信息,第一指示信息用于指示在满足第一条件的情况下,终端触发一次测量上报,第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限;
第二指示信息,第二指示信息用于指示在满足第二条件的情况下,终端触发一次测量上报,第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限;
第三指示信息,第三指示信息用于指示在满足第三条件的情况下,终端触发一次测量上报,第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且第一波束未上报给网络;
第四指示信息,第四指示信息用于指示在满足第四条件的情况下,终端触发一次测量上报,第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,第二波束曾上报给网络,并且未在不满足事件后通知网络;
第五指示信息,第五指示信息用于指示在满足第五条件的情况下,终端触发一次测量上报,第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络;
第六指示信息,第六指示信息用于指示在信号质量最好的波束发生变化的情况下,终端触发一次测量上报。
在一些实施例中,连续的周期性上报的配置信息包含以下一项或多项:
用于指示进行连续的周期性上报的指示信息;
上报周期;
最大上报次数;
上报间隔;
用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
在一些实施例中,第二测量上报配置信息包含以下一项或多项:
第七指示信息,第七指示信息用于指示终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
第八指示信息,第八指示信息用于指示终端上报当前服务小区的测量结果;
第九指示信息,第九指示信息用于指示终端上报的测量结果中是否包含邻区的测量结果;
最大上报的小区数量;
最大上报的测量结果数量;
最大上报的波束数量;
第十指示信息,第十指示信息用于指示终端是否只上报本次满足的测量上报事件所对应的测量结果;
第十一指示信息,第十一指示信息用于指示终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
第十二指示信息,第十二指示信息用于指示终端只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
第十三指示信息,第十三指示信息用于指示终端只上报满足事件的波束的索引,无需上报测量结果;
第十四指示信息,第十四指示信息用于指示终端上报不满足事件的波束的索引,无需上报测量结果;
第十五指示信息,第十五指示信息用于指示终端在信号质量最好的波束发生变化的情况下,上报信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,基于第一测量上报配置信息确定触发一次测量上报,包括:
针对每个测量上报事件执行第一操作,第一操作包括以下一项或多项:
判断测量上报事件是否是首次满足,在测量上报事件是首次满足的情况下触发一次测量上报;
判断测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报;
判断距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报;
判断是否满足第一条件,在满足第一条件的情况下触发一次测量上报;
判断是否满足第二条件,在满足第二条件的情况下触发一次测量上报;
判断是否满足第三条件,在满足第三条件的情况下触发一次测量上报;
判断是否满足第四条件,在满足第四条件的情况下触发一次测量上报;
判断是否满足第五条件,在满足第五条件的情况下触发一次测量上报;
判断信号质量最好的波束是否发生变化,在信号质量最好的波束发生变化的情况下触发一次测量上报;
判断测量上报事件关联的测量上报禁止定时器是否超时,在测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
在一些实施例中,该操作还包括:
在测量上报事件触发了一次测量上报的情况下,针对测量上报事件还执行第二操作,第二操作包括以下一项或多项:
在无需测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在无需测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报;
在测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报。
在一些实施例中,该操作还包括:
在确定测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行第一操作。
在一些实施例中,首次满足是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到层一测量配置信息后开始计算的。
在一些实施例中,最近一次由于测量上报事件导致的测量上报,是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到层一测量配置信息后开始计算的。
在一些实施例中,该操作还包括:
在执行一次测量上报后,执行以下一项或多项操作:
针对每个本次测量上报时满足触发条件的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个本次测量上报时满足触发条件的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
针对每个触发本次测量上报的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个触发本次测量上报的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
在一些实施例中,本次测量上报携带的测量结果包括以下一项或多项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
当前服务小区的测量结果;
邻区的测量结果;
本次满足的测量上报事件所对应的测量结果;
导致本次测量上报被触发的测量上报事件所对应的测量结果;
满足事件的波束中信号质量最好的波束的索引;
满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
在一些实施例中,该操作还包括:
接收网络设备发送的第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该操作还包括:
接收网络设备发送的配置标识;
基于配置标识确定第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该操作还包括:
接收网络设备发送的映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
第四方面,本公开还提供一种网络设备,包括存储器,收发机,处理器;
存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
其中,第一测量上报配置信息用于终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;第二测量上报配置信息用于终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
在一些实施例中,该操作还包括:
向终端发送映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
第五方面,本公开还提供一种基于事件触发的层一测量上报装置,包括:
第一确定单元,用于在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;
第二确定单元,用于基于第二测量上报配置信息确定本次测量上报携带的测量结果。
第六方面,本公开还提供一种基于事件触发的层一测量上报装置,包括:
发送单元,用于向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
其中,第一测量上报配置信息用于终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;第二测量上报配置信息用于终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
第七方面,本公开还提供一种非瞬时可读存储介质,所述非瞬时可读存储介质存储有计算机程序,所述计算机程序用于使处理器执行如上所述第一方面所述的基于事件触发的层一测量上报方法,或执行如上所述第二方面所述的基于事件触发的层一测量上报方法。
第八方面,本公开还提供一种通信设备,所述通信设备中存储有计算机程序,所述计算机程序用于使通信设备执行如上所述第一方面所述的基于事件触发的层一测量上报方法,或执行如上所述第二方面所述的基于事件触发的层一测量上报方法。
第九方面,本公开还提供一种处理器可读存储介质,所述处理器可读存储介质存储有计算机程序,所述计算机程序用于使处理器执行如上所述第一方面所述的基于事件触发的层一测量上报方法,或执行如上所述第二方面所述的基于事件触发的层一测量上报方法。
第十方面,本公开还提供一种芯片产品,所述芯片产品中存储有计算机程序,所述计算机程序用于使芯片产品执行如上所述第一方面所述的基于事件触发的层一测量上报方法,或执行如上所述第二方面所述的基于事件触发的层一测量上报方法。
本公开提供的基于事件触发的层一测量上报方法、设备、装置及存储介质,UE可以在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报,从而可避免频繁触发不必要的测量上报,降低上报开销,而在确定执行测量上报的情况下,UE可以基于第二测量上报配置信息确定本次测量上报携带的测量结果,从而有效解决了基于事件触发的层一测量上报问题,并提升了基于事件触发的层一测量上报的灵活性。
附图说明
为了更清楚地说明本公开实施例或相关技术中的技术方案,下面将对实施例或相关技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本公开的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本公开实施例提供的基于事件触发的层一测量上报方法的流程示意图之一;
图2为本公开实施例提供的基于事件触发的层一测量上报方法的流程示意图之二;
图3为本公开实施例提供的终端的结构示意图;
图4为本公开实施例提供的网络设备的结构示意图;
图5为本公开实施例提供的基于事件触发的层一测量上报装置的结构示意图之一;
图6为本公开实施例提供的基于事件触发的层一测量上报装置的结构示意图之二。
具体实施方式
本公开实施例中术语“和/或”,描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
本公开实施例中术语“多个”是指两个或两个以上,其它量词与之类似。
本公开实施例中术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便本公开的实施例能够以除了在这里图示或描述的那些以外的顺序实施,且“第一”、“第二”所区别的对象通常为一类,并不限定对象的个数,例如第一对象可以是一个,也可以是多个。
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本公开一部分实施例,并不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
为了便于更加清晰地理解本公开各实施例的技术方案,首先对本公开各实施例相关的一些技术内容进行介绍。
1、层一或层二触发的移动性(L1/L2 Triggered Mobility,LTM)
在新空口(New Radio,NR)移动性引入了LTM,即网络为UE预配置LTM候选小区配置信息及LTM L1测量配置信息,UE基于LTM L1测量配置信息进行候选小区的L1测量并上报LTM L1测量结果给网络,网络基于UE上报的L1测量结果信息,进行小区变更判决,若网络决策需要小区变更,网络将通过媒体访问控制层控制单元(Media Access Control Control Element,MAC CE)发送小区变更命令给UE,其中携带目标小区的标识信息,当UE收到小区变更MAC CE,UE将执行小区变更接入到目标候选小区。
2、L1测量上报
当前LTM L1测量的参考信号和上报配置都是通过无线资源控制(Radio Resource Control,RRC)信令配置给终端,然后终端基于配置的L1参考信号执行测量,并通过配置的上报资源在对应的物理信道上上报L1测量结果,其中上报模式包括周期性物理上行控制信道(Physical Uplink Control Channel,PUCCH)上报、半持续PUCCH上报、半持续物理上行共享信道(Physical Uplink Shared Channel,PUSCH)上报和非周期PUSCH上报。
当前正在讨论基于事件触发的L1测量上报机制,但是当测量上报事件满足(触发)后,UE如何进行测量上报以及上报哪些测量结果尚未明确。
图1为本公开实施例提供的基于事件触发的层一测量上报方法的流程示意图之一,该方法应用于终端,如图1所示,该方法包括如下步骤:
步骤100、在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报。
步骤101、基于第二测量上报配置信息确定本次测量上报携带的测量结果。
具体地,本公开实施例中,第一测量上报配置信息用于配置当测量上报事件满足(即测量上报事件对应的门限条件得到满足)后,UE进行发起测量上报(即测量结果的上报)的条件或规则。第二测量上报配置信息用于配置UE在每次进行测量上报时可携带的测量结果。
当UE测量评估发现至少一个测量上报事件满足后,UE基于第一测量上报配置信息确定是否触发一次测量上报。
当UE确定触发一次测量上报并执行测量上报时,可以基于第二测量上报配置信息,确定本次测量上报所需携带的测量结果。
本公开实施例中,测量上报事件可以是针对小区配置的或者是针对波束配置的,本公开不做限定。
本公开实施例提供的基于事件触发的层一测量上报方法,UE可以在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报,从而可避免频繁触发不必要的测量上报,降低上报开销,而在确定执行测量上报的情况下,UE可以基于第二测量上报配置信息确定本次测量上报携带的测量结果,从而有效解决了基于事件触发的层一测量上报问题,并提升了基于事件触发的层一测量上报的灵活性。
在一些实施例中,第一测量上报配置信息包含以下一项或多项:
(1)连续的周期性上报的配置信息。
该连续的周期性上报的配置信息用于配置UE进行连续的周期性上报,本公开中的上报均是指L1测量上报,此概念全文保持一致,后续不再赘述。
在一些实施例中,连续的周期性上报的配置信息包含以下一项或多项:
用于指示进行连续的周期性上报的指示信息;
上报周期;
最大上报次数;
上报间隔;
用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
(2)用于指示进行单次上报的指示信息。
单次上报,可以理解为只当测量上报事件首次触发(满足)时,UE触发一次测量上报。
(3)测量上报事件关联的测量上报禁止定时器,测量上报禁止定时器用于指示当测量上报禁止定时器超时后,终端触发一次测量上报。
(4)第一指示信息,该第一指示信息用于指示在满足第一条件的情况下,终端触发一次测量上报,第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限。
其中,该测量结果可以是每(per)小区的测量结果,或者可以是per波束的测量结果。测量结果具体的类型在此不做限定,比如可以是参考信号接收功率(Reference Signal Receiving Power,RSRP)、参考信号接收质量(Reference Signal Receiving Quality,RSRQ)或其他类型的测量结果。
一些实施方式中,该测量结果可以是前N最优的测量结果(N≥1)。
一些实施方式中,变化量可以是增加量或者减少量。
一些实施方式中,该变化量具体为增加量还是减少量,可以由网络配置。
一些实施方式中,第一门限可以是网络预配置的门限。
一些实施方式中,第一指示信息可以是该第一门限,即第一测量上报配置信息中配置第一门限,该第一门限即指示在满足第一条件的情况下,UE触发一次测量上报。
(5)第二指示信息,该第二指示信息用于指示在满足第二条件的情况下,终端触发一次测量上报,第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限。
本公开中,满足事件的波束,指的是该波束的测量结果满足测量上报事件对应的门限条件。
一些实施例中,针对per小区配置测量上报事件的情况,满足事件的波束数量可以是per小区的,即以小区为单位统计该小区本次测量上报事件触发时满足事件的波束数量,以及上次测量上报事件触发时满足事件的波束数量。
一些实施方式中,变化量可以是增加量或者减少量。
一些实施方式中,该变化量具体为增加量还是减少量,可以由网络配置。
一些实施方式中,第二门限可以是网络预配置的门限或预设门限(比如1)。
一些实施方式中,第二指示信息可以是该第二门限,即第一测量上报配置信息中配置第二门限,该第二门限即指示在满足第二条件的情况下,UE触发一次测量上报。
(6)第三指示信息,该第三指示信息用于指示在满足第三条件的情况下,终端触发一次测量上报,第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且第一波束未上报给网络。
第一波束可以是一个或多个。例如,在上一次测量上报后,有至少一个满足事件的波束的测量结果变化量大于第三门限,并且这至少一个满足事件的波束未上报给网络,则表示满足第三条件。
一些实施方式中,变化量可以是增加量或者减少量。
一些实施方式中,该变化量具体为增加量还是减少量,可以由网络配置。
一些实施方式中,第三门限可以是网络预配置的门限或预设值或默认值(比如1)。
一些实施方式中,第三指示信息可以是该第三门限,即第一测量上报配置信息中配置第三门限,该第三门限即指示在满足第三条件的情况下,UE触发一次测量上报。
(7)第四指示信息,该第四指示信息用于指示在满足第四条件的情况下,终端触发一次测量上报,第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,第二波束曾上报给网络,并且未在不满足事件后通知网络。
第二波束可以是一个或多个。例如,在上一次测量上报后,有至少一个满足事件的波束的测量结果变化量大于第四门限,这至少一个满足事件的波束曾上报给网络,并且未在不满足事件后通知网络,则表示满足第四条件。
一些实施方式中,变化量可以是增加量或者减少量。
一些实施方式中,该变化量具体为增加量还是减少量,可以由网络配置。
一些实施方式中,第四门限可以是网络预配置的门限或预设值或默认值(比如1)。
一些实施方式中,第四指示信息可以是该第四门限,即第一测量上报配置信息中配置第四门限,该第四门限即指示在满足第四条件的情况下,UE触发一次测量上报。
(8)第五指示信息,该第五指示信息用于指示在满足第五条件的情况下,终端触发一次测量上报,第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络。
一些实施方式中,第五门限可以是网络预配置的门限或预设值或默认值(比如1)。
一些实施方式中,第五指示信息可以是该第五门限,即第一测量上报配置信息中配置第五门限,该第五门限即指示在满足第五条件的情况下,UE触发一次测量上报。
一些实施方式中,第五指示信息可以包含指示新增时(即新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络)上报或减少时(即新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络,可以理解,新增的不满足事件的波束也就是原满足事件的波束中减少的满足事件的波束)上报或两种情况都上报的指示信息。
(9)第六指示信息,该第六指示信息用于指示在信号质量最好的波束发生变化的情况下,终端触发一次测量上报。
本公开并不限定该信号质量最好的波束是否满足事件,该信号质量最好的波束可能是满足事件的波束,也可能是不满足事件的波束,例如,该信号质量最好的波束可以是满足事件的波束中信号质量最好的波束,也可以是所有测量到的波束中信号质量最好的波束。
在一些实施例中,第二测量上报配置信息包含以下一项或多项:
(1)第七指示信息,该第七指示信息用于指示终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果。
(2)第八指示信息,该第八指示信息用于指示终端上报当前服务小区的测量结果。
(3)第九指示信息,该第九指示信息用于指示终端上报的测量结果中是否包含邻区的测量结果。
(4)最大上报的小区数量。
(5)最大上报的测量结果数量。
该最大上报的测量结果数量可以是针对本次上报的最大上报的测量结果数量,或者是针对每个上报小区的最大上报的测量结果数量。
一些实施方式中,可以由网络指示该最大上报的测量结果数量是针对本次上报的最大上报的测量结果数量,还是针对每个上报小区的最大上报的测量结果数量。
(6)最大上报的波束数量。
该最大上报的波束数量可以是针对本次上报的最大上报的波束数量,或者是针对每个上报小区的最大上报的波束数量。
一些实施方式中,可以由网络指示该最大上报的波束数量是针对本次上报的最大上报的波束数量,还是针对每个上报小区的最大上报的波束数量。
(7)第十指示信息,该第十指示信息用于指示终端是否只上报本次满足的测量上报事件所对应的测量结果。
(8)第十一指示信息,该第十一指示信息用于指示终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果。
(9)第十二指示信息,该第十二指示信息用于指示终端只上报满足事件的波束中信号质量最好的波束的索引(index),无需上报测量结果。
(10)第十三指示信息,该第十三指示信息用于指示终端只上报满足事件的波束的索引,无需上报测量结果。
(11)第十四指示信息,该第十四指示信息用于指示终端上报不满足事件的波束的索引,无需上报测量结果。
(12)第十五指示信息,该第十五指示信息用于指示终端在信号质量最好的波束发生变化的情况下,上报信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
本公开并不限定该信号质量最好的波束是否满足事件,该信号质量最好的波束可能是满足事件的波束,也可能是不满足事件的波束,例如,该信号质量最好的波束可以是满足事件的波束中信号质量最好的波束,也可以是所有测量到的波束中信号质量最好的波束。
一些实施方式中,该第十五指示信息用于指示UE只在信号质量最好的波束发生变化的情况下,才上报信号质量最好的波束的索引和/或信号质量最好的波束的测量结果,否则不上报。
在一些实施例中,基于第一测量上报配置信息确定触发一次测量上报,包括:
针对每个测量上报事件执行第一操作,第一操作包括以下一项或多项:
(1)判断测量上报事件是否是首次满足,在测量上报事件是首次满足的情况下触发一次测量上报。
如何确定测量上报事件是否是首次满足(或者说首次被触发)可以取决于UE实现,或根据对应的UE变量来确定。例如,UE可以维持一些UE变量来记录测量上报事件相关的参数信息,其中有一个或多个UE变量可用于确定测量上报事件是否是首次满足。关于UE变量的示例可参见后文描述,在此不重复赘述。
在一些实施例中,首次满足是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到L1测量配置信息后开始计算的。
(2)判断测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报。
一些实施方式中,如何确定测量上报事件的上报次数是否低于网络侧配置的最大上报次数,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE维持某一个UE变量用于记录测量上报事件触发了测量上报的次数(比如后文中的变量2),将该UE变量的取值与网络侧配置的最大上报次数相比较即可确定测量上报事件的上报次数是否低于网络侧配置的最大上报次数。
(3)判断距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报。
一些实施方式中,如何确定距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE维持某一个UE变量用于记录测量上报事件触发了测量上报的绝对时间信息(比如后文中的变量1),将当前时间减去该UE变量中最近一次的测量上报时间,然后与网络侧配置的上报周期相比较即可确定距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期。或者,通过后文中的变量3也可确定距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,可参见后文描述,在此不重复赘述。
在一些实施例中,最近一次由于测量上报事件导致的测量上报,是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到L1测量配置信息后开始计算的。
(4)判断是否满足第一条件,在满足第一条件的情况下触发一次测量上报。
一些实施方式中,如何确定是否满足第一条件,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE维持某一个UE变量用于记录本次事件触发时的测量结果相比上次事件触发时的测量结果的变化量(比如后文中的变量4),将该UE变量的取值与第一门限相比较即可确定是否满足第一条件。或者通过后文中的变量6也可确定是否满足第一条件,可参见后文描述,在此不重复赘述。
(5)判断是否满足第二条件,在满足第二条件的情况下触发一次测量上报。
一些实施方式中,如何确定是否满足第二条件,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE维持某一个UE变量用于记录本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量(比如后文中的变量5),将该UE变量的取值与第二门限相比较即可确定是否满足第二条件。或者通过后文中的变量7也可确定是否满足第二条件,可参见后文描述,在此不重复赘述。
(6)判断是否满足第三条件,在满足第三条件的情况下触发一次测量上报。
一些实施方式中,如何确定是否满足第三条件,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE可以维持一些UE变量来记录与第三条件相关的参数信息,比如记录满足事件的波束、波束的测量结果、波束的测量结果变化量等,从而可以利用这些UE变量来确定是否满足第三条件。
(7)判断是否满足第四条件,在满足第四条件的情况下触发一次测量上报。
一些实施方式中,如何确定是否满足第四条件,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE可以维持一些UE变量来记录与第四条件相关的参数信息,比如记录满足事件的波束、波束的测量结果、波束的测量结果变化量等,从而可以利用这些UE变量来确定是否满足第四条件。
(8)判断是否满足第五条件,在满足第五条件的情况下触发一次测量上报。
一些实施方式中,如何确定是否满足第五条件,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE可以维持一些UE变量来记录与第五条件相关的参数信息,比如记录满足事件的波束、不满足事件的波束等,从而可以利用这些UE变量来确定是否满足第五条件。
(9)判断信号质量最好的波束是否发生变化,在信号质量最好的波束发生变化的情况下触发一次测量上报。
一些实施方式中,如何确定信号质量最好的波束是否发生变化,可以取决于UE实现,或根据对应的UE变量来确定。例如,UE可以维持某个UE变量来记录信号质量最好的波束,从而可以利用该UE变量来判断信号质量最好的波束是否发生变化。
(10)判断测量上报事件关联的测量上报禁止定时器是否超时,在测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
在一些实施例中,该方法还包括:
在测量上报事件触发了一次测量上报的情况下,针对测量上报事件还执行第二操作,第二操作包括以下一项或多项:
(1)在无需测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报。
例如,若某个测量上报事件触发了一次测量上报,则UE可以直接依据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报,而不需要根据该测量上报事件是否满足。
(2)在无需测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报。
例如,若某个测量上报事件触发了一次测量上报,则UE可以在该测量上报事件关联的测量上报禁止定时器超时后,针对该测量上报事件直接触发一次上报,而不需要根据该测量上报事件是否满足。
(3)在测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报。
例如,若某个测量上报事件触发了一次测量上报,则UE仍需要在该测量上报事件满足的情况下,依据网络侧配置的上报周期和最大上报次数,触发后续的测量上报。
(4)在测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报。
例如,若某个测量上报事件触发了一次测量上报,则UE仍需要在该测量上报事件满足的情况下,在该测量上报事件关联的测量上报禁止定时器超时后,针对该测量上报事件触发一次测量上报。
在一些实施例中,该方法还包括:
在确定测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行第一操作。
具体地,UE在执行上述第一操作之前,需要先确定针对测量上报事件的测量上报禁止定时器是否超时,且当测量上报禁止定时器超时时,UE针对该测量上报事件执行上述第一操作中规范的行为。
在一些实施例中,该方法还包括:
在执行一次测量上报后,执行以下一项或多项操作:
针对每个本次测量上报时满足触发条件的测量上报事件(即每个本次满足的测量上报事件),开启该测量上报事件关联的测量上报禁止定时器;
针对每个本次测量上报时满足触发条件的测量上报事件,将该测量上报事件关联的上报次数计数器加一;
针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次该测量上报事件导致的测量上报之间的时间差;
针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
针对每个触发本次测量上报的测量上报事件,开启该测量上报事件关联的测量上报禁止定时器;
针对每个触发本次测量上报的测量上报事件,将该测量上报事件关联的上报次数计数器加一;
针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次该测量上报事件导致的测量上报之间的时间差;
针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
在一些实施例中,本次测量上报携带的测量结果包括以下一项或多项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
当前服务小区的测量结果;
邻区的测量结果;
本次满足的测量上报事件所对应的测量结果;
导致本次测量上报被触发的测量上报事件所对应的测量结果;
满足事件的波束中信号质量最好的波束的索引;
满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
一些实施例中,对于上报携带的测量结果只包含当前服务小区的测量结果的情况,该测量结果的数量不超过第二测量上报配置信息中指示的最大上报的测量结果数量。例如,假设第二测量上报配置信息中指示的最大上报的测量结果数量为Y,则上报的当前服务小区的测量结果的数量≤Y。
一些实施例中,对于上报携带的测量结果只包含邻区的测量结果的情况,该邻区的数量不超过第二测量上报配置信息中指示的最大上报的小区数量。假设第二测量上报配置信息中指示的最大上报的小区数量为X,则该邻区的数量≤X。
一些实施例中,对于上报携带的测量结果只包含邻区的测量结果的情况,该测量结果的数量不超过第二测量上报配置信息中指示的最大上报的测量结果数量(若该最大上报的测量结果数量是针对本次上报的),或者不超过第二测量上报配置信息中指示的最大上报的测量结果数量与最大上报的小区数量的乘积(若该最大上报的测量结果数量是针对每个上报小区的)。例如,假设第二测量上报配置信息中指示的最大上报的测量结果数量为Y(针对本次上报的),则上报的邻区的测量结果的数量≤Y。假设第二测量上报配置信息中指示的最大上报的测量结果数量为Y(针对每个上报小区的),且第二测量上报配置信息中指示的最大上报的小区数量为X,则上报的邻区的测量结果的数量≤X*Y。
在一些实施例中,上述上报的测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
一些实施例中,对于上报的测量结果包括波束标识的情况,该波束标识可以是满足事件的波束的标识,或UE推荐的波束标识。
一些实施例中,对于上报的测量结果包括小区标识的情况,该小区标识可以是满足测量上报事件触发条件的小区的标识,或UE推荐的小区标识。
在一些实施例中,该方法还包括:
接收网络设备发送的第一测量上报配置信息和/或第二测量上报配置信息。
具体地,网络侧可以配置第一测量上报配置信息和/或第二测量上报配置信息给UE,从而UE在测量上报事件满足后,可以基于第一测量上报配置信息确定触发一次测量上报,在确定执行测量上报的情况下,基于第二测量上报配置信息确定本次测量上报所需携带的测量结果。
在一些实施例中,该方法还包括:
接收网络设备发送的配置标识;
基于配置标识确定第一测量上报配置信息和/或第二测量上报配置信息。
具体地,上述第一测量上报配置信息包含的各项和第二测量上报配置信息包含的各项之间可以存在多种组合,每种组合可以对应一个配置标识,网络侧根据要配置给UE的组合发送对应的配置标识给UE,UE根据网络侧发送的配置标识确定具体的第一测量上报配置信息和/或第二测量上报配置信息。
一些实施方式中,可以协议约定好各种组合方式并对每个组合方式进行唯一编号(即配置标识),UE根据网络侧发送的配置标识即可直接确定具体的第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该方法还包括:
接收网络设备发送的映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
具体地,一些实施方式中,配置标识与第一测量上报配置信息和/或第二测量上报配置信息之间的映射关系可以不是协议约定的,而是网络侧指示给UE的,UE接收到网络侧发送的配置标识后,根据该配置标识,以及网络侧发送的映射指示信息,确定具体的第一测量上报配置信息和/或第二测量上报配置信息。
图2为本公开实施例提供的基于事件触发的层一测量上报方法的流程示意图之二,该方法应用于网络设备,如图2所示,该方法包括如下步骤:
步骤200、向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;其中,第一测量上报配置信息用于终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;第二测量上报配置信息用于终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
在一些实施例中,该方法还包括:
向终端发送映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
本公开各实施例提供的方法是基于同一申请构思的,因此各方法的实施可以相互参见,重复之处不再赘述。
以下通过具体应用场景的示例对本公开各上述实施例提供的方法进行举例说明。
示例1:UE针对每个测量上报事件可触发周期性测量上报。
步骤1-1:网络侧下发RRC重配消息,所述消息携带用于配置基于事件触发的L1测量相关的配置(测量对象(可以是小区或波束级别),与所述测量对象相关联的测量上报事件,测量评估标准等)。
在一些实施例中,在步骤1-1中,网络还会配置第一测量上报配置信息和/或第二测量上报配置信息给UE。
其中,所述第一测量上报配置信息中携带以下至少一项:
指示UE进行连续的周期性上报;
上报周期(上报间隔);
最大上报次数;
初次测量上报后的周期性上报是否需要满足测量上报事件的指示。
所述第二测量上报配置信息中携带以下至少一项:
指示UE上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
指示UE携带当前服务小区的测量结果;
指示UE上报的测量结果中是否包含邻区的测量结果;
指示UE进行测量上报时,最大上报的小区数量X;
指示UE进行测量上报时,最大上报的测量结果数量Y;进一步,网络会指示是针对本次上报的最大上报的测量结果数量,或每个上报小区的最大上报的测量结果数量;
指示UE进行测量上报时,最大上报的波束数量Z;进一步,网络会指示是针对本次上报的最大上报的波束数量,或每个上报小区的最大上报的波束数量;
指示UE进行测量上报时,是否只上报本次满足的测量上报事件所对应的测量结果;
指示UE进行测量上报时,是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
指示UE只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
指示UE只上报满足事件的波束的索引,无需上报测量结果;
指示UE上报不满足事件的波束的索引,无需上报测量结果;
指示UE在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
步骤1-2:UE基于网络侧提供的基于事件触发的L1测量配置信息进行L1测量和评估。
在一些实施例中,UE针对每个测量上报事件维持一个UE变量或一个UE变量中的一个元素。所述UE变量为以下至少一项:
所述测量上报事件触发了测量上报的绝对时间变量(以下称为变量1)(在一些实施例中,针对每个测量上报事件维持一个列表);
所述UE变量用于记录所述测量上报事件触发了测量上报的次数变量(以下称为变量2);
所述UE变量用于记录所述测量上报事件距其最近一次测量上报事件满足且触发测量上报之间的时间差变量(以下称为变量3)。
UE会分别初始化上述UE变量,如将上述变量1/2/3初始化为0。
之后,UE会执行下述(一)和(二)中的任一系列操作:
(一):当测量上报事件满足时,触发多次周期性上报,且后续测量上报不需要在满足测量上报事件的情况下进行。
具体来说:
针对每个测量上报事件分别执行步骤1-3操作:
步骤1-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为首次被触发(首次满足),则UE确定触发一次测量上报。
所述确定所述测量上报事件为首次被触发可以取决于UE实现判断,或根据对应的UE变量中所述变量取值为0确定。
步骤1-3-2:每间隔网络侧配置的上报周期时间(且不需要判断所述测量上报事件是否满足),UE执行以下操作:
UE判断上报次数是否超过网络侧配置的最大上报次数:
如果是,则UE不会触发一次测量上报,以及在一些实施例中,停止针对该事件的测量评估,或即使后续针对该事件测量评估发现其满足时,也不会针对该测量评估的事件发起测量上报;
如果不是,则UE触发一次测量上报(无需在所述测量上报事件满足的情况下)。
步骤1-4:如果上述步骤1-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
在一些实施例中,每次UE执行一次测量上报之后,针对每个触发本次测量上报的测量上报事件,UE更新其对应的UE变量,其具体操作包括以下至少一项:
针对变量1包含的是一个列表的情况下,在变量1的列表中添加一个新元素,所述新元素为本次测量上报的时间;
针对变量1包含的是一个数值的情况下,更新变量1中的取值为本次测量上报的时间;
针对变量2,将其+1;
针对变量3,将其更新为本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差(当首次触发上报时,所述时间差取值为0)。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
(二):针对每个测量上报事件,在满足测量上报事件的情况下,即触发周期性上报。
具体来说:
针对每个测量上报事件分别执行步骤1-3操作:
步骤1-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为首次被触发(即因为该测量上报事件满足并未触发执行过测量上报),则UE确定触发一次测量上报。
步骤1-3-2:若UE评估发现所述测量上报事件满足,但所述测量上报事件为非首次触发,且之前由于所述测量上报事件满足已经触发且执行过测量上报,则UE执行下述操作:
UE判断本次触发的时间与最近一次由于所述测量上报事件满足而进行测量上报的时间差是否大于网络侧配置的上报周期:
如果大于网络侧配置的上报周期,UE进一步判断:针对所述测量上报事件触发执行的上报次数是否大于网络侧配置的最大上报次数;如果是,则不触发一次测量上报;如果不是,则触发一次测量上报;
如果不大于网络侧配置的测量上报周期,UE不触发一次测量上报。
其中,所述“UE判断本次触发的时间与最近一次由于所述测量上报事件满足而进行测量上报的时间差是否大于网络侧配置的上报周期”可以是取决于UE实现,和/或判断所述对应的UE变量3是否大于上报周期,和/或用本次测量上报事件满足的时间减去所述对应的UE变量1中最近一次测量上报触发的时间,进而判断差值是否大于上报周期。
其中,所述“UE判断针对所述测量上报事件触发执行的上报次数是否大于网络侧配置的最大上报次数”可以是取决于UE实现,和/或判断所述对应的UE变量2的取值与网络侧配置的最大上报次数之间的大小。
步骤1-4:如果上述步骤3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
在一些实施例中,每次UE执行一次测量上报之后,针对每个触发本次测量上报的测量上报事件,UE更新其对应的UE变量,其具体操作包括以下至少一项:
针对变量1包含的是一个列表的情况下,在变量1的列表中添加一个新元素,所述新元素为本次测量上报的时间;
针对变量1包含的是一个数值的情况下,更新变量1中的取值为本次测量上报的时间;
针对变量2,将其+1;
针对变量3,将其更新为本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差(当首次触发上报时,所述时间差取值为0)。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
示例2:UE针对每个测量上报事件触发单次上报(只当首次满足时,可进行上报)。
步骤2-1:网络侧下发RRC重配消息,所述消息携带用于配置基于事件触发的L1测量相关的配置(测量对象(可以是小区或波束级别),与所述测量对象相关联的测量上报事件,测量评估标准等)。
在一些实施例中,在步骤2-1中,网络还会配置第一测量上报配置信息和/或第二测量上报配置信息给UE。
其中,所述第一测量上报配置信息中携带以下至少一项:
单次上报(即只当所述事件首次触发时,UE触发一次测量上报)的指示信息。
所述第二测量上报配置信息中携带以下至少一项:
指示UE上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
指示UE携带当前服务小区的测量结果;
指示UE上报的测量结果中是否包含邻区的测量结果;
指示UE进行测量上报时,最大上报的小区数量X;
指示UE进行测量上报时,最大上报的测量结果数量Y;进一步,网络会指示是针对本次上报的最大上报的测量结果数量,或每个上报小区的最大上报的测量结果数量;
指示UE进行测量上报时,最大上报的波束数量Z;进一步,网络会指示是针对本次上报的最大上报的波束数量,或每个上报小区的最大上报的波束数量;
指示UE进行测量上报时,是否只上报本次满足的测量上报事件所对应的测量结果;
指示UE进行测量上报时,是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
指示UE只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
指示UE只上报满足事件的波束的索引,无需上报测量结果;
指示UE上报不满足事件的波束的索引,无需上报测量结果;
指示UE在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
步骤2-2:UE基于网络侧提供的基于事件触发的L1测量配置信息进行L1测量和评估。
针对每个测量上报事件分别执行步骤2-3操作:
步骤2-3:若UE评估发现所述测量上报事件满足,且所述测量上报事件为首次被触发,则UE确定触发一次测量上报。
所述确定所述测量上报事件为首次被触发可以取决于UE实现判断。
步骤2-4:如果上述步骤2-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
示例3:UE基于相应的上报条件触发上报(满足上报条件时,所述测量上报事件触发一次测量上报)。
步骤3-1:网络侧下发RRC重配消息,所述消息携带用于配置基于事件触发的L1测量相关的配置(测量对象(可以是小区或波束级别),与所述测量对象相关联的测量上报事件,测量评估标准等)。
在一些实施例中,在步骤3-1中,网络还会配置第一测量上报配置信息和/或第二测量上报配置信息给UE。
其中,所述第一测量上报配置信息中携带以下至少一项:
指示本次事件触发时的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量超出网络预配置的门限时,UE触发一次测量上报;所述测量结果可以是前N最优的测量结果(N≥1);
指示(针对per小区测量上报事件配置的情况)本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量大于网络预配置的门限时,UE触发一次测量上报。
所述第二测量上报配置信息中携带以下至少一项:
指示UE上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
指示UE携带当前服务小区的测量结果;
指示UE上报的测量结果中是否包含邻区的测量结果;
指示UE进行测量上报时,最大上报的小区数量X;
指示UE进行测量上报时,最大上报的测量结果数量Y;进一步,网络会指示是针对本次上报的最大上报的测量结果数量,或每个上报小区的最大上报的测量结果数量;
指示UE进行测量上报时,最大上报的波束数量Z;进一步,网络会指示是针对本次上报的最大上报的波束数量,或每个上报小区的最大上报的波束数量;
指示UE进行测量上报时,是否只上报本次满足的测量上报事件所对应的测量结果;
指示UE进行测量上报时,是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
指示UE只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
指示UE只上报满足事件的波束的索引,无需上报测量结果;
指示UE上报不满足事件的波束的索引,无需上报测量结果;
指示UE在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
步骤3-2:UE基于网络侧提供的基于事件触发的L1测量配置信息进行L1测量和评估。
在一些实施例中,UE针对每个测量上报事件维持一个UE变量或一个UE变量中的一个元素。所述UE变量为以下至少一项:
本次事件触发时的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量(变量4);
本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量(变量5);
本次事件触发时的测量结果(变量6);
本次事件触发时满足事件的波束数量(变量7)。
UE会分别初始化上述UE变量,如将上述变量4/5/6/7初始化为0。
之后,UE针对每个测量上报事件分别执行步骤3-3操作:
步骤3-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为首次被触发(即因为该测量上报事件满足并未触发执行过测量上报),则UE确定触发一次测量上报。
步骤3-3-2:若UE评估发现所述测量上报事件满足,但所述测量上报事件为非首次触发,且之前由于所述测量上报事件满足已经触发且执行过测量上报,则UE执行下述操作之一:
操作一:
UE判断本次测量上报事件满足时对应的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量是否超出网络预配置的门限。其中,所述测量结果可以是前N最优的测量结果。
如果超出网络预配置的门限,UE触发一次测量上报。
如果不超出网络预配置的门限,UE不触发一次测量上报。
操作二:(针对per小区测量上报事件配置的情况)
UE判断本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量是否大于网络预配置的门限。
如果超出网络预配置的门限,UE触发一次测量上报。
如果不超出网络预配置的门限,UE不触发一次测量上报。
其中,所述“UE判断本次测量上报事件满足时对应的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量是否超出网络预配置的门限”可以是取决于UE实现,和/或判断所述变量4与网络预配置的门限之间的大小,和/或本次测量上报事件满足时对应的测量结果减去所述变量6中记录的对应的测量结果,并判断得出的差值与网络预配置的门限之间的大小。
其中,所述“UE判断本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量变化量是否大于网络预配置的门限”可以是取决于UE实现,和/或判断所述变量5与网络预配置的门限之间的大小,和/或本次测量上报事件满足时对应的满足门限的波束数量减去所述变量7中记录的对应的满足门限的波束数量,并判断得出的差值与网络预配置的门限之间的大小。
步骤3-3-3:在一些实施例中,每次UE评估发现所述测量上报事件满足时,针对每个触发本次测量上报的测量上报事件,UE更新其对应的UE变量,其具体操作包括以下至少一项:
针对变量4,将其更新为本次测量上报事件满足时的测量结果与最近一次所述测量上报事件满足时的测量结果的差值;
针对变量5,将其更新为本次测量上报事件满足时满足事件的波束数量与最近一次所述测量上报事件满足时满足事件的波束数量的差值;
针对变量6,添加本次测量上报事件满足时的测量结果到变量6中;
针对变量7,添加本次测量上报事件满足时的满足事件的波束数量到变量7中。
步骤3-4:如果上述步骤3-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
示例4:UE根据测量上报禁止定时器来进行单次上报。
步骤4-1:网络侧下发RRC重配消息,所述消息携带用于配置基于事件触发的L1测量相关的配置(测量对象(可以是小区或波束级别),与所述测量对象相关联的测量上报事件,测量评估标准等)。
在一些实施例中,在步骤4-1中,网络还会配置第一测量上报配置信息和/或第二测量上报配置信息给UE。
其中,所述第一测量上报配置信息中携带以下至少一项:
所述测量上报事件关联的测量上报禁止定时器;
指示当测量上报禁止定时器超时后,UE执行一次测量上报。
所述第二测量上报配置信息中携带以下至少一项:
指示UE上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
指示UE携带当前服务小区的测量结果;
指示UE上报的测量结果中是否包含邻区的测量结果;
指示UE进行测量上报时,最大上报的小区数量X;
指示UE进行测量上报时,最大上报的测量结果数量Y;进一步,网络会指示是针对本次上报的最大上报的测量结果数量,或每个上报小区的最大上报的测量结果数量;
指示UE进行测量上报时,最大上报的波束数量Z;进一步,网络会指示是针对本次上报的最大上报的波束数量,或每个上报小区的最大上报的波束数量;
指示UE进行测量上报时,是否只上报本次满足的测量上报事件所对应的测量结果;
指示UE进行测量上报时,是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
指示UE只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
指示UE只上报满足事件的波束的索引,无需上报测量结果;
指示UE上报不满足事件的波束的索引,无需上报测量结果;
指示UE在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
步骤4-2:UE基于网络侧提供的基于事件触发的L1测量配置信息进行L1测量和评估。
之后,UE会执行下述(一)和(二)中的任一系列操作:
(一):测量上报禁止定时器超时时,即触发测量上报。
具体来说:
针对每个测量上报事件分别执行步骤4-3操作:
步骤4-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为首次被触发,则UE确定触发一次测量上报。
步骤4-3-2:每当测量上报禁止定时器超时时,UE触发一次测量上报。
步骤4-4:如果上述步骤4-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
以及,针对每个触发测量上报的测量上报事件,UE开启或重启其对应的测量上报禁止定时器。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
(二):禁止定时器超时,且所述测量上报事件满足时,触发测量上报。
针对每个测量上报事件分别执行步骤4-3操作:
步骤4-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为首次被触发(即因为该测量上报事件满足并未触发执行过测量上报),则UE确定触发一次测量上报。
步骤4-3-2:若UE评估发现所述测量上报事件满足,但所述测量上报事件为非首次触发,且之前由于所述测量上报事件满足已经触发且执行过测量上报,则UE执行下述操作:
UE判断其关联的测量上报禁止定时器是否超时。如果超时,UE触发一次测量上报;如果不超时,UE不触发一次测量上报。
步骤4-4:如果上述步骤4-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
以及,针对每个触发测量上报的测量上报事件,UE开启或重启其对应的测量上报禁止定时器。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
示例5:UE根据测量上报禁止定时器来触发后续的周期性上报。
步骤5-1:网络侧下发RRC重配消息,所述消息携带用于配置基于事件触发的L1测量相关的配置(测量对象(可以是小区或波束级别),与所述测量对象相关联的测量上报事件,测量评估标准等)。
在一些实施例中,在步骤5-1中,网络还会配置第一测量上报配置信息和/或第二测量上报配置信息给UE。
其中,所述第一测量上报配置信息中携带以下至少一项:
指示UE在测量上报禁止定时器超时后进行连续的周期性上报;
上报周期(上报间隔);
最大上报次数;
初次测量上报后的周期性上报是否需要满足测量上报事件的指示;
所述测量上报事件关联对应的测量上报禁止定时器。
所述第二测量上报配置信息中携带以下至少一项:
指示UE上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
指示UE携带当前服务小区的测量结果;
指示UE上报的测量结果中是否包含邻区的测量结果;
指示UE进行测量上报时,最大上报的小区数量X;
指示UE进行测量上报时,最大上报的测量结果数量Y;进一步,网络会指示是针对本次上报的最大上报的测量结果数量,或每个上报小区的最大上报的测量结果数量;
指示UE进行测量上报时,最大上报的波束数量Z;进一步,网络会指示是针对本次上报的最大上报的波束数量,或每个上报小区的最大上报的波束数量;
指示UE进行测量上报时,是否只上报本次满足的测量上报事件所对应的测量结果;
指示UE进行测量上报时,是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
指示UE只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
指示UE只上报满足事件的波束的索引,无需上报测量结果;
指示UE上报不满足事件的波束的索引,无需上报测量结果;
指示UE在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
步骤5-2:UE基于网络侧提供的基于事件触发的L1测量配置信息进行L1测量和评估。
在一些实施例中,UE针对每个测量上报事件维持一个UE变量或一个UE变量中的一个元素。所述UE变量为以下至少一项:
所述测量上报事件触发了测量上报的绝对时间变量(以下称为变量1)(在一些实施例中,针对每个测量上报事件维持一个列表);
所述UE变量用于记录所述测量上报事件触发了测量上报的次数变量(以下称为变量2);
所述UE变量用于记录所述测量上报事件距其最近一次测量上报事件满足且触发测量上报之间的时间差变量(以下称为变量3)。
UE会分别初始化上述UE变量,如将上述变量1/2/3初始化为0。且所述初始化操作会在每次测量上报禁止定时器超时后执行一次。
之后,UE会执行下述(一)和(二)中的任一系列操作:
(一):当测量上报事件满足时,触发多次周期性上报,且后续测量上报不需要在满足测量上报事件的情况下进行。
具体来说:
针对每个测量上报事件分别执行步骤5-3操作:
步骤5-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为测量上报禁止定时器超时后或测量上报禁止定时器未被开启时首次被触发,则UE确定触发一次测量上报。
所述确定所述测量上报事件为首次被触发可以取决于UE实现判断,或根据对应的UE变量中所述变量取值为0确定。
步骤5-3-2:每间隔网络侧配置的上报周期时间(且不需要判断所述测量上报事件是否满足),UE执行以下操作:
UE判断上报次数是否超过网络侧配置的最大上报次数:
如果超过网络侧配置的最大上报次数,则UE:
不会触发一次测量上报,以及在一些实施例中,停止针对该事件的测量评估,或即使后续针对该事件测量评估发现其满足时,也不会针对该测量评估的事件发起测量上报;
开启或重启其关联的测量上报禁止定时器。
如果不超过网络侧配置的最大上报次数,则UE触发一次测量上报(无需在所述测量上报事件满足的情况下)。
步骤5-4:如果上述步骤5-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
以及,在一些实施例中,针对每个触发测量上报的测量上报事件,若其为首次触发测量上报(即从收到配置之后的首次),UE开启其对应的测量上报禁止定时器。
在一些实施例中,每次UE执行一次测量上报之后,针对每个触发本次测量上报的测量上报事件,UE更新其对应的UE变量,其具体操作包括以下至少一项:
针对变量1包含的是一个列表的情况下,在变量1的列表中添加一个新元素,所述新元素为本次测量上报的时间;
针对变量1包含的是一个数值的情况下,更新变量1中的取值为本次测量上报的时间;
针对变量2,将其+1;
针对变量3,将其更新为本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差(当首次触发上报时,所述时间差取值为0)。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
(二):针对每个测量上报事件,在满足测量上报事件的情况下,即触发周期性上报。
具体来说:
针对每个测量上报事件分别执行步骤5-3操作:
步骤5-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为测量上报禁止定时器超时后或测量上报禁止定时器未被开启时首次被触发,则UE确定触发一次测量上报。
步骤5-3-2:若UE评估发现所述测量上报事件满足,但所述测量上报事件为非首次触发,且之前由于所述测量上报事件满足已经触发且执行过测量上报,则UE执行下述操作:
UE判断本次触发的时间与最近一次由于所述测量上报事件满足而进行测量上报的时间差是否大于网络侧配置的上报周期:
如果大于网络侧配置的上报周期,UE进一步判断:针对所述测量上报事件触发执行的上报次数是否大于网络侧配置的最大上报次数。如果是,则不触发一次测量上报,以及在一些实施例中,开启或重启其对应的测量上报禁止定时器;如果不是,则触发一次测量上报。
如果不大于网络侧配置的上报周期,UE不触发一次测量上报。
其中,所述“UE判断本次触发的时间与最近一次由于所述测量上报事件满足而进行测量上报的时间差是否大于网络侧配置的上报周期”可以是取决于UE实现,和/或判断所述对应的UE变量3是否大于上报周期,和/或用本次测量上报事件满足的时间减去所述对应的UE变量1中最近一次测量上报触发的时间,进而判断差值是否大于上报周期。
其中,所述“UE判断针对所述测量上报事件触发执行的上报次数是否大于网络侧配置的最大上报次数”可以是取决于UE实现,和/或判断所述对应的UE变量2的取值与网络侧配置的最大上报次数之间的大小。
步骤5-4:如果上述步骤5-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
以及,在一些实施例中,针对每个触发测量上报的测量上报事件,若其为首次触发测量上报(即从收到配置之后的首次),UE开启其对应的测量上报禁止定时器。
在一些实施例中,每次UE执行一次测量上报之后,针对每个触发本次测量上报的测量上报事件,UE更新其对应的UE变量,其具体操作包括以下至少一项:
针对变量1包含的是一个列表的情况下,在变量1的列表中添加一个新元素,所述新元素为本次测量上报的时间;
针对变量1包含的是一个数值的情况下,更新变量1中的取值为本次测量上报的时间;
针对变量2,将其+1;
针对变量3,将其更新为本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差(当首次触发上报时,所述时间差取值为0)。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
示例6:UE根据测量上报禁止定时器来进行基于相应的上报条件触发上报。
步骤6-1:网络侧下发RRC重配消息,所述消息携带用于配置基于事件触发的L1测量相关的配置(测量对象(可以是小区或波束级别),与所述测量对象相关联的测量上报事件,测量评估标准等)。
在一些实施例中,在步骤6-1中,网络还会配置第一测量上报配置信息和/或第二测量上报配置信息给UE。
其中,所述第一测量上报配置信息中携带以下至少一项:
指示本次事件触发时的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量超出网络预配置的门限时,UE触发一次测量上报;所述测量结果可以是前N最优的测量结果(N≥1);
指示(针对per小区测量上报事件配置的情况)本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量大于网络预配置的门限时,UE触发一次测量上报;
所述测量上报事件关联的测量上报禁止定时器;
指示当测量上报禁止定时器超时后,UE执行上述条件规定的测量上报的指示。
所述第二测量上报配置信息中携带以下至少一项:
指示UE上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
指示UE携带当前服务小区的测量结果;
指示UE上报的测量结果中是否包含邻区的测量结果;
指示UE进行测量上报时,最大上报的小区数量X;
指示UE进行测量上报时,最大上报的测量结果数量Y;进一步,网络会指示是针对本次上报的最大上报的测量结果数量,或每个上报小区的最大上报的测量结果数量;
指示UE进行测量上报时,最大上报的波束数量Z;进一步,网络会指示是针对本次上报的最大上报的波束数量,或每个上报小区的最大上报的波束数量;
指示UE进行测量上报时,是否只上报本次满足的测量上报事件所对应的测量结果;
指示UE进行测量上报时,是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
指示UE只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
指示UE只上报满足事件的波束的索引,无需上报测量结果;
指示UE上报不满足事件的波束的索引,无需上报测量结果;
指示UE在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
步骤6-2:UE基于网络侧提供的基于事件触发的L1测量配置信息进行L1测量和评估。
在一些实施例中,UE针对每个测量上报事件维持一个UE变量或一个UE变量中的一个元素。所述UE变量为以下至少一项:
本次事件触发时的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量(变量4);
本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量(变量5);
本次事件触发时的测量结果(变量6);
本次事件触发时满足事件的波束数量(变量7)。
UE会分别初始化上述UE变量,如将上述变量4/5/6/7初始化为0。且所述初始化操作会在每次测量上报禁止定时器超时后执行一次。
具体来说:
针对每个测量上报事件分别执行步骤6-3操作:
步骤6-3-1:若UE评估发现所述测量上报事件满足,且所述测量上报事件为测量上报禁止定时器超时后或测量上报禁止定时器未被开启时首次被触发,则UE确定触发一次测量上报。
步骤6-3-2:若UE评估发现所述测量上报事件满足,但所述测量上报事件为非首次触发,且测量上报禁止定时器超时后,则UE执行下述操作之一:
操作一:
UE判断本次测量上报事件满足时对应的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量是否超出网络预配置的门限。其中,所述测量结果可以是前N最优的测量结果。
如果超出网络预配置的门限,UE触发一次测量上报。
如果不超出网络预配置的门限,UE不触发一次测量上报。
操作二:(针对per小区测量上报事件配置的情况)
UE判断本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量的变化量是否大于网络预配置的门限。
如果超出网络预配置的门限,UE触发一次测量上报。
如果不超出网络预配置的门限,UE不触发一次测量上报。
其中,所述“UE判断本次测量上报事件满足时对应的测量结果相比上次事件触发时的测量结果(可以是per小区,可以是per波束)的变化量是否超出网络预配置的门限”可以是取决于UE实现,和/或判断所述变量4与网络预配置的门限之间的大小,和/或本次测量上报事件满足时对应的测量结果减去所述变量6中记录的对应的测量结果,并判断得出的差值与网络预配置的门限之间的大小。
其中,所述“UE判断本次事件触发时满足事件的波束数量相比于上次事件触发时满足事件的波束数量变化量是否大于网络预配置的门限”可以是取决于UE实现,和/或判断所述变量5与网络预配置的门限之间的大小,和/或本次测量上报事件满足时对应的满足门限的波束数量减去所述变量7中记录的对应的满足门限的波束数量,并判断得出的差值与网络预配置的门限之间的大小。
步骤6-3-3:在一些实施例中,每次UE评估发现所述测量上报事件满足时,针对每个触发本次测量上报的测量上报事件,UE更新其对应的UE变量,其具体操作包括以下至少一项:
针对变量4,将其更新为本次测量上报事件满足时的测量结果与最近一次所述测量上报事件满足时的测量结果的差值;
针对变量5,将其更新为本次测量上报事件满足时满足事件的波束数量与最近一次所述测量上报事件满足时满足事件的波束数量的差值;
针对变量6,添加本次测量上报事件满足时的测量结果到变量6中;
针对变量7,添加本次测量上报事件满足时的满足事件的波束数量到变量7中。
步骤6-4:如果上述步骤6-3中触发了测量上报(由于对多个测量上报事件进行评估,可能会有多个同时触发的测量上报),UE执行一次测量上报操作。
以及,在一些实施例中,针对每个触发测量上报的测量上报事件,UE开启其对应的测量上报禁止定时器。
在一些实施例中,所述UE发起的测量上报中携带的测量结果为根据网络侧配置的第二测量上报配置信息确定的,具体来说,所述测量上报中携带的测量结果为以下至少一项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区/波束的最新测量结果;
只包含当前服务小区的测量结果;在一些实施例中,所述测量结果的数量≤Y;
只包含邻区的测量结果;在一些实施例中,所述测量结果的数量≤Y;在一些实施例中,所述测量结果的数量≤X*Y;在一些实施例中,所述包含的邻区数量≤X;
只包含本次上报时测量上报事件满足的事件所对应的测量结果;
只包含导致本次测量上报被触发的测量上报事件所对应的测量结果;
只包含满足事件的波束中信号质量最好的波束的索引;
只包含满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
所述测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
本公开各实施例提供的方法和装置是基于同一申请构思的,由于方法和装置解决问题的原理相似,因此装置和方法的实施可以相互参见,重复之处不再赘述。
图3为本公开实施例提供的终端的结构示意图,如图3所示,该终端包括存储器320,收发机310和处理器300;其中,处理器300与存储器320也可以物理上分开布置。
存储器320,用于存储计算机程序;收发机310,用于在处理器300的控制下收发数据。
具体地,收发机310用于在处理器300的控制下接收和发送数据。
其中,在图3中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器300代表的一个或多个处理器和存储器320代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本公开不再对其进行进一步描述。总线接口提供接口。收发机310可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元,这些传输介质包括无线信道、有线信道、光缆等传输介质。针对不同的用户设备,用户接口330还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
处理器300负责管理总线架构和通常的处理,存储器320可以存储处理器300在执行操作时所使用的数据。
处理器300可以是中央处理器(Central Processing Unit,CPU)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或复杂可编程逻辑器件(Complex Programmable Logic Device,CPLD),处理器也可以采用多核架构。
处理器300通过调用存储器320存储的计算机程序,用于按照获得的可执行指令执行本公开实施例提供的任一所述方法,例如:在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;基于第二测量上报配置信息确定本次测量上报携带的测量结果。
在一些实施例中,第一测量上报配置信息包含以下一项或多项:
连续的周期性上报的配置信息;
用于指示进行单次上报的指示信息;
测量上报事件关联的测量上报禁止定时器,测量上报禁止定时器用于指示当测量上报禁止定时器超时后,终端触发一次测量上报;
第一指示信息,第一指示信息用于指示在满足第一条件的情况下,终端触发一次测量上报,第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限;
第二指示信息,第二指示信息用于指示在满足第二条件的情况下,终端触发一次测量上报,第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限;
第三指示信息,第三指示信息用于指示在满足第三条件的情况下,终端触发一次测量上报,第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且第一波束未上报给网络;
第四指示信息,第四指示信息用于指示在满足第四条件的情况下,终端触发一次测量上报,第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,第二波束曾上报给网络,并且未在不满足事件后通知网络;
第五指示信息,第五指示信息用于指示在满足第五条件的情况下,终端触发一次测量上报,第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络;
第六指示信息,第六指示信息用于指示在信号质量最好的波束发生变化的情况下,终端触发一次测量上报。
在一些实施例中,连续的周期性上报的配置信息包含以下一项或多项:
用于指示进行连续的周期性上报的指示信息;
上报周期;
最大上报次数;
上报间隔;
用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
在一些实施例中,第二测量上报配置信息包含以下一项或多项:
第七指示信息,第七指示信息用于指示终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
第八指示信息,第八指示信息用于指示终端上报当前服务小区的测量结果;
第九指示信息,第九指示信息用于指示终端上报的测量结果中是否包含邻区的测量结果;
最大上报的小区数量;
最大上报的测量结果数量;
最大上报的波束数量;
第十指示信息,第十指示信息用于指示终端是否只上报本次满足的测量上报事件所对应的测量结果;
第十一指示信息,第十一指示信息用于指示终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
第十二指示信息,第十二指示信息用于指示终端只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
第十三指示信息,第十三指示信息用于指示终端只上报满足事件的波束的索引,无需上报测量结果;
第十四指示信息,第十四指示信息用于指示终端上报不满足事件的波束的索引,无需上报测量结果;
第十五指示信息,第十五指示信息用于指示终端在信号质量最好的波束发生变化的情况下,上报信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,基于第一测量上报配置信息确定触发一次测量上报,包括:
针对每个测量上报事件执行第一操作,第一操作包括以下一项或多项:
判断测量上报事件是否是首次满足,在测量上报事件是首次满足的情况下触发一次测量上报;
判断测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报;
判断距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报;
判断是否满足第一条件,在满足第一条件的情况下触发一次测量上报;
判断是否满足第二条件,在满足第二条件的情况下触发一次测量上报;
判断是否满足第三条件,在满足第三条件的情况下触发一次测量上报;
判断是否满足第四条件,在满足第四条件的情况下触发一次测量上报;
判断是否满足第五条件,在满足第五条件的情况下触发一次测量上报;
判断信号质量最好的波束是否发生变化,在信号质量最好的波束发生变化的情况下触发一次测量上报;
判断测量上报事件关联的测量上报禁止定时器是否超时,在测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
在一些实施例中,该方法还包括:
在测量上报事件触发了一次测量上报的情况下,针对测量上报事件还执行第二操作,第二操作包括以下一项或多项:
在无需测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在无需测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报;
在测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报。
在一些实施例中,该方法还包括:
在确定测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行第一操作。
在一些实施例中,首次满足是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到L1测量配置信息后开始计算的。
在一些实施例中,最近一次由于测量上报事件导致的测量上报,是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到L1测量配置信息后开始计算的。
在一些实施例中,该方法还包括:
在执行一次测量上报后,执行以下一项或多项操作:
针对每个本次测量上报时满足触发条件的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个本次测量上报时满足触发条件的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
针对每个触发本次测量上报的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个触发本次测量上报的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
在一些实施例中,本次测量上报携带的测量结果包括以下一项或多项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
当前服务小区的测量结果;
邻区的测量结果;
本次满足的测量上报事件所对应的测量结果;
导致本次测量上报被触发的测量上报事件所对应的测量结果;
满足事件的波束中信号质量最好的波束的索引;
满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
在一些实施例中,该方法还包括:
接收网络设备发送的第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该方法还包括:
接收网络设备发送的配置标识;
基于配置标识确定第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该方法还包括:
接收网络设备发送的映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
图4为本公开实施例提供的网络设备的结构示意图,如图4所示,该网络设备包括存储器420,收发机410和处理器400;其中,处理器400与存储器420也可以物理上分开布置。
存储器420,用于存储计算机程序;收发机410,用于在处理器400的控制下收发数据。
具体地,收发机410用于在处理器400的控制下接收和发送数据。
其中,在图4中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器400代表的一个或多个处理器和存储器420代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本公开不再对其进行进一步描述。总线接口提供接口。收发机410可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元,这些传输介质包括无线信道、有线信道、光缆等传输介质。
处理器400负责管理总线架构和通常的处理,存储器420可以存储处理器400在执行操作时所使用的数据。
处理器400可以是CPU、ASIC、FPGA或CPLD,处理器也可以采用多核架构。
处理器400通过调用存储器420存储的计算机程序,用于按照获得的可执行指令执行本公开实施例提供的任一所述方法,例如:向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;其中,第一测量上报配置信息用于终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;第二测量上报配置信息用于终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
在一些实施例中,该方法还包括:
向终端发送映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
在此需要说明的是,本公开实施例提供的上述终端和网络设备,能够实现上述方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及有益效果进行具体赘述。
图5为本公开实施例提供的基于事件触发的层一测量上报装置的结构示意图之一,如图5所示,该装置包括:
第一确定单元500,用于在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;
第二确定单元510,用于基于第二测量上报配置信息确定本次测量上报携带的测量结果。
在一些实施例中,第一测量上报配置信息包含以下一项或多项:
连续的周期性上报的配置信息;
用于指示进行单次上报的指示信息;
测量上报事件关联的测量上报禁止定时器,测量上报禁止定时器用于指示当测量上报禁止定时器超时后,终端触发一次测量上报;
第一指示信息,第一指示信息用于指示在满足第一条件的情况下,终端触发一次测量上报,第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限;
第二指示信息,第二指示信息用于指示在满足第二条件的情况下,终端触发一次测量上报,第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限;
第三指示信息,第三指示信息用于指示在满足第三条件的情况下,终端触发一次测量上报,第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且第一波束未上报给网络;
第四指示信息,第四指示信息用于指示在满足第四条件的情况下,终端触发一次测量上报,第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,第二波束曾上报给网络,并且未在不满足事件后通知网络;
第五指示信息,第五指示信息用于指示在满足第五条件的情况下,终端触发一次测量上报,第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络;
第六指示信息,第六指示信息用于指示在信号质量最好的波束发生变化的情况下,终端触发一次测量上报。
在一些实施例中,连续的周期性上报的配置信息包含以下一项或多项:
用于指示进行连续的周期性上报的指示信息;
上报周期;
最大上报次数;
上报间隔;
用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
在一些实施例中,第二测量上报配置信息包含以下一项或多项:
第七指示信息,第七指示信息用于指示终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
第八指示信息,第八指示信息用于指示终端上报当前服务小区的测量结果;
第九指示信息,第九指示信息用于指示终端上报的测量结果中是否包含邻区的测量结果;
最大上报的小区数量;
最大上报的测量结果数量;
最大上报的波束数量;
第十指示信息,第十指示信息用于指示终端是否只上报本次满足的测量上报事件所对应的测量结果;
第十一指示信息,第十一指示信息用于指示终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
第十二指示信息,第十二指示信息用于指示终端只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
第十三指示信息,第十三指示信息用于指示终端只上报满足事件的波束的索引,无需上报测量结果;
第十四指示信息,第十四指示信息用于指示终端上报不满足事件的波束的索引,无需上报测量结果;
第十五指示信息,第十五指示信息用于指示终端在信号质量最好的波束发生变化的情况下,上报信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,基于第一测量上报配置信息确定触发一次测量上报,包括:
针对每个测量上报事件执行第一操作,第一操作包括以下一项或多项:
判断测量上报事件是否是首次满足,在测量上报事件是首次满足的情况下触发一次测量上报;
判断测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报;
判断距离最近一次由于测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报;
判断是否满足第一条件,在满足第一条件的情况下触发一次测量上报;
判断是否满足第二条件,在满足第二条件的情况下触发一次测量上报;
判断是否满足第三条件,在满足第三条件的情况下触发一次测量上报;
判断是否满足第四条件,在满足第四条件的情况下触发一次测量上报;
判断是否满足第五条件,在满足第五条件的情况下触发一次测量上报;
判断信号质量最好的波束是否发生变化,在信号质量最好的波束发生变化的情况下触发一次测量上报;
判断测量上报事件关联的测量上报禁止定时器是否超时,在测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
在一些实施例中,该装置还包括:
第一执行单元,用于在测量上报事件触发了一次测量上报的情况下,针对测量上报事件还执行第二操作,第二操作包括以下一项或多项:
在无需测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在无需测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报;
在测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
在测量上报事件满足的前提下,在测量上报事件关联的测量上报禁止定时器超时后,针对测量上报事件再触发一次测量上报。
在一些实施例中,该装置还包括第三确定单元,用于:
在确定测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行第一操作。
在一些实施例中,首次满足是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到层一测量配置信息后开始计算的。
在一些实施例中,最近一次由于测量上报事件导致的测量上报,是从测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从终端收到层一测量配置信息后开始计算的。
在一些实施例中,该装置还包括:
第二执行单元,用于在执行一次测量上报后,执行以下一项或多项操作:
针对每个本次测量上报时满足触发条件的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个本次测量上报时满足触发条件的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
针对每个触发本次测量上报的测量上报事件,开启测量上报事件关联的测量上报禁止定时器;
针对每个触发本次测量上报的测量上报事件,将测量上报事件关联的上报次数计数器加一;
针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次测量上报事件导致的测量上报之间的时间差;
针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
在一些实施例中,本次测量上报携带的测量结果包括以下一项或多项:
由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
当前服务小区的测量结果;
邻区的测量结果;
本次满足的测量上报事件所对应的测量结果;
导致本次测量上报被触发的测量上报事件所对应的测量结果;
满足事件的波束中信号质量最好的波束的索引;
满足事件的波束的索引;
不满足事件的波束的索引;
信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
在一些实施例中,测量结果包括以下一种或多种:
小区级测量结果;
波束级测量结果;
波束标识;
小区标识。
在一些实施例中,该装置还包括:
第一接收单元,用于接收网络设备发送的第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该装置还包括:
第二接收单元,用于接收网络设备发送的配置标识;
第四确定单元,用于基于配置标识确定第一测量上报配置信息和/或第二测量上报配置信息。
在一些实施例中,该装置还包括:
第三接收单元,用于接收网络设备发送的映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
图6为本公开实施例提供的基于事件触发的层一测量上报装置的结构示意图之二,如图6所示,该装置包括:
发送单元600,用于向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
其中,第一测量上报配置信息用于终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;第二测量上报配置信息用于终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
在一些实施例中,发送单元600还用于:
向终端发送映射指示信息,映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
需要说明的是,本公开实施例中对单元的划分是示意性的,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式。另外,在本公开各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个处理器可读取存储介质中。基于这样的理解,本公开的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本公开各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
在此需要说明的是,本公开实施例提供的上述装置,能够实现上述方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及有益效果进行具体赘述。
另一方面,本公开实施例还提供一种非瞬时可读存储介质,所述非瞬时可读存储介质存储有计算机程序,所述计算机程序用于使处理器执行上述各实施例提供的基于事件触发的层一测量上报方法。
在此需要说明的是,本公开实施例提供的非瞬时可读存储介质,能够实现上述方法实施例所实现的所有方法步骤,且能够达到相同的技术效果,在此不再对本实施例中与方法实施例相同的部分及有益效果进行具体赘述。
所述非瞬时可读存储介质可以是计算机能够存取的任何可用介质或数据存储设备,包括但不限于磁性存储器(例如软盘、硬盘、磁带、磁光盘(MO)等)、光学存储器(例如CD、DVD、BD、HVD等)、以及半导体存储器(例如ROM、EPROM、EEPROM、非易失性存储器(NAND FLASH)、固态硬盘(SSD))等。
本公开实施例提供的技术方案可以适用于多种系统,尤其是5G系统。例如适用的系统可以是全球移动通讯(global system of mobile communication,GSM)系统、码分多址(code division multiple access,CDMA)系统、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)通用分组无线业务(general packet radio service,GPRS)系统、长期演进(long term evolution,LTE)系统、LTE频分双工(frequency division duplex,FDD)系统、LTE时分双工(time division duplex,TDD)系统、高级长期演进(long term evolution advanced,LTE-A)系统、通用移动系统(universal mobile telecommunication system,UMTS)、全球互联微波接入(worldwide interoperability for microwave access,WiMAX)系统、5G新空口(New Radio,NR)系统等。这多种系统中均包括终端设备和网络设备。系统中还可以包括核心网部分,例如演进的分组系统(Evloved Packet System,EPS)、5G系统(5GS)等。
本公开实施例涉及的终端,可以是指向用户提供语音和/或数据连通性的设备,具有无线连接功能的手持式设备、或连接到无线调制解调器的其他处理设备等。在不同的系统中,终端的名称可能也不相同,例如在5G系统中,终端可以称为用户设备(User Equipment,UE)。无线终端设备可以经无线接入网(Radio Access Network,RAN)与一个或多个核心网(Core Network,CN)进行通信,无线终端设备可以是移动终端设备,如移动电话(或称为“蜂窝”电话)和具有移动终端设备的计算机,例如,可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语言和/或数据。例如,个人通信业务(Personal Communication Service,PCS)电话、无绳电话、会话发起协议(Session Initiated Protocol,SIP)话机、无线本地环路(Wireless Local Loop,WLL)站、个人数字助理(Personal Digital Assistant,PDA)等设备。无线终端设备也可以称为系统、订户单元(subscriber unit)、订户站(subscriber station),移动站(mobile station)、移动台(mobile)、远程站(remote station)、接入点(access point)、远程终端设备(remote terminal)、接入终端设备(access terminal)、用户终端设备(user terminal)、用户代理(user agent)、用户装置(user device),本公开实施例中并不限定。
本公开实施例涉及的网络设备,可以是基站,该基站可以包括多个为终端提供服务的小区。根据具体应用场合不同,基站又可以称为接入点,或者可以是接入网中在空中接口上通过一个或多个扇区与无线终端设备通信的设备,或者其它名称。网络设备可用于将收到的空中帧与网际协议(Internet Protocol,IP)分组进行相互更换,作为无线终端设备与接入网的其余部分之间的路由器,其中接入网的其余部分可包括网际协议(IP)通信网络。网络设备还可协调对空中接口的属性管理。例如,本公开实施例涉及的网络设备可以是全球移动通信系统(Global System for Mobile communications,GSM)或码分多址接入(Code Division Multiple Access,CDMA)中的网络设备(Base Transceiver Station,BTS),也可以是带宽码分多址接入(Wide-band Code Division Multiple Access,WCDMA)中的网络设备(NodeB),还可以是长期演进(long term evolution,LTE)系统中的演进型网络设备(evolutional Node B,eNB或e-NodeB)、5G网络架构(next generation system)中的5G基站(gNB),也可以是家庭演进基站(Home evolved Node B,HeNB)、中继节点(relay node)、家庭基站(femto)、微微基站(pico)等,本公开实施例中并不限定。在一些网络结构中,网络设备可以包括集中单元(centralized unit,CU)节点和分布单元(distributed unit,DU)节点,集中单元和分布单元也可以地理上分开布置。
网络设备与终端之间可以各自使用一或多根天线进行多输入多输出(Multi Input Multi Output,MIMO)传输,MIMO传输可以是单用户MIMO(Single User MIMO,SU-MIMO)或多用户MIMO(Multiple User MIMO,MU-MIMO)。根据根天线组合的形态和数量,MIMO传输可以是2D-MIMO、3D-MIMO、FD-MIMO或massive-MIMO,也可以是分集传输或预编码传输或波束赋形传输等。
本领域内的技术人员应明白,本公开的实施例可提供为方法、系统、或计算机程序产品。因此,本公开可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本公开可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本公开是参照根据本公开实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机可执行指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机可执行指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些处理器可执行指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的处理器可读存储器中,使得存储在该处理器可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些处理器可执行指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
显然,本领域的技术人员可以对本公开进行各种改动和变型而不脱离本公开的精神和范围。这样,倘若本公开的这些修改和变型属于本公开权利要求及其等同技术的范围之内,则本公开也意图包含这些改动和变型在内。

Claims (38)

  1. 一种基于事件触发的层一测量上报方法,应用于终端,包括:
    在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;
    基于第二测量上报配置信息确定本次测量上报携带的测量结果。
  2. 根据权利要求1所述的基于事件触发的层一测量上报方法,其中,所述第一测量上报配置信息包含以下一项或多项:
    连续的周期性上报的配置信息;
    用于指示进行单次上报的指示信息;
    测量上报事件关联的测量上报禁止定时器,所述测量上报禁止定时器用于指示当所述测量上报禁止定时器超时后,所述终端触发一次测量上报;
    第一指示信息,所述第一指示信息用于指示在满足第一条件的情况下,所述终端触发一次测量上报,所述第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限;
    第二指示信息,所述第二指示信息用于指示在满足第二条件的情况下,所述终端触发一次测量上报,所述第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限;
    第三指示信息,所述第三指示信息用于指示在满足第三条件的情况下,所述终端触发一次测量上报,所述第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且所述第一波束未上报给网络;
    第四指示信息,所述第四指示信息用于指示在满足第四条件的情况下,所述终端触发一次测量上报,所述第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,所述第二波束曾上报给网络,并且未在不满足事件后通知网络;
    第五指示信息,所述第五指示信息用于指示在满足第五条件的情况下,所述终端触发一次测量上报,所述第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络;
    第六指示信息,所述第六指示信息用于指示在信号质量最好的波束发生变化的情况下,所述终端触发一次测量上报。
  3. 根据权利要求2所述的基于事件触发的层一测量上报方法,其中,所述连续的周期性上报的配置信息包含以下一项或多项:
    用于指示进行连续的周期性上报的指示信息;
    上报周期;
    最大上报次数;
    上报间隔;
    用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
  4. 根据权利要求1所述的基于事件触发的层一测量上报方法,其中,所述第二测量上报配置信息包含以下一项或多项:
    第七指示信息,所述第七指示信息用于指示所述终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
    第八指示信息,所述第八指示信息用于指示所述终端上报当前服务小区的测量结果;
    第九指示信息,所述第九指示信息用于指示所述终端上报的测量结果中是否包含邻区的测量结果;
    最大上报的小区数量;
    最大上报的测量结果数量;
    最大上报的波束数量;
    第十指示信息,所述第十指示信息用于指示所述终端是否只上报本次满足的测量上报事件所对应的测量结果;
    第十一指示信息,所述第十一指示信息用于指示所述终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
    第十二指示信息,所述第十二指示信息用于指示所述终端只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
    第十三指示信息,所述第十三指示信息用于指示所述终端只上报满足事件的波束的索引,无需上报测量结果;
    第十四指示信息,所述第十四指示信息用于指示所述终端上报不满足事件的波束的索引,无需上报测量结果;
    第十五指示信息,所述第十五指示信息用于指示所述终端在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
  5. 根据权利要求2或3所述的基于事件触发的层一测量上报方法,其中,所述基于第一测量上报配置信息确定触发一次测量上报,包括:
    针对每个所述测量上报事件执行第一操作,所述第一操作包括以下一项或多项:
    判断所述测量上报事件是否是首次满足,在所述测量上报事件是首次满足的情况下触发一次测量上报;
    判断所述测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在所述测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报;
    判断距离最近一次由于所述测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于所述测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报;
    判断是否满足所述第一条件,在满足所述第一条件的情况下触发一次测量上报;
    判断是否满足所述第二条件,在满足所述第二条件的情况下触发一次测量上报;
    判断是否满足所述第三条件,在满足所述第三条件的情况下触发一次测量上报;
    判断是否满足所述第四条件,在满足所述第四条件的情况下触发一次测量上报;
    判断是否满足所述第五条件,在满足所述第五条件的情况下触发一次测量上报;
    判断信号质量最好的波束是否发生变化,在所述信号质量最好的波束发生变化的情况下触发一次测量上报;
    判断所述测量上报事件关联的测量上报禁止定时器是否超时,在所述测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
  6. 根据权利要求5所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    在所述测量上报事件触发了一次测量上报的情况下,针对所述测量上报事件还执行第二操作,所述第二操作包括以下一项或多项:
    在无需所述测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
    在无需所述测量上报事件满足的前提下,在所述测量上报事件关联的测量上报禁止定时器超时后,针对所述测量上报事件再触发一次测量上报;
    在所述测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
    在所述测量上报事件满足的前提下,在所述测量上报事件关联的测量上报禁止定时器超时后,针对所述测量上报事件再触发一次测量上报。
  7. 根据权利要求5所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    在确定所述测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行所述第一操作。
  8. 根据权利要求5所述的基于事件触发的层一测量上报方法,其中,所述首次满足是从所述测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从所述终端收到层一测量配置信息后开始计算的。
  9. 根据权利要求5所述的基于事件触发的层一测量上报方法,其中,所述最近一次由于所述测量上报事件导致的测量上报,是从所述测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从所述终端收到层一测量配置信息后开始计算的。
  10. 根据权利要求1所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    在执行一次测量上报后,执行以下一项或多项操作:
    针对每个本次测量上报时满足触发条件的测量上报事件,开启所述测量上报事件关联的测量上报禁止定时器;
    针对每个本次测量上报时满足触发条件的测量上报事件,将所述测量上报事件关联的上报次数计数器加一;
    针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差;
    针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
    针对每个触发本次测量上报的测量上报事件,开启所述测量上报事件关联的测量上报禁止定时器;
    针对每个触发本次测量上报的测量上报事件,将所述测量上报事件关联的上报次数计数器加一;
    针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差;
    针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
  11. 根据权利要求4所述的基于事件触发的层一测量上报方法,其中,所述本次测量上报携带的测量结果包括以下一项或多项:
    由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
    当前服务小区的测量结果;
    邻区的测量结果;
    本次满足的测量上报事件所对应的测量结果;
    导致本次测量上报被触发的测量上报事件所对应的测量结果;
    满足事件的波束中信号质量最好的波束的索引;
    满足事件的波束的索引;
    不满足事件的波束的索引;
    信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
  12. 根据权利要求11所述的基于事件触发的层一测量上报方法,其中,所述测量结果包括以下一种或多种:
    小区级测量结果;
    波束级测量结果;
    波束标识;
    小区标识。
  13. 根据权利要求1所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    接收网络设备发送的所述第一测量上报配置信息和/或所述第二测量上报配置信息。
  14. 根据权利要求1所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    接收网络设备发送的配置标识;
    基于所述配置标识确定所述第一测量上报配置信息和/或所述第二测量上报配置信息。
  15. 根据权利要求14所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    接收所述网络设备发送的映射指示信息,所述映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
  16. 一种基于事件触发的层一测量上报方法,应用于网络设备,包括:
    向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
    其中,所述第一测量上报配置信息用于所述终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;所述第二测量上报配置信息用于所述终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
  17. 根据权利要求16所述的基于事件触发的层一测量上报方法,其中,所述方法还包括:
    向所述终端发送映射指示信息,所述映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
  18. 一种终端,包括存储器,收发机,处理器;
    存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
    在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报;
    基于第二测量上报配置信息确定本次测量上报携带的测量结果。
  19. 根据权利要求18所述的终端,其中,所述第一测量上报配置信息包含以下一项或多项:
    连续的周期性上报的配置信息;
    用于指示进行单次上报的指示信息;
    测量上报事件关联的测量上报禁止定时器,所述测量上报禁止定时器用于指示当所述测量上报禁止定时器超时后,所述终端触发一次测量上报;
    第一指示信息,所述第一指示信息用于指示在满足第一条件的情况下,所述终端触发一次测量上报,所述第一条件包括:本次测量上报事件触发时的测量结果相比上次测量上报事件触发时的测量结果的变化量大于第一门限;
    第二指示信息,所述第二指示信息用于指示在满足第二条件的情况下,所述终端触发一次测量上报,所述第二条件包括:本次测量上报事件触发时满足事件的波束数量相比上次测量上报事件触发时满足事件的波束数量的变化量大于第二门限;
    第三指示信息,所述第三指示信息用于指示在满足第三条件的情况下,所述终端触发一次测量上报,所述第三条件包括:在上一次测量上报后,满足事件的第一波束的测量结果变化量大于第三门限,且所述第一波束未上报给网络;
    第四指示信息,所述第四指示信息用于指示在满足第四条件的情况下,所述终端触发一次测量上报,所述第四条件包括:在上一次测量上报后,满足事件的第二波束的测量结果变化量大于第四门限,所述第二波束曾上报给网络,并且未在不满足事件后通知网络;
    第五指示信息,所述第五指示信息用于指示在满足第五条件的情况下,所述终端触发一次测量上报,所述第五条件包括以下至少一项:在上一次测量上报后,新增满足事件的波束数量大于第五门限,且新增的满足事件的波束未上报给网络;在上一次测量上报后,新增不满足事件的波束数量大于第五门限,新增的不满足事件的波束曾上报给网络,并且未在不满足事件后通知网络;
    第六指示信息,所述第六指示信息用于指示在信号质量最好的波束发生变化的情况下,所述终端触发一次测量上报。
  20. 根据权利要求19所述的终端,其中,所述连续的周期性上报的配置信息包含以下一项或多项:
    用于指示进行连续的周期性上报的指示信息;
    上报周期;
    最大上报次数;
    上报间隔;
    用于指示初次测量上报后的周期性上报是否需要满足测量上报事件的指示信息。
  21. 根据权利要求18所述的终端,其中,所述第二测量上报配置信息包含以下一项或多项:
    第七指示信息,所述第七指示信息用于指示所述终端上报由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
    第八指示信息,所述第八指示信息用于指示所述终端上报当前服务小区的测量结果;
    第九指示信息,所述第九指示信息用于指示所述终端上报的测量结果中是否包含邻区的测量结果;
    最大上报的小区数量;
    最大上报的测量结果数量;
    最大上报的波束数量;
    第十指示信息,所述第十指示信息用于指示所述终端是否只上报本次满足的测量上报事件所对应的测量结果;
    第十一指示信息,所述第十一指示信息用于指示所述终端是否只上报导致本次测量上报被触发的测量上报事件所对应的测量结果;
    第十二指示信息,所述第十二指示信息用于指示所述终端只上报满足事件的波束中信号质量最好的波束的索引,无需上报测量结果;
    第十三指示信息,所述第十三指示信息用于指示所述终端只上报满足事件的波束的索引,无需上报测量结果;
    第十四指示信息,所述第十四指示信息用于指示所述终端上报不满足事件的波束的索引,无需上报测量结果;
    第十五指示信息,所述第十五指示信息用于指示所述终端在信号质量最好的波束发生变化的情况下,上报所述信号质量最好的波束的索引和/或所述信号质量最好的波束的测量结果。
  22. 根据权利要求19或20所述的终端,其中,所述基于第一测量上报配置信息确定触发一次测量上报,包括:
    针对每个所述测量上报事件执行第一操作,所述第一操作包括以下一项或多项:
    判断所述测量上报事件是否是首次满足,在所述测量上报事件是首次满足的情况下触发一次测量上报;
    判断所述测量上报事件的上报次数是否低于网络侧配置的最大上报次数,在所述测量上报事件的上报次数低于网络侧配置的最大上报次数的情况下触发一次测量上报;
    判断距离最近一次由于所述测量上报事件导致的测量上报的时间间隔是否大于网络侧配置的上报周期,在距离最近一次由于所述测量上报事件导致的测量上报的时间间隔大于网络侧配置的上报周期的情况下触发一次测量上报;
    判断是否满足所述第一条件,在满足所述第一条件的情况下触发一次测量上报;
    判断是否满足所述第二条件,在满足所述第二条件的情况下触发一次测量上报;
    判断是否满足所述第三条件,在满足所述第三条件的情况下触发一次测量上报;
    判断是否满足所述第四条件,在满足所述第四条件的情况下触发一次测量上报;
    判断是否满足所述第五条件,在满足所述第五条件的情况下触发一次测量上报;
    判断信号质量最好的波束是否发生变化,在所述信号质量最好的波束发生变化的情况下触发一次测量上报;
    判断所述测量上报事件关联的测量上报禁止定时器是否超时,在所述测量上报事件关联的测量上报禁止定时器超时的情况下触发一次测量上报。
  23. 根据权利要求22所述的终端,其中,所述操作还包括:
    在所述测量上报事件触发了一次测量上报的情况下,针对所述测量上报事件还执行第二操作,所述第二操作包括以下一项或多项:
    在无需所述测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
    在无需所述测量上报事件满足的前提下,在所述测量上报事件关联的测量上报禁止定时器超时后,针对所述测量上报事件再触发一次测量上报;
    在所述测量上报事件满足的前提下,根据网络侧配置的上报周期和最大上报次数,确定是否触发后续的测量上报;
    在所述测量上报事件满足的前提下,在所述测量上报事件关联的测量上报禁止定时器超时后,针对所述测量上报事件再触发一次测量上报。
  24. 根据权利要求22所述的终端,其中,所述操作还包括:
    在确定所述测量上报事件关联的测量上报禁止定时器超时的情况下,确定执行所述第一操作。
  25. 根据权利要求22所述的终端,其中,所述首次满足是从所述测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从所述终端收到层一测量配置信息后开始计算的。
  26. 根据权利要求22所述的终端,其中,所述最近一次由于所述测量上报事件导致的测量上报,是从所述测量上报事件关联的测量上报禁止定时器超时后开始计算的,或者是从所述终端收到层一测量配置信息后开始计算的。
  27. 根据权利要求18所述的终端,其中,所述操作还包括:
    在执行一次测量上报后,执行以下一项或多项操作:
    针对每个本次测量上报时满足触发条件的测量上报事件,开启所述测量上报事件关联的测量上报禁止定时器;
    针对每个本次测量上报时满足触发条件的测量上报事件,将所述测量上报事件关联的上报次数计数器加一;
    针对每个本次测量上报时满足触发条件的测量上报事件,更新本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差;
    针对每个本次测量上报时满足触发条件的测量上报事件,记录本次测量上报的时间信息;
    针对每个触发本次测量上报的测量上报事件,开启所述测量上报事件关联的测量上报禁止定时器;
    针对每个触发本次测量上报的测量上报事件,将所述测量上报事件关联的上报次数计数器加一;
    针对每个触发本次测量上报的测量上报事件,更新本次测量上报与最近一次所述测量上报事件导致的测量上报之间的时间差;
    针对每个触发本次测量上报的测量上报事件,记录本次测量上报的时间信息。
  28. 根据权利要求21所述的终端,其中,所述本次测量上报携带的测量结果包括以下一项或多项:
    由于事件触发而向网络上报过测量结果的测量上报事件所对应的小区或波束的最新测量结果;
    当前服务小区的测量结果;
    邻区的测量结果;
    本次满足的测量上报事件所对应的测量结果;
    导致本次测量上报被触发的测量上报事件所对应的测量结果;
    满足事件的波束中信号质量最好的波束的索引;
    满足事件的波束的索引;
    不满足事件的波束的索引;
    信号质量最好的波束的索引和/或信号质量最好的波束的测量结果。
  29. 根据权利要求28所述的终端,其中,所述测量结果包括以下一种或多种:
    小区级测量结果;
    波束级测量结果;
    波束标识;
    小区标识。
  30. 根据权利要求18所述的终端,其中,所述操作还包括:
    接收网络设备发送的所述第一测量上报配置信息和/或所述第二测量上报配置信息。
  31. 根据权利要求18所述的终端,其中,所述操作还包括:
    接收网络设备发送的配置标识;
    基于所述配置标识确定所述第一测量上报配置信息和/或所述第二测量上报配置信息。
  32. 根据权利要求31所述的终端,其中,所述操作还包括:
    接收所述网络设备发送的映射指示信息,所述映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
  33. 一种网络设备,包括存储器,收发机,处理器;
    存储器,用于存储计算机程序;收发机,用于在所述处理器的控制下收发数据;处理器,用于读取所述存储器中的计算机程序并执行以下操作:
    向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
    其中,所述第一测量上报配置信息用于所述终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;所述第二测量上报配置信息用于所述终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
  34. 根据权利要求33所述的网络设备,其中,所述操作还包括:
    向所述终端发送映射指示信息,所述映射指示信息用于针对至少一个配置标识指示每个配置标识映射的第一测量上报配置信息和/或第二测量上报配置信息。
  35. 一种基于事件触发的层一测量上报装置,包括:
    第一确定单元,用于在确定至少一个测量上报事件满足后,基于第一测量上报配置信息确定触发一次测量上报第二确定单元,用于基于第二测量上报配置信息确定本次测量上报携带的测量结果。
  36. 一种基于事件触发的层一测量上报装置,包括:
    发送单元,用于向终端发送第一测量上报配置信息和/或第二测量上报配置信息,或者向终端发送用于指示第一测量上报配置信息和/或第二测量上报配置信息的配置标识;
    其中,所述第一测量上报配置信息用于所述终端在确定至少一个测量上报事件满足后,确定触发一次测量上报;所述第二测量上报配置信息用于所述终端在确定执行测量上报的情况下,确定本次测量上报携带的测量结果。
  37. 一种非瞬时可读存储介质,所述非瞬时可读存储介质存储有计算机程序,所述计算机程序用于使处理器执行权利要求1至15任一项所述的方法。
  38. 一种非瞬时可读存储介质,所述非瞬时可读存储介质存储有计算机程序,所述计算机程序用于使处理器执行权利要求16至17任一项所述的方法。
PCT/CN2025/079281 2024-04-12 2025-02-26 基于事件触发的层一测量上报方法、设备、装置及存储介质 Pending WO2025213974A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202410443466.2 2024-04-12
CN202410443466.2A CN120825810A (zh) 2024-04-12 2024-04-12 基于事件触发的层一测量上报方法、设备、装置及存储介质

Publications (1)

Publication Number Publication Date
WO2025213974A1 true WO2025213974A1 (zh) 2025-10-16

Family

ID=97349319

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2025/079281 Pending WO2025213974A1 (zh) 2024-04-12 2025-02-26 基于事件触发的层一测量上报方法、设备、装置及存储介质

Country Status (2)

Country Link
CN (1) CN120825810A (zh)
WO (1) WO2025213974A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN121240158B (zh) * 2025-12-02 2026-04-07 荣耀终端股份有限公司 通信方法、装置、系统、计算机程序产品及可读存储介质

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20210289379A1 (en) * 2020-03-13 2021-09-16 Qualcomm Incorporated Layer 1 measurement reporting for neighbor cell
CN116321277A (zh) * 2023-02-15 2023-06-23 华为技术有限公司 一种测量上报方法及装置
CN117676688A (zh) * 2022-08-26 2024-03-08 大唐移动通信设备有限公司 测量上报方法、装置、终端及网络设备

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20210289379A1 (en) * 2020-03-13 2021-09-16 Qualcomm Incorporated Layer 1 measurement reporting for neighbor cell
CN117676688A (zh) * 2022-08-26 2024-03-08 大唐移动通信设备有限公司 测量上报方法、装置、终端及网络设备
CN116321277A (zh) * 2023-02-15 2023-06-23 华为技术有限公司 一种测量上报方法及装置

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
XIN YOU, OPPO: "Event triggered L1 measurement report", 3GPP DRAFT; R2-2402442; TYPE DISCUSSION; NR_MOB_PH4-CORE, 3RD GENERATION PARTNERSHIP PROJECT (3GPP), MOBILE COMPETENCE CENTRE ; 650, ROUTE DES LUCIOLES ; F-06921 SOPHIA-ANTIPOLIS CEDEX ; FRANCE, vol. RAN WG2, no. Changsha, Hunan Province, CN; 20240415 - 20240419, 4 April 2024 (2024-04-04), Mobile Competence Centre ; 650, route des Lucioles ; F-06921 Sophia-Antipolis Cedex ; France, XP052584411 *

Also Published As

Publication number Publication date
CN120825810A (zh) 2025-10-21

Similar Documents

Publication Publication Date Title
EP4580245A1 (en) Measurement reporting method and apparatus, and terminal and network device
CN118042480A (zh) 模型监测方法、装置、终端及网络侧设备
CN114158059B (zh) 一种信息处理方法、装置、终端设备及网络侧设备
EP4615043A1 (en) Configuration method and apparatus for radio resource management (rrm) measurement
WO2024139524A1 (zh) 辅助信息上报方法及装置
WO2024066844A1 (zh) Scg侧安全密钥的确定方法、设备、装置及存储介质
TWI815385B (zh) 一種參考信號傳輸位置指示確定方法及裝置
CN120825810A (zh) 基于事件触发的层一测量上报方法、设备、装置及存储介质
WO2024169564A1 (zh) 小区变更配置方法、装置及存储介质
US20250039974A1 (en) Measurement processing method, apparatus and storage medium
WO2025044392A1 (zh) 性能监控方法和通信设备
WO2024093624A1 (zh) 测量方法、装置、终端及网络设备
WO2024046272A1 (zh) 信息传输方法、装置及存储介质
WO2024045908A1 (zh) 小区接入方法、执行条件配置方法、终端及网络侧设备
WO2025180066A1 (zh) 信息处理方法、装置及存储介质
CN115694752B (zh) 信息发送方法、处理方法、终端、网络设备和存储介质
WO2025036034A1 (zh) 安全处理方法、装置及存储介质
WO2025214005A1 (zh) 测量上报方法及设备
WO2025209539A1 (zh) Ssb的传输方法、装置及存储介质
WO2024093897A1 (zh) 通信方法及装置
WO2024093606A1 (zh) 底层触发移动性的处理方法和装置
WO2025209068A1 (zh) 信息处理方法、装置、终端及网络设备
WO2025162131A1 (zh) 功率控制调节状态的确定方法、设备、装置及存储介质
WO2025050760A1 (zh) 一种小区管理方法、装置及设备
WO2024066866A1 (zh) 小区切换方法、终端、网络设备、装置和存储介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 25785455

Country of ref document: EP

Kind code of ref document: A1