WO2020147778A1 - 测量间隔的处理方法、网络设备、终端设备和存储介质 - Google Patents
测量间隔的处理方法、网络设备、终端设备和存储介质 Download PDFInfo
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
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- H—ELECTRICITY
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- H04L5/00—Arrangements affording multiple use of the transmission path
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- H—ELECTRICITY
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Definitions
- the embodiments of the present disclosure relate to the field of communication technologies, and in particular, to a processing method, network equipment, terminal equipment, and storage medium of a measurement interval.
- Measurement Gap is an interval set so that signal quality measurement can be performed on the serving cell.
- the user equipment User Equipment, UE
- the user equipment does not send uplink signals or receive downlink signals.
- user equipment has high priority services that need to be executed. If the high priority service needs to send uplink signals or receive downlink signals at a time within the measurement interval, the user equipment cannot send uplink signals and receive downlink signals, which will adversely affect service execution and reduce service execution efficiency.
- the embodiments of the present disclosure provide a processing method, network equipment, terminal equipment, and storage medium for a measurement interval, so as to solve the problem of reduced efficiency of user equipment service execution.
- the embodiments of the present disclosure provide a measurement interval processing method, which is applied to a network device.
- the measurement interval processing method includes: configuring measurement interval ignoring information for the user equipment, and sending the measurement interval ignoring information to the user equipment ;
- the measurement interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform actions to ignore the measurement interval
- the ignore time information is used to It characterizes the time when the measurement interval is ignored, and the ignored channel information is used to indicate that the channel corresponding to the measurement interval is ignored.
- the embodiments of the present disclosure provide a method for processing a measurement interval, which is applied to a user equipment, and the method for processing a measured interval includes: obtaining measurement interval ignoring information, and ignoring the measurement interval according to the measurement interval ignoring information;
- the interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform the action of ignoring the measurement interval, and the ignoring time information is used to represent the ignored measurement interval.
- the ignore channel information is used to indicate to ignore the channel corresponding to the measurement interval.
- embodiments of the present disclosure provide a measurement interval processing method, including: a network device configures measurement interval ignore information for user equipment, and delivers the measurement interval ignore information to the user equipment; and the user equipment obtains measurement interval ignore information , And ignore the measurement interval according to the measurement interval ignore information; where the measurement interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information, and the user equipment execution information is used to instruct the user equipment to execute the ignore
- the ignored time information is used to characterize the time when the measurement interval is ignored
- the ignored channel information is used to indicate the channel corresponding to the ignored measurement interval.
- an embodiment of the present disclosure provides a network device, including: a configuration module, configured to configure measurement interval ignore information for user equipment; a sending module, configured to deliver measurement interval ignore information to user equipment;
- the interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform the action of ignoring the measurement interval, and the ignoring time information is used to represent the ignored measurement interval.
- the ignore channel information is used to indicate to ignore the channel corresponding to the measurement interval.
- an embodiment of the present disclosure provides a terminal device, including: an acquisition module, configured to acquire measurement interval ignorance information; a processing module, configured to ignore measurement interval according to the measurement interval ignorance information; wherein, the measurement interval ignorance information includes user One or more of the equipment execution information, ignoring time information, and ignoring channel information.
- the user equipment execution information is used to instruct the user equipment to perform the action of ignoring the measurement interval.
- the ignoring time information is used to characterize the time when the measurement interval is ignored, and the channel is ignored. The information is used to indicate to ignore the channel corresponding to the measurement interval.
- the embodiments of the present disclosure provide a network device, including a processor, a memory, and a computer program stored on the memory and running on the processor.
- the computer program is executed by the processor, the application in the above technical solutions is implemented Steps of the processing method of the measurement interval of the network equipment.
- the embodiments of the present disclosure provide a terminal device, including a processor, a memory, and a computer program stored on the memory and running on the processor.
- the computer program is executed by the processor to realize the application in the above technical solutions. Steps of the processing method of the measurement interval of the user equipment.
- the embodiments of the present disclosure provide a computer-readable storage medium on which a computer program is stored.
- the computer program is executed by a processor, the method for processing the measurement interval applied to a network device in the above technical solution is implemented A step of.
- the embodiments of the present disclosure provide a computer-readable storage medium on which a computer program is stored.
- the computer program is executed by a processor, the method for processing the measurement interval applied to the user equipment in the above technical solution is implemented A step of.
- a policy for the user equipment to perform an action of ignoring the measurement interval is set through measurement interval ignoring information that may include one or more of user equipment execution information, ignoring time information, and ignoring channel information, so that Ignore the measurement interval can be adjusted. Therefore, in the presence of a measurement interval, the user equipment can still send or receive signals. It can achieve the effect of reducing the adverse effects of the measurement interval on the business between the network equipment and the user equipment, and improving the efficiency of business execution.
- FIG. 1 is a flowchart of a method for processing a measurement interval in an embodiment of the disclosure
- FIG. 2 is a flowchart of a method for processing a measurement interval in another embodiment of the present disclosure
- FIG. 3 is a flowchart of another method for processing measurement intervals in an embodiment of the disclosure.
- FIG. 5 is a flowchart of another method for processing a measurement interval in an embodiment of the disclosure.
- FIG. 6 is a schematic structural diagram of a network device in an embodiment of the disclosure.
- FIG. 7 is a schematic structural diagram of a terminal device in an embodiment of the disclosure.
- FIG. 8 is a schematic diagram of the hardware structure of a network device that implements the foregoing embodiment
- Fig. 9 is a schematic diagram of the hardware structure of a terminal device that implements the foregoing embodiment.
- the embodiments of the present disclosure provide a processing method, a network device, a terminal device, and a storage medium for a measurement interval, which can be applied between a network device and a user equipment that have an uplink and downlink communication relationship.
- the network device can perform various configurations for the user equipment, so that the user equipment can perform various operations and implement various functions according to the configuration of the network device.
- a measurement interval is set.
- the measurement interval period can be set, and the measurement interval period is the period of the measurement interval.
- the specific measurement interval period includes the measurement interval time, during which the user equipment cannot send and receive signals.
- the measurement interval period is 40 milliseconds, and the measurement interval time is 6 milliseconds.
- the measurement interval time can be set at any position within the measurement interval period.
- the measurement interval time is the 10th to 15th millisecond in the measurement interval period of 40 milliseconds.
- the user equipment does not transmit uplink signals and receive downlink signals in the serving cell. For example, during the measurement interval of the measurement interval period, the user equipment does not send Hybrid Automatic Repeat Request (HARQ) feedback, Scheduling Request (SR), and Channel State Information (CSI) . For another example, during the measurement interval of the measurement interval period, the user equipment does not send a sounding reference signal (Sounding Reference Signal, SRS). For another example, during the measurement interval time of the measurement interval period, the user equipment does not send uplink shared channels (Uplink Shared Channel, UL-SCH) except for the random access procedure Msg3 (that is, Message 3).
- HARQ Hybrid Automatic Repeat Request
- SR Scheduling Request
- CSI Channel State Information
- SRS Sounding Reference Signal
- uplink shared channels Uplink Shared Channel, UL-SCH
- the random access response window timer (ra-ResponseWindow) or the random access contention resolution timer (ra-ContentionResolutionTimer) of the random access process is running, the random access will be monitored. Physical Downlink Control Channel (PDCCH) corresponding to the access process. Otherwise, the physical downlink control channel is not monitored.
- ra-ResponseWindow the random access response window timer
- ra-ContentionResolutionTimer Random access contention resolution timer
- the measurement interval can be ignored.
- the user equipment ignores the information according to the measurement interval configured by the network side (such as the network device) or agreed by the protocol, and correspondingly transmits or receives signals within the measurement interval indicated by the measurement interval ignore information.
- the network device may specifically be a base station, a server, a cloud server, etc., which is not limited herein.
- the user equipment can be a mobile phone, a computer, etc., which is not limited here.
- Fig. 1 is a flowchart of a method for processing a measurement interval in an embodiment of the disclosure.
- the processing method of this measurement interval is used for network equipment.
- the processing method of the measurement interval may include step S101.
- step S101 configure measurement interval ignore information for the user equipment, and deliver the measurement interval ignore information to the user equipment.
- the network equipment configures the measurement interval ignore information for the user equipment.
- the measurement interval ignore information is used to characterize the strategy of ignoring the measurement interval.
- the measurement interval ignore information may include one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform an action of ignoring the measurement interval. For example, the user equipment ignores the entire measurement interval time in the measurement interval period, or the user equipment ignores part of the measurement interval time.
- the ignore time information is used to characterize the time when the measurement interval is ignored. For example, the ignore time information records related information that requires the user equipment to ignore the time period of the measurement interval.
- the ignored channel information is used to indicate to ignore the channel corresponding to the measurement interval. For example, the ignored channel information records the channel that the user equipment is required to ignore when ignoring the measurement.
- the measurement interval ignore information includes user equipment execution information, and the user equipment obtains the measurement interval ignore information, and can perform the action of ignoring the measurement interval according to the user equipment execution information in the measurement interval ignore information.
- the measurement interval ignoring information includes ignoring time information, and the user equipment obtains the measurement interval ignoring information, and can ignore the ignoring time information in the ignoring information according to the measurement interval, and ignoring the time of the measurement interval represented by the time information.
- the measurement interval ignoring information includes ignoring channel information, and the user equipment obtains the ignoring channel information, and can ignore the ignoring channel information indicated by the ignoring channel information within the measurement interval according to the ignoring channel information in the obtained measurement interval ignoring information.
- the measurement interval ignore information includes user equipment execution information and ignore time information. If the user equipment obtains the measurement interval ignore information, it can ignore the time information in the measurement interval according to the measurement interval. The user equipment in the interval ignore information executes the information and executes the action of ignoring the measurement interval.
- the measurement interval ignore information includes multiple items of user equipment execution information, ignoring time information, and ignoring channel information
- the user equipment can obtain multiple items of user equipment execution information, ignoring time information, and ignoring channel information according to
- the user equipment executes information, ignores time information, ignores the content of multiple instructions in the channel information, and executes the action of ignoring the measurement interval. I will not give examples one by one here.
- the measurement interval ignore information can be set according to specific work scenarios and work requirements, and is not limited here.
- the network device configures measurement interval ignore information for the user equipment, and the measurement interval ignore information may include one or more of user equipment execution information, ignoring time information, and ignoring channel information.
- the measurement interval ignore information is used to set a strategy for the user equipment to ignore the measurement interval action, so that the ignored measurement interval can be adjusted. Therefore, in the presence of a measurement interval, the user equipment can still send or receive signals. Therefore, the adverse effect of the measurement interval on the service between the network equipment and the user equipment is reduced, and the efficiency of service execution is improved.
- the foregoing user equipment execution information indicates that the user equipment performs one or more of the following actions to ignore the measurement interval:
- Ignore the entire measurement interval time in the measurement interval ignore the position of the receiving and sending time in the measurement interval to a certain time position after the receiving and sending time position in the measurement interval, ignoring a certain time position before the receiving and sending time position in the measurement interval to the measurement
- the position of the receiving and sending time in the interval time, ignoring a certain time position before the receiving and sending time position in the measurement interval to a certain time position after the receiving and sending time position in the measurement interval, ignoring the time remaining after the measurement interval meets the measurement standard length.
- the foregoing transceiver time position is the time position at which the user equipment receives or sends signals.
- ignoring the measurement interval by the user equipment means that the user equipment transmits or receives signals during the measurement interval in the measurement interval period. Specifically, the user equipment transmits uplink signals or receives downlink signals. In some examples, the priority of the signal may be limited. For example, the user equipment performs the ignore measurement interval during the process of transmitting or receiving a signal with a priority higher than the priority of the ignore standard.
- Ignoring the entire measurement interval within the measurement interval period indicates that the user equipment ignores the entire measurement interval, that is, the user equipment can send or receive signals during the entire measurement interval. For example, if the measurement interval is 6 milliseconds, the user equipment can send or receive signals within 6 milliseconds of the measurement interval.
- the time position of the receiving and sending time in the measurement interval to a certain time position after the receiving and sending time position in the measurement interval, that is, the user equipment is within a certain time position after the receiving and sending time position in the measurement interval , To send or receive signals. Specifically, it may be a certain time position after the receiving and sending position in the measurement interval time to the receiving and sending time position in the measurement interval time is ignored. For example, if the user equipment wants to send or receive a signal, it starts with the receiving and sending time position in the measurement interval and ending at m time positions after the receiving and sending time position in the measurement interval, ignoring the measurement interval. For example, the measurement interval time includes time slot 1 to time slot 6, and the user equipment needs to transmit or receive signals in time slot 3.
- the user equipment execution information instructs the user equipment to perform the action of ignoring the measurement interval may include ignoring the time in the measurement interval. Slot 3 to Slot 6.
- Ignore a certain time position before the sending and receiving time position in the measurement interval to the sending and receiving time position in the measurement interval that is, the user equipment is within a certain time position before the sending and receiving time position in the measurement interval to the receiving and sending time position in the measurement interval .
- it may ignore a certain time position before the transmission and reception time position in the measurement interval to the transmission and reception time position in the measurement interval. For example, if the user equipment wants to send or receive a signal, it starts with n time positions before the receiving and sending time position in the measurement interval, and ending with the receiving and sending time position in the measurement interval, ignoring the measurement interval.
- the measurement interval time includes time slot 1 to time slot 6, and the user equipment needs to transmit or receive signals in time slot 3.
- the user equipment execution information instructs the user equipment to perform the action of ignoring the measurement interval may include ignoring the time in the measurement interval.
- Ignore a certain time position before the sending and receiving time position in the measurement interval to a certain time position after the sending and receiving time position in the measurement interval that is, a certain time position before the sending and receiving time position of the user equipment in the measurement interval to the measurement interval time
- Send or receive signals within a certain time position after the receiving and sending time position may be ignoring a certain time position before the transmission and reception time position in the measurement interval time to a certain time position after the transmission and reception time position in the measurement interval time. For example, if the user equipment wants to send or receive a signal, start with n time positions before the receiving and sending time position in the measurement interval, and ending at m time positions after the receiving and sending time position in the measurement interval, ignoring the measurement interval.
- the measurement interval time includes time slot 1 to time slot 6, and the user equipment needs to transmit or receive signals in time slot 3.
- the user equipment execution information instructs the user equipment to perform the action of ignoring the measurement interval may include ignoring the time in the measurement interval.
- the measurement interval time includes time slot 1 to time slot 6, the user equipment needs to send or receive signals in time slot 3, and the user equipment execution information instructs the user equipment to perform the action of ignoring the measurement interval may include ignoring the measurement interval time.
- n and m are integers greater than or equal to 0.
- the time remaining after the measurement interval time meets the measurement standard time length is ignored, that is, the user equipment must ensure that the measurement standard time length is first met within the measurement interval time. If the time length of the measurement interval is longer than the measurement standard time length, the user equipment sends or receives signals in the remaining time after the measurement interval time meets the standard time length.
- the measurement standard time is the time required for measurement to ensure that the user equipment can obtain basically accurate measurement results. For example, for the frequency point f1, the user equipment has a measurement standard duration of 60 time slots (or 60 milliseconds) in 480 time slots (or 480 milliseconds). One measurement interval period is 40 time slots (or 40 milliseconds), and the duration of the measurement interval time in one measurement interval period is 6 time slots (or 6 milliseconds).
- the time of the neglected measurement interval represented by the neglected time information includes any one of the following:
- the time ignored in one measurement interval or multiple measurement intervals the unit time identified as ignored in the measurement interval, the ignored time period related to the measurement interval period, and the ignored time in the ignored time period according to the preset ratio.
- the time neglected in a measurement interval or multiple measurement intervals according to the preset ratio that is, the time neglected according to the preset ratio in a measurement interval, specifically, it can be the measurement interval in a measurement interval period
- the time ignored in accordance with the preset ratio can be set according to specific work scenarios and work requirements, and is not limited here. For example, if the preset ratio is 50%, the measurement interval time of one measurement interval period is 6 time slots (or 6 milliseconds), then 3 time slots (or 3 milliseconds) in the measurement interval time of one measurement interval period are ignored. That is, in 3 time slots (or 3 milliseconds) in the measurement interval time of one measurement interval period, the user equipment transmits or receives signals.
- the time neglected in one measurement interval or multiple measurement intervals according to the preset ratio that is, the time neglected according to the preset ratio in multiple measurement intervals, specifically, it may be the time neglected in multiple measurement interval periods
- the preset ratio can be set according to specific work scenarios and work requirements, and is not limited here. For example, if the preset ratio is 20%, the time of the ignoring measurement interval represented by the ignoring time information may be 2 measurement interval times among 10 measurement intervals. That is to say, in 2 of the 10 measurement intervals, the user equipment can send or receive signals.
- the preset ratio is 10%
- the measurement interval of 1 measurement interval period is 6 time slots (or 6 milliseconds)
- the measurement interval of 10 measurement intervals is a total of 60 time slots (or 60 milliseconds).
- the time of ignoring the measurement interval represented by the ignoring time information may be any 6 time slots (or any 6 1 milliseconds) in the measurement interval time of 10 measurement interval periods (that is, 60 time slots or 6 milliseconds). That is to say, in any 6 time slots (or any 6 1 milliseconds) of the measurement interval time of 10 measurement interval periods, the user equipment can send or receive signals.
- the unit time identified as ignored in the measurement interval can be identified as the unit time in the measurement interval. Specifically, the unit time for which the measurement interval needs to be ignored can be identified as ignored.
- a bitmap ie, bitmap
- the bitmap is a combined format of binary bits "0" and "1". You can use 1 to represent the unit time that is marked as ignored. For example, the measurement interval period is 40 milliseconds, and the duration of the measurement interval in the measurement interval period is 4 milliseconds, and the unit time is 1 millisecond.
- 40 bits can be used to represent 40 unit times in the measurement interval of 10 measurement interval periods, and the position in the bit map corresponding to the time unit marked as ignored among the 4 unit times of 40 unit time is marked as "1" ", mark the position corresponding to the time unit not ignored in the bitmap as "0".
- the neglect time period and the neglect time in the neglect time period related to the measurement interval period can be set according to the measurement interval period and the neglect time in the neglect time period.
- the ignored time period is a period for ignoring the measurement interval, and the user equipment can send or receive signals during the ignored time in the ignored time period. For example, if the measurement interval period is 40 milliseconds, the measurement interval time in the measurement interval period is 4 milliseconds, the neglect time period can be set to 80 milliseconds, and the neglect time period in the neglect time period is 2 milliseconds. That is, two neglected times are included in the two measurement interval periods.
- the bitmap can also be used to reflect the unit time identified as ignored in the ignored time period.
- the bitmap can be used to reflect the unit time identified as ignored in the ignored time of the ignored time period.
- the time unit is 1 millisecond.
- Use 8 bits to represent the neglected time in the 2 measurement interval periods mark the position corresponding to the unit time of the neglected neglected time in the bitmap as "1", and mark the neglected time as not neglected in the bitmap The position corresponding to the unit time of is marked as "0".
- ignoring the channel information may include ignoring one or more of the logical channel identifier corresponding to the measurement interval, ignoring the channel type corresponding to the measurement interval, and ignoring the channel grant type corresponding to the measurement interval.
- the uplink or downlink control or data channel corresponding to the logical channel corresponding to the neglected measurement interval can be determined. For example, if the logical channel identifier is 1, the specific channel corresponding to the logical channel identifier 1 can be determined.
- the channel type corresponding to the ignoring the measurement interval may include the uplink control channel (Physical Uplink Control Channel, PUCCH), the uplink data channel (Physical Uplink Shared Channel, PUSCH), and the downlink control channel (Physical Downlink Control Channel, PDCCH) corresponding to the ignoring the measurement interval.
- PUCCH Physical Uplink Control Channel
- PUSCH Physical Uplink Shared Channel
- PDCCH Physical Downlink Control Channel
- One or more of) and a downlink data channel (Physical Downlink Shared Channel, PDSCH) are not limited here.
- the specific authorized channel can be determined.
- the channel grant type is Modulation and Coding Strategy Cell Radio Network Temporary Identifier (MCS-C-RNTI)
- MCS-C-RNTI Modulation and Coding Strategy Cell Radio Network Temporary Identifier
- the determined channel is the uplink grant for PDCCH scheduling of MCS-C-RNTI. Uplink grant channel scheduled by PDCCH.
- the channel grant type is an uplink grant used by a specific logical channel
- the determined channel is the specific logical channel configured by the network device.
- the specific logical channel of the configured grant of the network device is the channel corresponding to the logical channel identifier 1, and it is determined that the user ignores the channel corresponding to the logical channel identifier of the measurement interval.
- the network device configures the user equipment with a policy of ignoring the measurement interval or the protocol pre-arranges the policy of ignoring the measurement interval, so that the user equipment can ignore a certain amount of the measurement interval according to a certain time strategy, channel strategy, etc. This prevents the user equipment from ignoring a large number of time units in the measurement interval, resulting in the inability to obtain accurate measurement results of the serving cell, and even causing handover failure or wireless link connection failure. Balance business execution efficiency and measurement.
- the user equipment can be configured with a strategy for ignoring the measurement interval from different perspectives. This makes the processing of the measurement interval in the embodiments of the present disclosure more widely applicable, and the configuration can be more flexible and more targeted.
- the above measurement interval ignore information has a trigger state, and the trigger state includes an activated state or an inactive state. If the trigger state of the measurement interval ignore information is active, the measurement interval ignore information takes effect. When the user equipment obtains the measurement interval ignore information when the trigger state is the active state, the measurement interval may be ignored according to the measurement interval ignore information. If the trigger state of the measurement interval ignore information is inactive, the measurement interval ignore information does not take effect. When the user equipment obtains the measurement interval ignoring information when the trigger state is in the inactive state, the measurement interval is not ignored.
- Fig. 2 is a flowchart of a method for processing a measurement interval in another embodiment of the present disclosure. The difference between FIG. 2 and FIG. 1 is that the method for processing the measurement interval shown in FIG. 2 may further include step S102 to update the trigger status of the measurement interval ignore information.
- step S102 a trigger state setting instruction is sent to the user equipment.
- the trigger state setting instruction includes the state identifier of the trigger state that expects the user equipment to be configured with the measurement interval ignore information.
- the trigger state setting instruction can be adjusted. For example, if the initial trigger state of the measurement interval ignore information is inactive, and it is expected that the trigger state of the measurement interval ignore information is changed to the active state, the network device sends a trigger state setting instruction including the state identifier of the active state to the user equipment to change the user The measurement interval configured for the device ignores the trigger status of the information.
- the initial trigger state of the measurement interval ignore information is the active state
- the network device sends a trigger state setting instruction including the state identifier of the inactive state to the user equipment to Change the trigger state of the user equipment's configured measurement interval ignore information.
- the status flag of the trigger status in the trigger status setting instruction can be represented by “0” and “1", "0" represents the inactive state, and "1" represents the active state.
- the trigger state setting instruction can be specifically configured through the Medium Access Control Control Element (MAC CE).
- MAC CE Medium Access Control Control Element
- the trigger state setting instruction may specifically be Downlink Control Information (DCI). It is not limited here.
- the measurement interval ignore information may all have a trigger state.
- the measurement interval ignore information includes user equipment execution information and ignore time information.
- the network device can configure the trigger state of the user equipment execution information as an active state, and configure the trigger state of the ignore time information as an inactive state.
- the measurement interval ignore information includes user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information includes information A1 and information A2
- the ignored time information includes information B1
- the ignored channel information includes information C1 and information C2.
- information A1, information A2, information B1, information C1, and information C2 can each have a trigger state, and the trigger state of any two information in information A1, information A2, information B1, information C1, and information C2 can be the same or can different.
- the ignoring channel message includes ignoring the logical channel identifier corresponding to the measurement interval time
- the channel corresponding to the logical channel identifier corresponding to the ignoring measurement interval time can be activated or deactivated (ie inactivated) through the trigger state and trigger state setting instructions.
- the channel type corresponding to the ignored measurement interval included in the ignore channel message is an uplink channel
- the uplink channel corresponding to the ignored measurement interval can be activated or deactivated through the trigger state and trigger state setting instructions.
- the channel type corresponding to the ignored measurement interval included in the ignore channel message is a downlink channel
- the downlink channel corresponding to the ignored measurement interval can be activated or deactivated through the trigger state and trigger state setting instructions.
- the ignoring channel message includes ignoring the channel authorization type corresponding to the measurement interval time
- the channel corresponding to the channel authorization type corresponding to the measurement interval time can be activated or deactivated (ie inactivated) through the trigger state and trigger state setting instructions.
- the measurement interval ignore information is controlled to take effect or not.
- the network device can promptly stop the user from ignoring the measurement interval when the user equipment needs to perform measurement.
- FIG. 3 is a flowchart of another method for processing measurement intervals in an embodiment of the disclosure.
- the processing method of the measurement interval is applied to the user equipment.
- the processing method of the measurement interval may include step S201.
- step S201 the measurement interval ignoring information is acquired, and the measurement interval is ignored according to the measurement interval ignoring information.
- the measurement interval ignore information can be pre-arranged by the network device configuration or protocol, and the user equipment obtains the measurement interval ignore information from the network device or according to the protocol.
- the behavior of the user equipment ignoring the measurement interval may specifically include, within the measurement interval, the user equipment ignores information according to the measurement interval and transmits or receives signals. Specifically, the user equipment ignores information according to the measurement interval and transmits or downlink signals. Signal reception.
- the user equipment can transmit uplink signals with a priority higher than the ignore standard priority or receive downlink signals with a priority higher than the ignore standard priority within the measurement interval. For example, sending PUSCH data; or sending HARQ feedback information in PUSCH; or sending auxiliary information such as scheduling requests; or receiving PDSCH data; or, sending HARQ feedback information in PDCCH Receiving; or, receiving auxiliary information such as retransmission scheduling information in the PSCCH.
- the measurement interval ignore information includes one or more of user equipment execution information, ignored time information, and ignored channel information.
- the user equipment execution information is used to instruct the user equipment to perform an action to ignore the measurement interval.
- the ignored time information is used to characterize the time when the measurement interval is ignored, and the ignored channel information is used to indicate that the channel corresponding to the measurement interval is ignored.
- the user equipment obtains measurement interval ignoring information
- the measurement interval ignoring information may include one or more of user equipment execution information, ignoring time information, and ignoring channel information.
- the user equipment performs the action of ignoring the measurement interval according to the strategy in the set measurement interval ignoring information, so that the ignoring measurement interval can be adjusted. Therefore, in the presence of a measurement interval, the user equipment can still send or receive signals. Therefore, the adverse effect of the measurement interval on the service between the network equipment and the user equipment is reduced, and the efficiency of service execution is improved.
- the measurement interval ignore information includes user equipment execution information.
- user equipment execution information For the related content of the user equipment execution information, please refer to the related description in the foregoing embodiment, which is not repeated here.
- the “ignore the measurement interval based on the measurement interval ignoring information” in the above step S201 can be correspondingly refined into one or more steps of step S2010, step S2011, step S2012, step S2013, and step S2014, which is not limited herein.
- step S2010 according to the measurement interval ignoring information, the entire measurement interval time in the measurement interval period is ignored.
- step S2011 the information is ignored according to the measurement interval, and a certain time position after the transmission and reception time position in the measurement interval time to a certain time position after the transmission and reception time position in the measurement interval time is ignored.
- the received time location is the time location at which the user equipment receives or sends a signal.
- step S2012 ignore information based on the measurement interval, ignoring a certain time position before the transmission and reception time position in the measurement interval to the transmission and reception time position in the measurement interval.
- step S2013 according to the measurement interval ignoring information, a certain time position before the receiving and sending time position in the measurement interval to a certain time position after the receiving and sending time position in the measurement interval is ignored.
- step S2014 according to the measurement interval ignore information, the time remaining after the measurement interval meets the measurement standard duration is ignored.
- the user equipment executes one or more of the foregoing steps S2010 to S2014.
- steps S2010 to S2014 the entire measurement interval is ignored, the receiving and sending time position in the measurement interval is ignored to a certain time position after the receiving and sending time position in the measurement interval, and a certain time before the receiving and sending time position in the measurement interval is ignored.
- Position to the position of the receiving and sending time in the measurement interval, ignoring a certain time position before the receiving and sending time position in the measurement interval to a certain time position after the receiving and sending time position in the measurement interval, and ignoring the remaining time after the measurement interval meets the measurement standard length
- the related content of the time refer to the related description in the foregoing embodiment, which will not be repeated here.
- the measurement interval ignoring information includes ignoring time information.
- the related content of ignoring the time information please refer to the related description in the foregoing embodiment, which will not be repeated here.
- the "ignore the measurement interval based on the measurement interval ignoring information" in the above step S201 can be correspondingly refined into step S2015, step S2016 or step S2017, which is not limited here.
- step S2015 according to the measurement interval ignoring information, one measurement interval time or a time set according to a preset ratio among multiple measurement intervals are ignored.
- step S2016 according to the measurement interval ignore information, the unit time identified as ignored in the measurement interval is ignored.
- step S2017 the ignored time of the ignored time period related to the measurement interval period is ignored according to the measurement interval ignore information.
- step S2015 to step S2017 a measurement interval or a time set according to a preset ratio among multiple measurement intervals are ignored, a unit time identified as ignored in a measurement interval is ignored, and an ignored time related to a measurement interval period is ignored.
- the measurement interval ignoring information includes ignoring channel information.
- the related content of ignoring the channel information please refer to the related description in the foregoing embodiment, which will not be repeated here.
- the "ignore the measurement interval based on the measurement interval ignoring information" in the above step S201 can be correspondingly refined into one or more steps of step S2018, step S2019, and step S2020, which is not limited here.
- step S2018 the logical channel identifier corresponding to the measurement interval time in the information is ignored according to the measurement interval, and the channel corresponding to the logical channel identifier of the measurement interval time is ignored.
- the uplink or downlink control or data channel corresponding to the logical channel corresponding to the neglected measurement interval can be determined. Therefore, in the measurement interval time, the uplink or downlink control or data channel corresponding to the logical channel corresponding to the negligible measurement interval time is used to send or receive signals.
- step S2019 the channel type corresponding to the measurement interval time in the measurement interval ignore information is ignored, and the channel corresponding to the channel type of the measurement interval time is ignored.
- the channel corresponding to the channel type corresponding to the measurement interval can be determined. Therefore, in the measurement interval, the channel corresponding to the channel type corresponding to the negligible measurement interval is used to send or receive signals.
- step S2020 the channel grant type corresponding to the measurement interval in the measurement interval ignore information is ignored, and the channel corresponding to the channel grant type of the measurement interval is ignored.
- the specific authorized channel can be determined.
- the specific authorized channel is used to send or receive signals.
- the relevant content of the channel corresponding to the logical channel identifier of the ignoring the measurement interval time in the step S2018 to the step S2020, the channel corresponding to the channel type in the ignoring measurement interval, and the channel corresponding to the channel authorization type in the ignoring the measurement interval can be found in the above embodiment Relevant instructions will not be repeated here.
- the user equipment obtains the strategy or protocol for ignoring the measurement interval configured by the network device, and prearranges the strategy for ignoring the measurement interval, and can ignore a certain amount of time in the measurement interval according to a certain time strategy, channel strategy, etc. Units or channels, so as to prevent the user equipment from ignoring a large number of time units in the measurement interval and failing to obtain accurate measurement results of the serving cell, and even causing handover failure or wireless link connection failure. Balance business execution efficiency and measurement.
- the measurement interval ignore information has a trigger state
- the trigger state includes an active state or an inactive state.
- the related content of the trigger state please refer to the related description in the foregoing embodiment, which is not repeated here.
- Fig. 4 is a flowchart of another method for processing a measurement interval in another embodiment of the present disclosure. The difference between FIG. 4 and FIG. 3 is that the processing method of the measurement interval shown in FIG. 4 may further include step S202 and step S203.
- step S202 a trigger state setting instruction is received from the network device.
- step S203 the trigger state of the measurement interval ignore information configured by the user equipment is updated to the trigger state indicated by the trigger state setting instruction.
- the trigger state setting instruction may include a state identifier of the trigger state of the measurement interval ignoring information that is expected to be configured by the user equipment.
- the user equipment can obtain the trigger state indicated by the trigger state setting instruction according to the state identifier in the trigger state setting instruction. Update the trigger status of the measurement interval ignore information that has been configured for the user equipment to the trigger status indicated by the trigger status setting instruction.
- FIG. 5 is a flowchart of yet another method for processing measurement intervals in an embodiment of the disclosure.
- the processing method of the measurement interval is applied between the network equipment and the user equipment. As shown in FIG. 5, the processing method of the measurement interval includes step S301 to step S302.
- step S301 the network device configures measurement interval ignore information for the user equipment.
- step S302 the network device delivers the measurement interval ignore information to the user equipment.
- step S303 the user equipment obtains measurement interval ignore information.
- step S304 the user equipment ignores the measurement interval according to the measurement interval ignoring information.
- the measurement interval ignore information includes one or more of user equipment execution information, ignored time information, and ignored channel information.
- the user equipment execution information is used to instruct the user equipment to perform an action to ignore the measurement interval.
- the ignore time information is used to characterize the time when the measurement interval is ignored.
- the ignored channel information is used to indicate to ignore the channel corresponding to the measurement interval.
- step S301 to step S304 can refer to the related description in the above-mentioned embodiment, which will not be repeated here.
- the embodiments of the present disclosure may also refer to the processing method of the measurement interval applied to the network device and the processing method of the measurement interval applied to the user equipment in the foregoing embodiment. I won't repeat them here.
- FIG. 6 is a schematic structural diagram of a network device 400 in an embodiment of the disclosure. As shown in FIG. 6, the network device 400 includes a configuration module 401 and a sending module 402.
- the configuration module 401 is used to configure measurement interval ignore information for the user equipment.
- the sending module 402 is used to deliver the measurement interval ignore information to the user equipment.
- the measurement interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform an action to ignore the measurement interval
- the ignore time information is used to characterize Ignore the time of the measurement interval
- the ignore channel information is used to indicate to ignore the channel corresponding to the measurement interval.
- the user equipment execution information instructs the user equipment to perform the action of ignoring the measurement interval including one or more of the following: ignoring the entire measurement interval within the measurement interval period, ignoring the receiving and sending time position in the measurement interval to the measurement interval A certain time position after the sending and receiving time position in time, a certain time position before the sending and receiving time position in the ignoring measurement interval to a certain time position before the sending and receiving time position in the measurement interval, and a certain time position before the sending and receiving time position in the ignoring measurement interval.
- the receiving and sending time position is the time position at which the user equipment receives or sends a signal.
- the time of ignoring the measurement interval represented by the ignoring time information includes any one of the following: the time that is ignored in one measurement interval or multiple measurement intervals according to a preset ratio, and the measurement interval is identified as ignored The unit time, the ignored time period related to the measurement interval period, and the ignored time in the ignored time period.
- Ignored channel information includes one or more of the following: Ignore the logical channel identifier corresponding to the measurement interval, ignore the channel type corresponding to the measurement interval, and ignore the channel grant type corresponding to the measurement interval.
- the measurement interval ignore information has a trigger state, and the trigger state includes an active state or an inactive state.
- the sending module 402 in the foregoing embodiment may also be used to send a trigger state setting instruction to the user equipment, where the trigger state setting instruction includes a state identifier of a trigger state that expects the user equipment to be configured with measurement interval ignore information.
- the network device provided by the embodiment of the present disclosure can implement the various processes implemented by the network device in the embodiment of the measurement interval processing method shown in FIG. 1 and FIG. 2. In order to avoid repetition, details are not described herein again.
- FIG. 7 is a schematic structural diagram of a terminal device 500 in an embodiment of the disclosure. As shown in FIG. 7, the terminal device 500 includes an acquisition module 501 and a processing module 502.
- the obtaining module 501 is configured to obtain measurement interval ignore information.
- the processing module 502 is configured to ignore the measurement interval according to the measurement interval ignore information.
- the measurement interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform an action to ignore the measurement interval
- the ignore time information is used to characterize Ignore the time of the measurement interval
- the ignore channel information is used to indicate to ignore the channel corresponding to the measurement interval.
- the measurement interval ignore information includes user equipment execution information.
- the processing module 502 can be specifically used for one or more of the following: ignoring information according to the measurement interval, ignoring the entire measurement interval within the measurement interval period; ignoring information according to the measurement interval, ignoring the receiving and sending time position to the measurement interval time in the measurement interval A certain time position after the sending and receiving time position; ignore information according to the measurement interval, ignore a certain time position before the sending and receiving time position in the measurement interval to the receiving and sending time position in the measurement interval; ignore information according to the measurement interval, ignore the measurement interval time A certain time position before the sending and receiving time position to a certain time position after the sending and receiving time position in the measurement interval; the information is ignored according to the measurement interval, and the time remaining after the measurement interval meets the measurement standard length is ignored.
- the receiving and sending time position is the time position at which the user equipment receives or sends a signal.
- the measurement interval ignoring information includes ignoring time information.
- the processing module 502 may be specifically configured to: ignore information according to the measurement interval, ignore one measurement interval or a time set according to a preset ratio among multiple measurement intervals; or, ignore information according to the measurement interval, and ignore the measurement interval marked as Ignored unit time; or, based on the measurement interval ignore information, ignore the ignored time period related to the measurement interval period.
- the measurement interval ignoring information includes ignoring channel information.
- the processing module 502 can be specifically used for one or more of the following: ignore the logical channel identifier corresponding to the measurement interval in the information according to the measurement interval, ignore the channel corresponding to the logical channel identifier of the measurement interval; ignore the measurement interval time in the information according to the measurement interval For the corresponding channel type, ignore the channel corresponding to the channel type of the measurement interval; ignore the channel authorization type corresponding to the measurement interval in the information according to the measurement interval, and ignore the channel corresponding to the channel authorization type of the measurement interval.
- the measurement interval ignore information has a trigger state, and the trigger state includes an active state or an inactive state.
- the acquisition module 501 in the foregoing embodiment may also be used to receive a trigger state setting instruction from a network device.
- the processing module 502 in the foregoing embodiment may also be used to update the trigger state of the measurement interval ignore information configured by the user equipment to the trigger state indicated by the trigger state setting instruction.
- the terminal device provided by the embodiment of the present disclosure can implement the various processes implemented by the user equipment in the embodiment of the measurement interval processing method of FIG. 3 and FIG. 4, and to avoid repetition, details are not described herein again.
- FIG. 8 is a schematic diagram of the hardware structure of a network device that implements the foregoing embodiment.
- the network device 600 includes a memory 601, a processor 602, a radio frequency unit 603, and a computer program stored in the memory 601 and running on the processor 602.
- the network device may include more or less components than those shown in the figure, or a combination of certain components, or different components. Component arrangement.
- network devices include but are not limited to base stations, servers, and the like.
- the processor 602 is configured to configure measurement interval ignore information for the user equipment.
- the measurement interval ignore information includes one or more of user equipment execution information, ignore time information, and ignore channel information.
- the user equipment execution information is used to instruct the user equipment to perform the action of ignoring the measurement interval, and the ignored time information is used to characterize the ignored measurement.
- the interval time, the ignore channel information is used to indicate the channel corresponding to the measurement interval is ignored.
- the radio frequency unit 603 is configured to deliver the measurement interval ignore information to the user equipment.
- the bus architecture may include any number of interconnected buses and bridges. Specifically, one or more processors represented by the processor 602 and various circuits of the memory represented by the memory 601 are linked together.
- the bus architecture can also link various other circuits such as peripheral devices, voltage regulators, and power management circuits, etc., which are well known in the art, and therefore, they will not be further described in this article.
- the bus interface provides an interface.
- the radio frequency unit 603 may be multiple elements, including a transmitter and a transceiver, and provide a unit for communicating with various other devices on a transmission medium, and for receiving and transmitting data under the control of the processor 602.
- the processor 602 is responsible for managing the bus architecture and general processing, and the memory 601 can store data used by the processor 602 when performing operations.
- an embodiment of the present disclosure also provides a network device, including a processor 602, a memory 601, and a computer program stored in the memory 601 and running on the processor 602. The computer program is executed when the processor 602 is executed.
- the various processes of the embodiments of the foregoing method for processing the measurement interval of the network device can achieve the same technical effect. In order to avoid repetition, the details are not repeated here.
- Fig. 9 is a schematic diagram of the hardware structure of a terminal device that implements the foregoing embodiment.
- the terminal device 700 includes but is not limited to: a radio frequency unit 701, a network module 702, an audio output unit 703, an input unit 704, a sensor 705, a display unit 706, a user input unit 707, an interface unit 708, and a memory 709 , Processor 710, and power supply 711 and other components.
- Those skilled in the art can understand that the structure of the terminal device shown in FIG. 9 does not constitute a limitation on the terminal device, and the terminal device may include more or fewer components than shown in the figure, or a combination of certain components, or different components Layout.
- terminal devices include, but are not limited to, mobile phones, tablet computers, notebook computers, palmtop computers, vehicle-mounted terminals, wearable devices, and pedometers.
- the processor 710 is configured to obtain measurement interval ignorance information, and ignore the measurement interval according to the measurement interval ignorance information.
- the terminal device ie, user equipment obtains measurement interval ignoring information
- the measurement interval ignoring information may include one or more of user equipment execution information, ignoring time information, and ignoring channel information.
- the measurement interval ignore information is used to set a strategy for the terminal device to ignore the measurement interval action, so that the ignored measurement interval can be adjusted. Therefore, in the presence of a measurement interval, the terminal device can still send or receive signals. Thereby, the adverse impact of the measurement interval on the business between the network device and the terminal device is reduced, and the efficiency of business execution is improved.
- the terminal device can ignore a certain number of time units or channels in the measurement interval according to a certain time strategy, channel strategy, etc., so as to prevent the terminal device from ignoring a large number of time units in the measurement interval and failing to obtain accurate measurements of the serving cell As a result, it even leads to handover failure or wireless link connection failure. Balance business execution efficiency and measurement.
- the processor 710 may also be configured to execute each step in the method for processing the measurement interval of the user equipment shown in FIG. 3 and FIG. 4.
- the processor 710 may also be configured to execute each step in the method for processing the measurement interval of the user equipment shown in FIG. 3 and FIG. 4.
- the related content of each step please refer to the related description in the foregoing embodiment, which will not be repeated here.
- the radio frequency unit 701 can be used for receiving and sending signals in the process of sending and receiving information or talking. Specifically, after receiving downlink data from the base station, it is processed by the processor 710; Uplink data is sent to the base station.
- the radio frequency unit 701 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
- the radio frequency unit 701 can also communicate with the network and other devices through a wireless communication system.
- the terminal device provides users with wireless broadband Internet access through the network module 702, such as helping users to send and receive emails, browse web pages, and access streaming media.
- the audio output unit 703 can convert the audio data received by the radio frequency unit 701 or the network module 702 or stored in the memory 709 into audio signals and output them as sounds. Moreover, the audio output unit 703 may also provide audio output related to a specific function performed by the terminal device 700 (for example, call signal reception sound, message reception sound, etc.).
- the audio output unit 703 includes a speaker, a buzzer, a receiver, and the like.
- the input unit 704 is used to receive audio or video signals.
- the input unit 704 may include a graphics processing unit (GPU) 7041 and a microphone 7042.
- the graphics processor 7041 is used to capture images of still pictures or videos obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. Data is processed.
- the processed image frame may be displayed on the display unit 706.
- the image frame processed by the graphics processor 7041 may be stored in the memory 709 (or other storage medium) or sent via the radio frequency unit 701 or the network module 702.
- the microphone 7042 can receive sound, and can process such sound into audio data.
- the processed audio data can be converted into a format that can be sent to a mobile communication base station via the radio frequency unit 701 for output in the case of a telephone call mode.
- the terminal device 700 further includes at least one sensor 705, such as a light sensor, a motion sensor, and other sensors.
- the light sensor includes an ambient light sensor and a proximity sensor.
- the ambient light sensor can adjust the brightness of the display panel 7061 according to the brightness of the ambient light.
- the proximity sensor can close the display panel 7061 and the display panel 7061 when the terminal device 700 is moved to the ear. / Or backlight.
- the accelerometer sensor can detect the magnitude of acceleration in various directions (usually three-axis), and can detect the magnitude and direction of gravity when stationary, and can be used to identify the posture of the terminal device (such as horizontal and vertical screen switching, related games , Magnetometer posture calibration), vibration recognition related functions (such as pedometer, percussion), etc.; sensor 705 can also include fingerprint sensors, pressure sensors, iris sensors, molecular sensors, gyroscopes, barometers, hygrometers, thermometers, Infrared sensors, etc., will not be repeated here.
- the display unit 706 is used to display information input by the user or information provided to the user.
- the display unit 706 may include a display panel 7061, and the display panel 7061 may be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), etc.
- LCD liquid crystal display
- OLED organic light-emitting diode
- the user input unit 707 may be used to receive inputted numeric or character information, and generate key signal input related to user settings and function control of the terminal device.
- the user input unit 707 includes a touch panel 7071 and other input devices 7072.
- the touch panel 7071 also known as a touch screen, can collect user touch operations on or near it (for example, the user uses any suitable objects or accessories such as fingers, stylus, etc.) on the touch panel 7071 or near the touch panel 7071. operating).
- the touch panel 7071 may include two parts: a touch detection device and a touch controller.
- the touch detection device detects the user's touch position, and detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into contact coordinates, and then sends it To the processor 710, the command sent by the processor 710 is received and executed.
- the touch panel 7071 can be implemented in multiple types such as resistive, capacitive, infrared, and surface acoustic wave.
- the user input unit 707 may also include other input devices 7072.
- other input devices 7072 may include, but are not limited to, a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackball, mouse, and joystick, which will not be repeated here.
- the touch panel 7071 can be overlaid on the display panel 7061.
- the touch panel 7071 detects a touch operation on or near it, it is transmitted to the processor 710 to determine the type of the touch event.
- the type of event provides corresponding visual output on the display panel 7061.
- the touch panel 7071 and the display panel 7061 are used as two independent components to implement the input and output functions of the terminal device, in some embodiments, the touch panel 7071 and the display panel 7061 can be integrated
- the implementation of the input and output functions of the terminal device is not specifically limited here.
- the interface unit 708 is an interface for connecting an external device and the terminal device 700.
- the external device may include a wired or wireless headset port, an external power supply (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device with an identification module, audio input/output (I/O) port, video I/O port, headphone port, etc.
- the interface unit 708 can be used to receive input (for example, data information, power, etc.) from an external device and transmit the received input to one or more elements in the terminal device 700 or can be used to connect to the terminal device 700 and an external device. Transfer data between devices.
- the memory 709 can be used to store software programs and various data.
- the memory 709 may mainly include a program storage area and a data storage area.
- the program storage area may store an operating system, an application program required by at least one function (such as a sound playback function, an image playback function, etc.), etc.; Data (such as audio data, phone book, etc.) created by the use of mobile phones.
- the memory 709 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state storage devices.
- the processor 710 is the control center of the terminal device 700. It uses various interfaces and lines to connect the various parts of the entire terminal device, runs or executes the software programs and/or modules stored in the memory 709, and calls Data, perform various functions of the terminal equipment and process data, so as to monitor the terminal equipment as a whole.
- the processor 710 may include one or more processing units; optionally, the processor 710 may integrate an application processor and a modem processor.
- the application processor mainly processes the operating system, user interface, and application programs, etc.
- the adjustment processor mainly deals with wireless communication. It can be understood that the foregoing modem processor may not be integrated into the processor 710.
- the terminal device 700 may also include a power source 711 (such as a battery) for supplying power to various components.
- a power source 711 such as a battery
- the power source 711 may be logically connected to the processor 710 through a power management system, so as to manage charging, discharging, and power consumption through the power management system. Management and other functions.
- the terminal device 700 includes some functional modules not shown, which will not be repeated here.
- an embodiment of the present disclosure further provides a terminal device, including a processor 710, a memory 709, a computer program stored in the memory 709 and running on the processor 710, and the computer program is executed when the processor 710 is executed.
- a terminal device including a processor 710, a memory 709, a computer program stored in the memory 709 and running on the processor 710, and the computer program is executed when the processor 710 is executed.
- the embodiments of the present disclosure also provide a computer-readable storage medium on which a computer program is stored.
- a computer program is executed by a processor, each of the above-mentioned embodiments of the method for processing a measurement interval for user equipment is implemented. Process, and can achieve the same technical effect, in order to avoid repetition, I will not repeat it here.
- the computer-readable storage medium such as read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk, or optical disk, etc.
- the embodiments of the present disclosure also provide a computer-readable storage medium on which a computer program is stored.
- a computer program When the computer program is executed by a processor, each of the above-mentioned embodiments of the method for processing measurement intervals for network devices is implemented.
- the process, or when the computer program is executed by the processor implements the various processes of the foregoing embodiment of the method for processing the measurement interval of the user equipment, and can achieve the same technical effect. To avoid repetition, it will not be repeated here.
- the computer-readable storage medium may be a read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a magnetic disk, or an optical disk.
- the methods in the above embodiments can be implemented by means of software plus a necessary general hardware platform, and of course, can also be implemented by hardware, but in many cases the former is better Implementation.
- the technical solution of the present disclosure can be embodied in the form of a software product in essence or the part that contributes to the related technology.
- the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, optical disk). ) Includes a number of instructions to enable a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to execute the method of each embodiment of the present disclosure.
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Abstract
本公开公开了一种测量间隔的处理方法、网络设备、终端设备和存储介质。该方法包括:网络设备为用户设备配置测量间隔忽略信息,并将测量间隔忽略信息下发至用户设备;用户设备根据测量间隔忽略信息忽略测量间隔。其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
Description
相关申请的交叉引用
本申请主张在2019年1月18日在中国提交的中国专利申请No.201910108459.6的优先权,其全部内容通过引用包含于此。
本公开实施例涉及通信技术领域,尤其涉及一种测量间隔的处理方法、网络设备、终端设备和存储介质。
测量间隔(Measurement Gap)是为了可以对服务小区执行信号质量测量而设定的间隔。在测量间隔中,接入服务小区的用户设备(User Equipment,UE)不发送上行信号,也不接收下行信号。
但是,在一些情况下,用户设备具有高优先级的业务需要执行。若执行高优先级的业务需要发送上行信号或接收下行信号的时刻在测量间隔内,则用户设备无法发送上行信号和接收下行信号,从而对业务执行造成不良影响,降低了业务执行的效率。
发明内容
本公开实施例提供一种测量间隔的处理方法、网络设备、终端设备和存储介质,以解决用户设备业务执行的效率降低的问题。
为了解决上述技术问题,本公开是这样实现的:
第一方面,本公开实施例提供了一种测量间隔的处理方法,应用于网络设备,测量间隔的处理方法包括:为用户设备配置测量间隔忽略信息,并将测量间隔忽略信息下发至用户设备;其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
第二方面,本公开实施例提供了一种测量间隔的处理方法,应用于用户设备,所测量间隔的处理方法包括:获取测量间隔忽略信息,并根据测量间隔忽略信息忽略测量间隔;其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
第三方面,本公开实施例提供了一种测量间隔的处理方法,包括:网络设备为用户设备配置测量间隔忽略信息,并将测量间隔忽略信息下发至用户设备;用户设备获取测量间隔忽略信息,并根据测量间隔忽略信息忽略测量间隔;其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
第四方面,本公开实施例提供了一种网络设备,包括:配置模块,用于为用户设备配置测量间隔忽略信息;发送模块,用于将测量间隔忽略信息下发至用户设备;其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
第五方面,本公开实施例提供了一种终端设备,包括:获取模块,用于获取测量间隔忽略信息;处理模块,用于根据测量间隔忽略信息忽略测量间隔;其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
第六方面,本公开实施例提供了一种网络设备,包括处理器、存储器及存储在存储器上并可在处理器上运行的计算机程序,计算机程序被处理器执行时实现上述技术方案中应用于网络设备的测量间隔的处理方法的步骤。
第七方面,本公开实施例提供了一种终端设备,包括处理器、存储器及 存储在存储器上并可在处理器上运行的计算机程序,计算机程序被处理器执行时实现上述技术方案中应用于用户设备的测量间隔的处理方法的步骤。
第八方面,本公开实施例提供了一种计算机可读存储介质,计算机可读存储介质上存储计算机程序,计算机程序被处理器执行时实现上述技术方案中应用于网络设备的测量间隔的处理方法的步骤。
第九方面,本公开实施例提供了一种计算机可读存储介质,计算机可读存储介质上存储计算机程序,计算机程序被处理器执行时实现上述技术方案中应用于用户设备的测量间隔的处理方法的步骤。
在本公开实施例中,通过可包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项的测量间隔忽略信息,来设定供用户设备进行忽略测量间隔动作的策略,使得忽略测量间隔可调控。从而在存在测量间隔的情况下,用户设备仍然可发送或接收信号。能够实现降低测量间隔对网络设备与用户设备之间的业务的不良影响,提高了业务执行的效率的效果。
从下面结合附图对本公开的具体实施方式的描述中可以更好地理解本公开其中,相同或相似的附图标记表示相同或相似的特征。
图1为本公开一实施例中一种测量间隔的处理方法的流程图;
图2为本公开另一实施例中一种测量间隔的处理方法的流程图;
图3为本公开一实施例中另一种测量间隔的处理方法的流程图;
图4为本公开另一实施例中另一种测量间隔的处理方法的流程图;
图5为本公开实施例中又一种测量间隔的处理方法的流程图;
图6为本公开一实施例中一种网络设备的结构示意图;
图7为本公开一实施例中一种终端设备的结构示意图;
图8为实现上述实施例的一种网络设备的硬件结构示意图;
图9为实现上述实施例的一种终端设备的硬件结构示意图。
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行 清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
本公开实施例提供了一种测量间隔的处理方法、网络设备、终端设备和存储介质,可应用于存在上下行通信关系的网络设备和用户设备之间。网络设备可为用户设备进行各种配置,以使得用户设备可以按照网络设备的配置执行各种操作以及实现各种功能。现阶段,为了使用户设备可以对服务小区执行信号质量测量,设置有测量间隔。具体地,可设置测量间隔周期,测量间隔周期为测量间隔的周期。具体的测量间隔周期包括测量间隔时间,在测量间隔时间内,用户设备不能够收发信号。比如,测量间隔周期为40毫秒,测量间隔时间的时长为6毫秒。测量间隔时间可设置在测量间隔周期内的任意位置,如测量间隔时间为测量间隔周期40毫秒中的第10毫秒至第15毫秒。
在测量间隔周期的测量间隔时间内,用户设备在服务小区中不进行上行信号的发送和下行信号的接收。比如,在测量间隔周期的测量间隔时间内,用户设备不发送混合自动重传请求(Hybrid Automatic Repeat Request,HARQ)反馈、调度请求(Scheduling Request,SR)和信道状态信息(Channel State Information,CSI)。又比如,在测量间隔周期的测量间隔时间内,用户设备不发送探测参考信号(Sounding Reference Signal,SRS)。又比如,在测量间隔周期的测量间隔时间内,用户设备不发送除了随机接入过程Msg3(即Message3)之外的上行共享信道(Uplink Shared Channel,UL-SCH)。再比如,在测量间隔周期的测量间隔时间内,如果随机接入过程的随机接入响应窗口定时器(ra-ResponseWindow)或随机接入竞争解决定时器(ra-ContentionResolutionTimer)在运行,则监听随机接入过程对应的物理下行控制信道(Physical Downlink Control Channel,PDCCH)。否则,不监听物理下行控制信道。
在本公开实施例中,可以忽略测量间隔。具体地,用户设备按照网络侧(如网络设备)配置或协议约定的测量间隔忽略信息,对应地在测量间隔忽略信息指示的测量间隔时间内,发送或接收信号。网络设备具体可以为基站、服务器、云端服务器等等,在此并不限定。用户设备可以为手机、计算机等设 备,在此并不限定。
图1为本公开一实施例中一种测量间隔的处理方法的流程图。该测量间隔的处理方法用于网络设备。如图1所示,该测量间隔的处理方法可包括步骤S101。
在步骤S101中,为用户设备配置测量间隔忽略信息,并将测量间隔忽略信息下发至用户设备。
网络设备为用户设备配置测量间隔忽略信息。测量间隔忽略信息用于表征忽略测量间隔的策略。在一些示例中,测量间隔忽略信息可包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项。
其中,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作。比如,用户设备忽略测量间隔周期中整个测量间隔时间,或者用户设备忽略测量间隔时间中的部分时间。忽略时间信息用于表征忽略测量间隔的时间。比如,忽略时间信息记载了要求用户设备忽略测量间隔的时间段的相关信息。忽略信道信息用于指示忽略测量间隔对应的信道,比如,忽略信道信息记载了要求用户设备在忽略测量时忽略的信道。
测量间隔忽略信息包括用户设备执行信息,则用户设备获取到测量间隔忽略信息,可按照测量间隔忽略信息中的用户设备执行信息,执行忽略测量间隔的动作。
测量间隔忽略信息包括忽略时间信息,则用户设备获取到测量间隔忽略信息,可按照测量间隔忽略信息中的忽略时间信息,忽略时间信息表征的测量间隔的时间。
测量间隔忽略信息包括忽略信道信息,则用户设备获取到忽略信道信息,可按照获取到的测量间隔忽略信息中的忽略信道信息,在测量间隔时间内忽略忽略信道信息指示的信道。
测量间隔忽略信息包括用户设备执行信息和忽略时间信息,则用户设备获取到测量间隔忽略信息,可按照测量间隔忽略信息中的忽略时间信息,在忽略时间信息表征的测量间隔的时间,并按照测量间隔忽略信息中的用户设备执行信息,执行忽略测量间隔的动作。
同理,若测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽 略信道信息中的多项,则用户设备获取到户设备执行信息、忽略时间信息、忽略信道信息中的多项,可按照户设备执行信息、忽略时间信息、忽略信道信息中的多项指示的内容,执行忽略测量间隔的动作。在此不一一举例说明。
测量间隔忽略信息可根据具体的工作场景和工作需求设定,在此并不限定。
在本公开实施例中,网络设备为用户设备配置测量间隔忽略信息,测量间隔忽略信息可包括用户设备执行信息、忽略时间信息忽略信道信息中的一项或多项。通过测量间隔忽略信息设定供用户设备进行忽略测量间隔动作的策略,使得忽略测量间隔可调控。从而在存在测量间隔的情况下,用户设备仍然可发送或接收信号。从而降低测量间隔对网络设备与用户设备之间的业务的不良影响,提高了业务执行的效率。
在一些示例中,上述用户设备执行信息指示用户设备执行的忽略测量间隔的动作包括以下的一项或多项:
忽略测量间隔周期内的整个测量间隔时间、忽略测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的某一时间位置、忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置、忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置、忽略测量间隔时间满足测量标准时长后剩余的时间。
上述收发时间位置为用户设备接收或发送信号的时间位置。
需要说明的是,用户设备忽略测量间隔是指,在测量间隔周期中的测量间隔时间内,用户设备进行信号的发送或接收,具体地,用户设备进行上行信号的发送或下行信号的接收。在一些示例中,可针对信号的优先级做出限定,比如,用户设备在进行优先级高于忽略标准优先级的信号的发送或接收的过程中,执行忽略测量间隔。
忽略测量间隔周期内的整个测量间隔时间指示用户设备忽略整个测量间隔时间,即用户设备在整个测量间隔时间内均可进行信号的发送或接收。比如,测量间隔时间为6毫秒,则在测量间隔时间这6毫秒内,用户设备可进行信号的发送或接收。
忽略测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的 某一时间位置,即用户设备在测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的某一时间位置之内,进行信号的发送或接收。具体地,可为忽略测量间隔时间中收发位置至测量间隔时间中收发时间位置后的某一时间位置。比如,若用户设备要发送或接收信号,以测量间隔时间中收发时间位置为开始,以测量间隔时间中收发时间位置后m个时间位置为止,忽略测量间隔。例如,测量间隔时间包括时隙1至时隙6,用户设备要在时隙3进行信号的发送或接收,用户设备执行信息指示用户设备执行的忽略测量间隔的动作可包括忽略测量间隔时间中时隙3至时隙6。
忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置,即用户设备在测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置之内,进行信号的发送或接收。具体地,可为忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中的收发时间位置。比如,若用户设备要发送或接收信号,以测量间隔时间中收发时间位置前n个时间位置为开始,以测量间隔时间中收发时间位置为止,忽略测量间隔。例如,测量间隔时间包括时隙1至时隙6,用户设备要在时隙3进行信号的发送或接收,用户设备执行信息指示用户设备执行的忽略测量间隔的动作可包括忽略测量间隔时间中时隙2至时隙3。
忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置,即用户设备在测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置之内,进行信号的发送或接收。具体地,可为忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中的收发时间位置后的某一时间位置。比如,若用户设备要发送或接收信号,以测量间隔时间中收发时间位置前n个时间位置为开始,以测量间隔时间中收发时间位置后m个时间位置为止,忽略测量间隔。例如,测量间隔时间包括时隙1至时隙6,用户设备要在时隙3进行信号的发送或接收,用户设备执行信息指示用户设备执行的忽略测量间隔的动作可包括忽略测量间隔时间中时隙2至时隙6。又例如,测量间隔时间包括时隙1至时隙6,用户设备要在时隙3进行信号的发送或接收,用户设备执行信息指示用户设备执行的忽略测量间隔的动作可包括忽略测量间隔时间 中时隙2至时隙4。
上述n和m均为大于等于0的整数。
忽略测量间隔时间满足测量标准时长后剩余的时间,即用户设备要保证在测量间隔时间内先满足测量标准时长。若测量间隔时间的时长长于测量标准时长,用户设备在测量间隔时间满足标准时长后剩余的时间内,进行信号的发送或接收。测量标准时长为保证用户设备能够获取基本准确的测量结果而进行测量需要的时长。比如,用户设备对于频点f1,在480个时隙(或480毫秒)中的测量标准时长为60个时隙(或60毫秒)。1个测量间隔周期为40个时隙(或40毫秒),1个测量间隔周期中的测量间隔时间的时长为6个时隙(或6毫秒)。则在480个时隙(或480毫秒)中存在12个测量间隔周期,12个测量间隔周期中测量间隔时间的总时长为72个时隙(或72毫秒)。则在480个时隙(或480毫秒)中满足测量标准时长60个时隙(或60毫秒)后剩余的时间的时长为12个时隙(或12毫秒),则用户设备可在这12个时隙(或12毫秒)内进行信号的发送或接收。
在一些示例中,上述忽略时间信息表征的忽略测量间隔的时间包括以下的任意一项:
按照预设比率在一个测量间隔时间或多个测量间隔时间中忽略的时间、测量间隔时间中标识为忽略的单位时间、与测量间隔周期相关的忽略时间周期及忽略时间周期中的忽略时间。
按照预设比率在一个测量间隔时间或多个测量间隔时间中忽略的时间,即为在一个测量间隔时间内按照预设比率忽略的时间,具体地,可为在一个测量间隔周期的测量间隔时间内按照预设比率忽略的时间。预设比率可根据具体的工作场景和工作需求设定,在此并不限定。比如,预设比率为50%,一个测量间隔周期的测量间隔时间为6个时隙(或6毫秒),则忽略一个测量间隔周期的测量间隔时间中的3个时隙(或3毫秒)。也就是说,在一个测量间隔周期的测量间隔时间中的3个时隙(或3毫秒)中,用户设备进行信号的发送或接收。
或者,按照预设比率在一个测量间隔时间或多个测量间隔时间中忽略的时间,即为在多个测量间隔时间内按照预设比率忽略的时间,具体地,可为 在多个测量间隔周期的测量间隔时间内按照预设比率忽略的时间。预设比率可根据具体的工作场景和工作需求设定,在此并不限定。比如,预设比率为20%,则忽略时间信息表征的忽略测量间隔的时间可为10个测量间隔时间中的2个测量间隔时间。也就是说,在10个测量间隔时间中的2个测量间隔时间中,用户设备可进行信号的发送或接收。又比如,预设比率为10%,1个测量间隔周期的测量间隔时间为6个时隙(或6毫秒),10个测量间隔的测量间隔时间共为60个时隙(或60毫秒),则忽略时间信息表征的忽略测量间隔的时间可为10个测量间隔周期的测量间隔时间(即60个时隙或6毫秒)中的任意6个时隙(或任意6个1毫秒)。也就是说,在10个测量间隔周期的测量间隔时间中的任意6个时隙(或任意6个1毫秒)中,用户设备可进行信号的发送或接收。
测量间隔时间中标识为忽略的单位时间,可以对测量间隔时间中的单位时间进行标识,具体可将需要进行忽略测量间隔的单位时间标识为忽略。在一些示例中,可利用比特图(即bit图)来体现测量间隔时间中标识为忽略的单位时间。比特图是采用二进制比特“0”与“1”的组合格式。可以用1来代表标识为忽略的单位时间。比如,测量间隔周期为40毫秒,且测量间隔周期中的测量间隔时间的时长为4毫秒,单位时间为1毫秒。可以用40个比特位代表10个测量间隔周期的测量间隔时间中40个单位时间,将比特图中与40个单位时间的4个单位时间中标识为忽略的时间单位对应的位置标为“1”,将比特图中与不忽略的时间单位对应的位置标为“0”。
与测量间隔周期相关的忽略时间周期及忽略时间周期中的忽略时间,即可根据测量间隔周期设定忽略时间周期,及忽略时间周期中的忽略时间。忽略时间周期为忽略测量间隔的周期,在忽略时间周期中的忽略时间内,用户设备可进行信号的发送或接收。比如,对于测量间隔周期为40毫秒,测量间隔周期中的测量间隔时间的时长为4毫秒,可设置忽略时间周期为80毫秒,忽略时间周期中的忽略时间的时长为2毫秒。即2个测量间隔周期中包括两个忽略时间。在一些示例中,还可利用比特图来体现忽略时间周期中标识为忽略的单位时间,具体地,可利用比特图来体现忽略时间周期的忽略时间中标识为忽略的单位时间。比如,时间单位为1毫秒。利用8比特位表示2个 测量间隔周期中的忽略时间,将比特图中与标识为忽略的忽略时间的单位时间对应的位置标为“1”,将比特图中与标识为不忽略的忽略时间的单位时间对应的位置标为“0”。
在一些示例中,忽略信道信息可包括忽略测量间隔时间对应的逻辑信道标识、忽略测量间隔时间对应的信道类型、忽略测量间隔时间对应的信道授权类型中的一项或多项。
根据忽略测量间隔时间对应的逻辑信道标识,可确定忽略测量间隔时间对应的逻辑信道对应的上行或下行的控制或数据信道。比如,逻辑信道标识为1,则可确定与逻辑信道标识1对应的具体信道。
忽略测量间隔时间对应的信道类型可包括忽略测量间隔时间对应的上行控制信道(Physical Uplink Control Channel,PUCCH)、上行数据信道(Physical Uplink Shared Channel,PUSCH)、下行控制信道(Physical Downlink Control Channel,PDCCH)和下行数据信道(Physical Downlink Shared Channel,PDSCH)中的一项或多项,在此并不限定。
根据忽略测量间隔时间对应的信道授权类型,可确定具体的被授权的信道。比如,信道授权类型为调制与编码策略小区无线网络临时标识(Modulation and Coding Scheme Cell Radio Network Temporary Identifier,MCS-C-RNTI)的PDCCH调度的上行授权,则确定的信道为MCS-C-RNTI的PDCCH调度的上行授权信道。又比如,信道授权类型为特定逻辑信道使用的上行授权,则确定的信道为网络设备配置的该特定逻辑信道。例如,网络设备配置授权(configured grant)的特定逻辑信道为逻辑信道标识为1对应的信道,确定用户忽略测量间隔时间对应的逻辑信道标识为1对应的信道。
在本公开实施例中,网络设备为用户设备配置忽略测量间隔的策略或协议预先约定忽略测量间隔的策略,使得用户设备可按照一定的时间策略、信道策略等策略忽略掉测量间隔时间中一定数量的时间单位或信道,从而避免用户设备忽略掉测量间隔时间中大量的时间单位而导致无法获取到服务小区的准确的测量结果,甚至导致切换失败或无线链路连接失败的问题。平衡业务执行效率和测量。
通过丰富的配置测量间隔忽略信息的类别,可从不同的角度为用户设备 配置忽略测量间隔的策略。使得本公开实施例中对测量间隔的处理的适用面更加广泛,且配置可更加灵活,针对性更强。
在一些示例中,上述测量间隔忽略信息具有触发状态,触发状态包括激活状态或未激活状态。若测量间隔忽略信息具有的触发状态为激活状态,则测量间隔忽略信息生效。用户设备在获取到触发状态为激活状态的测量间隔忽略信息,可依据测量间隔忽略信息忽略测量间隔。若测量间隔忽略信息具有的触发状态为未激活状态,则测量间隔忽略信息不生效。用户设备在获取到触发状态为未激活状态的测量间隔忽略信息,则不忽略测量间隔。
图2为本公开另一实施例中一种测量间隔的处理方法的流程图。图2与图1的不同之处在于,图2所示的测量间隔的处理方法还可包括步骤S102,以对测量间隔忽略信息的触发状态进行更新。
在步骤S102中,向用户设备发送触发状态设置指令。
其中,触发状态设置指令包括期望用户设备被配置的测量间隔忽略信息的触发状态的状态标识。通过触发状态设置指令,可以调整用户设备已经被配置的测量间隔忽略信息的触发状态。比如,测量间隔忽略信息初始的触发状态为未激活状态,期望测量间隔忽略信息的触发状态更改为激活状态,则网络设备向用户设备发送包括激活状态的状态标识的触发状态设置指令,以变更用户设备被配置的测量间隔忽略信息的触发状态。又比如,测量间隔忽略信息初始的触发状态为激活状态,期望测量间隔忽略信息的触发状态更改为未激活状态,则网络设备向用户设备发送包括未激活状态的状态标识的触发状态设置指令,以变更用户设备被配置的测量间隔忽略信息的触发状态。
比如,触发状态设置指令中的触发状态的状态标志可用“0”和“1”表示,“0”表示未激活状态,“1”表示激活状态。比如,触发状态设置指令具体可通过媒体接入控制控制单元(Medium Access ControlControl Element,MAC CE)进行配置。或者,触发状态设置指令具体可为下行控制信息(Downlink Control Information,DCI)。在此并不限定。
需要说明的是,不同的测量间隔忽略信息可均具有触发状态。比如,测量间隔忽略信息包括用户设备执行信息和忽略时间信息,网络设备可配置用户设备执行信息的触发状态为激活状态,配置忽略时间信息的触发状态为未 激活状态。又比如,测量间隔忽略信息包括用户设备执行信息、忽略时间信息和忽略信道信息。其中,设用户设备执行信息包括信息A1和信息A2,忽略时间信息包括信息B1,忽略信道信息包括信息C1和信息C2。则信息A1、信息A2、信息B1、信息C1和信息C2各自均可具有触发状态,且信息A1、信息A2、信息B1、信息C1和信息C2中任意两个信息的触发状态可以相同,也可以不同。
比如,忽略信道消息包括忽略测量间隔时间对应的逻辑信道标识,则可通过触发状态和触发状态设置指令激活或去激活(即不激活)忽略测量间隔时间对应的该逻辑信道标识对应的信道。又比如,忽略信道消息包括的忽略测量间隔时间对应的信道类型为上行信道,则可通过触发状态和触发状态设置指令激活或去激活忽略测量间隔时间对应的上行信道。又比如,忽略信道消息包括的忽略测量间隔时间对应的信道类型为下行信道,则可通过触发状态和触发状态设置指令激活或去激活忽略测量间隔时间对应的下行信道。再比如,忽略信道消息包括忽略测量间隔时间对应的信道授权类型,则可通过触发状态和触发状态设置指令激活或去激活(即不激活)忽略测量间隔时间对应的该信道授权类型对应的信道。
通过配置触发状态,激活或不激活测量间隔忽略信息,从而控制测量间隔忽略信息的生效或不生效,网络设备在需要用户设备进行测量的时候可以及时的停止用户忽略测量间隔的动作。
图3为本公开一实施例中另一种测量间隔的处理方法的流程图。该测量间隔的处理方法应用于用户设备。该测量间隔的处理方法可包括步骤S201。
在步骤S201中,获取测量间隔忽略信息,并根据测量间隔忽略信息忽略测量间隔。
测量间隔忽略信息可由网络设备配置或协议预先约定,用户设备从网络设备处或根据协议获取测量间隔忽略信息。用户设备忽略测量间隔的行为具体可包括,在测量间隔时间内,用户设备根据测量间隔忽略信息,进行信号的发送或接收,具体地,用户设备根据测量间隔忽略信息,进行上行信号的发送或下行信号的接收。
比如,用户设备可在测量间隔时间内,对优先级高于忽略标准优先级的 上行信号进行发送,或对优先级高于忽略标准优先级的下行信号进行接收。例如,对PUSCH的数据进行发送;或者,对PUSCH中的HARQ反馈信息进行发送;或者,对调度请求等辅助信息的发送;或者,对PDSCH的数据进行接收;或者,对PDCCH中的HARQ反馈信息进行接收;或者,对PSCCH中的重传调度信息等辅助信息进行接收。
其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项。用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作。忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
用户设备执行信息、忽略时间信息以及忽略信道信息的相关内容可参见上述实施例中的相关说明,在此不再赘述。
在本公开实施例中,用户设备获取测量间隔忽略信息,测量间隔忽略信息可包括用户设备执行信息、忽略时间信息忽略信道信息中的一项或多项。用户设备根据设定的测量间隔忽略信息中的策略,进行忽略测量间隔动作,使得忽略测量间隔可调控。从而在存在测量间隔的情况下,用户设备仍然可发送或接收信号。从而降低测量间隔对网络设备与用户设备之间的业务的不良影响,提高了业务执行的效率。
在一些示例中,测量间隔忽略信息包括用户设备执行信息。用户设备执行信息的相关内容可参见上述实施例中的相关说明,在此不再赘述。上述步骤S201中的“根据测量间隔忽略信息忽略测量间隔”可对应的细化为步骤S2010、步骤S2011、步骤S2012、步骤S2013、步骤S2014中的一个或多个步骤,在此并不限定。
在步骤S2010中,根据测量间隔忽略信息,忽略测量间隔周期内的整个测量间隔时间。
在步骤S2011中,根据测量间隔忽略信息,忽略测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的某一时间位置。
其中,收到时间位置为用户设备接收或发送信号的时间位置。
在步骤S2012中,根据测量间隔忽略信息,忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置。
在步骤S2013中,根据测量间隔忽略信息,忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置。
在步骤S2014中,根据测量间隔忽略信息,忽略测量间隔时间满足测量标准时长后剩余的时间。
在用户设备需要发送或接收信号时,用户设备执行上述步骤S2010至步骤S2014中的一项或多项。
其中,步骤S2010至步骤S2014中忽略整个测量间隔时间、忽略测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的某一时间位置、忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置、忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置以及忽略测量间隔时间满足测量标准时长后剩余的时间的相关内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,测量间隔忽略信息包括忽略时间信息。忽略时间信息的相关内容可参见上述实施例中的相关说明,在此不再赘述。上述步骤S201中的“根据测量间隔忽略信息忽略测量间隔”可对应的细化为步骤S2015、步骤S2016或步骤S2017,在此并不限定。
在步骤S2015中,根据测量间隔忽略信息,忽略一个测量间隔时间或多个测量间隔时间中按照预设比率设定的时间。
在步骤S2016中,根据测量间隔忽略信息,忽略测量间隔时间中标识为忽略的单位时间。
在步骤S2017中,根据测量间隔忽略信息,忽略与测量间隔周期相关的忽略时间周期的忽略时间。
其中,步骤S2015至步骤S2017中忽略一个测量间隔时间或多个测量间隔时间中按照预设比率设定的时间、忽略测量间隔时间中标识为忽略的单位时间以及忽略与测量间隔周期相关的忽略时间周期的忽略时间的相关内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,测量间隔忽略信息包括忽略信道信息。忽略信道信息的相关内容可参见上述实施例中的相关说明,在此不再赘述。上述步骤S201中 的“根据测量间隔忽略信息忽略测量间隔”可对应的细化为步骤S2018、步骤S2019、步骤S2020中的一个或多个步骤,在此并不限定。
在步骤S2018中,根据测量间隔忽略信息中测量间隔时间对应的逻辑信道标识,忽略测量间隔时间的逻辑信道标识对应的信道。
根据忽略测量间隔时间对应的逻辑信道标识,可确定忽略测量间隔时间对应的逻辑信道对应的上行或下行的控制或数据信道。从而在测量间隔时间内,利用可忽略的测量间隔时间对应的逻辑信道对应的上行或下行的控制或数据信道,进行信号的发送或接收。
在步骤S2019中,根据测量间隔忽略信息中测量间隔时间对应的信道类型,忽略测量间隔时间的信道类型对应的信道。
根据测量间隔时间对应的信道类型,可确定测量间隔时间对应的信道类型对应的信道。从而在测量间隔时间内,利用可忽略的测量间隔时间对应的信道类型对应的信道,进行信号的发送或接收。
在步骤S2020中,根据测量间隔忽略信息中测量间隔时间对应的信道授权类型,忽略测量间隔时间的信道授权类型对应的信道。
根据忽略测量间隔时间对应的信道授权类型,可确定具体的被授权的信道。从而在测量间隔时间内,利用具体的被授权的信道,进行信号的发送或接收。
其中,步骤S2018至步骤S2020中忽略测量间隔时间的逻辑信道标识对应的信道、忽略测量间隔中信道类型对应的信道以及忽略测量间隔中信道授权类型对应的信道的相关内容可参见上述实施例中的相关说明,在此不再赘述。
在本公开实施例中,用户设备获取网络设备配置的忽略测量间隔的策略或协议预先约定忽略测量间隔的策略,可按照一定的时间策略、信道策略等策略忽略掉测量间隔时间中一定数量的时间单位或信道,从而避免用户设备忽略掉测量间隔时间中大量的时间单位而导致无法获取到服务小区的准确的测量结果,甚至导致切换失败或无线链路连接失败的问题。平衡业务执行效率和测量。
在一些示例中,所述测量间隔忽略信息具有触发状态,所述触发状态包 括激活状态或未激活状态。触发状态的相关内容可参见上述实施例中的相关说明,在此不再赘述。
图4为本公开另一实施例中另一种测量间隔的处理方法的流程图。图4与图3的不同之处在于,图4所示的测量间隔的处理方法还可包括步骤S202和步骤S203。
在步骤S202中,从网络设备接收触发状态设置指令。
在步骤S203中,将用户设备被配置的测量间隔忽略信息的触发状态更新为触发状态设置指令指示的触发状态。
触发状态设置指令可包括期望用户设备被配置的测量间隔忽略信息的触发状态的状态标识。用户设备可根据触发状态设置指令中的状态标识,得到触发状态设置指令指示的触发状态。将用户设备已经被配置的测量间隔忽略信息的触发状态更新为触发状态设置指令指示的触发状态。
其中,步骤S202和步骤S203中触发状态设置指令的相关内容可参见上述实施例中的相关说明,在此不再赘述。
图5为本公开实施例中又一种测量间隔的处理方法的流程图。该测量间隔的处理方法应用于网络设备与用户设备之间。如图5所示,该测量间隔的处理方法包括步骤S301至步骤S302。
在步骤S301中,网络设备为用户设备配置测量间隔忽略信息。
在步骤S302中,网络设备将测量间隔忽略信息下发至用户设备。
在步骤S303中,用户设备获取测量间隔忽略信息。
在步骤S304中,用户设备根据测量间隔忽略信息忽略测量间隔。
其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项。用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作。忽略时间信息用于表征忽略测量间隔的时间。忽略信道信息用于指示忽略测量间隔对应的信道。
需要说明的是,步骤S301至步骤S304的相关内容可参见上述实施例中的相关说明,在此不再赘述。本公开实施例还可参照上述实施例中应用于网络设备的测量间隔的处理方法和应用于用户设备的测量间隔的处理方法。在此不再赘述。
图6为本公开一实施例中一种网络设备400的结构示意图。如图6所示,该网络设备400包括配置模块401和发送模块402。
配置模块401,用于为用户设备配置测量间隔忽略信息。
发送模块402,用于将测量间隔忽略信息下发至用户设备。
其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
在一些示例中,用户设备执行信息指示用户设备执行的忽略测量间隔的动作包括以下的一项或多项:忽略测量间隔周期内的整个测量间隔时间、忽略测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的某一时间位置、忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置、忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置、忽略测量间隔时间满足测量标准时长后剩余的时间。其中,收发时间位置为用户设备接收或发送信号的时间位置。
在一些示例中,忽略时间信息表征的忽略测量间隔的时间包括以下的任意一项:按照预设比率在一个测量间隔时间或多个测量间隔时间中忽略的时间、测量间隔时间中标识为忽略的单位时间、与测量间隔周期相关的忽略时间周期及忽略时间周期中的忽略时间。
忽略信道信息包括以下的一项或多项:略测量间隔时间对应的逻辑信道标识、忽略测量间隔时间对应的信道类型、忽略测量间隔时间对应的信道授权类型。
进一步地,测量间隔忽略信息具有触发状态,触发状态包括激活状态或未激活状态。
上述实施例中的发送模块402还可用于向用户设备发送触发状态设置指令,触发状态设置指令包括期望用户设备被配置的测量间隔忽略信息的触发状态的状态标识。
本公开实施例提供的网络设备能够实现图1和图2的测量间隔的处理方 法实施例中网络设备实现的各个过程,为避免重复,这里不再赘述。
图7为本公开一实施例中一种终端设备500的结构示意图。如图7所示,该终端设备500包括获取模块501和处理模块502。
获取模块501,用于获取测量间隔忽略信息。
处理模块502,用于根据测量间隔忽略信息忽略测量间隔。
其中,测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
在一些示例中,测量间隔忽略信息包括用户设备执行信息。处理模块502可具体用于以下的一项或多项:根据测量间隔忽略信息,忽略测量间隔周期内的整个测量间隔时间;根据测量间隔忽略信息,忽略测量间隔时间中收发时间位置至测量间隔时间中收发时间位置后的某一时间位置;根据测量间隔忽略信息,忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置;根据测量间隔忽略信息,忽略测量间隔时间中收发时间位置前的某一时间位置至测量间隔时间中收发时间位置后的某一时间位置;根据测量间隔忽略信息,忽略测量间隔时间满足测量标准时长后剩余的时间。
其中,收发时间位置为用户设备接收或发送信号的时间位置。
在一些示例中,测量间隔忽略信息包括忽略时间信息。处理模块502可具体用于:根据测量间隔忽略信息,忽略一个测量间隔时间或多个测量间隔时间中按照预设比率设定的时间;或者,根据测量间隔忽略信息,忽略测量间隔时间中标识为忽略的单位时间;或者,根据测量间隔忽略信息,忽略与测量间隔周期相关的忽略时间周期的忽略时间。
在一些示例中,测量间隔忽略信息包括忽略信道信息。处理模块502可具体用于以下一项或多项:根据测量间隔忽略信息中测量间隔时间对应的逻辑信道标识,忽略测量间隔时间的逻辑信道标识对应的信道;根据测量间隔忽略信息中测量间隔时间对应的信道类型,忽略测量间隔时间的信道类型对应的信道;根据测量间隔忽略信息中测量间隔时间对应的信道授权类型,忽略测量间隔时间的信道授权类型对应的信道。
进一步地,测量间隔忽略信息具有触发状态,触发状态包括激活状态或未激活状态。
上述实施例中的获取模块501还可用于从网络设备接收触发状态设置指令。
上述实施例中的处理模块502还可用于将用户设备被配置的测量间隔忽略信息的触发状态更新为触发状态设置指令指示的触发状态。
本公开实施例提供的终端设备能够实现图3和图4的测量间隔的处理方法实施例中用户设备实现的各个过程,为避免重复,这里不再赘述。
图8为实现上述实施例的一种网络设备的硬件结构示意图。如图8所示,该网络设备600包括:存储器601、处理器602、射频单元603及存储在存储器601上并可在处理器602上运行的计算机程序。本领域技术人员可以理解,图8中示出的网络设备的结构并不构成对网络设备的限定,网络设备可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。在本公开实施例中,网络设备包括但不限于基站、服务器等。
其中,处理器602用于为用户设备配置测量间隔忽略信息。测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,忽略时间信息用于表征忽略测量间隔的时间,忽略信道信息用于指示忽略测量间隔对应的信道。
射频单元603用于将测量间隔忽略信息下发至用户设备。
其中,在图8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602代表的一个或多个处理器和存储器601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,本文不再对其进行进一步描述。总线接口提供接口。射频单元603可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元,用于在处理器602的控制下接收和发送数据。处理器602负责管理总线架构和通常的处理,存储器601可以存储处理器602在执行操作时所使用的数据。
可选地,本公开实施例还提供一种网络设备,包括处理器602,存储器 601,存储在存储器601上并可在处理器602上运行的计算机程序,该计算机程序被处理器602执行时实现上述用于网络设备的测量间隔的处理方法的实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
图9为实现上述实施例的一种终端设备的硬件结构示意图。如图9所示,该终端设备700包括但不限于:射频单元701、网络模块702、音频输出单元703、输入单元704、传感器705、显示单元706、用户输入单元707、接口单元708、存储器709、处理器710、以及电源711等部件。本领域技术人员可以理解,图9中示出的终端设备结构并不构成对终端设备的限定,终端设备可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。在本公开实施例中,终端设备包括但不限于手机、平板电脑、笔记本电脑、掌上电脑、车载终端、可穿戴设备、以及计步器等。
其中,处理器710,用于获取测量间隔忽略信息,并根据测量间隔忽略信息忽略测量间隔。
终端设备(即用户设备)获取测量间隔忽略信息,测量间隔忽略信息可包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项。通过测量间隔忽略信息设定供终端设备进行忽略测量间隔动作的策略,使得忽略测量间隔可调控。从而在存在测量间隔的情况下,终端设备仍然可发送或接收信号。从而降低测量间隔对网络设备与终端设备之间的业务的不良影响,提高了业务执行的效率。终端设备可按照一定的时间策略、信道策略等策略忽略掉测量间隔中一定数量的时间单位或信道,从而避免终端设备忽略掉测量间隔中大量的时间单位而导致无法获取到服务小区的准确的测量结果,甚至导致切换失败或无线链路连接失败的问题。平衡业务执行效率和测量。
具体地,处理器710还可用于执行上述图3和图4所示的用于用户设备的测量间隔的处理方法中的各个步骤。各个步骤的相关内容可参见上述实施例中的相关说明,在此不再赘述。
应理解的是,本公开实施例中,射频单元701可用于收发信息或通话过程中,信号的接收和发送,具体地,将来自基站的下行数据接收后,给处理器710处理;另外,将上行的数据发送给基站。通常,射频单元701包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。此 外,射频单元701还可以通过无线通信系统与网络和其他设备通信。
终端设备通过网络模块702为用户提供了无线的宽带互联网访问,如帮助用户收发电子邮件、浏览网页和访问流式媒体等。
音频输出单元703可以将射频单元701或网络模块702接收的或者在存储器709中存储的音频数据转换成音频信号并且输出为声音。而且,音频输出单元703还可以提供与终端设备700执行的特定功能相关的音频输出(例如,呼叫信号接收声音、消息接收声音等等)。音频输出单元703包括扬声器、蜂鸣器以及受话器等。
输入单元704用于接收音频或视频信号。输入单元704可以包括图形处理器(Graphics Processing Unit,GPU)7041和麦克风7042,图形处理器7041对在视频捕获模式或图像捕获模式中由图像捕获装置(如摄像头)获得的静态图片或视频的图像数据进行处理。处理后的图像帧可以显示在显示单元706上。经图形处理器7041处理后的图像帧可以存储在存储器709(或其它存储介质)中或者经由射频单元701或网络模块702进行发送。麦克风7042可以接收声音,并且能够将这样的声音处理为音频数据。处理后的音频数据可以在电话通话模式的情况下转换为可经由射频单元701发送到移动通信基站的格式输出。
终端设备700还包括至少一种传感器705,比如光传感器、运动传感器以及其他传感器。具体地,光传感器包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示面板7061的亮度,接近传感器可在终端设备700移动到耳边时,关闭显示面板7061和/或背光。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别终端设备姿态(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;传感器705还可以包括指纹传感器、压力传感器、虹膜传感器、分子传感器、陀螺仪、气压计、湿度计、温度计、红外线传感器等,在此不再赘述。
显示单元706用于显示由用户输入的信息或提供给用户的信息。显示单元706可包括显示面板7061,可以采用液晶显示器(Liquid Crystal Display, LCD)、有机发光二极管(Organic Light-Emitting Diode,OLED)等形式来配置显示面板7061。
用户输入单元707可用于接收输入的数字或字符信息,以及产生与终端设备的用户设置以及功能控制有关的键信号输入。具体地,用户输入单元707包括触控面板7071以及其他输入设备7072。触控面板7071,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板7071上或在触控面板7071附近的操作)。触控面板7071可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器710,接收处理器710发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板7071。除了触控面板7071,用户输入单元707还可以包括其他输入设备7072。具体地,其他输入设备7072可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆,在此不再赘述。
进一步地,触控面板7071可覆盖在显示面板7061上,当触控面板7071检测到在其上或附近的触摸操作后,传送给处理器710以确定触摸事件的类型,随后处理器710根据触摸事件的类型在显示面板7061上提供相应的视觉输出。虽然在图9中,触控面板7071与显示面板7061是作为两个独立的部件来实现终端设备的输入和输出功能,但是在某些实施例中,可以将触控面板7071与显示面板7061集成而实现终端设备的输入和输出功能,具体此处不做限定。
接口单元708为外部装置与终端设备700连接的接口。例如,外部装置可以包括有线或无线头戴式耳机端口、外部电源(或电池充电器)端口、有线或无线数据端口、存储卡端口、用于连接具有识别模块的装置的端口、音频输入/输出(I/O)端口、视频I/O端口、耳机端口等等。接口单元708可以用于接收来自外部装置的输入(例如,数据信息、电力等等)并且将接收到的输入传输到终端设备700内的一个或多个元件或者可以用于在终端设备700和外部装置之间传输数据。
存储器709可用于存储软件程序以及各种数据。存储器709可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据手机的使用所创建的数据(比如音频数据、电话本等)等。此外,存储器709可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
处理器710是终端设备700的控制中心,利用各种接口和线路连接整个终端设备的各个部分,通过运行或执行存储在存储器709内的软件程序和/或模块,以及调用存储在存储器709内的数据,执行终端设备的各种功能和处理数据,从而对终端设备进行整体监控。处理器710可包括一个或多个处理单元;可选地,处理器710可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器710中。
终端设备700还可以包括给各个部件供电的电源711(比如电池),可选地,电源711可以通过电源管理系统与处理器710逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
另外,终端设备700包括一些未示出的功能模块,在此不再赘述。
可选地,本公开实施例还提供一种终端设备,包括处理器710,存储器709,存储在存储器709上并可在处理器710上运行的计算机程序,该计算机程序被处理器710执行时实现上述用于用户设备的测量间隔的处理方法的实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
本公开实施例还提供一种计算机可读存储介质,计算机可读存储介质上存储有计算机程序,该计算机程序被处理器执行时实现上述用于用户设备的测量间隔的处理方法的实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,的计算机可读存储介质,如只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
本公开实施例还提供一种计算机可读存储介质,计算机可读存储介质上 存储有计算机程序,该计算机程序被处理器执行时实现上述用于网络设备的测量间隔的处理方法的实施例的各个过程,或者,该计算机程序被处理器执行时实现上述用于用户设备的测量间隔的处理方法的实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,的计算机可读存储介质可为只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同或相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。对于网络设备实施例、终端设备实施例和计算机可读存储介质实施例而言,相关之处可以参见方法实施例的说明部分。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对相关技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本公开各个实施例的方法。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本公开的保护之内。
Claims (21)
- 一种测量间隔的处理方法,应用于网络设备,包括:为用户设备配置测量间隔忽略信息,并将所述测量间隔忽略信息下发至所述用户设备;其中,所述测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,所述用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,所述忽略时间信息用于表征忽略所述测量间隔的时间,所述忽略信道信息用于指示忽略所述测量间隔对应的信道。
- 根据权利要求1所述的方法,其中,所述用户设备执行信息指示用户设备执行的忽略测量间隔的动作包括以下的一项或多项:忽略测量间隔周期内的整个测量间隔时间、忽略所述测量间隔时间中收发时间位置至所述测量间隔时间中所述收发时间位置后的某一时间位置、忽略所述测量间隔时间中所述收发时间位置前的某一时间位置至所述测量间隔时间中所述收发时间位置、忽略所述测量间隔时间中所述收发时间位置前的某一时间位置至所述测量间隔时间中所述收发时间位置后的某一时间位置、忽略所述测量间隔时间满足测量标准时长后剩余的时间;其中,所述收发时间位置为所述用户设备接收或发送信号的时间位置。
- 根据权利要求1所述的方法,其中,所述忽略时间信息表征的忽略所述测量间隔的时间包括以下的任意一项:按照预设比率在一个测量间隔时间或多个所述测量间隔时间中忽略的时间、所述测量间隔时间中标识为忽略的单位时间、与所述测量间隔周期相关的忽略时间周期及所述忽略时间周期中的忽略时间。
- 根据权利要求1所述的方法,其中,所述忽略信道信息包括以下的一项或多项:忽略所述测量间隔时间对应的逻辑信道标识、忽略所述测量间隔时间对应的信道类型、忽略所述测量间隔时间对应的信道授权类型。
- 根据权利要求1至4中任意一项所述的方法,其中,所述测量间隔忽略信息具有触发状态,所述触发状态包括激活状态或未激活状态。
- 根据权利要求5所述的方法,还包括:向所述用户设备发送触发状态设置指令,所述触发状态设置指令包括期望所述用户设备被配置的测量间隔忽略信息的所述触发状态的状态标识。
- 一种测量间隔的处理方法,应用于用户设备,包括:获取测量间隔忽略信息,并根据所述测量间隔忽略信息忽略测量间隔;其中,所述测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,所述用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,所述忽略时间信息用于表征忽略所述测量间隔的时间,所述忽略信道信息用于指示忽略所述测量间隔对应的信道。
- 根据权利要求7所述的方法,其中,所述测量间隔忽略信息包括所述用户设备执行信息,所述根据所述测量间隔忽略信息忽略测量间隔,包括以下的一项或多项:根据所述测量间隔忽略信息,忽略测量间隔周期内的整个测量间隔时间;根据所述测量间隔忽略信息,忽略所述测量间隔时间中收发时间位置至所述测量间隔时间中所述收发时间位置后的某一时间位置;根据所述测量间隔忽略信息,忽略所述测量间隔时间中所述收发时间位置前的某一时间位置至所述测量间隔时间中所述收发时间位置;根据所述测量间隔忽略信息,忽略所述测量间隔时间中所述收发时间位置前的某一时间位置至所述测量间隔时间中所述收发时间位置后的某一时间位置;根据所述测量间隔忽略信息,忽略所述测量间隔时间满足测量标准时长后剩余的时间;其中,所述收发时间位置为所述用户设备接收或发送信号的时间位置。
- 根据权利要求7所述的方法,其中,所述测量间隔忽略信息包括所述忽略时间信息,所述根据所述测量间隔忽略信息忽略测量间隔,包括:根据所述测量间隔忽略信息,忽略一个测量间隔时间或多个所述测量间隔时间中按照预设比率设定的时间;或者,根据所述测量间隔忽略信息,忽略所述测量间隔时间中标识为忽略的单位时间;或者,根据所述测量间隔忽略信息,忽略与所述测量间隔周期相关的忽略时间周期的忽略时间。
- 根据权利要求7所述的方法,其中,所述测量间隔忽略信息包括所述忽略信道信息,所述根据所述测量间隔忽略信息忽略测量间隔,包括以下的一项或多项:根据所述测量间隔忽略信息中所述测量间隔时间对应的逻辑信道标识,忽略所述测量间隔时间的所述逻辑信道标识对应的信道;根据所述测量间隔忽略信息中所述测量间隔时间对应的信道类型,忽略所述测量间隔时间的所述信道类型对应的信道;根据所述测量间隔忽略信息中所述测量间隔时间对应的信道授权类型,忽略所述测量间隔时间的所述信道授权类型对应的信道。
- 根据权利要求7至10中任意一项所述的方法,其中,所述测量间隔忽略信息具有触发状态,所述触发状态包括激活状态或未激活状态。
- 根据权利要求11所述的方法,还包括:从所述网络设备接收触发状态设置指令;将所述用户设备被配置的测量间隔忽略信息的所述触发状态更新为所述触发状态设置指令指示的触发状态。
- 一种测量间隔的处理方法,包括:网络设备为用户设备配置测量间隔忽略信息,并将所述测量间隔忽略信息下发至所述用户设备;所述用户设备获取测量间隔忽略信息,并根据所述测量间隔忽略信息忽略测量间隔;其中,所述测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,所述用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,所述忽略时间信息用于表征忽略所述测量间隔的时间,所述忽略信道信息用于指示忽略所述测量间隔对应的信道。
- 一种网络设备,包括:配置模块,用于为用户设备配置测量间隔忽略信息;发送模块,用于将所述测量间隔忽略信息下发至所述用户设备;其中,所述测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,所述用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,所述忽略时间信息用于表征忽略所述测量间隔的 时间,所述忽略信道信息用于指示忽略所述测量间隔对应的信道。
- 一种终端设备,包括:获取模块,用于获取测量间隔忽略信息;处理模块,用于根据所述测量间隔忽略信息忽略测量间隔;其中,所述测量间隔忽略信息包括用户设备执行信息、忽略时间信息、忽略信道信息中的一项或多项,所述用户设备执行信息用于指示用户设备执行的忽略测量间隔的动作,所述忽略时间信息用于表征忽略所述测量间隔的时间,所述忽略信道信息用于指示忽略所述测量间隔对应的信道。
- 根据权利要求15所述的终端设备,其中,所述测量间隔忽略信息包括所述用户设备执行信息,所述处理模块具体用于以下的一项或几项:根据所述测量间隔忽略信息,忽略测量间隔周期内的整个测量间隔时间;根据所述测量间隔忽略信息,忽略所述测量间隔时间中收发时间位置至所述测量间隔时间中所述收发时间位置后的某一时间位置;根据所述测量间隔忽略信息,忽略所述测量间隔时间中所述收发时间位置前的某一时间位置至所述测量间隔时间中所述收发时间位置;根据所述测量间隔忽略信息,忽略所述测量间隔时间中所述收发时间位置前的某一时间位置至所述测量间隔时间中所述收发时间位置后的某一时间位置;根据所述测量间隔忽略信息,忽略所述测量间隔时间满足测量标准时长后剩余的时间;其中,所述收发时间位置为所述用户设备接收或发送信号的时间位置。
- 根据权利要求15所述的终端设备,其中,所述测量间隔忽略信息包括所述忽略时间信息,所述处理模块具体用于:根据所述测量间隔忽略信息,忽略一个测量间隔时间或多个所述测量间隔时间中按照预设比率设定的时间;或者,根据所述测量间隔忽略信息,忽略所述测量间隔时间中标识为忽略的单位时间;或者,根据所述测量间隔忽略信息,忽略与所述测量间隔周期相关的忽略时间周期的忽略时间。
- 根据权利要求15所述的终端设备,其中,所述测量间隔忽略信息包 括所述忽略信道信息,所述处理模块用于以下的一项或多项:根据所述测量间隔忽略信息中所述测量间隔时间对应的逻辑信道标识,忽略所述测量间隔时间的所述逻辑信道标识对应的信道;根据所述测量间隔忽略信息中所述测量间隔时间对应的信道类型,忽略所述测量间隔时间的所述信道类型对应的信道;根据所述测量间隔忽略信息中所述测量间隔时间对应的信道授权类型,忽略所述测量间隔时间的所述信道授权类型对应的信道。
- 一种网络设备,包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现如权利要求1至6中任意一项所述的测量间隔的处理方法的步骤。
- 一种终端设备,包括处理器、存储器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现如权利要求7至12中任意一项所述的测量间隔的处理方法的步骤。
- 一种计算机可读存储介质,其中,所述计算机可读存储介质上存储计算机程序,所述计算机程序被处理器执行时实现如权利要求1至6中任意一项或权利要求7至12中任意一项所述的测量间隔的处理方法的步骤。
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CN106165323A (zh) * | 2014-03-04 | 2016-11-23 | Lg电子株式会社 | 接收用于接收发现参考信号的控制信息的方法及其装置 |
CN107637119A (zh) * | 2015-05-15 | 2018-01-26 | 高通股份有限公司 | 载波聚集中的测量间隙 |
CN107852311A (zh) * | 2015-07-22 | 2018-03-27 | 高通股份有限公司 | 用于机器类型通信的可配置测量间隙和窗口 |
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