WO2022111530A1 - 寻呼指示方法、装置、终端、网络设备和可读存储介质 - Google Patents

寻呼指示方法、装置、终端、网络设备和可读存储介质 Download PDF

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Publication number
WO2022111530A1
WO2022111530A1 PCT/CN2021/132816 CN2021132816W WO2022111530A1 WO 2022111530 A1 WO2022111530 A1 WO 2022111530A1 CN 2021132816 W CN2021132816 W CN 2021132816W WO 2022111530 A1 WO2022111530 A1 WO 2022111530A1
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Prior art keywords
paging
monitoring
sequences
sequence
indicate
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PCT/CN2021/132816
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English (en)
French (fr)
Inventor
李东儒
姜大洁
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维沃移动通信有限公司
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Publication of WO2022111530A1 publication Critical patent/WO2022111530A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/005Transmission of information for alerting of incoming communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like

Definitions

  • the present application belongs to the field of wireless communication technologies, and specifically relates to a paging indication method, a paging indication device, a terminal, a network device, and a readable storage medium.
  • a user equipment In a mobile communication system, a user equipment (User Equipment, UE) or called a terminal periodically monitors paging messages to establish a service connection. In each paging cycle, the terminal can calculate the resource location corresponding to its own paging opportunity, and then detect whether there is a Paging Radio Network Temporary Identity (P-Radio Network Temporary Identity, P- RNTI) scrambled paging Physical Downlink Control Channel (PDCCH). If the paging PDCCH is detected, the corresponding scheduled physical downlink shared channel (Physical Downlink Share Channel, PDSCH) is decoded to obtain the paging message.
  • P-RNTI Paging Radio Network Temporary Identity
  • P-RNTI Physical Downlink Control Channel
  • the embodiments of the present application provide a paging indication method, a paging indication device, a terminal, a network device and a readable storage medium, which can solve the problem of increased network overhead in the related art, and ensure the paging physical downlink control channel and paging Reliability of physical downlink shared channel demodulation and detection.
  • an embodiment of the present application provides a paging indication method, which is executed by a terminal, and the paging indication method includes:
  • the paging advance indication information is used to indicate the target behavior in the next N paging occasions, N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • an embodiment of the present application provides a paging indication method, which is executed by a network device, and the paging indication method includes:
  • the paging advance indication information is used to indicate the target behavior in the next N paging occasions, where N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • an embodiment of the present application provides a paging indication device for a terminal, including:
  • an accepting module configured to receive a sequence carrying paging advance indication information
  • a determining module configured to determine the target behavior in the N paging occasions according to the paging advance indication information
  • N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • an embodiment of the present application provides a paging indication device for network equipment, including:
  • a sending module configured to send a sequence carrying the paging advance indication information to the terminal, so that the terminal determines the target behavior in the N paging occasions according to the paging advance indication information;
  • N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • an embodiment of the present application provides a terminal, including a processor, a memory, and a program or instruction stored in the memory and executable on the processor.
  • the program or instruction is executed by the processor, the implementation is as in the first aspect. Provides the steps of the paging indication method.
  • an embodiment of the present application provides a network device, including a processor, a memory, and a program or instruction stored in the memory and executable on the processor.
  • the program or instruction is executed by the processor, the second aspect is implemented Steps of the paging indication method provided in .
  • an embodiment of the present application provides a readable storage medium, including a processor, a memory, and a program or instruction stored in the memory and executable on the processor.
  • the program or instruction is executed by the processor, the The steps of the paging indication method provided in one aspect, and/or the steps of the paging indication method provided in the second aspect.
  • the network overhead caused by the paging advance indication information is realized, and the paging advance indication information is reduced.
  • the complexity of information signaling design in addition, the reliability of the demodulation and detection of the paging physical downlink control channel and the paging physical downlink shared channel can be further ensured through the indication of whether the first signal is available.
  • FIG. 1 shows one of the flowcharts of a paging indication method according to an embodiment of the present application
  • Fig. 2 shows the second flowchart of the paging indication method according to the embodiment of the present application
  • Fig. 3 shows one of the structural schematic diagrams of sequence transceiver
  • Fig. 4 shows the second structural schematic diagram of sequence transceiver
  • FIG. 5 shows one of the structural block diagrams of the paging indication apparatus according to an embodiment of the present application
  • FIG. 6 shows the second structural block diagram of a paging indication apparatus according to an embodiment of the present application
  • FIG. 7 shows a schematic diagram of a hardware structure of an electronic device according to an embodiment of the application.
  • FIG. 1 shows one of the flowcharts of a paging method according to an embodiment of the present application, wherein the paging method specifically includes the following steps:
  • Step 102 receiving a sequence carrying paging advance indication information
  • Step 104 Determine the target behavior in the N paging occasions according to the paging advance indication information.
  • the paging advance indication information is used to indicate the target behavior in the next N paging occasions, where N is a positive integer greater than or equal to 1, and the target behavior includes monitoring behavior and whether the first signal is available at least one of;
  • the terminal side receives a sequence sent by the network side, where the sequence carries paging advance indication information, and the paging advance indication information can indicate that in the next N paging occasions (Paging Occasion, PO) , the target behavior of the terminal device, where the target behavior includes monitoring behavior and whether the first signal is available.
  • the terminal device determines the target behavior in the N paging occasions.
  • each paging advance indication information can indicate one or more paging occasions, so the network side does not need to send the paging advance indication information to the terminal side device correspondingly before each paging occasion, so it can effectively save Network side overhead.
  • the first signal may be a tracking reference signal (Tracing Reference Signal, TRS)/channel state information reference signal (Channel State Information-Reference Signal, CSI-RS).
  • TRS Tracking Reference Signal
  • CSI-RS Channel State Information-Reference Signal
  • the terminal receives the sequence of paging advance indication information, and determines and determines the target behavior in the N paging occasions.
  • network side overhead is saved, and on the other hand, paging is guaranteed.
  • the reliability of the demodulation and detection of the physical downlink control channel and the paging physical downlink shared channel, and the complexity of the paging advance indication information can be reduced by carrying the paging advance indication information in the sequence.
  • each of the N paging occasions is associated with W paging groups, where W is a positive integer greater than or equal to 1.
  • different terminals may be allocated to the same PO, that is, multiple terminals are associated with the same PO.
  • the UEs associated with each PO in the N POs can be further divided into W paging groups, that is, N POs It is divided into N ⁇ W paging groups in total, wherein W is the number of paging groups divided by terminals associated on one PO.
  • the terminal associated with the PO has only one paging group, that is, the PO is not grouped.
  • the probability of the terminal being accidentally awakened by the network is reduced, and the energy consumption of the terminal is further saved.
  • the monitoring behavior includes at least one of the following:
  • the paging groups associated with the terminal include: among the N paging occasions, at least one paging group among the W paging groups associated with at least one paging occasion.
  • the monitoring behavior includes whether to monitor the paging PDCCH of the paging group associated with the terminal, the paging signal of the paging group associated with the terminal, the system information update of the paging group associated with the terminal, etc. .
  • the monitoring behavior does not need to be divided into paging groups, that is, the monitoring behavior includes at least one of the following: whether to monitor the paging in the paging occasion associated with the terminal PDCCH, whether to monitor paging in the paging occasion associated with the terminal, whether to monitor the system information update in the paging occasion associated with the terminal.
  • the monitoring behavior is monitoring, it means that the terminal monitors one or more of the paging PDCCH, paging and system information update of the paging group to which it is associated. If the monitoring behavior is not monitoring, it means that the terminal does not monitor one or more of the paging PDCCH, paging and system information update of the associated paging group.
  • the target content is the update information
  • it can include 3 alternative sequences, wherein the alternative sequence 1 is to instruct the terminal group 1 to monitor the update information, and the group 2 does not monitor the update information; the alternative sequence 2 is to instruct the terminal group to monitor the update information. Group 1 does not monitor the update information, and group 2 monitors the update information; the alternative sequence 3 is to indicate that both the terminal group 1 and the terminal group 2 monitor the update information.
  • the case of not sending the candidate sequence represents the case that neither the terminal group 1 nor the terminal group 2 monitors the update information.
  • the target content specifically includes: paging the physical downlink control channel, paging, and update information.
  • the update information may be an update message of system information.
  • the number of sequences is one.
  • the number of sequences is one, that is, the sequence is a single sequence, that is, the monitoring behaviors of the respective W subgroups in the next N paging occasions are indicated through a single sequence. That is, the listening behavior of N ⁇ W subgroups is indicated by a single sequence.
  • the single sequence is any one of the first candidate sequences; in the case that the paging advance indication information is used to indicate the monitoring behavior in the next N paging occasions , the number of the first candidate sequence is any of the following:
  • the number of the first candidate sequences includes the following three situations:
  • the N ⁇ W first candidate sequences in the first candidate sequences are respectively used to indicate N ⁇
  • the monitoring behavior of each paging group in the W paging groups, and the remaining one first candidate sequence is used to indicate that the monitoring behavior of more than or equal to 2 paging groups is monitoring;
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups;
  • each first candidate sequence is used to indicate N ⁇ W except that the monitoring behavior of all paging groups is no monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging
  • the first candidate sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging groups
  • the monitoring behavior of each paging group in , and the other remaining groups do not monitor the monitoring behavior.
  • the remaining one first candidate sequence is used to indicate that the monitoring behavior of two or more paging groups is monitoring.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • designing a first candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, and the number of energy-saving sequences is more important than the increase in the false call rate.
  • mapping manner of the sequence in which the number of the first candidate sequence is N ⁇ W+1 and multiple monitoring behaviors a balance between the false call rate and the sequence complexity and overhead can be achieved.
  • N and W it is a preferred mapping method.
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups. That is, when the number of the first candidate sequences is 2 (N ⁇ W) , for each case, a first candidate sequence is set for indication.
  • the first candidate sequence 1 is used to instruct A to monitor and B not to monitor; the first candidate sequence 2 is used to instruct A not to monitor and B to monitor; the first candidate sequence 3 is used to indicate that both A and B are monitoring; the first alternative sequence 4 is used to indicate that neither A and B are monitoring.
  • each first candidate sequence is used to indicate the N ⁇ W numbers except that the monitoring behavior of all paging groups is no monitoring.
  • the monitoring behavior of one of all permutations and combinations of paging groups is not limited.
  • the terminal when the terminal does not receive any sequence, it represents the situation that the terminal does not monitor.
  • a and B there are 2 subgroups of 1 ⁇ 2 in total, which are denoted as A and B.
  • the first candidate sequence 1 is used to instruct A to monitor, and B not to monitor
  • the first candidate sequence 2 is used to instruct A not to monitor, and B to monitor
  • Select sequence 3 to indicate that both A and B are monitoring; if no sequence is received, it means that neither A nor B is monitoring (from the perspective of each terminal, it means that the monitoring behavior of the paging group associated with the terminal is: not listening).
  • the multiple sequences occupy different domain resources respectively, and the domain resources include at least one of the following: time domain, frequency domain, and code domain.
  • domain resources refer to resources on different domains. For example, when domains are divided according to a time division method, time domain resources are obtained. The domain is divided according to the frequency division method, and the frequency domain resources are obtained. Divide the domain according to the code division method to obtain the code domain resource.
  • the number of sequences is one or more, that is, the monitoring behavior of the respective W subgroups in the next N paging occasions can be indicated by receiving multiple sequences.
  • multiple sequences occupy different time domain, frequency domain and code domain resources for reception respectively.
  • the number of sequences is N in the case that the paging advance indicates the monitoring behavior
  • each of the N sequences respectively indicates the monitoring behavior in the N paging occasions.
  • the number of sequences is N.
  • each sequence in the N sequences is respectively Indicates the monitoring behavior in one paging occasion, and each sequence is any one of the second candidate sequences.
  • sequences correspond to 3 paging occasions
  • sequence 1 is used to indicate the monitoring behavior of the first paging occasion
  • sequence 2 is used to indicate the monitoring behavior of the second paging occasion
  • sequence 3 is used to indicate the monitoring behavior of the second paging occasion.
  • the number of sequences is N+1;
  • each of the N sequences in the N+1 sequences respectively indicates the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate whether the first signal is available.
  • the number of one or more sequences is N+1 ;
  • N sequences are used to respectively indicate the monitoring behavior in the N paging occasions, and the remaining one sequence is used to indicate that the first signal is available.
  • the "one remaining sequence” corresponds to two candidate sequences, wherein one candidate sequence is used to indicate that the first signal is available, and the other candidate sequence is used to indicate that the first signal is unavailable.
  • the "one remaining sequence” corresponds to only one candidate sequence, and the candidate sequence is used to indicate that the first signal is available. In the case where the "one remaining sequence" is not detected, the first signal is determined. unavailable.
  • the sequence of the paging advance indication information carries the monitoring behavior and/or the availability of the first signal in different paging occasions through multiple sequences respectively. information, which can reduce the number of candidate sequences and the complexity of sequence design, but at the same time, it also increases the overhead of network sending sequence resources.
  • each sequence is any one of the second candidate sequences, and the number of the second candidate sequences is any of the following:
  • each second candidate sequence is used to respectively indicate the monitoring of one of all the permutations and combinations of the W paging groups Behavior
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • each second candidate sequence is used to respectively indicate the monitoring behavior of one of all the permutations and combinations of the W paging groups. That is to say, when the number of second candidate sequences is 2 W , for each situation, a second candidate sequence is set for indication.
  • the second candidate sequence 1 is used to indicate that in a paging occasion, A monitors, B does not monitor;
  • the second alternative sequence 2 is used to indicate that in a paging occasion , A does not monitor, but B monitors;
  • the second alternative sequence 3 is used to indicate that in a paging occasion, both A and B monitor;
  • the second alternative sequence 4 is used to indicate that in a paging occasion, A, B are not monitored.
  • monitoring or not monitoring refers to monitoring or not monitoring the monitoring behavior.
  • mapping method between the sequence and multiple monitoring behaviors in which the number of the second candidate sequence is 2 W .
  • the probability of the terminal being awakened by mistake can be reduced to 0 to the greatest extent, but it also causes sequence design problems. complexity and the increase in the number of sequences.
  • this mapping method is very ideal when the values of N and W are small.
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring. Listening behavior for one of the permutations.
  • the terminal when the terminal does not receive any sequence, it means that the terminal does not monitor the monitoring behavior.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • the W second candidate sequences in W+1 are used to indicate the monitoring behavior of each paging group in the W paging groups in one paging occasion.
  • the second alternative sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the W first candidate sequences in the first candidate sequence are used to indicate each paging in the W paging groups.
  • the monitoring behavior of the group, and the other remaining groups do not monitor the monitoring behavior.
  • each sequence represents the monitoring behaviors of two groups in one PO.
  • the remaining second candidate sequence is used to indicate that the number of paging groups is greater than or equal to 2.
  • the listening behavior is listening.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • by designing a second candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, and the number of energy-saving sequences is more important than the increase in the false call rate.
  • the balance between the false call rate and the sequence complexity and overhead can be achieved.
  • the values of the other two second candidate sequences in the embodiment of multiple sequences when the values of N and W are relatively large, it is a preferred mapping manner.
  • FIG. 2 shows the second flowchart of a paging method according to an embodiment of the present application, wherein the paging method specifically includes the following steps:
  • Step 202 detecting a sequence at a specific position
  • Step 204 in the case that the sequence is not detected, determine that the monitoring behavior is no monitoring.
  • the terminal device receives the paging advance indication information at a specific location according to a prescribed network protocol. If the terminal does not receive the above sequence at a specific location, the terminal device does not monitor the paging message in all paging occasions before receiving the next sequence.
  • the network side configures a sequence-based paging advance indication information (hereinafter referred to as PEI) to associate and indicate the next two paging occasions (hereinafter referred to as PO), and configures the terminal equipment (hereinafter referred to as UE) in a PO according to its terminal equipment.
  • PEI sequence-based paging advance indication information
  • UE terminal equipment
  • UE-ID International Mobile Subscriber Identity
  • FIG. 3 shows a schematic structural diagram of sequence transmission and reception.
  • sequence transmission and reception are performed in the manner shown in FIG. 3 .
  • the situation corresponding to each sequence and the situation where the network side does not send any sequence means that all groups do not need to monitor paging are shown in Table 1:
  • the network side configures a sequence-based paging advance indication information (hereinafter referred to as PEI) to associate and indicate the next two paging occasions (hereinafter referred to as PO), and configures the terminal equipment (hereinafter referred to as UE) in a PO according to its terminal equipment.
  • PEI sequence-based paging advance indication information
  • UE terminal equipment
  • UE-ID International Mobile Subscriber Identity
  • FIG. 4 shows the second structural schematic diagram of sequence transmission and reception.
  • sequence transmission and reception are performed in the manner shown in FIG. 4 .
  • the terminal does not detect any sequence, it means that all subgroups do not monitor the paging PDCCH.
  • Table 2 The specific sequence is shown in Table 2:
  • the network side configures a sequence-based paging advance indication information (hereinafter referred to as PEI) to associate and indicate the next two paging occasions (hereinafter referred to as PO), and configures the terminal equipment (hereinafter referred to as UE) in a PO according to its terminal equipment.
  • PEI sequence-based paging advance indication information
  • UE terminal equipment
  • UE-ID International Mobile Subscriber Identity
  • the protocol stipulates that the sequence is sent and received in the manner shown in Figure 4.
  • the first N times each time the sequence is sent a total of W+1 3, each sequence corresponds to the situation where only one subgroup monitors the paging PDCCH, and the other one sequence Indicates that more than or equal to 2 subgroups need to monitor the paging PDCCH.
  • the fact that the terminal does not detect any sequence indicates that all subgroups do not monitor the paging PDCCH.
  • there are two candidate sequences in the sequence sent in the last time which are used to correspond to whether TRS/CSI-RS is available or one sequence is used to correspond to the availability of TRS/CSI-RS.
  • the network side configures a sequence-based paging advance indication information (hereinafter referred to as PEI) to associate and indicate the next two paging occasions (hereinafter referred to as PO), and configures the terminal equipment (hereinafter referred to as UE) in a PO according to its terminal equipment.
  • PEI sequence-based paging advance indication information
  • UE terminal equipment
  • UE-ID International Mobile Subscriber Identity
  • the protocol stipulates that the sequence is sent and received in the manner shown in Figure 4.
  • the first N times each time the sequence is sent a total of W+1 3, each sequence corresponds to the situation where only one subgroup monitors the paging PDCCH, and the other one sequence Indicates that more than or equal to 2 subgroups need to monitor the paging PDCCH.
  • the fact that the terminal does not detect any sequence indicates that all subgroups do not monitor the paging PDCCH.
  • there are two candidate sequences in the sequence sent in the last time which are used to correspond to whether TRS/CSI-RS is available or one sequence is used to correspond to the availability of TRS/CSI-RS.
  • the paging method specifically includes the following steps:
  • the paging advance indication information is used to indicate the target behavior in the next N paging occasions, where N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • the network side sends a signal sequence to the terminal, and the sequence carries paging advance indication information, and the paging advance indication information can indicate that in the next N paging occasions (PO, Paging Occasion),
  • PO next N paging occasions
  • the target behavior of the terminal device where the target behavior includes monitoring behavior and whether the first signal is available.
  • the terminal device determines the target behavior in the N paging occasions.
  • each paging advance indication information can indicate one or more paging occasions, so the network side does not need to send the paging advance indication information to the terminal side device correspondingly before each paging occasion, so it can effectively save Network side overhead.
  • the first signal may be a TRS/CSI-RS reference signal.
  • the terminal receives the sequence of paging advance indication information, and determines and determines the target behavior in the N paging occasions.
  • network side overhead is saved, and on the other hand, paging is guaranteed.
  • the reliability of the demodulation and detection of the physical downlink control channel and the paging physical downlink shared channel, and the complexity of the paging advance indication information can be reduced by carrying the paging advance indication information in the sequence.
  • each of the N paging occasions is associated with W paging groups, where W is a positive integer greater than or equal to 1.
  • different terminals may be allocated to the same PO, that is, multiple terminals are associated with the same PO.
  • the UEs associated with each PO in the N POs can be further divided into W paging groups, that is, N POs It is divided into N ⁇ W paging groups in total, wherein W is the number of paging groups divided by terminals associated on one PO.
  • the terminal associated with the PO has only one paging group, that is, the PO is not grouped.
  • the probability of the terminal being accidentally awakened by the network is reduced, and the energy consumption of the terminal is further saved.
  • the monitoring behavior includes at least one of the following:
  • the paging groups associated with the terminal include: among the N paging occasions, at least one paging group among the W paging groups associated with at least one paging occasion.
  • the monitoring behavior includes whether to monitor the paging PDCCH (Physical Downlink Control Channel) of the paging group associated with the terminal, the paging of the paging group associated with the terminal, the System information updates for associated paging groups, etc.
  • PDCCH Physical Downlink Control Channel
  • the monitoring behavior does not need to be divided into paging groups, that is, the monitoring behavior includes at least one of the following: whether to monitor the paging in the paging occasion associated with the terminal PDCCH, whether to monitor paging in the paging occasion associated with the terminal, whether to monitor the system information update in the paging occasion associated with the terminal.
  • the monitoring behavior is monitoring, it means that the terminal monitors one or more of the paging PDCCH, paging and system information update of the paging group to which it is associated. If the monitoring behavior is not monitoring, it means that the terminal does not monitor one or more of the paging PDCCH, paging and system information update of the associated paging group.
  • the target content is the update information
  • it can include 3 alternative sequences, wherein the alternative sequence 1 is to instruct the terminal group 1 to monitor the update information, and the group 2 does not monitor the update information; the alternative sequence 2 is to instruct the terminal group to monitor the update information. Group 1 does not monitor the update information, and group 2 monitors the update information; the alternative sequence 3 is to indicate that both the terminal group 1 and the terminal group 2 monitor the update information.
  • the case of not sending the candidate sequence represents the case that neither the terminal group 1 nor the terminal group 2 monitors the update information.
  • the target content specifically includes: paging physical downlink control channel (PDCCH, Physical Downlink Control Channel), paging (paging), update information.
  • the update information may be an update message of system information.
  • the number of sequences is one.
  • the number of sequences is one, that is, the sequence is a single sequence, that is, through a single sequence, the monitoring behaviors of the respective W subgroups in the next N paging occasions are indicated. That is, the listening behavior of N ⁇ W subgroups is indicated by a single sequence.
  • the single sequence is any one of the first candidate sequences; in the case that the paging advance indication information is used to indicate the monitoring behavior in the next N paging occasions , the number of the first candidate sequence is any of the following:
  • the number of the first candidate sequences includes the following three situations:
  • the N ⁇ W first candidate sequences in the first candidate sequences are respectively used to indicate N ⁇
  • the monitoring behavior of each paging group in the W paging groups, and the remaining one first candidate sequence is used to indicate that the monitoring behavior of more than or equal to 2 paging groups is monitoring;
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups;
  • each first candidate sequence is used to indicate N ⁇ W except that the monitoring behavior of all paging groups is no monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging The listening behavior of each paging group in the group.
  • the first candidate sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging groups
  • the monitoring behavior of each paging group in , and the other remaining groups do not monitor the monitoring behavior.
  • the remaining one first candidate sequence is used to indicate that the monitoring behavior of two or more paging groups is monitoring.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • designing a first candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, and the number of energy-saving sequences is more important than the increase in the false call rate.
  • mapping manner of the sequence in which the number of the first candidate sequence is N ⁇ W+1 and multiple monitoring behaviors a balance between the false call rate and the sequence complexity and overhead can be achieved.
  • N and W it is a preferred mapping method.
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups. That is, when the number of the first candidate sequences is 2 (N ⁇ W) , for each case, a first candidate sequence is set for indication.
  • the first candidate sequence 1 is used to instruct A to monitor and B not to monitor; the first candidate sequence 2 is used to instruct A not to monitor and B to monitor; the first candidate sequence 3 is used to indicate that both A and B are monitoring; the first alternative sequence 4 is used to indicate that neither A and B are monitoring.
  • each first candidate sequence is used to indicate the N ⁇ W numbers except that the monitoring behavior of all paging groups is no monitoring.
  • the monitoring behavior of one of all permutations and combinations of paging groups is not limited.
  • the terminal when the terminal does not receive any sequence, it represents the situation that the terminal does not monitor.
  • a and B there are 2 subgroups of 1 ⁇ 2 in total, which are denoted as A and B.
  • the first candidate sequence 1 is used to instruct A to monitor, and B not to monitor
  • the first candidate sequence 2 is used to instruct A not to monitor, and B to monitor
  • Select sequence 3 to indicate that both A and B are monitoring; if no sequence is received, it means that neither A nor B is monitoring (from the perspective of each terminal, it means that the monitoring behavior of the paging group associated with the terminal is: not listening).
  • the multiple sequences occupy different domain resources respectively, and the domain resources include at least one of the following: time domain, frequency domain, and code domain.
  • domain resources refer to resources on different domains. For example, when domains are divided according to a time division method, time domain resources are obtained. The domain is divided according to the frequency division method, and the frequency domain resources are obtained. Divide the domain according to the code division method to obtain the code domain resource.
  • the number of sequences is one or more, that is, the monitoring behavior of the respective W subgroups in the next N paging occasions can be indicated by receiving multiple sequences.
  • multiple sequences occupy different time domain, frequency domain and code domain resources for reception respectively.
  • the number of sequences is N in the case that the paging advance indicates the monitoring behavior
  • each of the N sequences respectively indicates the monitoring behavior in the N paging occasions.
  • the number of sequences is N.
  • each sequence in the N sequences is respectively Indicates the monitoring behavior in one paging occasion, and each sequence is any one of the second candidate sequences.
  • sequences correspond to 3 paging occasions
  • sequence 1 is used to indicate the monitoring behavior of the first paging occasion
  • sequence 2 is used to indicate the monitoring behavior of the second paging occasion
  • sequence 3 is used to indicate the monitoring behavior of the second paging occasion.
  • the number of sequences is N+1;
  • each of the N sequences in the N+1 sequences respectively indicates the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate whether the first signal is available.
  • the number of one or more sequences is N+1 ;
  • N sequences are used to respectively indicate the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate that the first signal is available.
  • the "one remaining sequence” corresponds to two candidate sequences, wherein one candidate sequence is used to indicate that the first signal is available, and the other candidate sequence is used to indicate that the first signal is unavailable.
  • the "one remaining sequence” corresponds to only one candidate sequence, and the candidate sequence is used to indicate that the first signal is available. In the case where the "one remaining sequence" is not detected, the first signal is determined. unavailable.
  • the sequence of the paging advance indication information carries the monitoring behavior and/or the availability of the first signal in different paging occasions through multiple sequences respectively. information, which can reduce the number of candidate sequences and the complexity of sequence design, but at the same time, it also increases the overhead of network sending sequence resources.
  • each sequence is any one of the second candidate sequences, and the number of the second candidate sequences is any of the following:
  • each second candidate sequence is used to indicate monitoring of one of all permutations and combinations of W paging groups respectively Behavior;
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • each second candidate sequence is used to respectively indicate the monitoring behavior of one of all the permutations and combinations of the W paging groups. That is to say, when the number of second candidate sequences is 2 W , for each situation, a second candidate sequence is set for indication.
  • the second candidate sequence 1 is used to indicate that in a paging occasion, A monitors, B does not monitor;
  • the second alternative sequence 2 is used to indicate that in a paging occasion , A does not monitor, but B monitors;
  • the second alternative sequence 3 is used to indicate that in a paging occasion, both A and B monitor;
  • the second alternative sequence 4 is used to indicate that in a paging occasion, A, B are not monitored.
  • monitoring or not monitoring refers to monitoring or not monitoring the monitoring behavior.
  • mapping method between the sequence and multiple monitoring behaviors in which the number of the second candidate sequence is 2 W .
  • the probability of the terminal being awakened by mistake can be reduced to 0 to the greatest extent, but it also causes sequence design problems. complexity and the increase in the number of sequences.
  • this mapping method is very ideal when the values of N and W are small.
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring. Listening behavior for one of the permutations.
  • the terminal when the terminal does not receive any sequence, it means that the terminal does not monitor the monitoring behavior.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • the W second candidate sequences in W+1 are used to indicate the monitoring behavior of each paging group in the W paging groups in one paging occasion.
  • the second alternative sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the W first candidate sequences in the first candidate sequence are used to indicate each paging in the W paging groups.
  • the monitoring behavior of the group, and the other remaining groups do not monitor the monitoring behavior.
  • each sequence represents the monitoring behaviors of two groups in one PO.
  • the remaining second candidate sequence is used to indicate that the number of paging groups is greater than or equal to 2.
  • the listening behavior is listening.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • by designing a second candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, so the number of energy-saving sequences is more important than the increase in the false call rate.
  • the balance between the false call rate and the sequence complexity and overhead can be achieved.
  • the values of the other two second candidate sequences in the embodiment of multiple sequences when the values of N and W are relatively large, it is a preferred mapping manner.
  • FIG. 5 shows one of the structural block diagrams of a paging indication apparatus according to an embodiment of the present application.
  • the paging indication apparatus 500 includes:
  • a receiving module 502 configured to receive a sequence carrying paging advance indication information
  • the determining module 504 is configured to determine the target behavior in the N paging occasions according to the paging advance indication information.
  • N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • the terminal side receives a sequence sent by the network side, and the sequence carries paging advance indication information, and the paging advance indication information can indicate that in the next N paging occasions (PO, Paging Occasion) , the target behavior of the terminal device, where the target behavior includes monitoring behavior and whether the first signal is available.
  • the terminal device After receiving the paging advance indication information, the terminal device determines the target behavior in the N paging occasions.
  • each paging advance indication information can indicate one or more paging occasions, so the network side does not need to send the paging advance indication information to the terminal side device correspondingly before each paging occasion, so it can effectively save Network side overhead.
  • the first signal may be a TRS/CSI-RS reference signal.
  • the terminal receives the sequence of paging advance indication information, and determines and determines the target behavior in the N paging occasions.
  • network side overhead is saved, and on the other hand, paging is guaranteed.
  • the reliability of the demodulation and detection of the physical downlink control channel and the paging physical downlink shared channel, and the complexity of the paging advance indication information can be reduced by carrying the paging advance indication information in the sequence.
  • each of the N paging occasions is associated with W paging groups, where W is a positive integer greater than or equal to 1.
  • different terminals may be allocated to the same PO, that is, multiple terminals are associated with the same PO.
  • the UEs associated with each PO in the N POs can be further divided into W paging groups, that is, N POs It is divided into N ⁇ W paging groups in total, wherein W is the number of paging groups divided by terminals associated on one PO.
  • the terminal associated with the PO has only one paging group, that is, the PO is not grouped.
  • the probability of the terminal being accidentally awakened by the network is reduced, and the energy consumption of the terminal is further saved.
  • the monitoring behavior includes at least one of the following:
  • the paging groups associated with the terminal include: among the N paging occasions, at least one paging group among the W paging groups associated with at least one paging occasion.
  • the monitoring behavior includes whether to monitor the paging PDCCH of the paging group associated with the terminal, the paging of the paging group associated with the terminal, the system information update of the paging group associated with the terminal, and the like.
  • the monitoring behavior does not need to be divided into paging groups, that is, the monitoring behavior includes at least one of the following: whether to monitor the paging in the paging occasion associated with the terminal PDCCH, whether to monitor paging in the paging occasion associated with the terminal, whether to monitor the system information update in the paging occasion associated with the terminal.
  • the monitoring behavior is monitoring, it means that the terminal monitors one or more of the paging PDCCH, paging and system information update of the paging group to which it is associated. If the monitoring behavior is not monitoring, it means that the terminal does not monitor one or more of the paging PDCCH, paging and system information update of the associated paging group.
  • the target content is the update information
  • it can include 3 alternative sequences, wherein the alternative sequence 1 is to instruct the terminal group 1 to monitor the update information, and the group 2 does not monitor the update information; the alternative sequence 2 is to instruct the terminal group to monitor the update information. Group 1 does not monitor the update information, and group 2 monitors the update information; the alternative sequence 3 is to indicate that both the terminal group 1 and the terminal group 2 monitor the update information.
  • the case of not sending the candidate sequence represents the case that neither the terminal group 1 nor the terminal group 2 monitors the update information.
  • the target content specifically includes: paging a physical downlink control channel (PDCCH, Physical Downlink Control Channel), paging, and update information.
  • the update information may be an update message of system information.
  • the number of sequences is one.
  • the number of sequences is one, that is, the sequence is a single sequence, that is, the monitoring behaviors of the respective W subgroups in the next N paging occasions are indicated through a single sequence. That is, the listening behavior of N ⁇ W subgroups is indicated by a single sequence.
  • the single sequence is any one of the first candidate sequences; in the case that the paging advance indication information is used to indicate the monitoring behavior in the next N paging occasions , the number of the first candidate sequence is any of the following:
  • the number of the first candidate sequences includes the following three situations:
  • the N ⁇ W first candidate sequences in the first candidate sequences are respectively used to indicate N ⁇
  • the monitoring behavior of each paging group in the W paging groups, and the remaining one first candidate sequence is used to indicate that the monitoring behavior of more than or equal to 2 paging groups is monitoring;
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups;
  • each first candidate sequence is used to indicate N ⁇ W except that the monitoring behavior of all paging groups is no monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging The listening behavior of each paging group in the group.
  • the first candidate sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging groups
  • the monitoring behavior of each paging group in , and the other remaining groups do not monitor the monitoring behavior.
  • the remaining one first candidate sequence is used to indicate that the monitoring behavior of two or more paging groups is monitoring.
  • a sequence can be used to represent a variety of possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • by designing a first candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, and the number of energy-saving sequences is more important than the increase in the false call rate.
  • mapping manner of such a sequence in which the number of the first candidate sequence is N ⁇ W+1 and multiple monitoring behaviors, a balance between the false call rate and the sequence complexity and overhead can be achieved.
  • N and W it is a preferred mapping method.
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups. That is, when the number of the first candidate sequences is 2 (N ⁇ W) , for each case, a first candidate sequence is set for indication.
  • the first candidate sequence 1 is used to instruct A to monitor and B not to monitor; the first candidate sequence 2 is used to instruct A not to monitor and B to monitor; the first candidate sequence 3 is used to indicate that both A and B are monitoring; the first alternative sequence 4 is used to indicate that neither A and B are monitoring.
  • each first candidate sequence is used to indicate the N ⁇ W numbers except that the monitoring behavior of all paging groups is no monitoring.
  • the monitoring behavior of one of all permutations and combinations of paging groups is not limited.
  • the terminal when the terminal does not receive any sequence, it represents the situation that the terminal does not monitor.
  • a and B there are 2 subgroups of 1 ⁇ 2 in total, which are denoted as A and B.
  • the first candidate sequence 1 is used to instruct A to monitor, and B not to monitor
  • the first candidate sequence 2 is used to instruct A not to monitor, and B to monitor
  • Select sequence 3 to indicate that both A and B are monitoring; if no sequence is received, it means that neither A nor B is monitoring (from the perspective of each terminal, it means that the monitoring behavior of the paging group associated with the terminal is: not listening).
  • the multiple sequences occupy different domain resources respectively, and the domain resources include at least one of the following: time domain, frequency domain, and code domain.
  • domain resources refer to resources on different domains. For example, by dividing domains according to a time division method, time domain resources are obtained. The domain is divided according to the frequency division method, and the frequency domain resources are obtained. The domain is divided according to the code division method, and then the code domain resource is obtained.
  • the number of sequences is one or more, that is, the monitoring behavior of the respective W subgroups in the next N paging occasions can be indicated by receiving multiple sequences.
  • multiple sequences occupy different time domain, frequency domain and code domain resources for reception respectively.
  • the number of sequences is N in the case that the paging advance indicates the monitoring behavior
  • each of the N sequences respectively indicates the monitoring behavior in the N paging occasions.
  • the number of sequences is N.
  • each sequence in the N sequences is respectively Indicates the monitoring behavior in one paging occasion, and each sequence is any one of the second candidate sequences.
  • sequences correspond to 3 paging occasions
  • sequence 1 is used to indicate the monitoring behavior of the first paging occasion
  • sequence 2 is used to indicate the monitoring behavior of the second paging occasion
  • sequence 3 is used to indicate the monitoring behavior of the second paging occasion.
  • the number of sequences is N+1;
  • each of the N sequences in the N+1 sequences respectively indicates the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate whether the first signal is available.
  • the number of one or more sequences is N+1 ;
  • N sequences are used to respectively indicate the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate that the first signal is available.
  • the "one remaining sequence” corresponds to two candidate sequences, wherein one candidate sequence is used to indicate that the first signal is available, and the other candidate sequence is used to indicate that the first signal is unavailable.
  • the "one remaining sequence” corresponds to only one candidate sequence, and the candidate sequence is used to indicate that the first signal is available. In the case where the "one remaining sequence" is not detected, the first signal is determined. unavailable.
  • the sequence of the paging advance indication information carries the monitoring behavior and/or whether the first signal is available in different paging occasions through multiple sequences respectively. information, which can reduce the number of candidate sequences and the complexity of sequence design, but at the same time, it also increases the overhead of network sending sequence resources.
  • each sequence is any one of the second candidate sequences, and the number of the second candidate sequences is any of the following:
  • each second candidate sequence is used to indicate monitoring of one of all permutations and combinations of W paging groups respectively Behavior;
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • each second candidate sequence is used to respectively indicate the monitoring behavior of one of all the permutations and combinations of the W paging groups. That is to say, when the number of second candidate sequences is 2 W , for each situation, a second candidate sequence is set for indication.
  • the second candidate sequence 1 is used to indicate that in a paging occasion, A monitors, B does not monitor;
  • the second alternative sequence 2 is used to indicate that in a paging occasion , A does not monitor, but B monitors;
  • the second alternative sequence 3 is used to indicate that in a paging occasion, both A and B monitor;
  • the second alternative sequence 4 is used to indicate that in a paging occasion, A, B are not monitored.
  • monitoring or not monitoring refers to monitoring or not monitoring the monitoring behavior.
  • mapping method between the sequence and multiple monitoring behaviors in which the number of the second candidate sequence is 2 W .
  • the probability of the terminal being awakened by mistake can be reduced to 0 to the greatest extent, but it also causes sequence design problems. complexity and the increase in the number of sequences.
  • this mapping method is very ideal when the values of N and W are small.
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring. Listening behavior for one of the permutations.
  • the terminal when the terminal does not receive any sequence, it means that the terminal does not monitor the monitoring behavior.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • the W second candidate sequences in W+1 are used to indicate the monitoring behavior of each paging group in the W paging groups in one paging occasion.
  • the second alternative sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the W first candidate sequences in the first candidate sequence are used to indicate each paging in the W paging groups.
  • the monitoring behavior of the group, and the other remaining groups do not monitor the monitoring behavior.
  • each sequence represents the monitoring behaviors of two groups in one PO.
  • the remaining second candidate sequence is used to indicate that the number of paging groups is greater than or equal to 2.
  • the listening behavior is listening.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • by designing a second candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, and the number of energy-saving sequences is more important than the increase in the false call rate.
  • the balance between the false call rate and the sequence complexity and overhead can be achieved.
  • the values of the other two second candidate sequences in the embodiment of multiple sequences when the values of N and W are relatively large, it is a preferred mapping manner.
  • FIG. 6 shows the second structural block diagram of a paging indication apparatus according to an embodiment of the present application.
  • the paging indication apparatus 600 includes:
  • a sending module 602 configured to send a sequence carrying paging advance indication information to a terminal, so that the terminal determines a target behavior in N paging occasions according to the paging advance indication information;
  • the paging advance indication information is used to indicate the target behavior in the next N paging occasions, where N is a positive integer greater than or equal to 1, and the target behavior includes at least one of monitoring behavior and whether the first signal is available.
  • the network side sends a signal sequence to the terminal, and the sequence carries paging advance indication information, and the paging advance indication information can indicate that in the next N paging occasions (PO, Paging Occasion),
  • PO next N paging occasions
  • the target behavior of the terminal device where the target behavior includes monitoring behavior and whether the first signal is available.
  • the terminal device determines the target behavior in the N paging occasions.
  • each paging advance indication information can indicate one or more paging occasions, so the network side does not need to send the paging advance indication information to the terminal side device correspondingly before each paging occasion, so it can effectively save Network side overhead.
  • the first signal may be a TRS/CSI-RS reference signal.
  • the terminal receives the sequence of paging advance indication information, and determines and determines the target behavior in the N paging occasions.
  • network side overhead is saved, and on the other hand, paging is guaranteed.
  • the reliability of the demodulation and detection of the physical downlink control channel and the paging physical downlink shared channel, and the complexity of the paging advance indication information can be reduced by carrying the paging advance indication information in the sequence.
  • each of the N paging occasions is associated with W paging groups, where W is a positive integer greater than or equal to 1.
  • different terminals may be allocated to the same PO, that is, multiple terminals are associated with the same PO.
  • the UEs associated with each PO in the N POs can be further divided into W paging groups, that is, N POs It is divided into N ⁇ W paging groups in total, wherein W is the number of paging groups divided by terminals associated on one PO.
  • the terminal associated with the PO has only one paging group, that is, the PO is not grouped.
  • the probability of the terminal being accidentally awakened by the network is reduced, and the energy consumption of the terminal is further saved.
  • the monitoring behavior includes at least one of the following:
  • the paging groups associated with the terminal include: among the N paging occasions, at least one paging group among the W paging groups associated with at least one paging occasion.
  • the monitoring behavior includes whether to monitor the paging PDCCH (Physical Downlink Control Channel) of the paging group associated with the terminal, the paging of the paging group associated with the terminal, the System information updates for associated paging groups, etc.
  • PDCCH Physical Downlink Control Channel
  • the monitoring behavior does not need to be divided into paging groups, that is, the monitoring behavior includes at least one of the following: whether to monitor the paging in the paging occasion associated with the terminal PDCCH, whether to monitor paging in the paging occasion associated with the terminal, whether to monitor the system information update in the paging occasion associated with the terminal.
  • the monitoring behavior is monitoring, it means that the terminal monitors one or more of the paging PDCCH, paging and system information update of the paging group to which it is associated. If the monitoring behavior is not monitoring, it means that the terminal does not monitor one or more of the paging PDCCH, paging and system information update of the associated paging group.
  • the target content is the update information
  • it can include 3 alternative sequences, wherein the alternative sequence 1 is to instruct the terminal group 1 to monitor the update information, and the group 2 does not monitor the update information; the alternative sequence 2 is to instruct the terminal group to monitor the update information. Group 1 does not monitor the update information, and group 2 monitors the update information; the alternative sequence 3 is to indicate that both the terminal group 1 and the terminal group 2 monitor the update information.
  • the case of not sending the candidate sequence represents the case that neither the terminal group 1 nor the terminal group 2 monitors the update information.
  • the target content specifically includes: paging physical downlink control channel (PDCCH, Physical Downlink Control Channel), paging (paging), update information.
  • the update information may be an update message of system information.
  • the number of sequences is one.
  • the number of sequences is one, that is, the sequence is a single sequence, that is, the monitoring behaviors of the respective W subgroups in the next N paging occasions are indicated through a single sequence. That is, the listening behavior of NxW subgroups is indicated by a single sequence.
  • the single sequence is any one of the first candidate sequences; in the case that the paging advance indication information is used to indicate the monitoring behavior in the next N paging occasions , the number of the first candidate sequence is any of the following:
  • the number of the first candidate sequences includes the following three situations:
  • the N ⁇ W first candidate sequences in the first candidate sequences are respectively used to indicate N ⁇
  • the monitoring behavior of each paging group in the W paging groups, and the remaining one first candidate sequence is used to indicate that the monitoring behavior of more than or equal to 2 paging groups is monitoring;
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups;
  • each first candidate sequence is used to indicate N ⁇ W except that the monitoring behavior of all paging groups is no monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging The listening behavior of each paging group in the group.
  • the first candidate sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the N ⁇ W first candidate sequences in the first candidate sequence are used to indicate N ⁇ W paging groups
  • the monitoring behavior of each paging group in , and the other remaining groups do not monitor the monitoring behavior.
  • the remaining one first candidate sequence is used to indicate that the monitoring behavior of two or more paging groups is monitoring.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • designing a first candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, and the number of energy-saving sequences is more important than the increase in the false call rate.
  • mapping manner of the sequence in which the number of the first candidate sequence is N ⁇ W+1 and multiple monitoring behaviors a balance between the false call rate and the sequence complexity and overhead can be achieved.
  • N and W it is a preferred mapping method.
  • each first candidate sequence is respectively used to indicate the monitoring behavior of one of all the permutations and combinations of the N ⁇ W paging groups. That is, when the number of the first candidate sequences is 2 (N ⁇ W) , for each case, a first candidate sequence is set for indication.
  • the first candidate sequence 1 is used to instruct A to monitor and B not to monitor; the first candidate sequence 2 is used to instruct A not to monitor and B to monitor; the first candidate sequence 3 is used to indicate that both A and B are monitoring; the first alternative sequence 4 is used to indicate that neither A and B are monitoring.
  • each first candidate sequence is used to indicate the N ⁇ W numbers except that the monitoring behavior of all paging groups is no monitoring.
  • the monitoring behavior of one of all permutations and combinations of paging groups is not limited.
  • the terminal when the terminal does not receive any sequence, it represents the situation that the terminal does not monitor.
  • a and B there are 2 subgroups of 1 ⁇ 2 in total, which are denoted as A and B.
  • the first candidate sequence 1 is used to instruct A to monitor, and B not to monitor
  • the first candidate sequence 2 is used to instruct A not to monitor, and B to monitor
  • Select sequence 3 to indicate that both A and B are monitoring; if no sequence is received, it means that neither A nor B is monitoring (from the perspective of each terminal, it means that the monitoring behavior of the paging group associated with the terminal is: not listening).
  • the multiple sequences occupy different domain resources respectively, and the domain resources include at least one of the following: time domain, frequency domain, and code domain.
  • domain resources refer to resources on different domains. For example, when domains are divided according to a time division method, time domain resources are obtained. The domain is divided according to the frequency division method, and the frequency domain resources are obtained. Divide the domain according to the code division method to obtain the code domain resource.
  • the number of sequences is one or more, that is, the monitoring behavior of the respective W subgroups in the next N paging occasions can be indicated by receiving multiple sequences.
  • multiple sequences occupy different time domain, frequency domain and code domain resources for reception respectively.
  • the number of sequences is N in the case that the paging advance indicates the monitoring behavior
  • each of the N sequences respectively indicates the monitoring behavior in the N paging occasions.
  • the number of sequences is N.
  • each sequence in the N sequences is respectively Indicates the monitoring behavior in one paging occasion, and each sequence is any one of the second candidate sequences.
  • sequences correspond to 3 paging occasions
  • sequence 1 is used to indicate the monitoring behavior of the first paging occasion
  • sequence 2 is used to indicate the monitoring behavior of the second paging occasion
  • sequence 3 is used to indicate the monitoring behavior of the second paging occasion.
  • the number of sequences is N+1;
  • each of the N sequences in the N+1 sequences respectively indicates the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate whether the first signal is available.
  • the number of one or more sequences is N+1 ;
  • N sequences are used to respectively indicate the monitoring behavior in the N paging occasions, and the remaining sequence is used to indicate that the first signal is available.
  • the "one remaining sequence” corresponds to two candidate sequences, wherein one candidate sequence is used to indicate that the first signal is available, and the other candidate sequence is used to indicate that the first signal is unavailable.
  • the "one remaining sequence” corresponds to only one candidate sequence, and the candidate sequence is used to indicate that the first signal is available. In the case where the "one remaining sequence" is not detected, the first signal is determined. unavailable.
  • the sequence of the paging advance indication information carries the monitoring behavior and/or the availability of the first signal in different paging occasions through multiple sequences respectively. information, which can reduce the number of candidate sequences and the complexity of sequence design, but at the same time, it also increases the overhead of network sending sequence resources.
  • each sequence is any one of the second candidate sequences, and the number of the second candidate sequences is any of the following:
  • each second candidate sequence is used to respectively indicate the monitoring of one of all the permutations and combinations of the W paging groups Behavior
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • each second candidate sequence is used to respectively indicate the monitoring behavior of one of all the permutations and combinations of the W paging groups. That is to say, when the number of second candidate sequences is 2 W , for each situation, a second candidate sequence is set for indication.
  • the second candidate sequence 1 is used to indicate that in a paging occasion, A monitors, B does not monitor;
  • the second alternative sequence 2 is used to indicate that in a paging occasion , A does not monitor and B monitors;
  • the second alternative sequence 3 is used to indicate that in a paging occasion, both A and B monitor;
  • the second alternative sequence 4 is used to indicate that in a paging occasion, A, B are not monitored.
  • monitoring or not monitoring refers to monitoring or not monitoring the monitoring behavior.
  • mapping method between the sequence and multiple monitoring behaviors in which the number of the second candidate sequence is 2 W .
  • the probability of the terminal being awakened by mistake can be reduced to 0 to the greatest extent, but it also causes sequence design problems. complexity and the increase in the number of sequences.
  • this mapping method is very ideal when the values of N and W are small.
  • each second candidate sequence is used to indicate all of the W paging groups except that the monitoring behavior of all the paging groups is not monitoring. Listening behavior for one of the permutations.
  • the terminal when the terminal does not receive any sequence, it means that the terminal does not monitor the monitoring behavior.
  • the W second candidate sequences in the second candidate sequences are respectively used to indicate the monitoring behavior of each paging group in the W paging groups , and the remaining second candidate for the monitoring behavior of two or more paging groups is monitoring.
  • the W second candidate sequences in W+1 are used to indicate the monitoring behavior of each paging group in the W paging groups in one paging occasion.
  • the second alternative sequence may be used to indicate that the monitoring behavior of a paging group is monitoring, or used to indicate that the monitoring behavior of a paging group is not monitoring.
  • the W first candidate sequences in the first candidate sequence are used to indicate each paging in the W paging groups.
  • the monitoring behavior of the group, and the other remaining groups do not monitor the monitoring behavior.
  • each sequence represents the monitoring behaviors of two groups in one PO.
  • the remaining second candidate sequence is used to indicate that the number of paging groups is greater than or equal to 2.
  • the listening behavior is listening.
  • a sequence can be used to represent multiple possible situations, thereby saving the number of sequences and reducing the complexity of sequence design.
  • by designing a second candidate sequence to indicate that the monitoring behavior of two or more paging groups is monitoring although the false call rate of the terminal will increase, the monitoring behavior of two or more paging groups is monitoring. The probability of the situation is very small, so the number of energy-saving sequences is more important than the increase in the false call rate.
  • the balance between the false call rate and the sequence complexity and overhead can be achieved.
  • the values of the other two second candidate sequences in the embodiment of multiple sequences when the values of N and W are larger, it is a preferred mapping manner.
  • a terminal which includes a processor, a memory, and a program or instruction stored in the memory and executable on the processor.
  • the program or instruction is executed by the processor, any one of the above-mentioned The steps of the paging indication method for the terminal provided in the embodiment.
  • the terminal also includes all the beneficial effects of the paging indication method performed by the terminal as provided in any of the above-mentioned embodiments, which will not be repeated here in order to avoid repetition.
  • a network device which includes a processor, a memory, and a program or instruction stored in the memory and executable on the processor.
  • the program or instruction is executed by the processor, any of the above-mentioned The steps of a paging indication method for a network device provided in an embodiment.
  • the network device also includes all the beneficial effects of the paging indication method performed by the network device as provided in any of the above embodiments, and to avoid repetition, details are not repeated here.
  • an embodiment of the present application further provides an electronic device 1900, including a processor 1910, a memory 1909, a program or instruction stored in the memory 1909 and executable on the processor 1910, the program or instruction being executed by the processor 1910 During execution, each process of the above-mentioned paging method embodiment is implemented, and the same technical effect can be achieved. In order to avoid repetition, details are not described here.
  • the electronic devices in the embodiments of the present application include the aforementioned mobile electronic devices and non-mobile electronic devices.
  • FIG. 7 shows a schematic diagram of a hardware structure of an electronic device according to an embodiment of the application.
  • the electronic device 1900 includes but is not limited to: a radio frequency unit 1901, a network module 1902, an audio output unit 1903, an input unit 1904, a sensor 1905, a display unit 1906, a user input unit 1904, an interface unit 1908, a memory 1909, and a processor 1910, etc. part.
  • the electronic device 1900 may also include a power source (such as a battery) for supplying power to various components, and the power source may be logically connected to the processor 1910 through a power management system, so as to manage charging, discharging, and power management through the power management system. consumption management and other functions.
  • a power source such as a battery
  • the structure of the electronic device shown in FIG. 12 does not constitute a limitation on the electronic device.
  • the electronic device may include more or less components than the one shown, or combine some components, or arrange different components, which will not be repeated here. .
  • the radio frequency unit 1901 may be used to send and receive information or signals during a call, specifically, receive downlink data from the base station or send uplink data to the base station.
  • the radio frequency unit 1901 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 network module 1902 provides the user with wireless broadband Internet access, such as helping the user to send and receive emails, browse the web, and access streaming media.
  • the audio output unit 1903 may convert audio data received by the radio frequency unit 1901 or the network module 1902 or stored in the memory 1909 into audio signals and output as sound. Also, the audio output unit 1903 may also provide audio output related to a specific function performed by the electronic device 1900 (eg, call signal reception sound, message reception sound, etc.).
  • the audio output unit 1903 includes a speaker, a buzzer, a receiver, and the like.
  • the input unit 1904 is used to receive audio or video signals.
  • the input unit 1904 may include a graphics processor (Graphics Processing Unit, GPU) 5082 and a microphone 5084, and the graphics processor 5082 is used for still pictures or video images 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 frames may be displayed on the display unit 1906, or stored in the memory 1909 (or other storage medium), or transmitted via the radio frequency unit 1901 or the network module 1902.
  • the microphone 5084 can receive sound, and can process the sound into audio data, and the processed audio data can be output in a format that can be transmitted to a mobile communication base station via the radio frequency unit 1901 in the case of a phone call mode.
  • the electronic device 1900 also includes at least one sensor 1905, such as a fingerprint sensor, pressure sensor, iris sensor, molecular sensor, gyroscope, barometer, hygrometer, thermometer, infrared sensor, light sensor, motion sensor, and other sensors.
  • a sensor 1905 such as a fingerprint sensor, pressure sensor, iris sensor, molecular sensor, gyroscope, barometer, hygrometer, thermometer, infrared sensor, light sensor, motion sensor, and other sensors.
  • the display unit 1906 is used to display information input by the user or information provided to the user.
  • the display unit 1906 may include a display panel 5122, which may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
  • the user input unit 1907 may be used to receive input numerical or character information, and generate key signal input related to user settings and function control of the electronic device.
  • the user input unit 1907 includes a touch panel 5142 and other input devices 5144 .
  • the touch panel 5142 also referred to as a touch screen, collects the user's touch operations on or near it.
  • the touch panel 5142 may include two parts, a touch detection device and a touch controller. Among them, the touch detection device detects the user's touch orientation, 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 touch controller.
  • Other input devices 5144 may include, but are not limited to, physical keyboards, function keys (such as volume control keys, switch keys, etc.), trackballs, mice, and joysticks, which are not described herein again.
  • the touch panel 5142 can be overlaid on the display panel 5122.
  • the touch panel 5142 detects a touch operation on or near it, it transmits it to the processor 1910 to determine the type of the touch event, and then the processor 1910 determines the type of the touch event according to the touch
  • the type of event provides corresponding visual output on display panel 5122.
  • the touch panel 5142 and the display panel 5122 can be used as two independent components, or can be integrated into one component.
  • the interface unit 1908 is an interface for connecting an external device to the electronic device 1900 .
  • external devices may include wired or wireless headset ports, external power (or battery charger) ports, wired or wireless data ports, memory card ports, ports for connecting devices with identification modules, audio input/output (I/0) port, video I/0 port, headphone port, etc.
  • the interface unit 1908 may be used to receive input (eg, data information, power, etc.) from external devices and transmit the received input to one or more elements within the electronic device 1900 or may be used between the electronic device 1900 and external Transfer data between devices.
  • the memory 1909 may be used to store software programs as well as various data.
  • the memory 1909 may mainly include a stored program area and a stored data area, wherein the stored program area may store an operating system, an application program (such as a sound playback function, an image playback function, etc.) required for at least one function, etc.; Data (such as audio data, phone book, etc.) created by the use of the mobile terminal, etc.
  • memory 1909 may include high-speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device.
  • the processor 1910 executes various functions of the electronic device 1900 and processes data by running or executing the software programs and/or modules stored in the memory 1909, and calling the data stored in the memory 1909, so as to monitor the electronic device 1900 as a whole .
  • the processor 1910 may include one or more processing units; preferably, the processor 1910 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface and application programs, etc., and the modem
  • the processor mainly handles wireless communication.
  • the electronic device 1900 may also include a power supply 1911 for supplying power to various components.
  • the power supply 1911 may be logically connected to the processor 1910 through a power management system, so as to manage charging, discharging, and power consumption management functions through the power management system.
  • the embodiments of the present application further provide a readable storage medium, where a program or an instruction is stored on the readable storage medium.
  • a program or an instruction is stored on the readable storage medium.
  • the processor is the processor in the electronic device in the above embodiment.
  • the readable storage medium includes a computer-readable storage medium, such as a computer read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a magnetic disk or an optical disk, and the like.
  • An embodiment of the present application further provides a chip, where the chip includes a processor and a communication interface, the communication interface is coupled with the processor, and the processor is used for running a program or an instruction to implement each process of the foregoing paging method embodiments, and can achieve the same The technical effect, in order to avoid repetition, will not be repeated here.
  • the chip mentioned in the embodiments of the present application may also be referred to as a system-on-chip, a system-on-chip, a system-on-a-chip, or a system-on-a-chip, or the like.
  • the method of the above embodiment 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 application can be embodied in the form of a software product in essence or in a part that contributes to the prior art, and the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, CD-ROM), including several instructions to make a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) execute the methods described in the various embodiments of this application.
  • a storage medium such as ROM/RAM, magnetic disk, CD-ROM

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Abstract

本申请公开了一种寻呼指示方法、装置、终端、网络设备和可读存储介质,其中,寻呼指示方法包括:接收承载有寻呼提前指示信息的序列;根据寻呼提前指示信息,确定N个寻呼时机中的目标行为;其中,N为大于或等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。

Description

寻呼指示方法、装置、终端、网络设备和可读存储介质
本申请要求于2020年11月24日提交国家知识产权局、申请号为202011331631.3、申请名称为“寻呼指示方法、装置、终端、网络设备和可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请属于无线通信技术领域,具体涉及一种寻呼指示方法、一种寻呼指示装置、一种终端、一种网络设备和一种可读存储介质。
背景技术
移动通信系统中,用户设备(UserEquipment,UE)或称为终端,周期性监听寻呼消息,以此建立业务连接。在每个寻呼周期内,终端可以计算出自己的寻呼机会对应的资源位置,继而检测该寻呼机会(pagingoccasion,PO)上是否存在由寻呼无线网络临时标识(Paging Radio Network Temporary Identity,P-RNTI)加扰的寻呼(paging)物理下行控制信道(Physical Downlink Control Channel,PDCCH)。如果检测到了paging PDCCH再解码相应被调度的物理下行共享信道(Physical Downlink Share Channel,PDSCH),获得其中的寻呼消息。
相关技术中,可以通过接收网络侧发送寻呼提前指示来提前判断所关联的PO上是否需要进行寻呼监听,以减少测量及paging PDCCH解调等功耗,但同时由于寻呼提前指示的发送会带来大量的网络开销并造成paging PDCCH/PDSCH检测解调可靠性降低等问题。
发明内容
本申请实施例提供一种寻呼指示方法、寻呼指示装置、终端、网络设备和可读存储介质,能够解决相关技术中增加的网络开销问题,并保证了寻呼物理下行控制信道和寻呼物理下行共享信道解调和检测的可靠性。
第一方面,本申请实施例提供了一种寻呼指示方法,由终端执行,寻呼指示方法包括:
接收承载有寻呼提前指示信息的序列;
根据寻呼提前指示信息,确定N个寻呼时机中的目标行为;
其中,寻呼提前指示信息用于指示接下来的N个寻呼时机中的目标行为,N为大于或等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
第二方面,本申请实施例提供了一种寻呼指示方法,由网络设备执行,寻呼指示方法包括:
向终端发送承载有寻呼提前指示信息的序列,以使终端根据寻呼提前指示信息,确定N个寻呼时机中的目标行为;
其中,寻呼提前指示信息用于指示接下来的N个寻呼时机中的目标行为,N为大于等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
第三方面,本申请实施例提供了一种寻呼指示装置,用于终端,包括:
接受模块,用于接收承载有寻呼提前指示信息的序列;
确定模块,用于根据寻呼提前指示信息,确定N个寻呼时机中的目标行为;
其中,N为大于等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
第四方面,本申请实施例提供了一种寻呼指示装置,用于网络设备,包括:
发送模块,用于向终端发送承载有寻呼提前指示信息的序列,以使终端根据寻呼提前指示信息,确定N个寻呼时机中的目标行为;
其中,N为大于等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
第五方面,本申请实施例提供了一种终端,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程序或指令,程序或指令被处理器执行时实现如第一方面中提供的寻呼指示方法的步骤。
第六方面,本申请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程序或指令,程序或指令被处理器执行时实现如第二方面中提供的寻呼指示方法的步骤。
第七方面,本申请实施例提供了一种可读存储介质,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程序或指令,程序或指令被处理器执行时实现如第一方面中提供的寻呼指示方法的步骤,和/或如第二方面中提供的寻呼指示方法的步骤。
本申请实施例中,通过序列承载寻呼提前指示信息并指示接下来的N个寻呼时机中的目标行为,实现了寻呼提前指示信息所带来的网络开销,并降低了寻呼提前指示信息信令设计复杂度,此外通过第一信号是否可用的指示可以进一步保证寻呼物理下行控制信道和寻呼物理下行共享信道解调和检测的可靠性。
附图说明
图1示出了根据本申请实施例的寻呼指示方法的流程图之一;
图2示出了根据本申请实施例的寻呼指示方法的流程图之二;
图3示出了序列收发的结构示意图之一;
图4示出了序列收发的结构示意图之二;
图5示出了根据本申请实施例的寻呼指示装置的结构框图之一;
图6示出了根据本申请实施例的寻呼指示装置的结构框图之二;
图7示出了根据申请实施例的电子设备的硬件结构示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请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申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,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,都属于本申请保护的范围。
本申请的说明书和权利要求书中的术语“第一”、“第二”等是用于区别类似的对象,而不用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便本申请的实施例能够以除了在这里图示或描述的那些以外的顺序实施。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”, 一般表示前后关联对象是一种“或”的关系。
下面结合附图,通过具体的实施例及其应用场景对本申请实施例提供的寻呼方法、终端设备、电子设备和可读存储介质进行详细地说明。
在本申请的一些实施例中,图1示出了根据本申请实施例的寻呼方法的流程图之一,其中,寻呼方法具体包括以下步骤:
步骤102,接收承载有寻呼提前指示信息的序列;
步骤104,根据所述寻呼提前指示信息,确定所述N个寻呼时机中的所述目标行为。
其中,所述寻呼提前指示信息用于指示接下来的N个寻呼时机中的目标行为,所述N为大于等于1的正整数,所述目标行为包括监听行为和第一信号是否可用中的至少一项;
在本申请实施例中,终端侧接收网络侧发送的序列,该序列中承载有寻呼提前指示信息,寻呼提前指示信息能够指示在接下来的N个寻呼时机(Paging Occasion,PO)中,终端设备的目标行为,其中目标行为包括监听行为和第一信号是否可用。终端设备在接收到寻呼提前指示信息后,确定所述N个寻呼时机中的所述目标行为。
具体地,每个寻呼提前指示信息可以指示一个或多个寻呼时机,因此网络侧无需在每个寻呼时机之前都对应的向终端侧设备发送寻呼提前指示信息,因此能够有效地节约网络侧开销。
在一种实施例中,第一信号可以是跟踪参考信号(Tracing Reference Signal,TRS)/信道状态信息参考信号(Channel State Information-Reference Signal,CSI-RS)。
应用了本申请提供的实施例,通过终端接收寻呼提前指示信息的序列,确定确定所述N个寻呼时机中的所述目标行为,一方面节约了网络侧开销,另一方面保证寻呼物理下行控制信道和寻呼物理下行共享信道解调和检测的可靠性,且通过序列承载寻呼提前指示信息能够降低寻呼提前指示信息的复杂度。
在本申请的一些实施例中,N个寻呼时机中的每个寻呼时机均关联W个寻呼小组,其中,W为大于等于1的正整数。
在本实施例中,不同终端可能被分配到同一个PO上,也即多个终端关联同一个PO。为了进一步降低由于同一个PO内的关联多个终端而导致终端被误唤起的概率,可进一步将N个PO中每个PO所关联的UE分成W个寻呼小组,也就是说,N个PO共分成N×W个寻呼小组,其中,W为一个PO上所关联的终端所分成的寻呼小组数量。
需要说明的是,当W为1时,PO所关联的终端只有一个寻呼小组,也即该PO未进行分组。
本实施例中,通过将PO进一步分组,实现了终端被网络误唤醒概率的降低,进一步节约了终端能耗。
在本申请的一些实施例中,监听行为包括以下至少一项:
是否监听终端所关联的寻呼小组的寻呼PDCCH;
是否监听终端所关联的寻呼小组的寻呼;
是否监听终端所关联的寻呼小组的系统信息更新;
其中,终端所关联的寻呼小组包括:N个寻呼时机中,至少一个寻呼时机关联的W个寻呼小组中的至少一个寻呼小组。
在该实施例中,监听行为包括是否监听终端所关联的寻呼小组的寻呼PDCCH,终端所关联的寻呼小组的寻呼(paging)信号,终端所关联的寻呼小组的系统信息更新等。
需要说明的是,当W=1,也即PO不分组,此时,监听行为无需划分寻呼小组,也即监听行为包括以下至少一项:是否监听终端所关联的寻呼时机中的寻呼PDCCH、是否监听终端所关联的寻呼时机中的寻呼、是否监听终端所关联的寻呼时机中的系统信息更新。
能够理解的是,监听行为为监听,则代表终端监听其所关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。监听行为为不监听,则代表终端不监听关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。
进一步地,假设目标内容为更新信息,则可以包括3个备选序列,其中备选序列1为指示终端组别1监听更新信息,组别2不监听更新信息;备选序列2为指示终端组别1不监听更新信息,组别2监听更新信息;备选序列3为指示终端组别1和终端组别2均监听更新信息。而不发送备选序列的情况,则代表终端组别1和终端组别2均不监听更新信息的情况。
对于上述假设,还可以包括4个备选序列,其中备选序列4用于指示终端组别1和终端组别2均不监听更新信息。
其中,目标内容具体包括:寻呼物理下行控制信道、寻呼(paging)、更新信息。其中更新信息可以是系统信息的更新消息。
在本申请的一些实施例中,序列的数量为一个。
在本申请实施例中,序列的数量为一个,即序列为单一的序列,也就是通过单个序列,对接下来的N个寻呼时机中各自的W个子组的监听行为进行指示。即通过单个序列指示N×W个子组的监听行为。
在本申请的一些实施例中,所述单一的序列为第一备选序列中的任意一个序列;在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为的情况下,第一备选序列的个数为以下任一项:
N×W+1;
2 (N×W)
2 (N×W)-1。
在本申请实施例中,具体地,单一的序列中,寻呼提前指示信息用于指示接下来的N个寻呼时机的监听行为时,第一备选序列的个数包括以下三种情况:
N×W+1;
2 (N×W)
2 (N×W)-1。
其中,每种情况下,每个第一备选序列所指示的情况均不相同。
在本申请的一些实施例中,在第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序列分别用于指示N×W个寻呼小组中的每个寻呼小组 的监听行为,以及余下的一个第一备选序列用于指示大于等于2个寻呼小组的监听行为为监听;
在第一备选序列的个数为2 (N×W)的情况下,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为;
在第一备选序列的个数为2 (N×W)-1的情况下,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
在本申请实施例中,对于第一备选序列的个数为N×W+1的情况,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为。其中,第一备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听该监听行为。
例如,N=2,W=2,则共4个寻呼小组,用4个序列分别表示如下4种1情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况;(3)寻呼小组3监听监听行为而其余寻呼小组不监听监听行为的情况;(4)寻呼小组4监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,余下的一个第一备选序列,用于指示大于等于2个寻呼小组的监听行为为监听的情况。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第一备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,相比误唤率的增加,节能序列个数更加重要。
对于第一备选序列的个数为N×W+1的这种序列与多种监听行为的映射方式的实施例,能够实现误唤率和序列复杂度及开销之间的平衡。在N和W取值较大的情况下,是一种优选的映射方式。
对于第一备选序列的个数为2 (N×W)的情况,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第一备选序列的个数为2 (N×W)的时候,针对每一种情况,均设置一个第一备选序列进行指示。
具体举例来说,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2=4个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;第一备选序列4用于指示A、B均不监听。
对于第一备选序列的个数为2 (N×W)的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。但在N和W的取值较小的情况下,这种映射方式是非常理想的。
对于第一备选序列的个数为2 (N×W)-1的情况,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不进行监听的情况。沿用上述举例,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2-1=3个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;未接收到任何序列则代表A、B均不监听(从每个终端的角度而言,表示的是本终端所关联的寻呼小组的监听行为为不监听)。
在本申请的一些实施例中,在序列的数量为多个的情况下,多个序列分别占用不同的域资源,域资源包括以下至少一项:时域,频域,码域。
在该实施例中,域资源指的是不同域上的资源,如按照时分的方法划分域,得到的是时域资源。按照频分的方法划分域,得到的是频域资源。按照码分的方式划分域,则得到码域资源。
序列的数量为一个或多个,也就是可以通过接收多个序列对接下来的N个寻呼时机中的各自的W个子组的监听行为进行指示。其中,多个序列分别占通不同的时域、频域、码域资源进行接收。
在本申请的一些实施例中,在寻呼提前指示监听行为的情况下,序列的数量为N;
其中,N个序列中的每个序列分别指示N个寻呼时机中的监听行为。
在本申请实施例中,寻呼提前指示信息仅用于指示接下来的N个寻呼时机中的监听行为时,序列的个数为N个,具体地,N个序列中的每个序列分别指示一个寻呼时机中的监听行为,且每个序列为第二备选序列中的任意一个序列。
举例来说,3个序列对应3个寻呼时机,则序列1用于指示第1个寻呼时机的监听行为,序列2用于指示第2个寻呼时机的监听行为,序列3用于指示第3个寻呼时机的监听行为。
在本申请的一些实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,序列的数量为N+1;
其中,N+1个序列中的N个序列的每个序列分别指示N个寻呼时机中的监听行为,余下的一个序列用于指示第一信号是否可用。
在本申请实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,一个或多个序列的个数为N+1;
其中,N+1个序列中有N个序列用于分别指示N个寻呼时机中的监听行为,以及余下的一个序列用于指示第一信号可用。
具体地,可以包括两种实施方式。实施方式一中,“余下的一个序列”对应2个备选序列,其中一个备选序列用于指示第一信号可用,另一个备选序列用于指示第一信号不可用。
实施方式二中,“余下的一个序列”对应仅1个备选序列,该备选序列用于指示第一信号可用,在未检测到“余下的一个序列”的情况下,则确定第一信号不可用。
相比于序列的数量为1个的情况,也就是单个序列的情况,这种寻呼提前指示信 息的序列通过多个序列来分别承载不同寻呼时机中监听行为和/或第一信号是否可用的信息,能够降低备选序列的个数以及序列设计的复杂度,但同时也会增加网络发送序列的资源等开销。
在本申请的一些实施例中,每个序列为第二备选序列中的任意一个序列,第二备选序列的个数为以下任一项:
2 W
2 W-1;
W+1。
其中,每种情况下,每个序列所指示的情况均不相同。
在本申请的一些实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
在本申请实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第二备选序列的个数为2 W的时候,针对每一种情况,均设置一个第二备选序列进行指示。
具体举例来说,假设W=2,则包括2个子组,记为A和B。则包括2 2=4个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;第二备选序列4用于指示在一个寻呼时机中,A、B均不监听。其中,监听或不监听指的是监听或不监听所述监听行为。
对于第二备选序列的个数为2 W的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W的取值较小的情况下,这种映射方式是非常理想的。
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不监听监听行为的情况。沿用上述举例,假设W=2,则包括2个子组,记为A和B。则包括2 2-1=3个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;未接收到任何序列则代表A、B均不监听(从一个终端的角度出发,就是该终端未接收到指示其所关联的寻呼小组监听行为的序列,则终端不监听所述监听行为)。
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
也就是说,W+1中的W个第二备选序用于指示一个寻呼时机中的W个寻呼小组中的每个寻呼小组的监听行为。其中,第二备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为W+1的情况下,第一备选序列中的W个第一备选序用于指示W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听监听行为。
例如,N=2,W=2,则接收2个序列,每个序列代表一个PO中2个小组的监听行为情况。针对每个PO的2个寻呼小组,用W=2个序列分别表示如下情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,对于第一备选序列的个数为W+1的情况下,除了上述W个第二备选序列外,余下的一个第二备选序列,用于指示大于等于2个寻呼小组的监听行为为监听。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第二备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,相比误唤率的增加,节能序列个数更加重要。
对于第二备选序列的个数为W+1的这种序列与多种监听行为的映射方式的实施例,能够实现了误唤率和序列复杂度及开销之间的平衡。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W取值较大的情况下,是一种优选的映射方式。
在本申请的一些实施例中,图2示出了根据本申请实施例的寻呼方法的流程图之二,其中,寻呼方法具体包括以下步骤:
步骤202,在特定位置上检测序列;
步骤204,在未检测到序列的情况下,确定监听行为为不监听。
在本申请实施例中,终端设备按规定好的网络协议,在特定位置上接收寻呼提前指示信息。如果在特定位置上,终端没有接收到上述序列,则在接收到下一个序列之前的全部寻呼时机中,终端设备均不监听寻呼消息。
在本申请的一些实施例中,具体地,以N=2,W=4进行举例说明:
举例一:
网络侧配置一个基于序列的寻呼提前指示信息(以下简称PEI)关联并指示之后的2个寻呼时机(以下简称PO),并配置将一个PO内的终端设备(以下简称UE)按照其终端国际移动用户识别码(以下简称UE-ID),将其分成2个小组。因此,N=2,W=2,则共有N×W=4个小组。
图3示出了序列收发的结构示意图之一,举例一中,按照如图3所示的方式进行序列的发送和接收。总共包括N×W+1=5个序列,每个序列所对应的情况以及网络侧 不发送任何序列代表所有组都不需要监听paging的情况如表1所示:
表1
备选序列 需要监听pagingPDCCH的小组
序列1 组1
序列2 组2
序列3 组3
序列4 组4
序列5 大于等于2个组被唤醒
DTX(终端接收不到任何序列) 所有组都不被唤醒
举例二:
网络侧配置一个基于序列的寻呼提前指示信息(以下简称PEI)关联并指示之后的2个寻呼时机(以下简称PO),并配置将一个PO内的终端设备(以下简称UE)按照其终端国际移动用户识别码(以下简称UE-ID),将其分成2个小组。因此,N=2,W=2,则共有N×W=4个小组。
图4示出了序列收发的结构示意图之二,举例二中,按照如图4所示的方式进行序列的发送和接收。每次发送的序列共W+1=3个,每个序列对应仅一个子组监听paging PDCCH的情况,另外1个序列表示大于等于2个子组需要监听paging PDCCH的情况。此外,终端未检测到任何序列时,表示所有子组都不监听paging PDCCH的情况,具体序列如表2所示:
表2
Figure PCTCN2021132816-appb-000001
举例三:
网络侧配置一个基于序列的寻呼提前指示信息(以下简称PEI)关联并指示之后 的2个寻呼时机(以下简称PO),并配置将一个PO内的终端设备(以下简称UE)按照其终端国际移动用户识别码(以下简称UE-ID),将其分成2个小组。因此,N=2,W=2,则共有N×W=4个小组。
协议约定采用如图4所示的方式进行序列发送与接收,前N次每次发送的序列共W+1=3个,每个序列对应仅一个子组监听paging PDCCH的情况,另外1个序列表示大于等于2个子组需要监听paging PDCCH的情况。终端未检测到任何序列表示所有子组都不监听paging PDCCH的情况。此外,最后1次发送的序列共有2个候选序列,用来对应TRS/CSI-RS是否可用或1个序列用来对应TRS/CSI-RS可用。
具体序列如表3所示:
表3
Figure PCTCN2021132816-appb-000002
举例四:
网络侧配置一个基于序列的寻呼提前指示信息(以下简称PEI)关联并指示之后的2个寻呼时机(以下简称PO),并配置将一个PO内的终端设备(以下简称UE)按照其终端国际移动用户识别码(以下简称UE-ID),将其分成2个小组。因此,N=2,W=2,则共有N×W=4个小组。
协议约定采用如图4所示的方式进行序列发送与接收,前N次每次发送的序列共W+1=3个,每个序列对应仅一个子组监听paging PDCCH的情况,另外1个序列表示大于等于2个子组需要监听paging PDCCH的情况。终端未检测到任何序列表示所有子组都不监听paging PDCCH的情况。此外,最后1次发送的序列共有2个候选序列,用来对应TRS/CSI-RS是否可用或1个序列用来对应TRS/CSI-RS可用。
具体序列如表4所示:
表4
Figure PCTCN2021132816-appb-000003
在本申请的一些实施例中,寻呼方法具体包括以下步骤:
向终端发送承载有寻呼提前指示信息的序列,以使终端根据寻呼提前指示信息,确定N个寻呼时机中的目标行为;
其中,寻呼提前指示信息用于指示接下来的N个寻呼时机中的目标行为,N为大于等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
在本申请实施例中,网络侧向终端发送信号序列,该序列中承载有寻呼提前指示信息,寻呼提前指示信息能够指示在接下来的N个寻呼时机(PO,Paging Occasion)中,终端设备的目标行为,其中目标行为包括监听行为和第一信号是否可用。终端设备在接收到寻呼提前指示信息后,确定所述N个寻呼时机中的所述目标行为。
具体地,每个寻呼提前指示信息可以指示一个或多个寻呼时机,因此网络侧无需在每个寻呼时机之前都对应的向终端侧设备发送寻呼提前指示信息,因此能够有效地节约网络侧开销。
在一种实施例中,第一信号可以是TRS/CSI-RS参考信号。
应用了本申请提供的实施例,通过终端接收寻呼提前指示信息的序列,确定确定所述N个寻呼时机中的所述目标行为,一方面节约了网络侧开销,另一方面保证寻呼物理下行控制信道和寻呼物理下行共享信道解调和检测的可靠性,且通过序列承载寻呼提前指示信息能够降低寻呼提前指示信息的复杂度。
在本申请的一些实施例中,N个寻呼时机中的每个寻呼时机均关联W个寻呼小组,其中,W为大于等于1的正整数。
在本实施例中,不同终端可能被分配到同一个PO上,也即多个终端关联同一个PO。为了进一步降低由于同一个PO内的关联多个终端而导致终端被误唤起的概率,可进一步将N个PO中每个PO所关联的UE分成W个寻呼小组,也就是说,N个PO共分成N×W个寻呼小组,其中,W为一个PO上所关联的终端所分成的寻呼小组数量。
需要说明的是,当W为1时,PO所关联的终端只有一个寻呼小组,也即该PO未进行分组。
本实施例中,通过将PO进一步分组,实现了终端被网络误唤醒概率的降低,进一步节约了终端能耗。
在本申请的一些实施例中,监听行为包括以下至少一项:
是否监听终端所关联的寻呼小组的寻呼PDCCH;
是否监听终端所关联的寻呼小组的寻呼;
是否监听终端所关联的寻呼小组的系统信息更新;
其中,终端所关联的寻呼小组包括:N个寻呼时机中,至少一个寻呼时机关联的W个寻呼小组中的至少一个寻呼小组。
在该实施例中,监听行为包括是否监听终端所关联的寻呼小组的寻呼PDCCH(Physical Downlink Control Channel,物理下行控制信道),终端所关联的寻呼小组的寻呼(paging),终端所关联的寻呼小组的系统信息更新等。
需要说明的是,当W=1,也即PO不分组,此时,监听行为无需划分寻呼小组,也即监听行为包括以下至少一项:是否监听终端所关联的寻呼时机中的寻呼PDCCH、是否监听终端所关联的寻呼时机中的寻呼、是否监听终端所关联的寻呼时机中的系统信息更新。
能够理解的是,监听行为为监听,则代表终端监听其所关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。监听行为为不监听,则代表终端不监听关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。
进一步地,假设目标内容为更新信息,则可以包括3个备选序列,其中备选序列1为指示终端组别1监听更新信息,组别2不监听更新信息;备选序列2为指示终端组别1不监听更新信息,组别2监听更新信息;备选序列3为指示终端组别1和终端组别2均监听更新信息。而不发送备选序列的情况,则代表终端组别1和终端组别2均不监听更新信息的情况。
对于上述假设,还可以包括4个备选序列,其中备选序列4用于指示终端组别1和终端组别2均不监听更新信息。
其中,目标内容具体包括:寻呼物理下行控制信道(PDCCH,Physical Downlink Control Channel)、寻呼(paging)、更新信息。其中更新信息可以是系统信息的更新消息。
在本申请的一些实施例中,序列的数量为一个。
在本申请实施例中,序列的数量为一个,即序列为单一的序列,也就是通过单个 序列,对接下来的N个寻呼时机中各自的W个子组的监听行为进行指示。即通过单个序列指示N×W个子组的监听行为。
在本申请的一些实施例中,所述单一的序列为第一备选序列中的任意一个序列;在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为的情况下,第一备选序列的个数为以下任一项:
N×W+1;
2 (N×W)
2 (N×W)-1。
在本申请实施例中,具体地,单一的序列中,寻呼提前指示信息用于指示接下来的N个寻呼时机的监听行为时,第一备选序列的个数包括以下三种情况:
N×W+1;
2 (N×W)
2 (N×W)-1。
其中,每种情况下,每个第一备选序列所指示的情况均不相同。
在本申请的一些实施例中,在第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序列分别用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第一备选序列用于指示大于等于2个寻呼小组的监听行为为监听;
在第一备选序列的个数为2 (N×W)的情况下,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为;
在第一备选序列的个数为2 (N×W)-1的情况下,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
在本申请实施例中,对于第一备选序列的个数为N×W+1的情况,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为。
其中,第一备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听该监听行为。
例如,N=2,W=2,则共4个寻呼小组,用4个序列分别表示如下4种1情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况;(3)寻呼小组3监听监听行为而其余寻呼小组不监听监听行为的情况;(4)寻呼小组4监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,余下的一个第一备选序列,用于指示大于等于2个寻呼小组的监听行为为监听的情况。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第一备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误 唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,相比误唤率的增加,节能序列个数更加重要。
对于第一备选序列的个数为N×W+1的这种序列与多种监听行为的映射方式的实施例,能够实现误唤率和序列复杂度及开销之间的平衡。在N和W取值较大的情况下,是一种优选的映射方式。
对于第一备选序列的个数为2 (N×W)的情况,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第一备选序列的个数为2 (N×W)的时候,针对每一种情况,均设置一个第一备选序列进行指示。
具体举例来说,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2=4个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;第一备选序列4用于指示A、B均不监听。
对于第一备选序列的个数为2 (N×W)的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。但在N和W的取值较小的情况下,这种映射方式是非常理想的。
对于第一备选序列的个数为2 (N×W)-1的情况,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不进行监听的情况。沿用上述举例,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2-1=3个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;未接收到任何序列则代表A、B均不监听(从每个终端的角度而言,表示的是本终端所关联的寻呼小组的监听行为为不监听)。
在本申请的一些实施例中,在序列的数量为多个的情况下,多个序列分别占用不同的域资源,域资源包括以下至少一项:时域,频域,码域。
在该实施例中,域资源指的是不同域上的资源,如按照时分的方法划分域,得到的是时域资源。按照频分的方法划分域,得到的是频域资源。按照码分的方式划分域,则得到码域资源。
序列的数量为一个或多个,也就是可以通过接收多个序列对接下来的N个寻呼时机中的各自的W个子组的监听行为进行指示。其中,多个序列分别占通不同的时域、频域、码域资源进行接收。
在本申请的一些实施例中,在寻呼提前指示监听行为的情况下,序列的数量为N;
其中,N个序列中的每个序列分别指示N个寻呼时机中的监听行为。
在本申请实施例中,寻呼提前指示信息仅用于指示接下来的N个寻呼时机中的监听行为时,序列的个数为N个,具体地,N个序列中的每个序列分别指示一个寻呼时机中的监听行为,且每个序列为第二备选序列中的任意一个序列。
举例来说,3个序列对应3个寻呼时机,则序列1用于指示第1个寻呼时机的监 听行为,序列2用于指示第2个寻呼时机的监听行为,序列3用于指示第3个寻呼时机的监听行为。
在本申请的一些实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,序列的数量为N+1;
其中,N+1个序列中的N个序列的每个序列分别指示N个寻呼时机中的监听行为,余下的一个序列用于指示第一信号是否可用。
在本申请实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,一个或多个序列的个数为N+1;
其中,N+1个序列中,有N个序列用于分别指示N个寻呼时机中的监听行为,以及余下的一个序列用于指示第一信号可用。
具体地,可以包括两种实施方式。实施方式一中,“余下的一个序列”对应2个备选序列,其中一个备选序列用于指示第一信号可用,另一个备选序列用于指示第一信号不可用。
实施方式二中,“余下的一个序列”对应仅1个备选序列,该备选序列用于指示第一信号可用,在未检测到“余下的一个序列”的情况下,则确定第一信号不可用。
相比于序列的数量为1个的情况,也就是单个序列的情况,这种寻呼提前指示信息的序列通过多个序列来分别承载不同寻呼时机中监听行为和/或第一信号是否可用的信息,能够降低备选序列的个数以及序列设计的复杂度,但同时也会增加网络发送序列的资源等开销。
在本申请的一些实施例中,每个序列为第二备选序列中的任意一个序列,第二备选序列的个数为以下任一项:
2 W
2 W-1;
W+1。
其中,每种情况下,每个序列所指示的情况均不相同。
在本申请的一些实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
在本申请实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第二备选序列的个数为2 W的时候,针对每一种情况,均设置一个第二备选序列进行指示。
具体举例来说,假设W=2,则包括2个子组,记为A和B。则包括2 2=4个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示 在一个寻呼时机中,A、B均监听;第二备选序列4用于指示在一个寻呼时机中,A、B均不监听。其中,监听或不监听指的是监听或不监听所述监听行为。
对于第二备选序列的个数为2 W的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W的取值较小的情况下,这种映射方式是非常理想的。
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不监听监听行为的情况。沿用上述举例,假设W=2,则包括2个子组,记为A和B。则包括2 2-1=3个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;未接收到任何序列则代表A、B均不监听(从一个终端的角度出发,就是该终端未接收到指示其所关联的寻呼小组监听行为的序列,则终端不监听所述监听行为)。
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
也就是说,W+1中的W个第二备选序用于指示一个寻呼时机中的W个寻呼小组中的每个寻呼小组的监听行为。
其中,第二备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为W+1的情况下,第一备选序列中的W个第一备选序用于指示W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听监听行为。
例如,N=2,W=2,则接收2个序列,每个序列代表一个PO中2个小组的监听行为情况。针对每个PO的2个寻呼小组,用W=2个序列分别表示如下情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,对于第一备选序列的个数为W+1的情况下,除了上述W个第二备选序列外,余下的一个第二备选序列,用于指示大于等于2个寻呼小组的监听行为为监听。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第二备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,因此相比误唤率的增加,节能序列个数更加重要。
对于第二备选序列的个数为W+1的这种序列与多种监听行为的映射方式的实施例,能够实现了误唤率和序列复杂度及开销之间的平衡。相比于多个序列的实施例中 其他两种第二备选序列的取值,在N和W取值较大的情况下,是一种优选的映射方式。
在本申请的一些实施例中,图5示出了根据本申请实施例的寻呼指示装置的结构框图之一,如图5所示,寻呼指示装置500包括:
接收模块502,用于接收承载有寻呼提前指示信息的序列;
确定模块504,用于根据寻呼提前指示信息,确定N个寻呼时机中的目标行为。
其中,N为大于等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
在本申请实施例中,终端侧接收网络侧发送的序列,该序列中承载有寻呼提前指示信息,寻呼提前指示信息能够指示在接下来的N个寻呼时机(PO,Paging Occasion)中,终端设备的目标行为,其中目标行为包括监听行为和第一信号是否可用。终端设备在接收到寻呼提前指示信息后,确定所述N个寻呼时机中的所述目标行为。
具体地,每个寻呼提前指示信息可以指示一个或多个寻呼时机,因此网络侧无需在每个寻呼时机之前都对应的向终端侧设备发送寻呼提前指示信息,因此能够有效地节约网络侧开销。
在一种实施例中,第一信号可以是TRS/CSI-RS参考信号。
应用了本申请提供的实施例,通过终端接收寻呼提前指示信息的序列,确定确定所述N个寻呼时机中的所述目标行为,一方面节约了网络侧开销,另一方面保证寻呼物理下行控制信道和寻呼物理下行共享信道解调和检测的可靠性,且通过序列承载寻呼提前指示信息能够降低寻呼提前指示信息的复杂度。
在本申请的一些实施例中,N个寻呼时机中的每个寻呼时机均关联W个寻呼小组,其中,W为大于等于1的正整数。
在本实施例中,不同终端可能被分配到同一个PO上,也即多个终端关联同一个PO。为了进一步降低由于同一个PO内的关联多个终端而导致终端被误唤起的概率,可进一步将N个PO中每个PO所关联的UE分成W个寻呼小组,也就是说,N个PO共分成N×W个寻呼小组,其中,W为一个PO上所关联的终端所分成的寻呼小组数量。
需要说明的是,当W为1时,PO所关联的终端只有一个寻呼小组,也即该PO未进行分组。
本实施例中,通过将PO进一步分组,实现了终端被网络误唤醒概率的降低,进一步节约了终端能耗。
在本申请的一些实施例中,监听行为包括以下至少一项:
是否监听终端所关联的寻呼小组的寻呼PDCCH;
是否监听终端所关联的寻呼小组的寻呼;
是否监听终端所关联的寻呼小组的系统信息更新;
其中,终端所关联的寻呼小组包括:N个寻呼时机中,至少一个寻呼时机关联的W个寻呼小组中的至少一个寻呼小组。
在该实施例中,监听行为包括是否监听终端所关联的寻呼小组的寻呼PDCCH,终端所关联的寻呼小组的寻呼,终端所关联的寻呼小组的系统信息更新等。
需要说明的是,当W=1,也即PO不分组,此时,监听行为无需划分寻呼小组,也即监听行为包括以下至少一项:是否监听终端所关联的寻呼时机中的寻呼PDCCH、是否监听终端所关联的寻呼时机中的寻呼、是否监听终端所关联的寻呼时机中的系统信息更新。
能够理解的是,监听行为为监听,则代表终端监听其所关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。监听行为为不监听,则代表终端不监听关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。
进一步地,假设目标内容为更新信息,则可以包括3个备选序列,其中备选序列1为指示终端组别1监听更新信息,组别2不监听更新信息;备选序列2为指示终端组别1不监听更新信息,组别2监听更新信息;备选序列3为指示终端组别1和终端组别2均监听更新信息。而不发送备选序列的情况,则代表终端组别1和终端组别2均不监听更新信息的情况。
对于上述假设,还可以包括4个备选序列,其中备选序列4用于指示终端组别1和终端组别2均不监听更新信息。
其中,目标内容具体包括:寻呼物理下行控制信道(PDCCH,Physical Downlink Control Channel)、寻呼、更新信息。其中更新信息可以是系统信息的更新消息。
在本申请的一些实施例中,序列的数量为一个。
在本申请实施例中,序列的数量为一个,即序列为单一的序列,也就是通过单个序列,对接下来的N个寻呼时机中各自的W个子组的监听行为进行指示。即通过单个序列指示N×W个子组的监听行为。
在本申请的一些实施例中,所述单一的序列为第一备选序列中的任意一个序列;在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为的情况下,第一备选序列的个数为以下任一项:
N×W+1;
2 (N×W)
2 (N×W)-1。
在本申请实施例中,具体地,单一的序列中,寻呼提前指示信息用于指示接下来的N个寻呼时机的监听行为时,第一备选序列的个数包括以下三种情况:
N×W+1;
2 (N×W)
2 (N×W)-1。
其中,每种情况下,每个第一备选序列所指示的情况均不相同。
在本申请的一些实施例中,在第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序列分别用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第一备选序列用于指示大于等于2个寻呼小组的监听行为为监听;
在第一备选序列的个数为2 (N×W)的情况下,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为;
在第一备选序列的个数为2 (N×W)-1的情况下,每个第一备选序列分别用于指示除 全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
在本申请实施例中,对于第一备选序列的个数为N×W+1的情况,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为。
其中,第一备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听该监听行为。
例如,N=2,W=2,则共4个寻呼小组,用4个序列分别表示如下4种1情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况;(3)寻呼小组3监听监听行为而其余寻呼小组不监听监听行为的情况;(4)寻呼小组4监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,余下的一个第一备选序列,用于指示大于等于2个寻呼小组的监听行为为监听的情况。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第一备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,相比误唤率的增加,节能序列个数更加重要。
对于第一备选序列的个数为N×W+1的这种序列与多种监听行为的映射方式的实施例,能够实现误唤率和序列复杂度及开销之间的平衡。在N和W取值较大的情况下,是一种优选的映射方式。
对于第一备选序列的个数为2 (N×W)的情况,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第一备选序列的个数为2 (N×W)的时候,针对每一种情况,均设置一个第一备选序列进行指示。
具体举例来说,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2=4个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;第一备选序列4用于指示A、B均不监听。
对于第一备选序列的个数为2 (N×W)的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。但在N和W的取值较小的情况下,这种映射方式是非常理想的。
对于第一备选序列的个数为2 (N×W)-1的情况,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不进行监听的情况。沿用上述举例,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2-1=3个 第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;未接收到任何序列则代表A、B均不监听(从每个终端的角度而言,表示的是本终端所关联的寻呼小组的监听行为为不监听)。
在本申请的一些实施例中,在序列的数量为多个的情况下,多个序列分别占用不同的域资源,域资源包括以下至少一项:时域,频域,码域。
在该实施例中,域资源指的是不同域上的资源,如按照时分的方法划分域,得到的是时域资源。按照频分的方法划分域,得到的是频域资源。按照码分的方式划分域,则得到码域资源。
序列的数量为一个或多个,也就是可以通过接收多个序列对接下来的N个寻呼时机中的各自的W个子组的监听行为进行指示。其中,多个序列分别占通不同的时域、频域、码域资源进行接收。
在本申请的一些实施例中,在寻呼提前指示监听行为的情况下,序列的数量为N;
其中,N个序列中的每个序列分别指示N个寻呼时机中的监听行为。
在本申请实施例中,寻呼提前指示信息仅用于指示接下来的N个寻呼时机中的监听行为时,序列的个数为N个,具体地,N个序列中的每个序列分别指示一个寻呼时机中的监听行为,且每个序列为第二备选序列中的任意一个序列。
举例来说,3个序列对应3个寻呼时机,则序列1用于指示第1个寻呼时机的监听行为,序列2用于指示第2个寻呼时机的监听行为,序列3用于指示第3个寻呼时机的监听行为。
在本申请的一些实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,序列的数量为N+1;
其中,N+1个序列中的N个序列的每个序列分别指示N个寻呼时机中的监听行为,余下的一个序列用于指示第一信号是否可用。
在本申请实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,一个或多个序列的个数为N+1;
其中,N+1个序列中,有N个序列用于分别指示N个寻呼时机中的监听行为,以及余下的一个序列用于指示第一信号可用。
具体地,可以包括两种实施方式。实施方式一中,“余下的一个序列”对应2个备选序列,其中一个备选序列用于指示第一信号可用,另一个备选序列用于指示第一信号不可用。
实施方式二中,“余下的一个序列”对应仅1个备选序列,该备选序列用于指示第一信号可用,在未检测到“余下的一个序列”的情况下,则确定第一信号不可用。
相比于序列的数量为1个的情况,也就是单个序列的情况,这种寻呼提前指示信息的序列通过多个序列来分别承载不同寻呼时机中监听行为和/或第一信号是否可用的信息,能够降低备选序列的个数以及序列设计的复杂度,但同时也会增加网络发送序列的资源等开销。
在本申请的一些实施例中,每个序列为第二备选序列中的任意一个序列,第二备选序列的个数为以下任一项:
2 W
2 W-1;
W+1。
其中,每种情况下,每个序列所指示的情况均不相同。
在本申请的一些实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
在本申请实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第二备选序列的个数为2 W的时候,针对每一种情况,均设置一个第二备选序列进行指示。
具体举例来说,假设W=2,则包括2个子组,记为A和B。则包括2 2=4个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;第二备选序列4用于指示在一个寻呼时机中,A、B均不监听。其中,监听或不监听指的是监听或不监听所述监听行为。
对于第二备选序列的个数为2 W的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W的取值较小的情况下,这种映射方式是非常理想的。
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不监听监听行为的情况。沿用上述举例,假设W=2,则包括2个子组,记为A和B。则包括2 2-1=3个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;未接收到任何序列则代表A、B均不监听(从一个终端的角度出发,就是该终端未接收到指示其所关联的寻呼小组监听行为的序列,则终端不监听所述监听行为)。
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
也就是说,W+1中的W个第二备选序用于指示一个寻呼时机中的W个寻呼小组中的每个寻呼小组的监听行为。
其中,第二备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为W+1的情况下,第一备选序列中的W个第一备选序用于指示W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听监听行为。
例如,N=2,W=2,则接收2个序列,每个序列代表一个PO中2个小组的监听行为情况。针对每个PO的2个寻呼小组,用W=2个序列分别表示如下情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,对于第一备选序列的个数为W+1的情况下,除了上述W个第二备选序列外,余下的一个第二备选序列,用于指示大于等于2个寻呼小组的监听行为为监听。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第二备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,相比误唤率的增加,节能序列个数更加重要。
对于第二备选序列的个数为W+1的这种序列与多种监听行为的映射方式的实施例,能够实现了误唤率和序列复杂度及开销之间的平衡。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W取值较大的情况下,是一种优选的映射方式。
在本申请的一些实施例中,图6示出了根据本申请实施例的寻呼指示装置的结构框图之二,具体地,寻呼指示装置600包括:
发送模块602,用于向终端发送承载有寻呼提前指示信息的序列,以使所述终端根据所述寻呼提前指示信息,确定N个寻呼时机中的目标行为;
其中,寻呼提前指示信息用于指示接下来的N个寻呼时机中的目标行为,N为大于等于1的正整数,目标行为包括监听行为和第一信号是否可用中的至少一项。
在本申请实施例中,网络侧向终端发送信号序列,该序列中承载有寻呼提前指示信息,寻呼提前指示信息能够指示在接下来的N个寻呼时机(PO,Paging Occasion)中,终端设备的目标行为,其中目标行为包括监听行为和第一信号是否可用。终端设备在接收到寻呼提前指示信息后,确定所述N个寻呼时机中的所述目标行为。
具体地,每个寻呼提前指示信息可以指示一个或多个寻呼时机,因此网络侧无需在每个寻呼时机之前都对应的向终端侧设备发送寻呼提前指示信息,因此能够有效地节约网络侧开销。
在一种实施例中,第一信号可以是TRS/CSI-RS参考信号。
应用了本申请提供的实施例,通过终端接收寻呼提前指示信息的序列,确定确定所述N个寻呼时机中的所述目标行为,一方面节约了网络侧开销,另一方面保证寻呼物理下行控制信道和寻呼物理下行共享信道解调和检测的可靠性,且通过序列承载寻呼提前指示信息能够降低寻呼提前指示信息的复杂度。
在本申请的一些实施例中,N个寻呼时机中的每个寻呼时机均关联W个寻呼小组, 其中,W为大于等于1的正整数。
在本实施例中,不同终端可能被分配到同一个PO上,也即多个终端关联同一个PO。为了进一步降低由于同一个PO内的关联多个终端而导致终端被误唤起的概率,可进一步将N个PO中每个PO所关联的UE分成W个寻呼小组,也就是说,N个PO共分成N×W个寻呼小组,其中,W为一个PO上所关联的终端所分成的寻呼小组数量。
需要说明的是,当W为1时,PO所关联的终端只有一个寻呼小组,也即该PO未进行分组。
本实施例中,通过将PO进一步分组,实现了终端被网络误唤醒概率的降低,进一步节约了终端能耗。
在本申请的一些实施例中,监听行为包括以下至少一项:
是否监听终端所关联的寻呼小组的寻呼PDCCH;
是否监听终端所关联的寻呼小组的寻呼;
是否监听终端所关联的寻呼小组的系统信息更新;
其中,终端所关联的寻呼小组包括:N个寻呼时机中,至少一个寻呼时机关联的W个寻呼小组中的至少一个寻呼小组。
在该实施例中,监听行为包括是否监听终端所关联的寻呼小组的寻呼PDCCH(Physical Downlink Control Channel,物理下行控制信道),终端所关联的寻呼小组的寻呼(paging),终端所关联的寻呼小组的系统信息更新等。
需要说明的是,当W=1,也即PO不分组,此时,监听行为无需划分寻呼小组,也即监听行为包括以下至少一项:是否监听终端所关联的寻呼时机中的寻呼PDCCH、是否监听终端所关联的寻呼时机中的寻呼、是否监听终端所关联的寻呼时机中的系统信息更新。
能够理解的是,监听行为为监听,则代表终端监听其所关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。监听行为为不监听,则代表终端不监听关联的寻呼小组的寻呼PDCCH、寻呼和系统信息更新中的一项或多项。
进一步地,假设目标内容为更新信息,则可以包括3个备选序列,其中备选序列1为指示终端组别1监听更新信息,组别2不监听更新信息;备选序列2为指示终端组别1不监听更新信息,组别2监听更新信息;备选序列3为指示终端组别1和终端组别2均监听更新信息。而不发送备选序列的情况,则代表终端组别1和终端组别2均不监听更新信息的情况。
对于上述假设,还可以包括4个备选序列,其中备选序列4用于指示终端组别1和终端组别2均不监听更新信息。
其中,目标内容具体包括:寻呼物理下行控制信道(PDCCH,Physical Downlink Control Channel)、寻呼(paging)、更新信息。其中更新信息可以是系统信息的更新消息。
在本申请的一些实施例中,序列的数量为一个。
在本申请实施例中,序列的数量为一个,即序列为单一的序列,也就是通过单个序列,对接下来的N个寻呼时机中各自的W个子组的监听行为进行指示。即通过单 个序列指示N×W个子组的监听行为。
在本申请的一些实施例中,所述单一的序列为第一备选序列中的任意一个序列;在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为的情况下,第一备选序列的个数为以下任一项:
N×W+1;
2 (N×W)
2 (N×W)-1。
在本申请实施例中,具体地,单一的序列中,寻呼提前指示信息用于指示接下来的N个寻呼时机的监听行为时,第一备选序列的个数包括以下三种情况:
N×W+1;
2 (N×W)
2 (N×W)-1。
其中,每种情况下,每个第一备选序列所指示的情况均不相同。
在本申请的一些实施例中,在第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序列分别用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第一备选序列用于指示大于等于2个寻呼小组的监听行为为监听;
在第一备选序列的个数为2 (N×W)的情况下,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为;
在第一备选序列的个数为2 (N×W)-1的情况下,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
在本申请实施例中,对于第一备选序列的个数为N×W+1的情况,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为。
其中,第一备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为N×W+1的情况下,第一备选序列中的N×W个第一备选序用于指示N×W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听该监听行为。
例如,N=2,W=2,则共4个寻呼小组,用4个序列分别表示如下4种1情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况;(3)寻呼小组3监听监听行为而其余寻呼小组不监听监听行为的情况;(4)寻呼小组4监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,余下的一个第一备选序列,用于指示大于等于2个寻呼小组的监听行为为监听的情况。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第一备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小, 相比误唤率的增加,节能序列个数更加重要。
对于第一备选序列的个数为N×W+1的这种序列与多种监听行为的映射方式的实施例,能够实现误唤率和序列复杂度及开销之间的平衡。在N和W取值较大的情况下,是一种优选的映射方式。
对于第一备选序列的个数为2 (N×W)的情况,每个第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第一备选序列的个数为2 (N×W)的时候,针对每一种情况,均设置一个第一备选序列进行指示。
具体举例来说,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2=4个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;第一备选序列4用于指示A、B均不监听。
对于第一备选序列的个数为2 (N×W)的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。但在N和W的取值较小的情况下,这种映射方式是非常理想的。
对于第一备选序列的个数为2 (N×W)-1的情况,每个第一备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不进行监听的情况。沿用上述举例,假设N=1,W=2,则包括1×2共2个子组,记为A和B。则包括2 2-1=3个第一备选序列,第一备选序列1用于指示A监听,B不监听;第一备选序列2用于指示A不监听,B监听;第一备选序列3用于指示A、B均监听;未接收到任何序列则代表A、B均不监听(从每个终端的角度而言,表示的是本终端所关联的寻呼小组的监听行为为不监听)。
在本申请的一些实施例中,在序列的数量为多个的情况下,多个序列分别占用不同的域资源,域资源包括以下至少一项:时域,频域,码域。
在该实施例中,域资源指的是不同域上的资源,如按照时分的方法划分域,得到的是时域资源。按照频分的方法划分域,得到的是频域资源。按照码分的方式划分域,则得到码域资源。
序列的数量为一个或多个,也就是可以通过接收多个序列对接下来的N个寻呼时机中的各自的W个子组的监听行为进行指示。其中,多个序列分别占通不同的时域、频域、码域资源进行接收。
在本申请的一些实施例中,在寻呼提前指示监听行为的情况下,序列的数量为N;
其中,N个序列中的每个序列分别指示N个寻呼时机中的监听行为。
在本申请实施例中,寻呼提前指示信息仅用于指示接下来的N个寻呼时机中的监听行为时,序列的个数为N个,具体地,N个序列中的每个序列分别指示一个寻呼时机中的监听行为,且每个序列为第二备选序列中的任意一个序列。
举例来说,3个序列对应3个寻呼时机,则序列1用于指示第1个寻呼时机的监听行为,序列2用于指示第2个寻呼时机的监听行为,序列3用于指示第3个寻呼时 机的监听行为。
在本申请的一些实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,序列的数量为N+1;
其中,N+1个序列中的N个序列的每个序列分别指示N个寻呼时机中的监听行为,余下的一个序列用于指示第一信号是否可用。
在本申请实施例中,在寻呼提前指示信息用于指示接下来的N个寻呼时机中的监听行为和第一信号是否可用的情况下,一个或多个序列的个数为N+1;
其中,N+1个序列中,有N个序列用于分别指示N个寻呼时机中的监听行为,以及余下的一个序列用于指示第一信号可用。
具体地,可以包括两种实施方式。实施方式一中,“余下的一个序列”对应2个备选序列,其中一个备选序列用于指示第一信号可用,另一个备选序列用于指示第一信号不可用。
实施方式二中,“余下的一个序列”对应仅1个备选序列,该备选序列用于指示第一信号可用,在未检测到“余下的一个序列”的情况下,则确定第一信号不可用。
相比于序列的数量为1个的情况,也就是单个序列的情况,这种寻呼提前指示信息的序列通过多个序列来分别承载不同寻呼时机中监听行为和/或第一信号是否可用的信息,能够降低备选序列的个数以及序列设计的复杂度,但同时也会增加网络发送序列的资源等开销。
在本申请的一些实施例中,每个序列为第二备选序列中的任意一个序列,第二备选序列的个数为以下任一项:
2 W
2 W-1;
W+1。
其中,每种情况下,每个序列所指示的情况均不相同。
在本申请的一些实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为;
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
在本申请实施例中,在第二备选序列的个数为2 W的情况下,每个第二备选序列分别用于指示W个寻呼小组的全部排列组合方式之一的监听行为。也就是说,在第二备选序列的个数为2 W的时候,针对每一种情况,均设置一个第二备选序列进行指示。
具体举例来说,假设W=2,则包括2个子组,记为A和B。则包括2 2=4个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;第二备选序列4用于指示在一个寻呼时机中,A、 B均不监听。其中,监听或不监听指的是监听或不监听所述监听行为。
对于第二备选序列的个数为2 W的这种序列与多种监听行为的映射方式的实施例,可以将终端被误唤醒的概率最大限度的降低为0,但同时也造成了序列设计复杂度以及序列个数增加等问题。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W的取值较小的情况下,这种映射方式是非常理想的。
在第二备选序列的个数为2 W-1的情况下,每一个第二备选序列分别用于指示除全部寻呼小组的监听行为为不监听之外的W个寻呼小组的全部排列组合方式之一的监听行为。
也就是说,当终端没有接收到任何序列时,代表终端不监听监听行为的情况。沿用上述举例,假设W=2,则包括2个子组,记为A和B。则包括2 2-1=3个第二备选序列,第二备选序列1用于指示在一个寻呼时机中,A监听,B不监听;第二备选序列2用于指示在一个寻呼时机中,A不监听,B监听;第二备选序列3用于指示在一个寻呼时机中,A、B均监听;未接收到任何序列则代表A、B均不监听(从一个终端的角度出发,就是该终端未接收到指示其所关联的寻呼小组监听行为的序列,则终端不监听所述监听行为)。
在第二备选序列的个数为W+1的情况下,第二备选序列中的W个第二备选序列分别用于指示W个寻呼小组中的每个寻呼小组的监听行为,以及余下的一个第二备选用于大于等于2个寻呼小组的监听行为为监听。
也就是说,W+1中的W个第二备选序用于指示一个寻呼时机中的W个寻呼小组中的每个寻呼小组的监听行为。
其中,第二备选序列可以用于指示一个寻呼小组的监听行为为监听,或用于指示一个寻呼小组的监听行为为不监听。
需要说明的是,对于第一备选序列的个数为W+1的情况下,第一备选序列中的W个第一备选序用于指示W个寻呼小组中的每个寻呼小组的监听行为,并且其他剩余小组均不监听监听行为。
例如,N=2,W=2,则接收2个序列,每个序列代表一个PO中2个小组的监听行为情况。针对每个PO的2个寻呼小组,用W=2个序列分别表示如下情况:(1)寻呼小组1监听监听行为而其余寻呼小组不监听监听行为的情况;(2)寻呼小组2监听监听行为而其余寻呼小组不监听监听行为的情况。
之后,对于第一备选序列的个数为W+1的情况下,除了上述W个第二备选序列外,余下的一个第二备选序列,用于指示大于等于2个寻呼小组的监听行为为监听。在大于等于2个寻呼小组的监听行为为监听时,可用一个序列来表示多种可能的情况,从而节省序列个数,降低序列设计的复杂度。此外,通过设计一个第二备选序列指示大于等于2个寻呼小组的监听行为为监听的情况,虽然会造成终端误唤率的增加,但由于大于等于2个寻呼小组的监听行为为监听的情况的概率非常小,因此相比误唤率的增加,节能序列个数更加重要。
对于第二备选序列的个数为W+1的这种序列与多种监听行为的映射方式的实施例,能够实现了误唤率和序列复杂度及开销之间的平衡。相比于多个序列的实施例中其他两种第二备选序列的取值,在N和W取值较大的情况下,是一种优选的映射方 式。
在本申请的一些实施例中,供了一种终端,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程序或指令,程序或指令被处理器执行时实现如上述任一实施例中提供的用于终端的寻呼指示方法的步骤。
该终端还包括如上述任一实施例中提供的由终端执行的寻呼指示方法的全部有益效果,为避免重复,在此不再赘述。
在本申请的一些实施例中,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程序或指令,程序或指令被处理器执行时实现如上述任一实施例中提供的用于网络设备的寻呼指示方法的步骤。
该网络设备还包括如上述任一实施例中提供的由网络设备执行的寻呼指示方法的全部有益效果,为避免重复,在此不再赘述。
可选地,本申请实施例还提供一种电子设备1900,包括处理器1910,存储器1909,存储在存储器1909上并可在处理器1910上运行的程序或指令,该程序或指令被处理器1910执行时实现上述寻呼方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
需要注意的是,本申请实施例中的电子设备包括上述的移动电子设备和非移动电子设备。
图7示出了根据申请实施例的电子设备的硬件结构示意图。
该电子设备1900包括但不限于:射频单元1901、网络模块1902、音频输出单元1903、输入单元1904、传感器1905、显示单元1906、用户输入单元1904、接口单元1908、存储器1909、以及处理器1910等部件。
本领域技术人员可以理解,电子设备1900还可以包括给各个部件供电的电源(比如电池),电源可以通过电源管理系统与处理器1910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。图12中示出的电子设备结构并不构成对电子设备的限定,电子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,在此不再赘述。
应理解的是,本申请实施例中,射频单元1901可用于收发信息或收发通话过程中的信号,具体地,接收基站的下行数据或向基站发送上行数据。射频单元1901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。
网络模块1902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1903可以将射频单元1901或网络模块1902接收的或者在存储器1909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1903还可以提供与电子设备1900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1903包括扬声器、蜂鸣器以及受话器等。
输入单元1904用于接收音频或视频信号。输入单元1904可以包括图形处理器(Graphics Processing Unit,GPU)5082和麦克风5084,图形处理器5082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1906上,或者存储在存储器1909 (或其它存储介质)中,或者经由射频单元1901或网络模块1902发送。麦克风5084可以接收声音,并且能够将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1901发送到移动通信基站的格式输出。
电子设备1900还包括至少一种传感器1905,比如指纹传感器、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、光传感器、运动传感器以及其他传感器。
显示单元1906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1906可包括显示面板5122,可以采用液晶显示器、有机发光二极管等形式来配置显示面板5122。
用户输入单元1907可用于接收输入的数字或字符信息,以及产生与电子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1907包括触控面板5142以及其他输入设备5144。触控面板5142也称为触摸屏,可收集用户在其上或附近的触摸操作。触控面板5142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1910,接收处理器1910发来的命令并加以执行。其他输入设备5144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5142可覆盖在显示面板5122上,当触控面板5142检测到在其上或附近的触摸操作后,传送给处理器1910以确定触摸事件的类型,随后处理器1910根据触摸事件的类型在显示面板5122上提供相应的视觉输出。触控面板5142与显示面板5122可作为两个独立的部件,也可以集成为一个部件。
接口单元1908为外部装置与电子设备1900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/0)端口、视频I/0端口、耳机端口等等。接口单元1908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电子设备1900内的一个或多个元件或者可以用于在电子设备1900和外部装置之间传输数据。
存储器1909可用于存储软件程序以及各种数据。存储器1909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移动终端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1909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1910通过运行或执行存储在存储器1909内的软件程序和/或模块,以及调用存储在存储器1909内的数据,执行电子设备1900的各种功能和处理数据,从而对电子设备1900进行整体监控。处理器1910可包括一个或多个处理单元;优选地,处理器1910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。
电子设备1900还可以包括给各个部件供电的电源1911,优选地,电源1911可以通过电源管理系统与处理器1910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。
本申请实施例还提供一种可读存储介质,可读存储介质上存储有程序或指令,该程序或指令被处理器执行时实现上述寻呼方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
其中,处理器为上述实施例中的电子设备中的处理器。可读存储介质,包括计算机可读存储介质,如计算机只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等。
本申请实施例另提供了一种芯片,芯片包括处理器和通信接口,通信接口和处理器耦合,处理器用于运行程序或指令,实现上述寻呼方法实施例的各个过程,且能达到相同的技术效果,为避免重复,这里不再赘述。
应理解,本申请实施例提到的芯片还可以称为系统级芯片、系统芯片、芯片系统或片上系统芯片等。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。此外,需要指出的是,本申请实施方式中的方法和装置的范围不限按示出或讨论的顺序来执行功能,还可包括根据所涉及的功能按基本同时的方式或按相反的顺序来执行功能,例如,可以按不同于所描述的次序来执行所描述的方法,并且还可以添加、省去、或组合各种步骤。另外,参照某些示例所描述的特征可在其他示例中被组合。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有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)执行本申请各个实施例所述的方法。
上面结合附图对本申请的实施例进行了描述,但是本申请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申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,均属于本申请的保护之内。

Claims (28)

  1. 一种寻呼指示方法,由终端执行,其中,包括:
    接收承载有寻呼提前指示信息的序列;
    根据所述寻呼提前指示信息,确定所述N个寻呼时机中的所述目标行为;
    其中,所述寻呼提前指示信息用于指示N个所述寻呼时机中的目标行为,所述N为大于或等于1的正整数,所述目标行为包括监听行为和第一信号是否可用中的至少一项。
  2. 根据权利要求1所述的寻呼指示方法,其中,所述N个寻呼时机中的每个寻呼时机均关联W个寻呼小组,其中,W为大于等于1的正整数。
  3. 根据权利要求2所述的寻呼指示方法,其中,所述监听行为包括以下至少一项:
    是否监听所述终端所关联的所述寻呼小组的寻呼PDCCH;
    是否监听所述终端所关联的所述寻呼小组的寻呼;
    是否监听所述终端所关联的所述寻呼小组的系统信息更新;
    其中,所述终端所关联的寻呼小组包括:所述N个寻呼时机中,至少一个所述寻呼时机关联的W个所述寻呼小组中的至少一个所述寻呼小组。
  4. 根据权利要求2所述的寻呼指示方法,其中,所述序列的数量为一个。
  5. 根据权利要求4所述的寻呼指示方法,其中,所述序列为第一备选序列中的任意一个序列;
    在所述寻呼提前指示信息用于指示N个寻呼时机中的监听行为的情况下,所述第一备选序列的个数为以下任一项:
    N×W+1;
    2 (N×W)
    2 (N×W)-1。
  6. 根据权利要求5所述的寻呼指示方法,其中,
    在所述第一备选序列的个数为N×W+1的情况下,所述第一备选序列中的N×W个所述第一备选序列分别用于指示N×W个所述寻呼小组中的每个所述寻呼小组的所述监听行为,以及余下的一个所述第一备选序列用于指示大于等于2个寻呼小组的所述监听行为为监听;
    在所述第一备选序列的个数为2 (N×W)的情况下,每个所述第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的所述监听行为;
    在所述第一备选序列的个数为2 (N×W)-1的情况下,每个所述第一备选序列分别用于指示除全部所述寻呼小组的所述监听行为为不监听之外的N×W个寻呼小组的全部排列组合方式之一的所述监听行为。
  7. 根据权利要求2所述的寻呼指示方法,其中,
    所述序列的数量为多个,多个所述序列分别占用不同的域资源,所述域资源包括以下至少一项:时域,频域,码域。
  8. 根据权利要求2述的寻呼指示方法,其中,
    在所述寻呼提前指示信息用于指示N个寻呼时机中的监听行为的情况下,所述序列的数量为N;
    其中,N个所述序列中的每个所述序列分别指示所述N个寻呼时机中的所述监听行为。
  9. 根据权利要求2述的寻呼指示方法,其中,
    在所述寻呼提前指示信息用于指示N个寻呼时机中的监听行为和第一信号是否可用的情况下,所述序列的数量为N+1;
    其中,所述N+1个所述序列中的N个所述序列的每个所述序列分别指示所述N个寻呼时机中的所述监听行为,余下的一个所述序列用于指示所述第一信号是否可用。
  10. 根据权利要求8或9所述的寻呼指示方法,其中,
    所述每个所述序列为第二备选序列中的任意一个序列,所述第二备选序列的个数为以下任一项:
    2 W
    2 W-1;
    W+1。
  11. 根据权利要求10所述的寻呼指示方法,其中,
    在所述第二备选序列的个数为2 W的情况下,每个所述第二备选序列分别用于指示W个所述寻呼小组的全部排列组合方式之一的所述监听行为;
    在所述第二备选序列的个数为2 W-1的情况下,每个所述第二备选序列分别用于指示除全部所述寻呼小组的所述监听行为为不监听之外的W个所述寻呼小组的全部排列组合方式之一的所述监听行为;
    在所述第二备选序列的个数为W+1的情况下,所述第二备选序列中的W个所述第二备选序列分别用于指示W个所述寻呼小组中的每个所述寻呼小组的所述监听行为,以及余下的一个所述第二备选序列用于大于等于2个所述寻呼小组的所述监听行为为监听。
  12. 根据权利要求2至9中任一项所述的寻呼指示方法,其中,
    所述寻呼指示方法还包括:
    在特定位置上检测所述序列;
    在未检测到所述序列的情况下,确定所述监听行为为不监听。
  13. 一种寻呼指示方法,由网络设备执行,其中,包括:
    向终端发送承载有寻呼提前指示信息的序列,以使所述终端根据所述寻呼提前指示信息,确定所述N个寻呼时机中的所述目标行为;
    其中,所述寻呼提前指示信息用于指示N个所述寻呼时机中的目标行为,所述N为大于或等于1的正整数,所述目标行为包括监听行为和第一信号是否可用中的至少一项。
  14. 根据权利要求13所述的寻呼指示方法,其中,所述N个寻呼时机中的每个所述寻呼时机均关联W个寻呼小组,其中,W为大于等于1的正整数。
  15. 根据权利要求14所述的寻呼指示方法,其中,所述监听行为包括以下至少一项:
    是否监听所述终端所关联的所述寻呼小组的寻呼PDCCH;
    是否监听所述终端所关联的所述寻呼小组的寻呼;
    是否监听所述终端所关联的所述寻呼小组的系统信息更新;
    其中,所述终端所关联的寻呼小组包括:所述N个寻呼时机中,至少一个所述寻呼时机关联的W个所述寻呼小组中的至少一个所述寻呼小组。
  16. 根据权利要求14所述的寻呼指示方法,其中,所述序列的数量为一个。
  17. 根据权利要求16所述的寻呼指示方法,其中,所述序列为第一备选序列中的任意一个序列;
    在所述寻呼提前指示信息用于指示N个寻呼时机中的监听行为的情况下,所述第一备选序列的个数为以下任一项:
    N×W+1;
    2 (N×W)
    2 (N×W)-1。
  18. 根据权利要求17所述的寻呼指示方法,其中,
    在所述第一备选序列的个数为N×W+1的情况下,所述第一备选序列中的N×W个所述第一备选序列分别用于指示N×W个所述寻呼小组中的每个所述寻呼小组的所述监听行为,以及余下的一个所述第一备选序列用于指示大于等于2个寻呼小组的所述监听行为为监听;
    在所述第一备选序列的个数为2 (N×W)的情况下,每个所述第一备选序列分别用于指示N×W个寻呼小组的全部排列组合方式之一的所述监听行为;
    在所述第一备选序列的个数为2 (N×W)-1的情况下,每个所述第一备选序列分别用于指示除全部所述寻呼小组的所述监听行为均为不坚挺之外的N×W个寻呼小组的全部排列组合方式之一的所述监听行为。
  19. 根据权利要求14所述的寻呼指示方法,其中,
    所述序列的数量为多个,多个所述序列分别占用不同的域资源,所述域资源包括以下至少一项:时域,频域,码域。
  20. 根据权利要求19述的寻呼指示方法,其中,
    在所述寻呼提前指示信息用于指示N个寻呼时机中的监听行为的情况下,所述序列的数量为N;
    其中,N个所述序列中的每个所述序列分别指示所述N个寻呼时机中的所述监听行为。
  21. 根据权利要求19所述的寻呼指示方法,其中,
    在所述寻呼提前指示信息用于指示N个寻呼时机中的监听行为和所述第一信号是否可用的情况下,所述序列的数量为N+1;
    其中,所述N+1个所述序列中的N个所述序列的每个所述序列分别指示所述N个寻呼时机中的所述监听行为,余下的一个所述序列用于指示所述第一信号是否可用。
  22. 根据权利要求20或21所述的寻呼指示方法,其中,
    所述每个所述序列为第二备选序列中的任意一个序列,所述第二备选序列的个数为以下任一项:
    2 W
    2 W-1;
    W+1。
  23. 根据权利要求22所述的寻呼指示方法,其中,
    在所述第二备选序列的个数为2 W的情况下,每个所述第二备选序列分别用于指示W个所述寻呼小组的全部排列组合方式之一的所述监听行为;
    在所述第二备选序列的个数为2 W-1的情况下,每一所述第二备选序列分别用于指示除全部所述寻呼小组的所述监听行为均为不坚挺之外的W个所述寻呼小组的全部排列组合方式之一的所述监听行为;
    在所述第二备选序列的个数为W+1的情况下,所述第二备选序列中的W个所述第二备选序列分别用于指示W个所述寻呼小组中的每个所述寻呼小组的所述监听行为,以及余下的一个所述第二备选序列用于指示大于等于2个所述寻呼小组的监听行为为监听。
  24. 一种寻呼指示装置,用于终端,其中,包括:
    接收模块,用于接收承载有寻呼提前指示信息的序列,所述序列中承载寻呼提前指示信息;
    确定模块,用于根据所述寻呼提前指示信息,确定所述N个寻呼时机中的所述目标行为;
    其中,所述N为大于或等于1的正整数,所述目标行为包括监听行为和第一信号是否可用中的至少一项。
  25. 一种寻呼指示装置,用于网络设备,其中,包括:
    发送模块,用于向终端发送承载有寻呼提前指示信息的序列,以使所述终端根据所述寻呼提前指示信息,确定N个寻呼时机中的目标行为;
    其中,所述N为大于等于1的正整数,所述目标行为包括监听行为和第一信号是否可用中的至少一项。
  26. 一种终端,其中,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程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至12中任一项所述的寻呼指示方法的步骤。
  27. 一种网络设备,其中,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程序或指令,所述程序或指令被所述处理器执行时实现如权利要求13至23中任一项所述的寻呼指示方法的步骤。
  28. 一种可读存储介质,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程序或指令,其中,所述程序或指令被所述处理器执行时实现如权利要求1至12中任一项所述的寻呼指示方法的步骤,和/或如权利要求13至23中任一项所述的寻呼指示方法的步骤。
PCT/CN2021/132816 2020-11-24 2021-11-24 寻呼指示方法、装置、终端、网络设备和可读存储介质 WO2022111530A1 (zh)

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