WO2021174430A1 - 寻呼处理方法及装置、用户设备、网络侧设备 - Google Patents

寻呼处理方法及装置、用户设备、网络侧设备 Download PDF

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Publication number
WO2021174430A1
WO2021174430A1 PCT/CN2020/077666 CN2020077666W WO2021174430A1 WO 2021174430 A1 WO2021174430 A1 WO 2021174430A1 CN 2020077666 W CN2020077666 W CN 2020077666W WO 2021174430 A1 WO2021174430 A1 WO 2021174430A1
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Prior art keywords
paging
user equipment
type
control channel
paging control
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PCT/CN2020/077666
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English (en)
French (fr)
Inventor
石聪
李海涛
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Oppo广东移动通信有限公司
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Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to PCT/CN2020/077666 priority Critical patent/WO2021174430A1/zh
Priority to CN202080093706.0A priority patent/CN114982319B/zh
Publication of WO2021174430A1 publication Critical patent/WO2021174430A1/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
    • H04W68/02Arrangements for increasing efficiency of notification or paging channel

Definitions

  • This application relates to the field of communications, and in particular to a paging processing method and device, user equipment, and network side equipment.
  • the main function of Paging is to enable network-side equipment to control the radio resource control (Radio Resource Control, referred to as RRC) of the UE in idle (IDLE) or RRC inactive In the (INACTIVE) state, the user equipment (User Equipment, referred to as UE) is paged through a paging message (paging message), or the UE is notified through a short message (short message) of system message changes or earthquake tsunami/public warning information.
  • RRC Radio Resource Control
  • IDLE idle
  • RRC inactive In the (INACTIVE) state the user equipment (User Equipment, referred to as UE) is paged through a paging message (paging message), or the UE is notified through a short message (short message) of system message changes or earthquake tsunami/public warning information.
  • the embodiments of the present application provide a paging processing method and device, user equipment, and network side equipment to at least solve the technical problem that errors often occur in the paging process in related technologies.
  • a paging processing method which includes: a UE monitors a paging control channel at a predetermined time domain position; the UE judges the paging control channel and/or the paging contained in the paging control channel Whether the paging information matches the UE type to which the UE belongs; when the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs, the UE continues to decode the paging message scheduled by the paging control channel (paging message).
  • the UE judging whether the paging information contained in the paging control channel and/or the paging channel matches the UE type to which the UE belongs includes: the UE judging whether the UE type corresponding to at least one of the following information matches the UE type Same: Paging Radio Network Temporary Identifier (P-RNTI) corresponding to the paging control channel, and paging time-frequency resource information corresponding to the paging control channel;
  • P-RNTI Paging Radio Network Temporary Identifier
  • the UE type corresponding to at least one of the P-RNTI and the paging time-frequency resource information is the same as the UE type to which the UE belongs, determining that the paging control channel matches the UE type to which the UE belongs;
  • the UE determines whether the UE types indicated by the paging control information contained in the paging control channel are the same; wherein, when the UE type indicated by the paging control information is the same as the UE type, it determines the paging contained in the paging control channel The information matches the UE type to which the UE belongs.
  • the paging control information includes: paging Downlink control information (P-DCI for short); the paging downlink control information is indicated by the reserved bit data of a short message (short message) UE type.
  • P-DCI paging Downlink control information
  • short message short message
  • the maximum number of UE types indicated by the paging downlink control information is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the method further includes:
  • the UE sends a registration request message to the network side device; the UE receives a response message for the registration request, where the response message for the registration request carries indication information of the UE type; the UE determines the type of the UE based on the indication information of the UE type; or,
  • the user equipment receives a broadcast message from the network side device, where the broadcast message carries indication information of the user equipment type; the user equipment determines the type to which the user equipment belongs based on the indication information of the user equipment type.
  • the above method further includes: when the paging information contained in the paging control channel and/or the paging control channel does not match the UE type to which the UE belongs, the UE refuses to decode the paging message scheduled by the paging control channel.
  • a paging processing method including: a network-side device determines the type of UE to be paged; and the network-side device is based on a paging control channel and/or a paging control channel matching the UE type The contained paging information initiates paging.
  • the network-side device initiates paging based on the paging control channel and/or the paging information contained in the paging control channel that matches the UE type, including: the network-side device determines the P-RNTI or paging that matches the UE type Paging time-frequency resources; and initiate paging based on the paging control channel corresponding to the P-RNTI or paging time-frequency resources; the network side device determines the paging control information corresponding to the UE type, and sends the paging control information through the paging The control channel is sent to the UE.
  • the paging control information includes: paging downlink control information; the paging downlink control information indicates the UE type through preset bits.
  • the maximum number of UE types indicated by the paging downlink control information is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the above method further includes:
  • the network side device receives the registration request message from the UE; the network side device sends a registration request response message to the UE, wherein the registration request response message carries the indication information of the UE type; or,
  • the network side device sends a broadcast message to the UE, where the broadcast message carries indication information of the UE type.
  • a paging processing method including: a UE receives paging control information received through a paging control channel, wherein the paging control information carries one or more The indication information indicating the UE type; the UE determines whether the UE type indicated by the indication information has the same type as the UE belongs to; when the UE type indicated by the indication information does not have the same type as the UE belongs to, the UE Refuse to decode paging messages scheduled through the physical downlink control channel.
  • a paging processing device which is applied to a UE.
  • the above paging processing device includes: a monitoring module for monitoring a paging control channel at a predetermined time domain position; To determine whether the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs; the processing module is used for the paging contained in the paging control channel and/or the paging control channel When the information matches the UE type to which the UE belongs, continue to decode the paging message scheduled by the paging control channel.
  • the judging module is further configured to judge whether the UE type corresponding to at least one of the following information is the same as the type to which the UE belongs: P-RNTI corresponding to the paging control channel, and paging time-frequency resource information corresponding to the paging control channel
  • P-RNTI corresponding to the paging control channel
  • paging time-frequency resource information corresponding to the paging control channel
  • the paging control information includes: paging downlink control information; the paging downlink control information indicates the UE type through preset bits.
  • the maximum number of UE types indicated by the paging downlink control information is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the monitoring module is configured to determine a paging opportunity corresponding to a predetermined time domain position; and perform a blind check on the paging control channel based on the determined paging opportunity.
  • the above apparatus further includes: a sending module, configured to send a registration request message to the network side device; a first receiving module, configured to receive a response message to the registration request, wherein the response message of the registration request carries the UE type
  • the first determining module is used to determine the type of the UE based on the indication information of the UE type; the second receiving module is used to receive the broadcast message of the network side device, wherein the broadcast message carries the Indication information of the UE type; the second determining module is configured to determine the type to which the UE belongs based on the indication information of the UE type.
  • the processing module is further configured to refuse to decode the paging message scheduled by the paging control channel when the paging information contained in the paging control channel and/or the paging control channel does not match the UE type to which the UE belongs.
  • a paging processing apparatus including: a determining module, configured to determine the type of UE to be paged; and a paging module, configured based on a paging control channel and/ Or the paging information contained in the paging control channel initiates paging.
  • the paging module is used to determine the P-RNTI or paging time-frequency resource matching the UE type; and initiate paging based on the paging control channel corresponding to the P-RNTI or the paging time-frequency resource; or, The paging control information corresponding to the UE type is determined, and the paging control information is sent to the UE through the paging control channel.
  • the paging control information includes: P-DCI; P-DCI indicates the type of user equipment through preset bits.
  • the maximum number of UE types indicated by the P-DCI is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the above-mentioned paging processing apparatus further includes: a receiving module, configured to receive a registration request message from the UE; and a sending module, configured to send a registration request response message to the UE, wherein the registration request response message carries UE type indication information; the second sending module is configured to send a broadcast message to the UE, where the broadcast message carries the UE type indication information.
  • a UE including: a transceiver, configured to monitor a paging control channel at a predetermined time domain position; and a processor, configured to determine the paging control channel and/or paging control Whether the paging information contained in the channel matches the UE type to which the UE belongs; when the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs, continue to decode the paging control channel scheduling Paging message.
  • a network-side device including: a processor, configured to determine a UE type for paging; a transceiver, configured based on a paging control channel and/or paging that matches the UE type.
  • the paging information contained in the paging control channel initiates paging.
  • a communication system including: a network-side device and a UE, where: the network-side device is used to determine the type of UE to be paged; based on a paging control channel matching the UE type and / Or the paging information contained in the paging control channel initiates paging; the UE is used to monitor the paging control channel at a predetermined time domain position; to determine the paging information contained in the paging control channel and/or the paging control channel Whether it matches the UE type to which the UE belongs; and when the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs, continue to decode the paging message scheduled by the paging control channel.
  • a non-volatile storage medium includes a stored program, wherein the non-volatile storage medium is controlled while the program is running
  • the device where it is located executes the paging processing method described above.
  • the UE monitors the paging control channel at a predetermined time domain position; the UE determines whether the paging control channel and/or the paging information contained in the paging control channel matches the type of UE to which the UE belongs; When the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs, the UE continues to decode the paging message scheduled by the paging control channel.
  • the paging message scheduled by the paging control channel will continue to be decoded, thus avoiding triggering non-current
  • the blind detection process of the paging UE type avoids the occurrence of paging false alarms, thereby solving the technical problem that errors often occur in the paging process in the related art.
  • Fig. 1 is a schematic structural diagram of a communication system according to an embodiment of the present application.
  • Fig. 2 is a schematic flowchart of a paging processing method according to an embodiment of the present application
  • Fig. 3 is a schematic flowchart of another paging processing method according to an embodiment of the present application.
  • Fig. 4 is a schematic flowchart of another paging processing method according to an embodiment of the present application.
  • Fig. 5 is a schematic structural diagram of a paging processing apparatus according to an embodiment of the present application.
  • Fig. 6 is a schematic structural diagram of a paging processing apparatus according to an embodiment of the present application.
  • Fig. 7 is a schematic structural diagram of another paging processing apparatus according to an embodiment of the present application.
  • Fig. 8 is a schematic structural diagram of another paging processing apparatus according to an embodiment of the present application.
  • Fig. 9 is a schematic structural diagram of a UE according to an embodiment of the present application.
  • Figure 10 is a schematic structural diagram of a network side device according to an embodiment of the present application.
  • Paging When the network side needs to establish a connection with the UE, the network side initiates a paging process. That is, paging mainly enables the network to page the UE through paging message in the RRC IDLE or RRC INACTIVE state of the UE, or notify the UE of system message changes or earthquake tsunami/public warning information through short messages (applicable to all RRC states of the UE, including the connected state). ).
  • Paging includes the PDCCH scrambled by the P-RNTI and the PDSCH scheduled by the PDCCH. Paging messages are transmitted in PDSCH, short messages are transmitted in PDCCH, and short messages are generally 8bit data.
  • a paging DRX cycle can have multiple paging frames (Paging Frame, referred to as PF) and paging opportunities (Paging Occasion, referred to as PO).
  • Paging Frame referred to as PF
  • Paging Occasion referred to as PO
  • the location of the UE listening to the PO is related to the ID of the UE, and The UE only monitors one PO in a Paging DRX cycle.
  • the network side cannot allocate each UE to a different PO. In this case, there will be a situation where multiple UEs correspond to one PO. If the network needs to page a certain UE on this PO, it may cause other UEs that do not have paging messages to perform additional blind detection, mainly including blind detection of the Physical Downlink Control Channel (PDCCH) and corresponding The physical downlink shared channel (Physical Downlink Share Channel, referred to as PDSCH). At this time, for these UEs that do not need to be paged, it can be considered that they have received a wrong page, that is, a paging false alarm problem has occurred.
  • PDCCH Physical Downlink Control Channel
  • PDSCH Physical Downlink shared channel
  • the user equipment monitors the paging control channel at a predetermined time domain position, and displays the paging control channel and/or the paging control channel included in the paging control channel.
  • the paging information matches the user equipment type to which the user equipment belongs, continue to decode the paging message (paging message) scheduled by the paging control channel.
  • the network side can clearly inform the UE of the type of UE it is paging.
  • the network side device may indicate one or more user equipment types at the same time based on the corresponding paging control channel and/or the paging information contained in the paging control channel. The following is a detailed description in conjunction with the embodiments.
  • Fig. 1 is a schematic structural diagram of a communication system according to an embodiment of the present application. As shown in Figure 1, the communication system includes:
  • the user equipment 12 is used to monitor the paging control channel at a predetermined time domain position; to determine whether the paging control channel and/or the paging information contained in the paging control channel is the same as the paging information contained in the paging control channel Matching the user equipment type to which the user equipment belongs; and when the paging information contained in the paging control channel and/or the paging control channel matches the user equipment type to which the user equipment belongs, continue decoding The paging message scheduled by the paging control channel.
  • the aforementioned network side equipment includes but is not limited to: access network equipment (such as base stations, etc.), core network equipment, etc.
  • core network equipment includes: access and mobility management (AMF) entities, user plane function (UPF) entities, Session Management Function (SMF) entity.
  • AMF access and mobility management
  • UPF user plane function
  • SMF Session Management Function
  • the aforementioned user equipment includes, but is not limited to: mobile terminals, such as mobile phones, vehicle-mounted terminals, enhanced mobile devices, and so on.
  • the embodiment of the present application provides a method embodiment of a paging processing method. It should be noted that although the logical sequence of each step is shown in the flowchart of the accompanying drawings, in some cases, It can be executed in a different order than here.
  • Fig. 2 is a schematic flowchart of a paging processing method according to an embodiment of the present application. As shown in Fig. 2, the method includes the following steps:
  • Step S202 The network side device initiates paging to the UE.
  • the above-mentioned paging initiated by the network side device may have two situations: one is the paging initiated based on the instruction of the core network device; the other is the paging initiated by the access network device.
  • the network-side device When the network-side device pages a certain UE, it must first learn the type of the UE, and then initiate paging based on the type of the UE. The specific paging process will be described in detail in other parts of the embodiments of this application. I won't repeat it here.
  • the paging can use DRX to allow the UE to receive discontinuously, so as to achieve the purpose of power saving.
  • the UE in the IDLE state and the INACTIVE state only needs to monitor one Paging Occasion (PO) in Paging DRX.
  • PO is a series of PDCCH monitoring positions, which can be composed of multiple time slots.
  • PO and paging frame (paging frame) are related, PF refers to a radio frame (fixed 10ms), the radio frame may contain multiple POs or start positions of multiple POs.
  • a PF length is the length of a system frame, fixed 10ms. There can be one or more POs in a PF, and the number of POs is configured by the network.
  • the Paging DRX cycle is determined by the public cycle in the system broadcast and the dedicated cycle configured in the higher layer signaling (NAS signaling).
  • the UE takes the smallest cycle of the two as the cycle of Paging Cycle. From the network point of view, a paging DRX cycle can have multiple POs, and the location where the UE monitors the PO is related to the ID of the UE.
  • Step S204 the UE monitors the paging control channel at a predetermined time domain position, for example, performs blind detection on the paging control channel at the PO determined by the UE to achieve blind detection of the paging control channel;
  • the paging control channel includes but not Limited to: Paging Physical Downlink Control Channel (Paging PDCCH, P-PDCCH for short).
  • Step S206 the UE judges whether the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs;
  • Step S208 When the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs, the UE continues to decode the paging message scheduled by the paging control channel.
  • the paging message includes, but is not limited to, the paging message received by the UE through the PDSCH.
  • step S202 is an optional step, that is, for the UE, when being paged, it does not need to pay attention to whether the network side has initiated the paging, that is, it does not need to be executed. Step S202.
  • the meaning of “continue” in “continue to decode the paging message scheduled by the paging control channel” means that after the UE monitors the paging control channel, only the paging information contained in the paging control channel and/or the paging control channel The paging message scheduled by the paging control channel will be decoded only when it matches the UE type to which the UE belongs. That is to say, the “continue” here is for the monitoring step of the paging control channel in step S204. After monitoring the paging control channel, after the conditions in step S208 are met, it is necessary to perform the decoding of the above-mentioned paging again. Steps to call the message.
  • the UE can continue to decode the paging message scheduled by the paging control channel when the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs, and therefore, it can be avoided
  • the user equipment that is not currently paging performs blind detection, thereby avoiding the occurrence of paging false alarms, thereby solving the technical problem that errors often occur in the paging process in related technologies.
  • the UE After the UE knows the PF, the index of the PO, and the number of PDCCH monitoring occasions in the PO, it can know the starting position of the first PDCCH monitoring occasion of the PO through the relevant configuration parameters.
  • the starting position can be configured through high-layer signaling, or determined based on the PO index.
  • the UE blindly checks the paging message according to the determined PO.
  • the UE judgment process in step S206 is also different.
  • the above judgment process can be implemented in the following way: the UE judges that at least one of the following information corresponds to Whether the type of the UE is the same as the type to which the UE belongs: the P-RNTI corresponding to the paging control channel, the paging time-frequency resource information corresponding to the paging control channel; among them, the P-RNTI corresponding to the paging control channel and the paging time
  • the UE type corresponding to at least one of the frequency resource information is the same as the UE type to which the UE belongs, it is determined that the paging control channel matches the UE type to which the UE belongs.
  • the UE receives the configuration of the network side device.
  • the configuration comes from a broadcast message.
  • SIB1 indicates the correspondence between the multiple P-RNTIs and the UE type.
  • the UE type includes but not Limited to the service type of the UE, an example is shown in Table 1:
  • the UE types in Table 1 are just an example, and there may be other UE types. For example, according to the size of the terminal capabilities, it is divided into normal and low-capacity terminals, or according to the mobility of the terminal (for example, whether it is mobile). For fixed terminals and mobile terminals, etc.
  • the UE knows its type in advance, and can know the correspondence between all UE types and P-RNTI through the SIB1 message. In this way, when the UE de-blindly detects the Paging control channel at the predetermined PO, the UE will use the corresponding P-RNTI to perform the blind check. If it is not detected, it is considered that the network side device does not paging this type of UE on the PO, or The network does not paging any UE.
  • the network side device can also configure different time-frequency domain resources for the paging control channel.
  • the time-frequency domain resources of the current paging control channel are configured through the control resource set (C0RESET) and the search space (searchspace). For example: configure different searchspaces for different UE types so that they are associated with the same CORESET; or configure different CORESETs for different UE types.
  • the UE can obtain the association relationship between these resources and different UE types by receiving system messages, such as SIB1. Once the UE determines its own type, it can use the corresponding time-frequency resources to perform blind detection of the Paging control channel.
  • the UE judges whether the UE types indicated by the paging control information contained in the paging control channel are the same; wherein, when the UE type indicated by the paging control information is the same as the UE type, it is determined that the paging control channel contains The paging information matches the UE type to which the UE belongs.
  • the UE when the UE detects the P-RNTI corresponding to the UE type to which the UE belongs in the PDCCH, it determines that the paging information corresponding to the paging control channel matches the type to which the UE belongs; 2) detects in the PDCCH When the paging time-frequency resource information corresponding to the UE type to which the UE belongs, it is determined that the paging information corresponding to the above paging control channel matches the type to which the UE belongs; 3) P-DCI (P-DCI) is detected When the UE type indicated by the designated information in the UE has a type that is the same as the type to which the current UE belongs, it is determined that the paging information corresponding to the above-mentioned paging control channel matches the type to which the UE belongs.
  • P-DCI P-DCI
  • different UE types correspond to different P-RNTIs, and different UE types correspond to different paging time-frequency resources; the indication information used to indicate the UE type will be explicitly carried in the paging DCI, for example, through The short message bit in paging DCI is reused to indicate the UE type.
  • the UE type can be obtained based on the following principles: different type indications correspond to different P-RNTIs; different type indications correspond to different paging time-frequency resources; type indications It will be explicitly carried in the paging DCI, for example, the short message bit in the paging DCI can be reused.
  • the UE type corresponding to two or three of the above three kinds of information (namely P-RNTI, paging time-frequency resource information, and designated information) is different from the current one.
  • P-RNTI paging time-frequency resource information
  • designated information is different from the current one.
  • the above paging control information includes but is not limited to: P-DCI; in this case, P-DCI uses preset bits to indicate the UE type, and preset bits can be used to indicate one or more UEs.
  • P-DCI uses preset bits to indicate the UE type, and preset bits can be used to indicate one or more UEs.
  • Type an indication field (for example, a bit field in DCI) is introduced into the P-DCI to explicitly indicate a certain type or multiple types of UE types.
  • the maximum number of UE types indicated by the P-DCI is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type (that is, the preset bits can indicate multiple UE types at the same time), or the bit field in the preset bits is explicit Indicates a specific UE type. For example, when the number of reserved bits is 8 bits, 8 UE types can be indicated. For example, the first bit corresponds to UE type 1, the second bit corresponds to UE type 2, and so on.
  • the foregoing preset bit data may include two types: 1) reserved bits in Paging DCI and 2) 8 bits of short message. specifically:
  • DCI format 1-0 DCI format 1-0.
  • the definition of each bit field in Paging DCI in this format is as follows (see TS 38.212 in the 5G communication protocol):
  • VRB Virtual Resource Block
  • PRB Physical Resource Block
  • one way in this embodiment of the present application is to use the 6-bit reserved bits in the Paging DCI format 1-0.
  • Another way is to use 8bit of short message.
  • the 8 bits of short message can be used in different ways in some cases:
  • the short message indicator indicates that the paging only has scheduling information
  • the entire 8-bit short message can be used to indicate the UE type
  • the short message indicator indicates that there is a short message in the paging, that is, the short message needs to further indicate the Earthquake and Tsunami Warning System (ETWS)/Commercial Mobile Alert Service (CMAS) , Only 6-bit reserved bits are available.
  • EWS Earthquake and Tsunami Warning System
  • CMAS Commercial Mobile Alert Service
  • the reserved bits of the short message When the reserved bits of the short message are used to indicate the UE type, a combination of bits can also be used to indicate. For example, when the number of reserved bits is 8 bits, the different value combinations of each bit in the 8 bits can be used to indicate Indicates different UE types. At this time, the reserved bits of the short message can support the indication of 28 UE types. However, in this solution, only one UE type can be indicated during each paging, but multiple UE types cannot be indicated. However, by adopting the aforementioned scheme in which the bits correspond to the UE type, it is possible to support paging of multiple UE types at the same time during paging.
  • the process of the UE monitoring the paging control channel may be represented as the following process: the UE determines the PO corresponding to the UE; the UE performs blind detection on the paging control channel (for example, PDCCH) based on the determined PO; In the process of blindly detecting the paging control channel, the UE judges whether the paging control channel and/or the paging information contained in the paging channel matches the UE type to which the UE belongs.
  • the UE determines the PO corresponding to the UE
  • the UE performs blind detection on the paging control channel (for example, PDCCH) based on the determined PO
  • the UE judges whether the paging control channel and/or the paging information contained in the paging channel matches the UE type to which the UE belongs.
  • the UE determines the type to which it belongs. For example, it may be pre-defined and determined, or the type of UE may be specified by the network side device. For the latter, it can be expressed as the following implementation process, which can be implemented through an interactive message between the UE and the network-side device, for example: the UE sends a registration request message to the network-side device; the UE receives a response message for the registration request, where the registration request The response message contains the indication information of the UE type; the UE determines the type to which the UE belongs based on the indication information of the UE type. That is, the network side device can specify the type of the UE during the UE registration process for subsequent paging.
  • the UE receives a broadcast message from a network side device, where the broadcast message carries indication information of the UE type; the UE determines the type to which the UE belongs based on the indication information of the UE type.
  • step S208 when the judgment result indicates that the paging information or the paging control channel does not match the UE type, the UE will reject the paging message scheduled by the paging control channel (for example, PDCCH).
  • the paging control channel for example, PDCCH
  • the embodiment of the present application also provides a paging processing method, which mainly explains the improvement of the paging process in the embodiment of the present application from the network side.
  • the call processing method includes:
  • Step S302 the network side device determines the type of UE to be paged
  • Step S304 The network side device initiates paging based on the paging control channel and/or the paging information contained in the paging control channel matching the UE type.
  • the network side device determines the P-RNTI or paging time-frequency resource matching the UE type; and initiates paging based on the paging control channel corresponding to the P-RNTI or the paging time-frequency resource.
  • the network side device determines the paging control information corresponding to the UE type, and sends the paging control information to the UE through the paging control channel.
  • the paging control information includes: P-DCI; P-DCI indicates the UE type through reserved bit data of the short message. Wherein, the maximum number of UE types indicated by the P-DCI is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the network side device can indicate the UE type in one of the following ways: 1) The network side device receives a registration request message from the UE; the network side device sends a registration request response message to the UE, where the registration request response message carries There is indication information of the UE type; 2) The network side device sends a broadcast message to the UE, where the broadcast message carries the indication information of the UE type.
  • the network-side device since the network-side device initiates paging based on the paging control channel and/or the paging information contained in the paging control channel that matches the type of the UE, it can inform the UE of the UE type of this paging, which can avoid The blind detection process of the UE type that is not currently paging is triggered, thereby avoiding the occurrence of paging false alarms, thereby solving the technical problem that errors often occur in the paging process in related technologies.
  • the embodiment of the present application provides another paging processing method. As shown in FIG. 4, the method includes:
  • Step S402 the UE receives UE type indication information from the network side device
  • the UE may receive the foregoing UE type indication information through the PDCCH.
  • Step S404 The UE judges whether the UE type indicated by the UE type indication information has the same type as the type to which the UE belongs;
  • Step S406 When the UE type indicated by the UE type indication information has the same type as the type to which the UE belongs, the UE continues to decode the paging message scheduled through the physical downlink control channel.
  • this type of information can be obtained in the following ways:
  • the type indication will be explicitly carried in the paging DCI, for example, the short message bit in the paging DCI can be reused;
  • the reserve bit in the existing short message can be used to indicate the UE type that does not exceed the number of reserve bits, such as:
  • the paging message can indicate at most n UE types.
  • the first bit corresponds to UE type 1
  • the second bit corresponds to UE type 2, and so on;
  • the UE When the UE receives the short message, it determines whether to continue parsing the paging message according to its UE type and the UE type indicated by the bits in the corresponding short message. If the paging DCI indicates the UE type of the UE, the UE continues to decode the PDSCH . If the paging DCI does not indicate the UE type of the UE, the UE does not need to continue to decode the PDSCH.
  • the UE determines whether it needs to continue to decode the PDSCH according to the type of the UE, that is, paging message: if the paging message is not for the type of the UE, the UE may not agree to decode the PDSCH. If the paging message is for the UE type, the UE decodes the paging message transmitted by the PDSCH.
  • the embodiment of the present application also provides a paging processing device, which is applied to a UE.
  • the paging processing device is used in the method shown in FIG.
  • the domain location monitors the paging control channel;
  • the judging module 52 is used to judge whether the paging information contained in the paging control channel and/or the paging control channel matches the UE type to which the UE belongs;
  • the processing module 54 is used to When the paging information contained in the control channel and/or the paging control channel matches the UE type to which the UE belongs, continue to decode the paging message scheduled by the paging control channel.
  • the judging module 52 is further configured to judge whether the UE type corresponding to at least one of the following information is the same as the type to which the UE belongs: P-RNTI corresponding to the paging control channel, and P-RNTI corresponding to the paging control channel.
  • the paging control channel is The UE type to which the UE belongs matches; and it is determined whether the UE type indicated by the paging control information contained in the paging control channel is the same; wherein, when the UE type indicated by the paging control information is the same as the UE type, the paging is determined The paging information contained in the control channel matches the UE type to which the UE belongs.
  • the paging control information includes: P-DCI; P-DCI indicates the UE type through preset bits. The maximum number of UE types indicated by the P-DCI is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the monitoring module 50 is configured to determine a paging opportunity corresponding to a predetermined time domain location; and perform blind detection on the paging control channel based on the determined paging opportunity.
  • the above-mentioned apparatus may further include the following modules: a sending module 56 is used to send a registration request message to a network side device; a first receiving module 58 is used to receive a response message to a registration request, where the registration request The response message carries indication information of the UE type; the first determining module 60 is configured to determine the type to which the UE belongs based on the indication information of the UE type.
  • the second receiving module 62 is configured to receive the broadcast message of the network side device, where the broadcast message carries the indication information of the UE type; the second determining module 64 is configured to receive the indication information based on the UE type Determine the type of the UE
  • the processing module 54 is further configured to refuse to decode the paging message received by the UE when the paging information contained in the paging control channel and/or the paging control channel does not match the UE type to which the UE belongs.
  • modules in the embodiments shown in FIGS. 5 to 6 can be implemented by software or hardware.
  • the above-mentioned modules are located in a processor; or, the above-mentioned modules are in any combination. Located in different processors.
  • the paging processing device includes:
  • the determining module 70 is used to determine the type of UE to be paged
  • the paging module 72 is configured to initiate paging based on the paging information corresponding to the UE type.
  • the paging module 72 is used to determine the P-RNTI or paging time-frequency resource matching the UE type; and initiate paging based on the paging control channel corresponding to the P-RNTI or the paging time-frequency resource; or, determine The paging control information corresponding to the UE type, and the paging control information is sent to the UE through the paging control channel.
  • the paging control information includes: P-DCI; P-DCI indicates the user equipment type through preset bits.
  • the maximum number of user equipment types indicated by the P-DCI is not greater than the number of preset bits.
  • the bits used to indicate the type of the user equipment in the preset bits have a one-to-one correspondence with the type of the user equipment.
  • the above-mentioned paging processing apparatus further includes: a receiving module 80, configured to receive a registration request message from the user equipment; and a first sending module 82, configured to send a registration request response message to the user equipment , Wherein the response message of the registration request carries indication information of the user equipment type.
  • the second sending module 84 is configured to send a broadcast message to the user equipment, where the broadcast message carries indication information of the user equipment type.
  • modules in the embodiments shown in FIGS. 7-8 can be implemented by software or hardware.
  • the above-mentioned modules are located in one processor; or, the above-mentioned modules are in any combination. Located in different processors.
  • the UE 9 includes: a transceiver 90, a processor 92, and may also include hardware components such as a memory 94, where:
  • the transceiver 90 is used to monitor the paging control channel
  • the processor 92 is configured to call program instructions in the memory 94 to implement the following functions: determine whether the paging information corresponding to the paging control channel matches the UE type to which the UE belongs; and the determination result indicates that the paging information does not match the UE type Refuse to decode the paging message received by the UE.
  • the processor 92 may be configured to read the program instructions in the memory 94 and execute the following processing procedure: the UE determines whether the UE type corresponding to at least one of the following information is the same as the type to which the UE belongs: P corresponding to the paging control channel -RNTI, paging time-frequency resource information corresponding to the paging control channel; wherein the UE type corresponding to at least one of the P-RNTI and the paging time-frequency resource information corresponding to the paging control channel and the UE type to which the UE belongs When they are the same, it is determined that the paging control channel matches the UE type to which the UE belongs; the UE determines whether the UE type indicated by the paging control information contained in the paging control channel is the same; among them, the UE type indicated by the paging control information is the same as the UE type indicated by the paging control information. When the UE types are the same, it is determined that the paging information contained in the paging pag
  • the processor 92 may be configured to read the program instructions in the memory 94 and execute the following processing procedures: send a registration request message to the network side device; receive a response message to the registration request, where the response message of the registration request is Carry the indication information of the UE type; the UE determines the type to which the UE belongs based on the indication information of the UE type.
  • the above-mentioned processor may be an integrated circuit chip with data processing capability.
  • some steps of the above method can be completed by hardware integrated logic circuits or software instructions in the processor 92, which can be general-purpose processors, digital signal processors, application specific integrated circuits, programmable logic devices, etc. .
  • the processor 92 can read information in the memory 94 to implement corresponding functions.
  • the network-side device 1 includes: a processor 100, configured to determine the type of UE for paging; and a transceiver 102, configured to match the type of UE based on The paging control channel and/or the paging information contained in the paging control channel initiates paging; the memory 104 is used to store program instructions.
  • the processor 100 is configured to call program instructions in the memory 104 to implement the following functions: determine the P-RNTI or paging time-frequency resource matching the UE type; and notify the transceiver 102 based on the corresponding P-RNTI or paging time-frequency resource Initiate paging on the paging control channel of the UE; determine the paging control information corresponding to the UE type, and notify the transceiver 102 to send the paging control information to the UE through the paging control channel.
  • the paging control information includes: P-DCI; P-DCI indicates the UE type through preset bits.
  • the maximum number of UE types indicated by the P-DCI is not greater than the number of preset bits.
  • the bits used to indicate the UE type in the preset bits have a one-to-one correspondence with the UE type.
  • the transceiver 102 is further configured to receive a registration request message from the UE; send a registration request response message to the UE, wherein the registration request response message carries indication information of the UE type.
  • the embodiment of the present application also provides a non-volatile storage medium, the non-volatile storage medium includes a stored program, wherein when the program is running, the device where the non-volatile storage medium is located is controlled to execute the above paging processing method .
  • the paging processing method described in FIGS. 2 to 4 can be executed.
  • An embodiment of the present application also provides a processor, which is configured to run a program stored in a memory, where the above paging processing method is executed when the program is running.
  • the disclosed technical content can be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the units may be a logical function division, and there may be other divisions in actual implementation, for example, multiple units or components may be combined or may be Integrate into another system, or some features can be ignored or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, units or modules, and may be in electrical or other forms.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
  • the functional units in the various embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated unit can be implemented in the form of hardware or software functional unit.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
  • the technical solution of the present application essentially or the part that contributes to the existing technology or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium , Including several instructions to make a computer device (which may be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method described in each embodiment of the present application.
  • the aforementioned storage media include: U disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk and other media that can store program codes. .

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Abstract

本申请公开了一种寻呼处理方法及装置、用户设备、网络侧设备。其中,该方法包括:用户设备在预定的时域位置监听寻呼控制信道;所述用户设备判断所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配;在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配时,所述用户设备继续解码所述寻呼控制信道调度的寻呼消息。

Description

寻呼处理方法及装置、用户设备、网络侧设备 技术领域
本申请涉及通信领域,具体而言,涉及一种寻呼处理方法及装置、用户设备、网络侧设备。
背景技术
5G新无线(New radio,NR)的寻呼(paging)机制中,Paging主要功能是使得网络侧设备能在UE的无线资源控制(Radio Resource Control,简称为RRC)空闲(IDLE)或者RRC非激活(INACTIVE)状态通过寻呼消息(paging message)寻呼用户设备(User Equipment,简称为UE),或者通过短消息(short message)通知UE系统消息变更或者地震海啸/公共预警信息。
相关技术中,在网络侧发起寻呼后,往往会导致所有的UE进行盲检,因此,现有的寻呼流程时常发生错误,不能满足通信需求,例如,会产生UE寻呼虚警的现象。
针对上述的问题,目前尚未提出有效的解决方案。
发明内容
本申请实施例提供了一种寻呼处理方法及装置、用户设备、网络侧设备,以至少解决相关技术中的寻呼流程时常发生错误的技术问题。
根据本申请实施例的一个方面,提供了一种寻呼处理方法,包括:UE在预定的时域位置监听寻呼控制信道;UE判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,UE继续解码寻呼控制信道调度的寻呼消息(paging message)。
可选地,UE判断寻呼控制信道和/或寻呼信道所包含的寻呼信息是否与UE所属的UE类型匹配,包括:UE判断以下至少之一信息对应的UE类型是否与UE所属的类型相同:寻呼控制信道对应的寻呼无线网络临时标识(Paging Radio Network Temporary Identifier,简称为P-RNTI)、寻呼控制信道对应的寻呼时频资源信息;其中,在寻呼控制信道对应的P-RNTI和寻呼时频资源信息中的至少之一对应的UE类型与UE所属 的UE类型相同时,确定寻呼控制信道与UE所属的UE类型匹配;
UE判断寻呼控制信道所包含的寻呼控制信息所指示的UE类型是否相同;其中,在寻呼控制信息所指示的UE类型与UE的类型相同时,确定寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配。
可选地,寻呼控制信息包括:寻呼下行控制信息(Paging Downlink control information,简称为P-DCI);寻呼下行控制信息通过短消息(short message)的保留比特位(Reserve bit)数据指示UE类型。
可选地,寻呼下行控制信息所指示的UE类型的最大数量不大于预设比特位的比特数。
可选地,预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
可选地,UE在预定的时域位置监听寻呼控制信道之前,方法还包括:
UE向网络侧设备发送注册请求消息;UE接收注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;UE基于UE类型的指示信息确定UE所属的类型;或者,
用户设备接收网络侧设备的广播消息,其中,该广播消息中携带有用户设备类型的指示信息;用户设备基于用户设备类型的指示信息确定用户设备所属的类型。
可选地,上述方法还包括:在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型不匹配时,UE拒绝解码寻呼控制信道调度的寻呼消息。
根据本申请实施例的一个方面,提供了一种寻呼处理方法,包括:网络侧设备确定寻呼的UE类型;网络侧设备基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼。
可选地,网络侧设备基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼,包括:网络侧设备确定与UE类型匹配的P-RNTI或寻呼时频资源;并基于与P-RNTI或寻呼时频资源对应的寻呼控制信道发起寻呼;网络侧设备确定与UE类型对应的寻呼控制信息,并将寻呼控制信息通过寻呼控制信道发送至UE。
可选地,寻呼控制信息包括:寻呼下行控制信息;寻呼下行控制信息通过预设比特位指示UE类型。
可选地,寻呼下行控制信息所指示的UE类型的最大数量不大于预设比特位的比特数。
可选地,预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
可选地,网络侧设备基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼之前,上述方法还包括:
网络侧设备接收来自UE的注册请求消息;网络侧设备向UE发送注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;或者,
网络侧设备向UE发送广播消息,其中,该广播消息中携带有UE类型的指示信息。
根据本申请实施例的一个方面,提供了一种寻呼处理方法,包括:UE接收通过寻呼控制信道接收的寻呼控制信息,其中,该寻呼控制信息中携带有一个或多个用于指示UE类型的指示信息;UE判断指示信息所指示的UE类型中是否存在与UE所属的类型相同的类型;在指示信息所指示的UE类型中不存在与UE所属的类型相同的类型时,UE拒绝解码通过物理下行控制信道调度的寻呼消息。
根据本申请实施例的一个方面,提供了一种寻呼处理装置,应用于UE,上述寻呼处理装置包括:监听模块,用于在预定的时域位置监听寻呼控制信道;判断模块,用于判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;处理模块,用于在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,继续解码寻呼控制信道调度的寻呼消息。
可选地,判断模块,还用于判断以下至少之一信息对应的UE类型是否与UE所属的类型相同:寻呼控制信道对应的P-RNTI、寻呼控制信道对应的寻呼时频资源信息;其中,在寻呼控制信道对应的P-RNTI和寻呼时频资源信息中的至少之一对应的UE类型与UE所属的UE类型相同时,确定寻呼控制信道与UE所属的UE类型匹配;以及判断寻呼控制信道所包含的寻呼控制信息所指示的UE类型是否相同;其中,在寻呼控制信息所指示的UE类型与UE的类型相同时,确定寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配。
可选地,寻呼控制信息包括:寻呼下行控制信息;寻呼下行控制信息通过预设比特位指示UE类型。
可选地,寻呼下行控制信息所指示的UE类型的最大数量不大于预设比特位的比特数。
可选地,预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
可选地,监听模块,用于确定预定的时域位置对应的寻呼机会;并基于确定的寻呼机会对寻呼控制信道进行盲检。
可选地,上述装置还包括:发送模块,用于向网络侧设备发送注册请求消息;第一接收模块,用于接收注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;第一确定模块,用于基于UE类型的指示信息确定UE所属的类型;第二接收模块,用于接收所述网络侧设备的广播消息,其中,该广播消息中携带有所述UE类型的指示信息;第二确定模块,用于基于所述UE类型的指示信息确定所述UE所属的类型。
可选地,处理模块,还用于在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型不匹配时,拒绝解码寻呼控制信道调度的寻呼消息。
根据本申请实施例的一个方面,提供了一种寻呼处理装置,包括:确定模块,用于确定寻呼的UE类型;寻呼模块,用于基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼。
可选地,寻呼模块,用于确定与UE类型匹配的P-RNTI或寻呼时频资源;并基于与P-RNTI或寻呼时频资源对应的寻呼控制信道发起寻呼;或者,确定与UE类型对应的寻呼控制信息,并将寻呼控制信息通过寻呼控制信道发送至UE。
可选地,寻呼控制信息包括:P-DCI;P-DCI通过预设比特位指示用户设备类型。
可选地,P-DCI所指示的UE类型的最大数量不大于预设比特位的比特数。
可选地,预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
可选地,上述寻呼处理装置还包括:接收模块,用于接收来自UE的注册请求消息;发送模块,用于向UE发送注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;第二发送模块,用于向所述UE发送广播消息,其中,该广播消息中携带有所述UE类型的指示信息。
根据本申请实施例的一个方面,提供了一种UE,包括:收发器,用于在预定的时域位置监听寻呼控制信道;处理器,用于判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,继续解码寻呼控制信道调度的寻呼消息。
根据本申请实施例的一个方面,提供了一种网络侧设备,包括:处理器,用于确定寻呼的UE类型;收发器,用于基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼。
根据本申请实施例的一个方面,提供了一种通信系统,包括:网络侧设备和UE,其中:网络侧设备,用于确定寻呼的UE类型;基于与UE类型匹配的寻呼控制信道和/ 或寻呼控制信道所包含的寻呼信息发起寻呼;UE,用于在预定的时域位置监听寻呼控制信道;判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;以及在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,继续解码寻呼控制信道调度的寻呼消息。
根据本申请实施例的又一方面,提供了一种非易失性存储介质,该非易失性存储介质包括存储的程序,其中,在所述程序运行时控制所述非易失性存储介质所在设备执行以上所述的寻呼处理方法。
在本申请实施例中,UE在预定的时域位置监听寻呼控制信道;UE判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,UE继续解码寻呼控制信道调度的寻呼消息。由于在判断结果指示所述寻呼控制信道和/或寻呼控制信道包含的寻呼信息与所述UE类型匹配时,继续解码寻呼控制信道调度的寻呼消息,因此,可以避免触发非当前寻呼的UE类型的盲检过程,从而避免了寻呼虚警的产生,进而解决了相关技术中的寻呼流程时常发生错误的技术问题。
附图说明
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1是根据本申请实施例的一种通信系统的结构示意图;
图2是根据本申请实施例的一种寻呼处理方法的流程示意图;
图3是根据本申请实施例的另一种寻呼处理方法的流程示意图;
图4是根据本申请实施例的另一种寻呼处理方法的流程示意图;
图5是根据本申请实施例的一种寻呼处理装置的结构示意图;
图6是根据本申请实施例的一种寻呼处理装置的结构示意图;
图7是根据本申请实施例的另一种寻呼处理装置的结构示意图;
图8是根据本申请实施例的另一种寻呼处理装置的结构示意图;
图9是根据本申请实施例的一种UE的结构示意图。
图10是根据本申请实施例的一种网络侧设备的结构示意图
具体实施方式
为了使本技术领域的人员更好地理解本申请方案,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,所描述的实施例仅仅是本申请一部分的实施例,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做出创造性劳动前提下所获得的所有其他实施例,都应当属于本申请保护的范围。
需要说明的是,本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必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,以便这里描述的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,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
为了更好地理解本申请实施例,以下将本申请实施例中涉及的技术术语解释如下:
寻呼(paging):当网络侧需要与UE建立连接时,网络侧会发起寻呼流程。即Paging主要是使得网络能在UE的RRC IDLE或者RRC INACTIVE状态通过paging message寻呼UE,或者通过short message通知UE系统消息变更或者地震海啸/公共预警信息(适用于UE所有RRC状态,包括连接态)。
Paging包括由P-RNTI加扰的PDCCH,以及由该PDCCH调度的PDSCH。Paging message在PDSCH中传输,short message在PDCCH中传输,short message一般为8bit数据。
相关技术中,网络侧设备寻呼UE的过程中,为节省电能,UE可以通过DRX的方式来接收寻呼消息,其中,在每个DRX周期,UE只会在自己的PO去PDCCH读取P-RNTI(P-RNTI),依据P-RNTI从PDSCH读取寻呼消息包。从网络角度来看,一个paging DRX cycle可以有多个寻呼帧(Paging Frame,简称为PF)和寻呼机会(Paging Occasion,简称为PO),UE监听PO的位置跟该UE的ID有关,且UE在一个Paging DRX cycle中只监听一个PO。在通信系统中UE较多时,网络侧不能把每个UE分配到不同的PO上,此时,就会存在多个UE对应一个PO的情况。如果网络需要寻呼这个PO上的某一个UE时,则有可能导致其他本来没有paging消息的UE额外进行盲检,主要包括盲检物理下行控制信道(Physical Downlink Control Channel,简称为PDCCH)以及对应的物理下行共享信道(Physical Downlink Share Channel,简称为PDSCH)。此时,对于这些不需要被寻呼的UE来说,可以认为其接收到了错误的寻呼,即产生了寻呼虚 警(paging false alarm)的问题。
为解决上述技术问题,本申请实施例中,在寻呼过程中,用户设备会在预定的时域位置监听寻呼控制信道,并在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与用户设备所属的用户设备类型匹配时,继续解码寻呼控制信道调度的寻呼消息(paging message),基于该方案,由于网络侧可以明确地告知UE其所寻呼的UE类型,UE也可以明确地知晓当前寻呼(paging)是否为该UE的类型所对应的寻呼,从而为UE决定是否继续解码寻呼消息提供判断依据。需要说明的是,网络侧设备可以基于相应的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息同时指示一个或多个用户设备类型。以下结合实施例详细说明。
图1是根据本申请实施例的一种通信系统的结构示意图。如图1所示,该通信系统包括:
网络侧设备10和用户设备12,其中:网络侧设备10,用于确定寻呼的用户设备类型;基于与所述用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼;用户设备12,用于在预定的时域位置监听寻呼控制信道;判断所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配;以及在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配时,继续解码所述寻呼控制信道调度的寻呼消息。
其中,上述网络侧设备包括但不限于:接入网设备(例如基站等)、核心网设备等,例如核心网设备包括:接入和移动管理(AMF)实体、用户面功能(UPF)实体、会话管理功能(SMF)实体。上述用户设备包括但不限于:移动终端,例如手机、车载终端、增强型移动设备等。
在上述网络架构下,本申请实施例提供了一种寻呼处理方法的方法实施例,需要说明的是,虽然附图的流程图中示出了各个步骤的逻辑顺序,在某些情况下,是可以以不同于此处的顺序执行的。
图2是根据本申请实施例的一种寻呼处理方法的流程示意图,如图2所示,该方法包括如下步骤:
步骤S202,网络侧设备向UE发起寻呼。
上述网络侧设备发起的寻呼可以有两种情况:一种是基于核心网设备的指示发起的寻呼;一种是接入网设备发起的寻呼。
网络侧设备在寻呼某一个UE时,其首先要获知该UE的类型,然后基于该UE的类型发起寻呼,关于具体的寻呼过程,会在本申请实施例的其他部分详细说明,此处不再赘述。
在寻呼过程中,寻呼可以通过DRX的方式,让UE非连续接收,从而达到省电的目的。在IDLE态和INACTIVE态的UE,只需要监听Paging DRX中的一个Paging Occasion(PO)即可。其中,PO是一系列PDCCH的监听位置,它可以由多个时隙组成。其中,PO和寻呼帧(paging frame)是有关联的,PF指的是一个无线帧(固定10ms),该无线帧可以包含多个PO或者是多个PO的起始位置。,一个PF长度即为一个系统帧的长度,固定10ms。一个PF中可以有一个或者多个PO,PO的个数由网络配置。
Paging DRX的周期由系统广播中的公共周期和高层信令(NAS信令)中配置的专属周期共同决定,UE取两者中的最小周期为循环寻呼(Paging Cycle)的周期。从网络角度来看,一个paging DRX cycle可以有多个PO,UE监听PO的位置跟该UE的ID有关。
步骤S204,UE在预定的时域位置监听寻呼控制信道,例如,在UE确定的PO对寻呼控制信道进行盲检,以实现对寻呼控制信道的盲检;寻呼控制信道包括但不限于:寻呼物理下行控制信道(Paging PDCCH,简称为P-PDCCH)。
步骤S206,UE判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;
步骤S208,在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,UE继续解码寻呼控制信道调度的寻呼消息。其中,该寻呼消息包括但不限于UE通过PDSCH接收的寻呼消息。
需要说明的是,在UE的一些寻呼场景中,步骤S202是一个可选的步骤,即对于UE而言,在被寻呼时,其不必关注网络侧是否已经发起寻呼,即可以不必执行步骤S202。
其中,“继续解码寻呼控制信道调度的寻呼消息”中“继续”的含义为UE在监听寻呼控制信道后,只有在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,才会解码寻呼控制信道调度的寻呼消息。也就是说,此处的“继续”是针对步骤S204中的寻呼控制信道的监听步骤而言的,是监听寻呼控制信道之后,在满足步骤S208中的条件后,需要再执行解码上述寻呼消息的步骤。
采用上述方案,由于可以在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,UE继续解码寻呼控制信道调度的寻呼消息,因此,可以避免非当前寻呼的用户设备进行盲检,从而避免了寻呼虚警的产生,进而解决了相关技 术中的寻呼流程时常发生错误的技术问题。
对于一个UE而言,UE知道PF,PO的index之后,以及PO中PDCCH监听时机(monitoring occasion)的数量之后,通过相关配置参数知道该PO的第一个PDCCH monitoring occasion的起始位置即可,该起始位置可以通过高层信令配置,或者基于PO index确定。UE根据确定的PO来盲检paging消息。
在本申请的一些实施例中,基于网络侧设备指示UE类型的指示方式不同,步骤S206中UE的判断过程也不同。
例如:在网络侧设备基于寻呼控制信道的P-RNTI(P-RNTI)和/或寻呼时频资源指示UE类型时,可以通过以下方式实现上述判断过程:UE判断以下至少之一信息对应的UE类型是否与UE所属的类型相同:寻呼控制信道对应的P-RNTI、寻呼控制信道对应的寻呼时频资源信息;其中,在寻呼控制信道对应的P-RNTI和寻呼时频资源信息中的至少之一对应的UE类型与UE所属的UE类型相同时,确定寻呼控制信道与UE所属的UE类型匹配。
一般来说,对于paging的接收,所有UE会按照统一的P-RNTI进行paging控制信道的盲检。在本申请的实施例中,可以引入多个P-RNTI,使得多个R-RNTI与预定义的不同UE类型对应。UE接收网络侧设备的配置,该配置来自于广播消息,比如系统消息块1(System Information Block 1,简称为SIB1)中指示该多个P-RNTI与UE类型的对应关系,UE类型包括但不限于UE的业务类型,一种示例如表1所示:
表1
P-RNTI-1 eMBB UE
P-RNTI-2 URLLC UE
P-RNTI-3 Capability Reduced UE
P-RNTI-4 Stationary UE
P-RNTI-5 Mobility UE
表1中的UE类型只是一种举例,还可以有其他的UE类型,比如依据终端能力的大小,分为正常能力终端与低能力终端,或者依据终端的移动性(例如是否可移动),分为固定终端与移动终端等。
UE预先知道自己的类型,通过SIB1消息能知道所有UE类型与P-RNTI的对应关系。这样,UE在预定的PO去盲检Paging控制信道时,UE会用对应的P-RNTI去进行 盲检,如果没有检测到,则认为在该PO上网络侧设备没有paging该类型的UE,或者网络没有paging任何UE。
同样的,网络侧设备也可以为paging控制信道配置不同的时频域资源。当前paging控制信道的时频域资源是通过控制资源集合(C0RESET)和搜索空间(searchspace)来配置的。比如:为不同的UE类型配置不同的searchspace,让他们关联在同一个CORESET上;或者为不同的UE类型配置不同的CORESET。UE通过接收系统消息,比如SIB1能够获取这些资源与不同UE类型的关联关系,一旦UE确定自己的类型,即可以用对应的时频资源去进行Paging控制信道的盲检。
又例如:UE判断寻呼控制信道所包含的寻呼控制信息所指示的UE类型是否相同;其中,在寻呼控制信息所指示的UE类型与UE的类型相同时,确定寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配。
具体地,1)UE在PDCCH中检测到与该UE所属的UE类型对应的P-RNTI时,则确定上述寻呼控制信道对应的寻呼信息与UE所属的类型匹配;2)在PDCCH中检测到与该UE所属的UE类型对应的寻呼时频资源信息时,则确定上述寻呼控制信道对应的寻呼信息与UE所属的类型匹配;3)在检测到P-DCI(P-DCI)中的指定信息所指示的UE类型中存在与当前UE所属的类型相同的类型时,则确定上述寻呼控制信道对应的寻呼信息与UE所属的类型匹配。也就是说,不同的UE类型会对应不同的P-RNTI,不同的UE类型会对应不同的paging时频资源;用于指示UE类型的指示信息会显式的携带在paging DCI中,例如可以通过重用paging DCI中的short message比特指示UE类型。
由此可见,在计算出来的PO盲检paging DCI时,可以基于以下原则获取UE类型:不同的类型指示会对应不同的P-RNTI;不同的类型指示会对应不同的paging时频资源;类型指示会显式的携带在paging DCI中,比如可以通过重用paging DCI中的short message比特。
当然,在一些可能的应用场景中,还可以存在以下情况:上述三种信息(即P-RNTI、寻呼时频资源信息和指定信息)中的两个或三个信息对应的UE类型与当前UE所属的UE类型相同时,则确定寻呼控制信道所对应的寻呼信息与UE所属的UE类型是匹配的。
另外,对于第3)种情况,上述寻呼控制信息包括但不限于:P-DCI;此时,P-DCI通过预设比特位指示UE类型,可以采用预设比特位指示一个或多个UE类型,在该P-DCI中引入指示域(例如DCI中的比特域)来显式地指示某一类或者多类UE类型。在本申请的一些可选实施例中,P-DCI所指示的UE类型的最大数量不大于预设比特位的比特数。
具体地,预设比特位中用于指示UE类型的比特位与UE类型是一一对应的(即预设比特位能够同时指示多种UE类型),或者预设比特位中的比特域显式的指示某一种特定的UE类型。例如,在保留比特位的数量为8bit时,则可以指示8种UE类型,例如,第一个比特位对应UE类型1,第二个比特位对应UE类型2,依次类推。
上述预设比特位数据可以包括两类:1)Paging DCI中的预留比特位和2)short message的8个比特位。具体地:
其中,Paging DCI采用的格式为DCI format 1-0,其中,该格式的Paging DCI中各个比特域的定义如下(参见5G通信协议中的TS 38.212):
-短消息指示(Short Messages Indicator)–根据表7.3.1.2.1-1中的2比特。
-短消息(Short Messages)–[9,TS38.331]的字条款6.5中的8bits.如果仅携带用于寻呼的调度信息(scheduling information for Paging),该比特域被保留.
-频域资源分配(Frequency domain resource assignment)–
Figure PCTCN2020077666-appb-000001
个比特.如果仅携带短消息,该比特域被保留,其中,
Figure PCTCN2020077666-appb-000002
为CORESET 0的大小。
-时域资源分配(Time domain resource assignment)–[6,TS38.214]的子条款中定义的5.1.2.1的4比特.如果仅携带短消息,该比特域被保留。
-虚拟资源块(Virtual Resource Block,简称为VRB)到物理资源块(Physical Resource Block,简称为PRB)的映射–5G通信协议TS 38.212中的表7.3.1.1.2-33中的1比特。如果仅携带短消息,该比特域被保留。
-调制编码机制(Modulation and coding scheme)–[6,TS38.214]的子条款5.1.3定义的5比特.如果仅携带短消息,该比特域被保留。
-传输块(Transferring Block,简称为TB)缩放–[6,TS38.214]的子条款5.1.3.2中定义的2bits。如果仅携带短消息,该比特域被保留。
-保留比特(Reserved bits)–6个比特。
由此可见,本申请实施例中一种方式是采用该Paging DCI format 1-0中的6bit的保留比特位。
另外一种方式是,采用short message的8bit。当然short message的8比特在某些情况下又有不同的使用方式:
当short message indicator指示该paging只有scheduling information时,则整个8比特的short message都可以用来指示UE类型
当short message indicator指示该paging存在short message时,即short message需要进一步指示地震和海啸预警系统(Earthquake and Tsunami Warning System,简称为ETWS)/商用移动预警业务(Comercial Mobile Alert Service,简称为CMAS)时,则只有6比特的预留比特可用,这种情况下的short message的定义在38.331中如下表格中定义:
Figure PCTCN2020077666-appb-000003
在使用短消息的保留比特位指示UE类型时,也可以使用比特位的组合来表示,例如,在保留比特位的数量为8bit时,则可以使用该8bit中各个bit位的不同取值组合来表示不同的UE类型,此时,短消息的保留比特位可以支持28种UE类型的指示,但是,该方案中,每次寻呼时仅能指示一个UE类型,而不能指示多个UE类型。而采用之前提及的比特位与UE类型对应的方案,则可以在寻呼时同时支持多种UE类型的寻呼。
在本申请的一些实施例中,UE监听寻呼控制信道的过程可以表现为以下过程:UE确定该UE自身对应的PO;UE基于确定的PO对寻呼控制信道(例如PDCCH)进行盲检;UE在对寻呼控制信道进行盲检的过程中,判断寻呼控制信道和/或寻呼信道所包含的 寻呼信息是否与UE所属的UE类型匹配。
在本申请的一些可选的实施例中,UE确定自身所属的类型的方式有多种,例如,可以预先定义确定,也可以由网络侧设备指定UE的类型。对于后者,可以表现为以下实现过程,可以通过UE和网络侧设备之间的交互消息实现,例如:UE向网络侧设备发送注册请求消息;UE接收注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;UE基于UE类型的指示信息确定UE所属的类型。即网络侧设备可以在UE注册的过程中指定UE的类型,以便后续寻呼时使用。
又例如,UE接收网络侧设备的广播消息,其中,该广播消息中携带有UE类型的指示信息;UE基于UE类型的指示信息确定UE所属的类型。
另外,在步骤S208的判断过程中,在UE在判断结果指示寻呼信息或寻呼控制信道与UE类型不匹配时,会拒绝寻呼控制信道(例如PDCCH)调度的寻呼消息。
本申请实施例还提供了一种寻呼处理方法,该方法主要从网络侧说明本申请实施例中对于寻呼过程的改进,具体地,如图3所示,该呼叫处理方法包括:
步骤S302,网络侧设备确定寻呼的UE类型;
步骤S304,网络侧设备基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼。
例如:网络侧设备确定与UE类型匹配的P-RNTI或寻呼时频资源;并基于与P-RNTI或寻呼时频资源对应的寻呼控制信道发起寻呼。
又例如:网络侧设备确定与UE类型对应的寻呼控制信息,并将寻呼控制信息通过寻呼控制信道发送至UE。其中,寻呼控制信息包括:P-DCI;P-DCI通过短消息的保留比特位(reserve bit)数据指示UE类型。其中,P-DCI所指示的UE类型的最大数量不大于预设比特位的比特数。预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
其中,网络侧设备可以通过以下之一方式指示UE类型:1)网络侧设备接收来自UE的注册请求消息;网络侧设备向UE发送注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;2)网络侧设备向UE发送广播消息,其中,该广播消息中携带有UE类型的指示信息。
可以看出,由于网络侧设备基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼,因此,可以告知UE本次寻呼的UE类型,可以避免触发非当前寻呼的UE类型的盲检过程,从而避免了寻呼虚警的产生,进而解决了相关技 术中的寻呼流程时常发生错误的技术问题。
需要说明的是,图3所示实施例的优选实施方式可以参见实施例1中的相关描述,此处不再赘述。
本申请实施例提供了另一种寻呼处理方法,如图4所示,该方法包括:
步骤S402,UE接收来自网络侧设备的UE类型指示信息;
可选地,UE可以通过PDCCH接收上述UE类型指示信息。
步骤S404,UE判断UE类型指示信息所指示的UE类型中是否存在与UE所属的类型相同的类型;
步骤S406,在UE类型指示信息所指示的UE类型中存在与UE所属的类型相同的类型时,UE继续解码通过物理下行控制信道调度的寻呼消息。
具体地,从UE角度而言,在依据确定的PO盲检paging DCI时,可以通过以下几种方式获取该类型信息:
不同的类型指示会对应不同的P-RNTI;
不同的类型指示会对应不同的paging时频资源;
类型指示会显式的携带在paging DCI中,比如可以通过重用paging DCI中的short message比特;
当采用short message指示UE类型的时候,可以利用现有的short message中的reserve bit,最多可以指示不超过reserve bit数量的UE类型,比如:
假设定义了N种UE类型,其中short message中的reserve bit数量为n,那么该paging消息最多可以指示n中UE类型。
需要规定reserve bit的bit位于UE类型的对应关系,比如第一个比特位对应UE类型1,第二个比特位对应UE类型2,依次类推;
UE收到short message时,根据自己的UE类型,以及对应short message中的比特位所指示的UE类型确定是否继续解析寻呼消息,如果paging DCI指示了这个UE的UE类型,则UE继续解码PDSCH。如果该paging DCI没有指示该UE的UE类型,则UE不需要继续解码PDSCH。
UE通过以上方式或者该UE类型指示消息,在根据UE的类型,判断是否需要继续解码PDSCH,也就是paging message:如果该paging消息不是针对这个UE的类型, 则UE可以不同意解码PDSCH。如果该paging消息是针对该UE类型,则UE解码PDSCH传输的paging message。
本申请实施例还提供了一种寻呼处理装置,应用于UE,该寻呼处理装置用于如图2所示的方法,该寻呼处理装置包括:监听模块50,用于在预定的时域位置监听寻呼控制信道;判断模块52,用于判断寻呼控制信道和/或寻呼控制信道所包含的寻呼信息是否与UE所属的UE类型匹配;处理模块54,用于在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配时,继续解码寻呼控制信道调度的寻呼消息。
在一些可选的实施例中,判断模块52,还用于判断以下至少之一信息对应的UE类型是否与UE所属的类型相同:寻呼控制信道对应的P-RNTI、寻呼控制信道对应的寻呼时频资源信息;其中,在寻呼控制信道对应的P-RNTI和寻呼时频资源信息中的至少之一对应的UE类型与UE所属的UE类型相同时,确定寻呼控制信道与UE所属的UE类型匹配;以及判断寻呼控制信道所包含的寻呼控制信息所指示的UE类型是否相同;其中,在寻呼控制信息所指示的UE类型与UE的类型相同时,确定寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配。
其中,寻呼控制信息包括:P-DCI;P-DCI通过预设比特位指示UE类型。P-DCI所指示的UE类型的最大数量不大于预设比特位的比特数。
为了支持多种UE类型,预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
可选地,监听模块50,用于确定预定的时域位置对应的寻呼机会;并基于确定的寻呼机会对寻呼控制信道进行盲检。
如图6所示,上述装置还可以包括以下模块:发送模块56,用于向网络侧设备发送注册请求消息;第一接收模块58,用于接收注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;第一确定模块60,用于基于UE类型的指示信息确定UE所属的类型。第二接收模块62,用于接收所述网络侧设备的广播消息,其中,该广播消息中携带有所述UE类型的指示信息;第二确定模块64,用于基于所述UE类型的指示信息确定所述UE所属的类型
处理模块54,还用于在寻呼控制信道和/或寻呼控制信道所包含的寻呼信息与UE所属的UE类型不匹配时,拒绝解码UE接收的寻呼消息。
需要说明的是,图5-图6所示实施例的优选实施方式可以参见图2所示实施例的相关描述,此处不再赘述。
还需要说明的是,图5-图6所示实施例中的各个模块是可以通过软件或硬件来实现的,例如,上述各个模块位于一个处理器中;或者,上述各个模块以任意组合的方式位于不同的处理器中。
本申请实施例还提供了另一种寻呼处理装置,如图7所示,该寻呼处理装置包括:
确定模块70,用于确定寻呼的UE类型;
寻呼模块72,用于基于与UE类型对应的寻呼信息发起寻呼。
其中,寻呼模块72,用于确定与UE类型匹配的P-RNTI或寻呼时频资源;并基于与P-RNTI或寻呼时频资源对应的寻呼控制信道发起寻呼;或者,确定与UE类型对应的寻呼控制信息,并将寻呼控制信息通过寻呼控制信道发送至UE。
其中,寻呼模块72在基于寻呼控制信息指示UE类型时,寻呼控制信息包括:P-DCI;P-DCI通过预设比特位指示用户设备类型。
具体地,P-DCI所指示的用户设备类型的最大数量不大于预设比特位的比特数。预设比特位中用于指示用户设备类型的比特位与用户设备类型是一一对应的。
可选地,如图8所示,上述寻呼处理装置还包括:接收模块80,用于接收来自用户设备的注册请求消息;第一发送模块82,用于向用户设备发送注册请求的响应消息,其中,该注册请求的响应消息中携带有用户设备类型的指示信息。第二发送模块84,用于向所述用户设备发送广播消息,其中,该广播消息中携带有所述用户设备类型的指示信息。
图7-图8所示实施例的优选实施方式,可以参见图3所示实施例的相关描述,此处不再赘述。
还需要说明的是,图7-图8所示实施例中的各个模块是可以通过软件或硬件来实现的,例如,上述各个模块位于一个处理器中;或者,上述各个模块以任意组合的方式位于不同的处理器中。
本申请实施例提供了一种UE,如图9所示,该UE 9包括:收发器90、处理器92,还可以包括存储器94等硬件组件,其中:
收发器90,用于监听寻呼控制信道;
处理器92,用于调用存储器94中的程序指令,实现以下功能:判断寻呼控制信道所对应的寻呼信息是否与UE所属的UE类型匹配;在判断结果指示寻呼信息与UE类型不匹配时,拒绝解码UE接收的寻呼消息。
例如,处理器92,可以设置为读取存储器94中的程序指令,并执行以下处理过程:UE判断以下至少之一信息对应的UE类型是否与UE所属的类型相同:寻呼控制信道对应的P-RNTI、寻呼控制信道对应的寻呼时频资源信息;其中,在寻呼控制信道对应的P-RNTI和寻呼时频资源信息中的至少之一对应的UE类型与UE所属的UE类型相同时,确定寻呼控制信道与UE所属的UE类型匹配;UE判断寻呼控制信道所包含的寻呼控制信息所指示的UE类型是否相同;其中,在寻呼控制信息所指示的UE类型与UE的类型相同时,确定寻呼控制信道所包含的寻呼信息与UE所属的UE类型匹配。
又例如,处理器92,可以设置为读取存储器94中的程序指令,并执行以下处理过程:向网络侧设备发送注册请求消息;接收注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息;UE基于UE类型的指示信息确定UE所属的类型。
上述处理器可以是一种集成电路芯片,具有数据处理能力。在实现过程中,上述方法的一些步骤可以通过处理器92中的硬件的集成逻辑电路或者软件形式的指令完成,其可以是通用处理器、数字信号处理器、专用集成电路、可编程逻辑器件等。处理器92可以读取存储器94中的信息以实现相应的功能。
本申请实施例还提供了一种网络侧设备,如图10所示,该网络侧设备1包括:处理器100,用于确定寻呼的UE类型;收发器102,用于基于与UE类型匹配的寻呼控制信道和/或寻呼控制信道所包含的寻呼信息发起寻呼;存储器104,用于存储程序指令。
处理器100用于调用存储器104中的程序指令,实现以下功能:确定与UE类型匹配的P-RNTI或寻呼时频资源;并通知收发器102基于与P-RNTI或寻呼时频资源对应的寻呼控制信道发起寻呼;确定与UE类型对应的寻呼控制信息,并通知收发器102将寻呼控制信息通过寻呼控制信道发送至UE。
其中,寻呼控制信息包括:P-DCI;P-DCI通过预设比特位指示UE类型。P-DCI所指示的UE类型的最大数量不大于预设比特位的比特数。预设比特位中用于指示UE类型的比特位与UE类型是一一对应的。
收发器102,还用于接收来自UE的注册请求消息;向UE发送注册请求的响应消息,其中,该注册请求的响应消息中携带有UE类型的指示信息。
本申请实施例还提供了一种非易失性存储介质,该非易失性存储介质包括存储的程序,其中,在程序运行时控制非易失性存储介质所在设备执行以上的寻呼处理方法。例如,可以执行图2至图4中所述的寻呼处理方法。
本申请实施例的还提供了一种处理器,处理器设置为运行存储在存储器中的程序, 其中,程序运行时执行以上的寻呼处理方法。
上述本申请实施例序号仅仅为了描述,不代表实施例的优劣。
在本申请的上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
在本申请所提供的几个实施例中,应该理解到,所揭露的技术内容,可通过其它的方式实现。其中,以上所描述的装置实施例仅仅是示意性的,例如所述单元的划分,可以为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,单元或模块的间接耦合或通信连接,可以是电性或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。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或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可为个人计算机、服务器或者网络设备等)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述仅是本申请的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本申请原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本申请的保护范围。

Claims (31)

  1. 一种寻呼处理方法,包括:
    用户设备在预定的时域位置监听寻呼控制信道;
    所述用户设备判断所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配;
    在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配时,所述用户设备继续解码所述寻呼控制信道调度的寻呼消息。
  2. 根据权利要求1所述的方法,其中,所述用户设备判断所述寻呼控制信道和/或所述寻呼信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配,包括:
    所述用户设备判断以下至少之一信息对应的用户设备类型是否与所述用户设备所属的类型相同:所述寻呼控制信道对应的寻呼无线网络临时标识、所述寻呼控制信道对应的寻呼时频资源信息;其中,在所述寻呼控制信道对应的寻呼无线网络临时标识和寻呼时频资源信息中的至少之一对应的用户设备类型与所述用户设备所属的用户设备类型相同时,确定所述寻呼控制信道与所述用户设备所属的用户设备类型匹配;
    所述用户设备判断所述寻呼控制信道所包含的寻呼控制信息所指示的用户设备类型是否相同;其中,在所述寻呼控制信息所指示的用户设备类型与所述用户设备的类型相同时,确定所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配。
  3. 根据权利要求2所述的方法,其中,所述寻呼控制信息包括:寻呼下行控制信息;
    所述寻呼下行控制信息通过预设比特位指示所述用户设备类型。
  4. 根据权利要求3所述的方法,其中,所述寻呼下行控制信息所指示的用户设备类型的最大数量不大于所述预设比特位的比特数。
  5. 根据权利要求3所述的方法,其中,所述预设比特位中用于指示用户设备类型的比特位与用户设备类型是一一对应的。
  6. 根据权利要求1所述的方法,其中,用户设备在预定的时域位置监听寻呼控制信 道之前,所述方法还包括:
    所述用户设备向网络侧设备发送注册请求消息;所述用户设备接收所述注册请求的响应消息,其中,该注册请求的响应消息中携带有所述用户设备类型的指示信息;所述用户设备基于所述用户设备类型的指示信息确定所述用户设备所属的类型;或者,
    所述用户设备接收所述网络侧设备的广播消息,其中,该广播消息中携带有所述用户设备类型的指示信息;所述用户设备基于所述用户设备类型的指示信息确定所述用户设备所属的类型。
  7. 根据权利要求1至6中任意一项所述的方法,其中,所述方法还包括:
    在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型不匹配时,所述用户设备拒绝解码所述寻呼控制信道调度的寻呼消息。
  8. 一种寻呼处理方法,包括:
    网络侧设备确定寻呼的用户设备类型;
    所述网络侧设备基于与所述用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼。
  9. 根据权利要求8所述的方法,其中,所述网络侧设备基于与用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼,包括:
    所述网络侧设备确定与用户设备类型匹配的寻呼无线网络临时标识或寻呼时频资源;并基于与寻呼无线网络临时标识或寻呼时频资源对应的寻呼控制信道发起寻呼;或者
    所述网络侧设备确定与所述用户设备类型对应的寻呼控制信息,并将所述寻呼控制信息通过所述寻呼控制信道发送至所述用户设备。
  10. 根据权利要求9所述的方法,其中,所述寻呼控制信息包括:寻呼下行控制信息;
    所述寻呼下行控制信息通过预设比特位指示所述用户设备类型。
  11. 根据权利要求10所述的方法,其中,所述寻呼下行控制信息所指示的用户设备类型的最大数量不大于所述预设比特位的比特数。
  12. 根据权利要求11所述的方法,其中,所述预设比特位中用于指示用户设备类型的比特位与用户设备类型是一一对应的。
  13. 根据权利要求8所述的方法,其中,所述网络侧设备基于与用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼之前,所述方法还包括:
    所述网络侧设备接收来自用户设备的注册请求消息;所述网络侧设备向所述用户设备发送所述注册请求的响应消息,其中,该注册请求的响应消息中携带有所述用户设备类型的指示信息;或者,
    所述网络侧设备向所述用户设备发送广播消息,其中,该广播消息中携带有所述用户设备类型的指示信息。
  14. 一种寻呼处理方法,包括:
    用户设备接收来自网络侧设备的用户设备类型指示信息;
    所述用户设备判断所述用户设备类型指示信息所指示的用户设备类型中是否存在与所述用户设备所属的类型相同的类型;
    在所述用户设备类型指示信息所指示的用户设备类型中存在与所述用户设备所属的类型相同的类型时,所述用户设备继续解码通过物理下行控制信道调度的寻呼消息。
  15. 一种寻呼处理装置,应用于用户设备,所述装置包括:
    监听模块,用于在预定的时域位置监听寻呼控制信道;
    判断模块,用于判断所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配;
    处理模块,用于在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配时,继续解码所述寻呼控制信道调度的寻呼消息。
  16. 根据权利要求15所述的装置,其中,所述判断模块,还用于判断以下至少之一信息对应的用户设备类型是否与所述用户设备所属的类型相同:所述寻呼控制信道对应的寻呼无线网络临时标识、所述寻呼控制信道对应的寻呼时频资源信息;其中,在所述寻呼控制信道对应的寻呼无线网络临时标识和寻呼时频资源信息中的至少之一对应的用户设备类型与所述用户设备所属的用户设备类型相同时,确定所述寻呼控制信道与所述用户设备所属的用户设备类型匹配;或者,判断所述寻呼控制信道所包含的寻呼控制信息所指示的用户设备类型是否相同;其中,在所 述寻呼控制信息所指示的用户设备类型与所述用户设备的类型相同时,确定所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配。
  17. 根据权利要求16所述的装置,其中,所述寻呼控制信息包括:寻呼下行控制信息;
    所述寻呼下行控制信息通过预设比特位指示所述用户设备类型。
  18. 根据权利要求17所述的装置,其中,所述寻呼下行控制信息所指示的用户设备类型的最大数量不大于所述预设比特位的比特数。
  19. 根据权利要求17所述的装置,其中,所述预设比特位中用于指示用户设备类型的比特位与用户设备类型是一一对应的。
  20. 根据权利要求15所述的装置,其中,所述装置还包括:
    发送模块,用于向网络侧设备发送注册请求消息;第一接收模块,用于接收所述注册请求的响应消息,其中,该注册请求的响应消息中携带有所述用户设备类型的指示信息;第一确定模块,用于基于所述用户设备类型的指示信息确定所述用户设备所属的类型;
    第二接收模块,用于接收所述网络侧设备的广播消息,其中,该广播消息中携带有所述用户设备类型的指示信息;第二确定模块,用于基于所述用户设备类型的指示信息确定所述用户设备所属的类型。
  21. 根据权利要求15至20中任意一项所述的装置,其中,所述处理模块,还用于在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型不匹配时,拒绝解码所述寻呼控制信道调度的寻呼消息。
  22. 一种寻呼处理装置,包括:
    确定模块,用于确定寻呼的用户设备类型;
    寻呼模块,用于基于与所述用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼。
  23. 根据权利要求22所述的装置,其中,所述寻呼模块,用于确定与用户设备类型匹配的寻呼无线网络临时标识或寻呼时频资源;并基于与寻呼无线网络临时标识或寻呼时频资源对应的寻呼控制信道发起寻呼;或者确定与所述用户设备类型对应的寻呼控制信息,并将所述寻呼控制信息通过所述寻呼控制信道发送至所述用户设备。
  24. 根据权利要求23所述的方法,其中,所述寻呼控制信息包括:寻呼下行控制信息;
    所述寻呼下行控制信息通过预设比特位指示所述用户设备类型。
  25. 根据权利要24所述的方法,其中,所述寻呼下行控制信息所指示的用户设备类型的最大数量不大于所述预设比特位的比特数。
  26. 根据权利要求25所述的方法,其中,所述预设比特位中用于指示用户设备类型的比特位与用户设备类型是一一对应的。
  27. 根据权利要求22所述的方法,其中,所述装置还包括:
    接收模块,用于接收来自用户设备的注册请求消息;第一发送模块,用于向所述用户设备发送所述注册请求的响应消息,其中,该注册请求的响应消息中携带有所述用户设备类型的指示信息;
    第二发送模块,用于向所述用户设备发送广播消息,其中,该广播消息中携带有所述用户设备类型的指示信息。
  28. 一种用户设备,包括:
    收发器,用于在预定的时域位置监听寻呼控制信道;
    处理器,用于判断所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配;在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配时,继续解码所述寻呼控制信道调度的寻呼消息。
  29. 一种网络侧设备,包括:
    处理器,用于确定寻呼的用户设备类型;
    收发器,用于基于与所述用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼。
  30. 一种通信系统,包括:网络侧设备和用户设备,其中:
    所述网络侧设备,用于确定寻呼的用户设备类型;基于与所述用户设备类型匹配的寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息发起寻呼;
    所述用户设备,用于在预定的时域位置监听寻呼控制信道;判断所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息是否与所述用户设备所属的用户设备类型匹配;以及在所述寻呼控制信道和/或所述寻呼控制信道所包含的寻呼信息与所述用户设备所属的用户设备类型匹配时,继续解码所述寻呼控制信道调 度的寻呼消息。
  31. 一种非易失性存储介质,该非易失性存储介质包括存储的程序,其中,在所述程序运行时控制所述非易失性存储介质所在设备执行权利要求1至7中任意一项所述的寻呼处理方法,或者执行权利要求8至13中任意一项所述的寻呼处理方法。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023231564A1 (zh) * 2022-05-30 2023-12-07 华为技术有限公司 一种寻呼方法及装置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109451581A (zh) * 2017-01-06 2019-03-08 华为技术有限公司 一种寻呼方法和装置
CN109792712A (zh) * 2018-01-31 2019-05-21 Oppo广东移动通信有限公司 寻呼方法、网络设备和终端设备
WO2019148371A1 (zh) * 2018-01-31 2019-08-08 Oppo广东移动通信有限公司 用于寻呼的方法、终端设备和网络设备
US20190306827A1 (en) * 2018-03-28 2019-10-03 Samsung Electronics Co., Ltd. Method and apparatus for transmitting and receiving system information
CN110839214A (zh) * 2018-08-17 2020-02-25 北京展讯高科通信技术有限公司 唤醒信号的发送资源位置的配置方法、唤醒方法及其装置

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3043607B1 (en) * 2013-09-27 2018-11-07 Huawei Technologies Co., Ltd. Method and device for paging a user equipment
JP7166352B2 (ja) * 2018-04-05 2022-11-07 パナソニック インテレクチュアル プロパティ コーポレーション オブ アメリカ 新無線におけるページングオケージョンの設計

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109451581A (zh) * 2017-01-06 2019-03-08 华为技术有限公司 一种寻呼方法和装置
CN109792712A (zh) * 2018-01-31 2019-05-21 Oppo广东移动通信有限公司 寻呼方法、网络设备和终端设备
WO2019148371A1 (zh) * 2018-01-31 2019-08-08 Oppo广东移动通信有限公司 用于寻呼的方法、终端设备和网络设备
US20190306827A1 (en) * 2018-03-28 2019-10-03 Samsung Electronics Co., Ltd. Method and apparatus for transmitting and receiving system information
CN110839214A (zh) * 2018-08-17 2020-02-25 北京展讯高科通信技术有限公司 唤醒信号的发送资源位置的配置方法、唤醒方法及其装置

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
VIVO: "Consideration on the false alarm issue for paging", 3GPP DRAFT; R2-1905953_CONSIDERATION ON THE FALSE ALARM ISSUE FOR PAGING, 3RD GENERATION PARTNERSHIP PROJECT (3GPP), MOBILE COMPETENCE CENTRE ; 650, ROUTE DES LUCIOLES ; F-06921 SOPHIA-ANTIPOLIS CEDEX ; FRANCE, vol. RAN WG2, no. Reno, USA; 20190513 - 20190517, 3 May 2019 (2019-05-03), Mobile Competence Centre ; 650, route des Lucioles ; F-06921 Sophia-Antipolis Cedex ; France, XP051710299 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023231564A1 (zh) * 2022-05-30 2023-12-07 华为技术有限公司 一种寻呼方法及装置

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