WO2018127150A1 - Multi-sectorized antenna and communication system - Google Patents

Multi-sectorized antenna and communication system Download PDF

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Publication number
WO2018127150A1
WO2018127150A1 PCT/CN2018/071640 CN2018071640W WO2018127150A1 WO 2018127150 A1 WO2018127150 A1 WO 2018127150A1 CN 2018071640 W CN2018071640 W CN 2018071640W WO 2018127150 A1 WO2018127150 A1 WO 2018127150A1
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WO
WIPO (PCT)
Prior art keywords
paging
information
related information
user equipment
paging message
Prior art date
Application number
PCT/CN2018/071640
Other languages
French (fr)
Chinese (zh)
Inventor
李赛楠
黄煌
张希
刘亚林
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201710074201.XA external-priority patent/CN108282862B/en
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP18736001.1A priority Critical patent/EP3562226B1/en
Priority to KR1020197023139A priority patent/KR102274089B1/en
Priority to BR112019014014-0A priority patent/BR112019014014B1/en
Priority to CA3049500A priority patent/CA3049500C/en
Publication of WO2018127150A1 publication Critical patent/WO2018127150A1/en
Priority to US16/504,104 priority patent/US11039416B2/en

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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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/06Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
    • H04B7/0686Hybrid systems, i.e. switching and simultaneous transmission
    • H04B7/0695Hybrid systems, i.e. switching and simultaneous transmission using beam selection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B7/00Radio transmission systems, i.e. using radiation field
    • H04B7/02Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
    • H04B7/04Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
    • H04B7/08Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the receiving station
    • H04B7/0868Hybrid systems, i.e. switching and combining
    • H04B7/088Hybrid systems, i.e. switching and combining using beam selection

Definitions

  • the present application relates to the field of communications and, more particularly, to a paging method and apparatus.
  • the application provides a method or apparatus for paging.
  • a paging method is provided.
  • the network device sends paging related information at a specified time, and the paging related information is sent by using a beam scanning manner. .
  • a method for paging where a user equipment receives paging related information; and a user equipment obtains a paging message according to the paging related information.
  • a network device including a processor and a transceiver, the transceiver is configured to send paging related information at a specified time, and the paging related information is sent by using a beam scanning manner.
  • a fourth aspect provides a user equipment, including: a processor and a transceiver; wherein the transceiver is configured to receive paging related information; and the transceiver is further configured to obtain a paging message according to the paging related information.
  • a computer storage medium having stored therein program code, the program code being operative to indicate a method of performing the first to second aspects described above, or any alternative implementation thereof.
  • FIG. 1 is a diagram of an application scenario according to an embodiment of the present application.
  • FIG. 2 is a schematic diagram of processing of a paging method according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of a frame structure of an embodiment of the present application.
  • FIG. 4 is a schematic diagram of another frame structure of an embodiment of the present application.
  • FIG. 5 is a schematic diagram of another frame structure of an embodiment of the present application.
  • FIG. 6 is a schematic diagram of another frame structure of an embodiment of the present application.
  • FIG. 7 is a schematic block diagram of a network device apparatus according to an embodiment of the present application.
  • FIG. 8 is a schematic block diagram of a user equipment apparatus according to an embodiment of the present application.
  • FIG. 9 is a schematic diagram of time-frequency resources corresponding to paging related information of different services according to an embodiment of the present invention.
  • FIG. 10 is a schematic flow chart of another method according to an embodiment of the present invention.
  • a component can be, but is not limited to being, a process running on a processor, a processor, an object, an executable, a thread of execution, a program, and/or a computer.
  • an application running on a computing device and a computing device can be a component.
  • One or more components can reside within a process and/or execution thread, and the components can be located on one computer and/or distributed between two or more computers.
  • these components can execute from various computer readable media having various data structures stored thereon.
  • a component may, for example, be based on signals having one or more data packets (eg, data from two components interacting with another component between the local system, the distributed system, and/or the network, such as the Internet interacting with other systems) Communicate through local and/or remote processes.
  • data packets eg, data from two components interacting with another component between the local system, the distributed system, and/or the network, such as the Internet interacting with other systems
  • GSM Global System of Mobile Communication
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • LTE Long Term Evolution
  • FDD Frequency Division Duplex
  • TDD Time Division Duplex
  • UMTS Universal Mobile Telecommunication System
  • a user equipment may also refer to an access terminal, subscriber unit, subscriber station, mobile station, mobile station, remote station, remote terminal, mobile device, user terminal, terminal, wireless communication device, user agent, or user device.
  • the access terminal may be a cellular phone, a cordless phone, a Session Initiation Protocol ("SSIP") phone, a Wireless Local Loop (WLL) station, and a personal digital processing (Personal Digital) Assistant, referred to as "PDA”), a handheld device with wireless communication capabilities, a computing device or other processing device connected to a wireless modem, an in-vehicle device, a wearable device, a user device in a future 5G network, or a future evolved PLMN network.
  • PDA Personal Digital
  • the present invention describes various embodiments in connection with a network device.
  • the network device may be a device for communicating with the user equipment, for example, may be a base station (Base Transceiver Station, abbreviated as "BTS”) in the GSM system or CDMA, or may be a base station (NodeB in the WCDMA system, referred to as "NB") may also be an evolved base station (Evolutional Node B, "eNB” or "eNodeB”) in the LTE system, or the network device may be a relay station, an access point, an in-vehicle device, a wearable device, and A network side device in a future 5G network or a network device in a future evolved PLMN network.
  • BTS Base Transceiver Station
  • NodeB base station
  • eNodeB evolved base station
  • eNodeB evolved base station
  • the network device may be a relay station, an access point, an in-vehicle device, a wearable device, and A network side
  • a and/or B in the embodiment of the present application means A, or B, or A and B.
  • the embodiment of the present invention can be applied to a communication network 100 having a plurality of network devices 102, 104, 106, and one or more user devices 108, 110, 112, 114, 116, 118.
  • the network may send a page to the UE in the idle state and the connected state, and the terminal may only be in the corresponding paging frame in a period of discontinuous reception (English may be: Discontinuous Reception, English abbreviation: DRX).
  • the physical downlink shared channel indicated by the PDCCH (English may be: Physical Downlink Shared Channel, English abbreviation may be: PDSCH) parameter
  • the paging message includes a paging record list (UE id), Update instruction message systemInfoModificat ion, ETWS, CMAS, eab-ParamModification, and redistributionIndication (inter-frequency redistribution), and specifically refer to the 3GPP 36.331 protocol. If all the UEs detected in one PO detect the P-RNTI, they need to receive the paging message on the PDSCH to know whether there is any paging message for itself.
  • UE id paging record list
  • Update instruction message systemInfoModificat ion ETWS
  • CMAS CMAS
  • eab-ParamModification eab-ParamModification
  • redistributionIndication inter-frequency redistribution
  • a narrow beam is needed to ensure the propagation distance and high beam gain, and beam alignment is performed to ensure communication quality. Therefore, the base station and different users perform different beam pairs during transmission.
  • Some signals that need to be broadcasted by the whole cell need to be transmitted by means of beam traversal to cover the entire cell, such as synchronization signal PSS, SSS, system information MIB, and the like.
  • PSS synchronization signal
  • SSS system information MIB
  • the base station when the network needs to advertise the UE, if the UE is in the idle/inactive state, the high-frequency beam pair may not be maintained between the base station and the UE.
  • the base station needs to pat the UE, it does not know what beam to use.
  • the UE sends the DCI control signal and the paging message in the PO. If the DCI control signal and the paging message are respectively sent to the whole cell beam traversal, the system is oversized.
  • the embodiments of the present application are described below. Although the same terms as LTE may be used in the following embodiments, the meanings and contents may be different from LTE, and other similar or similar meanings may be used. The terminology of the contained content is replaced.
  • the embodiment includes multiple network elements, it does not mean that the solution protected by the present application must include all network elements.
  • the paging moment (English can be Paging Occasion, the abbreviation can be PO) can have the same meaning as LTE, and can also be different from LTE.
  • the paging message may contain the same content as LTE, or it may be different.
  • the P-RNTI can be a fixed value, which can be the same as or different from LTE.
  • the P-RNTI can be a fixed hexadecimal number FFFE or other values.
  • the network device sends paging related information at a specified time, where the paging related information is sent by using a beam scanning manner.
  • periodic transmission is used.
  • the specified time is a paging moment.
  • the UE can receive the message.
  • the message may be in any one of the following 1-6 ways, and the summary of the six modes may be:
  • the user equipment is instructed to receive the information of the paging message, and the paging message (the English may be a paging message);
  • the information indicating whether the user equipment receives the paging message may be a P-RNTI, and may be other identifiers.
  • the resource location information of the paging message may be a PDCCH, further optionally a DCI in the PDCCH, or other information.
  • the resource location information of the partial paging message may be a PDCCH, further optionally a DCI in the PDCCH, or other information.
  • the following information indicating whether the user equipment receives the paging message may be a temporary identifier of the wireless network (English may be Paging Radio Network Temporary Identity, English shorthand may be P) - RNTI), the resource location information of the paging message may be a downlink control signal (English may be Downlink Control Information, English abbreviation may be DCI) DCI, and the resource location information of the partial paging message may be DCI, and the specified time is PO is introduced as an example.
  • the following information indicating whether the user equipment receives the paging message may be a temporary identifier of the wireless network (English may be Paging Radio Network Temporary Identity, English shorthand may be P) - RNTI)
  • the resource location information of the paging message may be a downlink control signal (English may be Downlink Control Information, English abbreviation may be DCI) DCI
  • the resource location information of the partial paging message may be DCI
  • the specified time is PO is introduced as an example.
  • the first type of method is to send the entire contents of the paging message in the PO.
  • mode 1 and mode 2 There are two ways: mode 1 and mode 2:
  • the PO at this time transmits a paging message and a P-RNTI.
  • the PDCCH may not be included. Place the entire contents of the paging message in the PO for omnidirectional beam traversal.
  • the information sent by the PO can be carried on the PDSCH channel or other channels, which is not limited herein.
  • the UE first detects the P-RNTI. If the P-RNTI exists, the UE further receives the paging message in the PO. If the P-RNTI does not exist, the UE does not need to listen to the paging message in the PO.
  • the placement relationship between the P-RNTI and the paging message can be as follows:
  • the UE determines that the PO includes a paging message by blindly detecting the P-RNTI.
  • the paging message and the P-RNTI are placed in the same OFDM symbol (the symbol can be symbol in English), and the paging message and the P-RNTI can be placed in the same or different frequency domain positions of the OFDM symbol respectively, and the frequency domain location can pass the protocol. Book.
  • the UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a paging message, and further demodulates the content of the paging message in the time-frequency resource of the paging message.
  • the paging message and the P-RNTI are placed in a plurality of adjacent OFDM symbols, and the adjacent plurality of symbols can be transmitted through the same one or more beams. Similarly, the paging message and the P-RNTI are respectively placed in the same or different time domain or frequency domain locations of the multiple OFDM symbols, and the time domain or the frequency domain location may be predetermined by a protocol.
  • the UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a paging message, and further demodulates the content of the paging message in the time-frequency resource of the paging message.
  • the advantage of this solution is that the network device is not required to perform beam scanning to send a paging message, and the PDCCH resource indication may not need to be performed.
  • the possible drawback is that the paging message occupies a large amount of time-frequency resources.
  • the PO transmission should be sent by periodic beam scanning, which may not be put together with the PO.
  • the PO transmits a P-RNTI, a PDCCH, and a paging message.
  • a PDCCH (which can carry a control signal such as DCI) that can be scrambled by a P-RNTI, and a paging message (which can be carried by a PDSCH) can be used. Place the entire contents of the paging message in the PO for omnidirectional beam traversal.
  • the DCI in the PDCCH may be frequency-multiplexed with the paging message, placed in the same OFDM symbol in the time domain, or placed in multiple adjacent symbols, and the adjacent multiple symbols may pass the same one. Or multiple beam transmissions.
  • the UE first detects the P-RNTI. If the P-RNTI exists, the UE further receives the paging message in the PO according to the resource indication of the DCI. If the P-RNTI does not exist, the UE does not need to listen to the paging message in the PO.
  • the advantages and disadvantages of this solution are similar to those of mode 1.
  • the advantage is that the base station does not need to perform beam scanning to send the paging message.
  • the disadvantage is that the paging message occupies a large time-frequency resource. It is also possible that the PO should be sent by periodic beam scanning. PO can't be put together.
  • the second type of way is to send a partial paging message message in the PO, which can have mode 3-5:
  • the PO sends a P-RNTI, a partial paging message, and an indication of whether there are other parts of the paging message.
  • a partial paging message is placed in the PO for omnidirectional beam traversal.
  • Whether there is another indication of the partial paging message may be a 1-bit indication message, for example, 0 means that there is no other part of the paging message, and 1 means that there are other parts of the paging message.
  • the channel carrying the paging message and the indication of other partial paging messages at this time may be a PDSCH, or a PDCCH, where the PDCCH may be a newly defined PDCCH format different from LTE, or other channels.
  • the placement relationship between the P-RNTI and the paging message and whether there are other parts of the paging message can be as follows:
  • the UE determines that the PO includes a paging message by blindly detecting the P-RNTI.
  • the P-RNTI and part of the paging message and whether there are other parts of the paging message are placed in the same OFDM symbol (English can be symbol), and the P-RNTI and part of the paging message and whether there are other parts of the paging message
  • the indications may be placed in the same or different frequency domain locations of the OFDM symbol, respectively, and the frequency domain locations may be predetermined by protocol.
  • the UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a partial paging message, and further in the time-frequency resource of the partial paging message and whether there is another indication of the paging message. Demodulate the content of the paging message and whether there are other indications of the paging message;
  • the indication of the P-RNTI and the partial paging message and whether there are other partial paging messages are placed in a plurality of adjacent OFDM symbols, and the adjacent plurality of symbols can be transmitted through the same one or more beams.
  • the part of the paging message and the P-RNTI are respectively placed at the same or different time and/or frequency domain positions of the plurality of OFDM symbols, and the time and/or frequency domain position may be predetermined by a protocol.
  • the UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a paging message, and further demodulates in the time-frequency resource indicating the paging message and other indications of the paging message. The content of the paging message and whether there are other instructions for paging message.
  • the paging message may include paging record list, systemInfoModification, ETWS, CMAS, eab-ParamModification, and redistributionIndication, etc., considering that the paging record list takes a relatively large space and is not very urgent. Instructions, you can not put the paging record list in the PO.
  • the UE If the UE first detects the P-RNTI in the PO, demodulate the paging message in the PO and whether there is another indication of the paging message, and the UE performs a corresponding action according to the indication of the paging message (eg, according to the ETWS indication) System message update), if the "Is there still indication of other partial paging message" indication contains other parts of the paging message, the UE needs to further detect other paging messages not placed in the PO at the corresponding resource location, as shown in FIG.
  • the indication of the paging message eg, according to the ETWS indication
  • the UE needs to further detect other paging messages not placed in the PO at the corresponding resource location, as shown in FIG.
  • the corresponding resource location may be a time-frequency resource location relative to the PO burst set, for example, a P-RNTI scrambled bearer paging in the mth subframe/slot after the PO (slot)
  • the channel of the message where m may be a fixed value or may be configured, the channel may be a PDSCH; or the P-RNTI scrambled PDCCH is first detected in the mth subframe/s lot after the PO, and then the solution is solved according to the
  • the resource of the PDCCH indicates that the paging message is detected at the corresponding resource location, which is not limited herein.
  • the UE blindly detects the paging message sent by the omnidirectional beam scanning, and this solution cannot save the beam scanning overhead;
  • the network device sends, according to the beam information reported by the UE, the beam information is used to indicate information about a beam that the network device can use to send the paging message.
  • the information related to the beam that the network device network device can use to send the paging message is any one or more of the following information: beam ID, OFDM symbol number, antenna port number, slot number, subframe number, radio frame number, Lead sequence.
  • the radio frame shown in FIG. 3 (which may be used in high frequency) is generally transmitted by repeating the synchronization signal block SS block (English may be repeat), and each SS block is transmitted through a different beam to reach the entire coverage.
  • SS block may include one or more OFDM symbols, where a synchronization signal such as a PSS, an SSS, or a system information MIB may be carried, and each OFDM symbol in one SS block may pass one or more identical beams. send.
  • SS block burst We can refer to multiple SS blocks continuously transmitted in the time domain as a synchronization signal block set SS block burst, different SS blocks in the SS block burst are transmitted through different beams, and beam traversal of one or more SS block bursts can be To complete the coverage of the entire cell, we can refer to the one or more SS block bursts as an SS block burst set. Taking SS block set#1 of FIG.
  • N SS block bursts there are N SS block bursts in SS block burst set#1, and N SS block bursts may be time-domain continuous or discontinuous, and these N SS block bursts
  • the information is the same, when the beams of the N SS block bursts are sent differently, in order to achieve the purpose of covering different directions.
  • each UE has its own paging cycle (English may be paging periodicity), and the PO may be the same time as one or more SS burst block sets in the paging cycle.
  • the PO may be the same as the time of the SS burst block set #K, and the PO may be used for the transmission resource block (the grid-filled resource is fast). It is placed together with the SS block (the slash-filled resource block) and transmitted in the same beam as the SS block in frequency division or time division.
  • the paging cycle is an integer multiple of the SS block burst set period, such as N times, and N is a positive integer.
  • the SS block burst set can be numbered, and the SS block burst set number and the radio frame number/subframe number/s lot number can have a corresponding relationship.
  • Each UE calculates its own paging period and detects it in the corresponding PO according to its own paging period. Since the UE may also have multiple beams, the UE does not know which beam to use to detect the PO, and the connected user can perform the operation at any time. Synchronous beam scanning detection maintains a pair of available TX/RX beam pairs. When the detected best TX beam changes, it is reported. The user in the inactive state (such as grant-free) can also maintain a pair of available TX/RX beam pairs by means of uplink grant-free reporting. Users in the idle state may not be able to maintain the available TX/RX beam pairs, and frequent beam scanning and reporting will also waste UE power consumption and signaling overhead.
  • the UE must start detecting the synchronization beams of the N SS block burst sets before N*T before listening to its own PO (if the UE is in idle) In the /inact ive state, the UE wakes up and detects in the N SS block burst sets. If the UE is connected, it directly detects in the N SS block burst sets. For each SS block burst set, a different receiving beam is used. Detection, the available (possibly optimal) receive beam RX of the received signal can be obtained before the PO, thereby using the available receive beam to detect the PO.
  • the UE detects the synchronization beam of the N SS block burst sets and can also obtain the downlink transmission beam TX that meets the signal quality threshold. Since the PO is to perform omnidirectional beam scanning, the UE can only meet the signal quality threshold when detecting the PO. The detection is performed in the time slot of the downlink transmission beam, and may also be detected in the time slot of all the scanning beams of the PO.
  • the available TX/RX beam pairs may include the best TX/RX beam pair. For example, if the UE uses the RX beam to detect that the PO includes the P-RNTI, and the indication "whether there are other parts of the paging message" indicates that the paging message is further included, the UE reports the detected available TX beam information, where TX The beam may be a beam used by the network device to send paging related information to the UE. The UE reports using the obtained available RX beam direction, where the RX beam can receive the used beam for the UE. The UEs in different states can be reported in different manners.
  • the connected UE can be reported by using the uplink control signaling/RRC signaling. If the grant-free is supported, the connected/inactive user can pass the grant-free. If the user is in the idle state, the RACH resource can be reported, and the reporting mode is not limited.
  • the reported beam information may be at least one of a beam ID, an OFDM symbol number symbol index, an antenna port number, a slot number, a subframe number, a radio frame number, and a preamble sequence (which may be a preamble in random access).
  • the base station knows which beams have received the P-RNTI, and then transmits the other partial paging messages to the reported users through the beams at the corresponding resource locations, thereby reducing the overhead of the omnidirectional beam scanning.
  • the resource location interval of the paging message sent by the network device except for the partial paging message sent by the PO (which can be referred to as other paging messages) needs to be greater than or equal to the delay of the UE to report the beam information.
  • the manner in which the user equipment (which may be in the idle state) reports the beam by randomly accessing the RACH resource may be used in any of the following manners:
  • the first mode as described above, the UE directly transmits beam information on the RACH resource, and the base station performs blind detection on the RACH resource.
  • the RACH resource may be used to allocate a time-frequency resource for the UE to report the beam information, and the UE directly sends the beam information on the RACH resource. If the network device receives the P-RNTI, the UE that uses the downlink beam receives the P-RNTI. The downlink beam sends a paging message to the UE.
  • the second mode the protocol can define a set of preambles for the UE to report the beam information, and is not used to initiate the random access.
  • the specific implementation manner is as follows: the UE selects a preamble and sends the preamble on the RACH resource, where the base station is in the A blind detection is performed on the RACH resource by using an omnidirectional beam scanning method. If a certain receiving beam of the base station detects the preamble sent by the UE, the base station considers that the user that is aligned with the receiving beam receives the P-RNTI, and the base station does not Responding to the RAR (random access response), the base station uses the direction of the receiving beam as the direction of the transmitting beam to send other partial paging messages to the user;
  • the third mode a frequency band is allocated in the RACH resource for the UE to report the beam information, the UE sends the preamble in the frequency band, and the base station performs the blind detection on the RACH resource by using the omnidirectional beam scanning mode, if a certain receiving of the base station If the beam receives the preamble sent by the UE on the dedicated frequency band, the base station considers that the user that is in the receiving beam receives the P-RNTI, and the base station does not reply the RAR (random access response) to the UE. The base station uses the direction of the receive beam as the transmit beam direction to send other partial paging messages to the user.
  • the P-RNTI is transmitted at the PO.
  • Omnidirectional beam traversal in PO is also shown in FIG. 6, the P-RNTI is transmitted at the PO.
  • the UE detects the P-RNTI in the PO, all the paging messages are detected at the corresponding resource location, and the subsequent operations may be the same as the scheme of the second mode: the corresponding resource location may be a fixed time-frequency resource relative to the PO burst set.
  • the channel may be a PDSCH; or at the mth after the PO (m may be a fixed value,
  • the PDCCHs that are scrambled by the P-RNTI are first detected in the subframes/slots, and the paging message is detected on the corresponding resource location according to the resource indication of the PDCCH, which is not limited herein.
  • the manner of sending the paging message that is not placed in the PO, and the manner in which the user equipment (which may be in the idle state) reports the beam through the RACH resource may be as described above, and will not be described again.
  • the P-RNTI is sent at the PO, and part of the paging message indicates information about the resource location of the other part of the paging message.
  • the information indicating the resource location of the other part of the paging message may be a DCI control signal, and the DCI may be carried by the PDCCH. This method puts a partial paging message in the PO for omnidirectional beam traversal.
  • the paging message in the part of the PO may be indicated by the PDSCH, the PDCCH (defining a new PDCCH format), or other channel bearers, P-RNTIs and paging messages.
  • the information of the resource location of other parts of the paging message can be the same as that of the mode 1.
  • the UE first detects the P-RNTI in the PO, and then detects a part of the paging message in the PO (if any), and detects other paging messages not placed in the PO according to the resource indication information of the DCI control signal at the corresponding resource location. (Can include paging record list).
  • the manner of sending the partial paging message that is not placed in the PO, and the manner in which the user equipment (which may be in the idle state) reports the beam through the RACH resource may be as described above, and will not be described again.
  • the third type the PO does not send a paging message.
  • the PO transmits a P-RNTI indicating information on the resource location of the paging message.
  • PO does not include a paging message.
  • the information indicating the resource location of the paging message may be a DCI control signal, and the DCI may be carried over the PDCCH.
  • the UE first detects the P-RNTI in the PO, and then detects information indicating the resource location of the paging message, such as DCI, and detects other paging messages that are not placed in the PO according to the resource indication information of the DCI control signal. Contains paging record list).
  • the manner in which the paging message is sent, and the manner in which the user equipment (which may be in the idle state) reports the beam through the RACH resource may be as described above, and will not be described again.
  • the user equipment can notify the network device of the downlink beams of the network device by the user equipment that has received the P-RNTI, and the network device sends the reported user equipment to the reported user equipment at the corresponding resource location by using the downlink beam. Paging message, thereby reducing the overhead of sending other paging messages by omnidirectional beam scanning.
  • the device information reported by the user equipment to the network device may be 202 of FIG. 2, and the network device may send the PON according to the beam information reported by the user equipment. 203. 202 and 203 may be optional processing.
  • FIG. 7 is a schematic block diagram of a user equipment apparatus according to an embodiment of the present application.
  • the apparatus 700 includes a processor 710 and a transceiver 720.
  • the transceiver 720 can also be implemented by a transceiver unit or a transceiver circuit, and the processor 710 can be implemented by one or more units or circuits.
  • the action of the transceiver may be a processor to instruct the transceiver to complete.
  • the device 700 may correspond to the network device in each method embodiment, and may have any function of the network device in the method.
  • the transceiver is configured to send paging related information at a specified time, and the paging related information is sent by using beam scanning.
  • the paging related information includes any one of the following information combinations:
  • the user equipment is instructed to receive the information of the paging message, the resource location information of the paging message, and the paging message;
  • the information indicating whether the user equipment receives the paging message is a radio network temporary identifier P-RNTI, and/or the resource location information of the paging message is downlink control information DCI, and/or the The resource location information of other partial paging messages is DCI, and/or, the designated time is the paging moment PO.
  • the transceiver is further configured to receive beam information sent by the user equipment, where the beam information is used to indicate information about a beam that the network device can use to send a paging message, where the processor is configured according to the beam information. Determining a beam used to transmit other partial paging messages or paging messages; the transceiver is further configured to transmit other partial paging messages or paging messages according to a beam determined by the processor.
  • the information about the beam indicating that the network device network device can send the paging message is any one or more of the following information: a beam ID, an OFDM symbol sequence number, an antenna port number, a slot number, and a subframe number. , wireless frame number.
  • the device is used in a high frequency scene.
  • FIG. 8 is a schematic block diagram of a network device apparatus according to an embodiment of the present application.
  • the apparatus 800 includes a processor 810 and a transceiver 820.
  • the transceiver 820 can also be implemented by a transceiver unit or a transceiver circuit, and the processor 810 can be implemented by one or more units or circuits.
  • the action of the transceiver may be a processor to instruct the transceiver to complete.
  • the device 800 may correspond to the user equipment in each method embodiment, and may have any function of the user equipment in the method.
  • the transceiver is configured to receive paging related information
  • the transceiver is further configured to obtain a paging message according to the paging related information.
  • the transceiver is further configured to obtain, according to the paging related information, a paging message, specifically:
  • the paging related information includes information indicating whether the user equipment receives the paging message, and the paging message, the transceiver detects whether the user equipment is instructed to receive the paging message, and further detects the paging in the paging related information.
  • the paging related information includes information indicating whether the user equipment receives the paging message, the resource location information of the paging message, and the paging message, and the transceiver detects whether the user equipment is instructed to receive the paging message, and further according to the information.
  • the resource location information of the paging message detects a paging message;
  • the paging related information includes information indicating whether the user equipment receives the paging message, and, part of the paging message, and whether there is indication information of other partial paging messages, and the transceiver detects whether the user equipment is instructed to receive the paging.
  • the information of the message further detects part of the paging message, and detects other partial paging messages according to whether there is another indication information of the partial paging message;
  • the paging related information includes information indicating whether the user equipment is instructed to receive the paging message, and the transceiver detects whether the user equipment is instructed to receive the information of the paging message, and then detects the paging message.
  • the paging related information includes information indicating whether the user equipment receives the paging message, and resource location information of other partial paging messages, and a partial paging message, and the transceiver detects whether the user equipment is instructed to receive the paging message.
  • Information detecting a paging message in the paging related message and detecting other partial paging messages according to resource location information of other partial paging messages;
  • the paging related information includes information indicating whether the user equipment receives the paging message, and resource location information of the paging message, and the transceiver detects whether the user equipment is instructed to receive the paging message, and then detects other partial paging messages. Resource location information to detect paging messages.
  • the transceiver sends beam information, where the beam information is used to indicate related information of a beam that the network device can use to send the paging message; the transceiver receiving network device sends other partial paging messages or searches according to the beam information. Call the message.
  • the transceiver transmits the beam information using a random access resource.
  • the processor transmits the preamble sequence using a random access resource.
  • the device is used in a high frequency scene.
  • apparatus 700 and apparatus 800 may also include a memory that may store program code and other stored content, and the processor invokes memory stored program code and other stored content to implement the respective functions of apparatus 700 and apparatus 800.
  • the embodiment of the present application further includes a communication system, including the network device in the foregoing network device embodiment and the user equipment in the user equipment embodiment.
  • the m-th subframe/slot after the PO (slot can be slot) is detected in the P-RNTI scrambled channel carrying the paging message, where m may be a fixed value, It may also be configurable, the channel may be a PDSCH; or the P-RNTI scrambled PDCCH is first detected in the mth subframe/s lot after the PO, and then the corresponding resource location is detected according to the resource indication of the PDCCH that is solved.
  • the description of the paging message may be more clearly described as: detecting P-RNTI plus in n subframes/slots starting from the mth subframe/slot after PO (slot may be in English)
  • the channel carrying the paging message where m, n are positive integers, m, n may be fixed values, or may be matched, the channel may be PDSCH; or the mth subframe /s lot after the PO starts
  • the P-RNTI scrambled PDCCH is first detected in the n subframes/slots, and the paging message is detected on the corresponding resource location according to the resource indication of the solved PDCCH, which is not limited herein.
  • the channel for the channel carrying the paging message scrambled by the P-RNTI after the PO, the channel may be a PDSCH; or the mth after the PO ( m may be a fixed value, or may be configured.)
  • the subframe/slot is first detected by the P-RNTI scrambled PDCCH, and then the paging message is detected according to the resource indication of the PDCCH that is solved, which is not limited herein.
  • a clearer description may be: n subframes/slots starting at the mth subframe/slot after PO (m and n are positive integers, and m and n may be fixed values, or may be ⁇ / RTI> detecting a channel carrying a paging message scrambled by the P-RNTI, the channel may be a PDSCH; or detecting n-subframes/slots starting at the mth subframe/slot after the PO first detecting the P-RNTI scrambled PDCCH Then, according to the resource indication of the PDCCH that is solved, the paging message is detected on the corresponding resource location, which is not limited herein.
  • the description may also be replaced by the sending of the PO to indicate whether the user equipment receives the paging.
  • Message information The information indicating whether the user equipment receives the paging message may be, for example, 1-bit indication information.
  • the UE detects information indicating whether the user equipment receives the paging message in the PO, the paging message is detected at the corresponding resource location, and the subsequent operation may be the same as the scheme of the mode 2: the corresponding resource location may be relative to the PO (because It is possible for the industry to use multiple descriptions for the same physical quantity. Therefore, if the industry understands the concept of SS block burst set, the PO here can also be called PO burst set, where the PO burst set consists of one or more PO bursts.
  • a fixed time-frequency resource location for example, n subframes/time slots starting at the mth after the PO (m and n are positive integers, m and n may be fixed values, and may be matched) to detect the P-RNTI
  • the scrambled channel carrying the paging message may be a fixed hexadecimal FFFE, or may be a fixed value or an unfixed value.
  • the channel may be a PDSCH; or the n-th subframe/slot starting at the mth after the PO first detects the P-RNTI scrambled PDCCH, and the P-RNTI scrambled P-RNTI may be a fixed hexadecimal number
  • the FFFE can also be a fixed value or an unfixed value.
  • the paging message is detected on the corresponding resource location according to the resource indication of the PDCCH, which is not limited herein.
  • paging there may be multiple paging related information for different service types (such as enhanced mobile broadband).
  • service types such as enhanced mobile broadband.
  • eMBB enhanced Mobile Broadband
  • ultra-reliable low-latency communication English can be Ultra-Reliable and Low Latency Communications
  • English abbreviation can be URLLC
  • machine type communication English can be Machine Type Communication
  • the English abbreviation may be used for paging control of UEs such as MTC), such as eMBB paging related information, URLLC paging related information, and MTC paging related information.
  • the values of P-RNTIs included in different kinds of paging related information may be different.
  • different PO resources can be configured for different types of UEs, for example, time-frequency resources corresponding to multiple paging related information, such as time-frequency resources corresponding to eMBB paging related information, and URLLC paging related information.
  • the time-frequency resource, the time-frequency resource corresponding to the MTC paging related information, and the time-frequency resource corresponding to the plurality of paging related information is time division multiplexing or frequency division multiplexing, and FIG. 9 is a frequency division relationship. For example, as shown in FIG.
  • the PO resource can be divided into time-frequency resources corresponding to paging related information of multiple different services, and paging is performed on UEs of different service types, as shown in the figure.
  • PO(s (eMBB) can represent the time-frequency resources corresponding to the eMBB paging related information, because the industry may use multiple descriptions for the same physical quantity, so the PO is followed by s, and the description of the POs can be considered to be similar to the SS block burst.
  • the set is similarly understood, so POs can be considered to refer to one or more PO bursts or one or more PO burst sets.
  • the time-frequency resources corresponding to paging related information of multiple different services may be related to the SS block (synchronous signal block).
  • Time division multiplexing, or frequency division multiplexing (as shown in the figure)
  • the beam for transmitting paging related information by beam scanning may be the same as the beam for transmitting the SS block. If the time-frequency resource and the SS block corresponding to the paging related information are not time division multiplexed or frequency division multiplexed, the beam scanning for transmitting the paging related information may be another round of beam scanning different from the beam scanning for transmitting the synchronization signal. .
  • the message content of the paging information of the various service types and the sending manner of the paging message can be detected by the UE as shown in the foregoing embodiment, and will not be described again.
  • the PO(s) may not exist, and the network may use the PO(s).
  • the (URLLC) resource is used as a PO of other types of services, or the resource is used as a service other than the paging service, so the network can dynamically/semi-statically configure the time-frequency resources of the paging related information.
  • the UE may be sent to the UE in the cell by, for example, a system message broadcast, and a resource configuration message such as paging related information may be employed (the message may also be another name). As shown in FIG. 10, 1001-1003 in FIG.
  • the network device sends a resource configuration message of the paging related information to the user equipment.
  • the resource configuration message of the paging related information is used to indicate information about time-frequency resources corresponding to at least one type of paging related information, for example, two fields are used, where the first field is used to indicate the type of paging related information, and the second field is used.
  • the specific indication method may be indexed or otherwise. Of course, it can also be sent in other ways.
  • the transceiver transceiver in the network device embodiment is further configured to send paging related information at a specified time and a specified frequency band, where the specified time and the specified frequency band belong to multiple paging related information.
  • the transceiver in the network device embodiment is further configured to send a resource configuration message of the paging related information, where the resource configuration message of the paging related information is used to indicate a time frequency corresponding to the at least one paging related information. Resource information.
  • the transceiver transceiver in the foregoing user equipment embodiment is further configured to receive paging related information at a specified time, and further configured to receive paging related information at a specified time and a specified frequency band, where the designation The time and the designated frequency band are one of the time-frequency resources corresponding to the plurality of paging related information.
  • the transceiver in the user equipment embodiment is further configured to receive a resource configuration message of the paging related information, where the resource configuration message of the paging related information is used to indicate a time frequency corresponding to the at least one paging related information. Resource information.
  • the "information indicating whether the user equipment receives the paging message" is corrected to "information indicating that the user equipment receives the paging message"
  • the device of the embodiment of the present invention may be a Field-Programmable Gate Array (FPGA), may be an Application Specific Integrated Circuit (ASIC), or may be a System on Chip (SoC). It can be a Central Processor Unit (CPU), a Network Processor (NP), a Digital Signal Processor (DSP), or a Micro Controller (Micro Controller). Unit, MCU), can also be a Programmable Logic Device (PLD) or other integrated chip.
  • FPGA Field-Programmable Gate Array
  • ASIC Application Specific Integrated Circuit
  • SoC System on Chip
  • CPU Central Processor Unit
  • NP Network Processor
  • DSP Digital Signal Processor
  • MCU Micro Controller
  • MCU Programmable Logic Device
  • PLD Programmable Logic Device
  • the disclosed systems, devices, and methods may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • 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, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

Provided is a paging method, characterized in that a network device sends paging-related information at a designated time, wherein the paging-related information is sent by means of beam scanning. A paging message is obtained by means of paging-related information, thereby reducing the paging overheads.

Description

一种多扇区化天线及通信系统Multi-sector antenna and communication system 技术领域Technical field
本申请涉及通信领域,并且更具体地,涉及一种寻呼方法和装置。The present application relates to the field of communications and, more particularly, to a paging method and apparatus.
背景技术Background technique
为了满足下一代通信系统的大容量需求,引入大于6GHz的高频频段进行通信,以利用大带宽、高速率的传输,是5G通信系统的热点研究技术之一。由于高频通信的高路损,需采用窄波束来保证传播距离和高波束增益,然而窄波束覆盖范围有限,为了保证通信质量,要求BS和UE间进行窄波束对准,这对广播信道、控制信道、同步信道、随机接入信道的设计带来了挑战。现有蜂窝通信系统中上述信道是通过全向天线的收发来实现的,如要要得到现有移动通信系统中的全向覆盖的效果,则需要遍历发送端和接收端所有的定向波束组合,如果收发端均采用定向波束,则上述波束组合的数量非常巨大,将导致高频系统开销的急剧增加。In order to meet the large-capacity requirements of next-generation communication systems, it is one of the hot research technologies of 5G communication systems to introduce high-frequency bands greater than 6 GHz for communication to utilize large-bandwidth and high-rate transmission. Due to the high path loss of high-frequency communication, a narrow beam is needed to ensure the propagation distance and high beam gain. However, the narrow beam coverage is limited. In order to ensure communication quality, narrow beam alignment between the BS and the UE is required. The design of control channels, synchronization channels, and random access channels poses a challenge. In the existing cellular communication system, the above channels are implemented by transmitting and receiving omnidirectional antennas. To obtain the effect of omnidirectional coverage in the existing mobile communication system, it is necessary to traverse all directional beam combinations of the transmitting end and the receiving end. If the transceivers are all directional beams, the number of beam combinations described above is very large, which will lead to a sharp increase in high-frequency system overhead.
并且在NR技术研究中,还没有较好的寻呼机制。And in the NR technology research, there is no better paging mechanism.
发明内容Summary of the invention
本申请提供了一种寻呼的方法或装置。The application provides a method or apparatus for paging.
第一方面,提供了一种寻呼的方法,网络设备在指定时间发送寻呼相关信息,所述寻呼相关信息是采用波束扫描的方式发送的。。In a first aspect, a paging method is provided. The network device sends paging related information at a specified time, and the paging related information is sent by using a beam scanning manner. .
第二方面,提供了一种寻呼的方法,用户设备接收寻呼相关信息;用户设备根据所述寻呼相关信息获得寻呼消息。In a second aspect, a method for paging is provided, where a user equipment receives paging related information; and a user equipment obtains a paging message according to the paging related information.
第三方面,提供了一种网络设备,包括处理器和收发器,收发器用于在指定时间发送寻呼相关信息,所述寻呼相关信息是采用波束扫描的方式发送的。In a third aspect, a network device is provided, including a processor and a transceiver, the transceiver is configured to send paging related information at a specified time, and the paging related information is sent by using a beam scanning manner.
第四方面,提供了一种用户设备,包括:处理器和收发器;其中,收发器用于接收寻呼相关信息;收发器还用于根据所述寻呼相关信息获得寻呼消息。A fourth aspect provides a user equipment, including: a processor and a transceiver; wherein the transceiver is configured to receive paging related information; and the transceiver is further configured to obtain a paging message according to the paging related information.
第五方面,提供了一种计算机存储介质,该计算机存储介质中存储有程序代码,该程序代码可以用于指示执行上述第一至第二方面或其任意可选的实现方式中的方法。In a fifth aspect, a computer storage medium is provided having stored therein program code, the program code being operative to indicate a method of performing the first to second aspects described above, or any alternative implementation thereof.
附图说明DRAWINGS
为了更清楚地说明本发明实施例的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the embodiments or the prior art description will be briefly described below. Obviously, the drawings in the following description are only some of the present invention. For the embodiments, those skilled in the art can obtain other drawings according to the drawings without any creative work.
图1是根据本申请实施例的应用场景图。FIG. 1 is a diagram of an application scenario according to an embodiment of the present application.
图2是本申请实施例的一种寻呼方法的处理示意图。FIG. 2 is a schematic diagram of processing of a paging method according to an embodiment of the present application.
图3是本申请实施例的一种帧结构示意图。FIG. 3 is a schematic diagram of a frame structure of an embodiment of the present application.
图4是本申请实施例的另一种帧结构示意图。FIG. 4 is a schematic diagram of another frame structure of an embodiment of the present application.
图5是本申请实施例的另一种帧结构示意图。FIG. 5 is a schematic diagram of another frame structure of an embodiment of the present application.
图6是本申请实施例的另一种帧结构示意图。FIG. 6 is a schematic diagram of another frame structure of an embodiment of the present application.
图7是根据本申请实施例的一种网络设备装置的示意性框图。FIG. 7 is a schematic block diagram of a network device apparatus according to an embodiment of the present application.
图8是根据本申请实施例的一种用户设备装置的示意性框图。FIG. 8 is a schematic block diagram of a user equipment apparatus according to an embodiment of the present application.
图9是本发明实施例不同业务的寻呼相关信息所对应的时频资源示意图。FIG. 9 is a schematic diagram of time-frequency resources corresponding to paging related information of different services according to an embodiment of the present invention.
图10是本发明实施例的另一个方法流程示意图。FIG. 10 is a schematic flow chart of another method according to an embodiment of the present invention.
具体实施方式detailed description
下面将结合本发明实施例中的附图,对本发明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发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。The technical solutions in the embodiments of the present invention are clearly and completely described in the following with reference to the accompanying drawings in the embodiments of the present invention. It is obvious that the described embodiments are a part of the embodiments of the present invention, but not all embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without creative efforts are within the scope of the present invention.
在本说明书中使用的术语“部件”、“模块”、“系统”等用于表示计算机相关的实体、硬件、固件、硬件和软件的组合、软件、或执行中的软件。例如,部件可以是但不限于,在处理器上运行的进程、处理器、对象、可执行文件、执行线程、程序和/或计算机。通过图示,在计算设备上运行的应用和计算设备都可以是部件。一个或多个部件可驻留在进程和/或执行线程中,部件可位于一个计算机上和/或分布在2个或更多个计算机之间。此外,这些部件可从在上面存储有各种数据结构的各种计算机可读介质执行。部件可例如根据具有一个或多个数据分组(例如来自与本地系统、分布式系统和/或网络间的另一部件交互的二个部件的数据,例如通过信号与其它系统交互的互联网)的信号通过本地和/或远程进程来通信。The terms "component," "module," "system," and the like, as used in this specification, are used to mean a computer-related entity, hardware, firmware, a combination of hardware and software, software, or software in execution. For example, a component can be, but is not limited to being, a process running on a processor, a processor, an object, an executable, a thread of execution, a program, and/or a computer. By way of illustration, both an application running on a computing device and a computing device can be a component. One or more components can reside within a process and/or execution thread, and the components can be located on one computer and/or distributed between two or more computers. Moreover, these components can execute from various computer readable media having various data structures stored thereon. A component may, for example, be based on signals having one or more data packets (eg, data from two components interacting with another component between the local system, the distributed system, and/or the network, such as the Internet interacting with other systems) Communicate through local and/or remote processes.
应理解,本发明实施例的技术方案可以应用于各种通信系统,例如:全球移动通讯(Global System of Mobile Communication,简称为“GSM”)系统、码分多址(Code Division Multiple Access,简称为“CDMA”)系统、宽带码分多址(Wideband Code Division Multiple Access,简称为“WCDMA”)系统、长期演进(Long Term Evolution,简称为“LTE”)系统、LTE频分双工(Frequency Division Duplex,简称为“FDD”)系统、LTE时分双工(Time Division Duplex,简称为“TDD”)、通用移动通信系统(Universal Mobile Telecommunication System,简称为“UMTS”)、以及未来的5G通信系统等。It should be understood that the technical solutions of the embodiments of the present invention can be applied to various communication systems, for example, Global System of Mobile Communication ("GSM") system, Code Division Multiple Access (Code Division Multiple Access, referred to as "CDMA") system, Wideband Code Division Multiple Access (WCDMA) system, Long Term Evolution (LTE) system, LTE frequency division duplex (Frequency Division Duplex) , referred to as "FDD" system, LTE Time Division Duplex ("TDD"), Universal Mobile Telecommunication System (UMTS), and future 5G communication systems.
本发明结合用户设备描述了各个实施例。用户设备也可以指接入终端、用户单元、用户站、移动站、移动台、远方站、远程终端、移动设备、用户终端、终端、无线通信设备、用户代理或用户装置。接入终端可以是蜂窝电话、无绳电话、会话启动协议(Session Initiation Protocol,简称为“SIP”)电话、无线本地环路(Wireless Local Loop,简称为“WLL”)站、个人数字处理(Personal Digital Assistant,简称为“PDA”)、具有无线通信功能的手持设备、计算设备或连接到无线调制解调器的其它处理设备、车载设备、可穿戴设备,未来5G网络中的用户设备或者未来演进的PLMN网络中的用户设备等。The present invention describes various embodiments in connection with user equipment. A user equipment may also refer to an access terminal, subscriber unit, subscriber station, mobile station, mobile station, remote station, remote terminal, mobile device, user terminal, terminal, wireless communication device, user agent, or user device. The access terminal may be a cellular phone, a cordless phone, a Session Initiation Protocol ("SSIP") phone, a Wireless Local Loop (WLL) station, and a personal digital processing (Personal Digital) Assistant, referred to as "PDA"), a handheld device with wireless communication capabilities, a computing device or other processing device connected to a wireless modem, an in-vehicle device, a wearable device, a user device in a future 5G network, or a future evolved PLMN network. User equipment, etc.
本发明结合网络设备描述了各个实施例。网络设备可以是用于与用户设备进行通信的设备,例如,可以是GSM系统或CDMA中的基站(Base Transceiver Station,简称为“BTS”),也可以是WCDMA系统中的基站(NodeB,简称为“NB”),还可以是LTE系统中的演进型基站(Evolutional Node B,简称为“eNB”或“eNodeB”),或者该网络设备可以为中继站、接入点、车载设备、可穿戴设备以及未来5G网络中的网络侧设备或未来演进的PLMN网络中的网络设备等。The present invention describes various embodiments in connection with a network device. The network device may be a device for communicating with the user equipment, for example, may be a base station (Base Transceiver Station, abbreviated as "BTS") in the GSM system or CDMA, or may be a base station (NodeB in the WCDMA system, referred to as "NB") may also be an evolved base station (Evolutional Node B, "eNB" or "eNodeB") in the LTE system, or the network device may be a relay station, an access point, an in-vehicle device, a wearable device, and A network side device in a future 5G network or a network device in a future evolved PLMN network.
本申请实施例中的“A和/或B”表示A,或,B,或,A和B三种关系。"A and/or B" in the embodiment of the present application means A, or B, or A and B.
如图1所示,本发明实施例可以适用于一个通信网络100,该通信网络中有多个网络设备102、104、106,和一个或多个用户设备108、110、112、114、116、118。As shown in FIG. 1, the embodiment of the present invention can be applied to a communication network 100 having a plurality of network devices 102, 104, 106, and one or more user devices 108, 110, 112, 114, 116, 118.
在LTE中,网络可以向空闲状态和连接状态的UE发送寻呼,终端在一个非连续接收(英文可以为:Discontinuous Reception,英文缩写可以为:DRX)周期内,可以只在相应的寻呼帧(英文可以为:Paging frame,英文缩写可以为:PF)的寻呼时刻(英文可以为:Paging Occasion,英文缩写可以为:PO)去监听该PO的下行物理控制信道(英文可以为:Physical Downlink Control Channel,英文缩写可以为:PDCCH)有没有携带无线网络临时标识(英文可以为:paging radio network temporary identity,英文缩写可以为:P-RNTI),每个UE可计算出自己的寻呼周期,并根据自己的paging周期在相应的PO进行检测,若该PO的PDCCH携带P-RNTI,则根据PDCCH指示的物理下行共享信道(英文可以为:Physical Downlink Shared Channel,英文缩写可以为:PDSCH)参数去接收该PO中PDSCH上的寻呼消息,寻呼消息包括paging record list(UE id),系统消息更新指示systemInfoModificat ion,ETWS,CMAS,eab-ParamModification,以及 redistributionIndication(inter-frequency redistribution)等,具体可以参见3GPP中的36.331协议。所有在一个PO中检测的UE若检测到P-RNTI,都需要去接收PDSCH上的paging消息,才能知道有没有针对自己的paging消息。In LTE, the network may send a page to the UE in the idle state and the connected state, and the terminal may only be in the corresponding paging frame in a period of discontinuous reception (English may be: Discontinuous Reception, English abbreviation: DRX). (English can be: Paging frame, English abbreviation can be: PF) paging time (English can be: Paging Occasion, English abbreviation can be: PO) to listen to the PO's downlink physical control channel (English can be: Physical Downlink Control Channel, the English abbreviation can be: PDCCH) Whether there is a temporary identifier of the wireless network (English can be: paging radio network temporary identity, English abbreviation can be: P-RNTI), each UE can calculate its own paging cycle, And detecting the corresponding PO according to its own paging period. If the PDCCH of the PO carries the P-RNTI, the physical downlink shared channel indicated by the PDCCH (English may be: Physical Downlink Shared Channel, English abbreviation may be: PDSCH) parameter Receiving a paging message on the PDSCH in the PO, the paging message includes a paging record list (UE id), Update instruction message systemInfoModificat ion, ETWS, CMAS, eab-ParamModification, and redistributionIndication (inter-frequency redistribution), and specifically refer to the 3GPP 36.331 protocol. If all the UEs detected in one PO detect the P-RNTI, they need to receive the paging message on the PDSCH to know whether there is any paging message for itself.
在高频通信过程中需采用窄波束来保证传播距离和高波束增益,并进行波束对准来保证通信质量,因而基站与不同用户在传输的过程中,会在不同的波束对上进行。一些需要全小区广播的信号则需要通过波束遍历的方式发送以对整小区进行覆盖,如同步信号PSS,SSS,系统信息MIB等。高频系统中,当网络需要对UE进行paging,若UE处于idle/inactive态,基站和UE之间可能并没有维护高频的波束对,基站需要对UE进行paging时,不知道用什么波束给UE发送PO中的DCI控制信号和paging消息,若分别对DCI控制信号和paging消息进行全小区波束遍历发送,则导致系统overhead较大。In the high-frequency communication process, a narrow beam is needed to ensure the propagation distance and high beam gain, and beam alignment is performed to ensure communication quality. Therefore, the base station and different users perform different beam pairs during transmission. Some signals that need to be broadcasted by the whole cell need to be transmitted by means of beam traversal to cover the entire cell, such as synchronization signal PSS, SSS, system information MIB, and the like. In a high-frequency system, when the network needs to advertise the UE, if the UE is in the idle/inactive state, the high-frequency beam pair may not be maintained between the base station and the UE. When the base station needs to pat the UE, it does not know what beam to use. The UE sends the DCI control signal and the paging message in the PO. If the DCI control signal and the paging message are respectively sent to the whole cell beam traversal, the system is oversized.
下面对本申请各实施例进行介绍,虽然在下面的实施例中可能会使用和LTE相同的术语,但其含义和包含的内容可能和LTE有所不同,并且也可以采用有其他相同或类似含义和包含的内容的术语相替代。另外虽然实施例包括多个网元,但并不表示本申请保护的方案必须包括所有的网元。比如寻呼时刻(英文可以为Paging Occasion,缩写可以为PO)可以和LTE相同含义,也可以和LTE中的不同。比如paging message包括的内容可以和LTE一样,也可以不一样。又比如P-RNTI可以为一个固定的数值,可以和LTE一样,也可以不一样,P-RNTI可以为固定的十六进制数FFFE,也可以是别的数值。The embodiments of the present application are described below. Although the same terms as LTE may be used in the following embodiments, the meanings and contents may be different from LTE, and other similar or similar meanings may be used. The terminology of the contained content is replaced. In addition, although the embodiment includes multiple network elements, it does not mean that the solution protected by the present application must include all network elements. For example, the paging moment (English can be Paging Occasion, the abbreviation can be PO) can have the same meaning as LTE, and can also be different from LTE. For example, the paging message may contain the same content as LTE, or it may be different. For example, the P-RNTI can be a fixed value, which can be the same as or different from LTE. The P-RNTI can be a fixed hexadecimal number FFFE or other values.
图2是根据本申请实施例的一种寻呼方法。2 is a paging method in accordance with an embodiment of the present application.
201:网络设备在指定时间发送寻呼相关信息,所述寻呼相关信息是采用波束扫描的方式发送的。可选地,是采用周期性发送。可选地,指定时间是寻呼时刻。可选地,向UE发送。201: The network device sends paging related information at a specified time, where the paging related information is sent by using a beam scanning manner. Optionally, periodic transmission is used. Optionally, the specified time is a paging moment. Optionally, sending to the UE.
UE可以接收该消息。The UE can receive the message.
该消息可以采用如下至少1-6种方式中的任一种方式,这6种方式总结可以为:The message may be in any one of the following 1-6 ways, and the summary of the six modes may be:
1.是否指示用户设备接收寻呼消息的信息,和,寻呼消息(英文可以为paging message);1. Whether the user equipment is instructed to receive the information of the paging message, and the paging message (the English may be a paging message);
2.是否指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息;2. Whether the user equipment is instructed to receive the information of the paging message, the resource location information of the paging message, and the paging message;
3.是否指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息;3. Whether the user equipment is instructed to receive the information of the paging message, and, in part, the paging message, and whether there is other indication information of the partial paging message;
4.是否指示用户设备接收寻呼消息的信息;4. Whether to indicate that the user equipment receives the information of the paging message;
5.是否指示用户设备接收寻呼消息的信息,和,部分寻呼消息的资源位置信息,和,部分寻呼消息;5. Whether the user equipment is instructed to receive the information of the paging message, and the resource location information of the partial paging message, and the partial paging message;
6.是否指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息。6. Whether the user equipment is instructed to receive the information of the paging message, and the resource location information of the paging message.
其中,是否指示用户设备接收寻呼消息的信息可以为P-RNTI,当然也可以是其他标识。寻呼消息的资源位置信息可以是PDCCH,进一步可选地是PDCCH中的DCI,也可以是其他信息。该部分寻呼消息的资源位置信息可以是PDCCH,进一步可选地是PDCCH中的DCI,也可以是其他信息。The information indicating whether the user equipment receives the paging message may be a P-RNTI, and may be other identifiers. The resource location information of the paging message may be a PDCCH, further optionally a DCI in the PDCCH, or other information. The resource location information of the partial paging message may be a PDCCH, further optionally a DCI in the PDCCH, or other information.
上述6中方式还可以归纳为如下三种类型,为了方便描述,下面以是否指示用户设备接收寻呼消息的信息可以为无线网络临时标识(英文可以为Paging Radio Network Temporary Identity,英文简写可以为P-RNTI),寻呼消息的资源位置信息可以是下行控制信号(英文可以为Downlink Control Information,英文简写可以为DCI)DCI,和该部分寻呼消息的资源位置信息可以是DCI,和指定时间是PO为例进行介绍。The above 6 manners can also be summarized into the following three types. For convenience of description, the following information indicating whether the user equipment receives the paging message may be a temporary identifier of the wireless network (English may be Paging Radio Network Temporary Identity, English shorthand may be P) - RNTI), the resource location information of the paging message may be a downlink control signal (English may be Downlink Control Information, English abbreviation may be DCI) DCI, and the resource location information of the partial paging message may be DCI, and the specified time is PO is introduced as an example.
第一种类型的方式为在PO发送paging message的全部内容,可以有方式1和方式2 两种方式:The first type of method is to send the entire contents of the paging message in the PO. There are two ways: mode 1 and mode 2:
方式1:Method 1:
如图4所示,此时的PO发送paging message和P-RNTI。可以不包括PDCCH。将paging message的全部内容放在PO中进行全向波束遍历。As shown in FIG. 4, the PO at this time transmits a paging message and a P-RNTI. The PDCCH may not be included. Place the entire contents of the paging message in the PO for omnidirectional beam traversal.
此时PO发送的信息可以通过PDSCH信道承载,或者其它信道,这里不做限定。UE先检测出P-RNTI,若P-RNTI存在,则UE进一步接收PO中的paging message;若P-RNTI不存在,则UE无需监听该PO中的paging message。The information sent by the PO can be carried on the PDSCH channel or other channels, which is not limited herein. The UE first detects the P-RNTI. If the P-RNTI exists, the UE further receives the paging message in the PO. If the P-RNTI does not exist, the UE does not need to listen to the paging message in the PO.
P-RNTI和paging message的放置关系可以是如下几种:The placement relationship between the P-RNTI and the paging message can be as follows:
1.使用P-RNTI对承载paging message的信道加扰。UE则通过盲检出P-RNTI,从而判断该PO包含paging消息;1. Use P-RNTI to scramble the channel carrying the paging message. The UE determines that the PO includes a paging message by blindly detecting the P-RNTI.
2.paging message和P-RNTI放在同一个OFDM符号(英文可以为symbol)中,且paging message和P-RNTI可以分别放在该OFDM symbol的相同或不同频域位置,频域位置可以通过协议预定。UE首先检测P-RNTI的时频资源位置,若UE检测到P-RNTI,则判断该PO包含paging消息,并进一步在paging message的时频资源中解调出paging message的内容;2. The paging message and the P-RNTI are placed in the same OFDM symbol (the symbol can be symbol in English), and the paging message and the P-RNTI can be placed in the same or different frequency domain positions of the OFDM symbol respectively, and the frequency domain location can pass the protocol. Book. The UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a paging message, and further demodulates the content of the paging message in the time-frequency resource of the paging message.
3.paging message和P-RNTI放在相邻的多个OFDM symbol里,该相邻多个symbol可以通过相同一个或多个波束发送。同样的,该paging message和P-RNTI分别放在该多个OFDM symbol的相同或不同时域或频域位置,时域或频域位置可以通过协议预定。UE首先检测P-RNTI的时频资源位置,若UE检测到P-RNTI,则判断该PO包含paging消息,并进一步在paging message的时频资源中解调出paging message的内容。3. The paging message and the P-RNTI are placed in a plurality of adjacent OFDM symbols, and the adjacent plurality of symbols can be transmitted through the same one or more beams. Similarly, the paging message and the P-RNTI are respectively placed in the same or different time domain or frequency domain locations of the multiple OFDM symbols, and the time domain or the frequency domain location may be predetermined by a protocol. The UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a paging message, and further demodulates the content of the paging message in the time-frequency resource of the paging message.
本方案的好处是不需要网络设备重新进行波束扫描发送paging message,且可以不需要进行PDCCH资源指示。但是,也可能存在的弊端是paging message占用时频资源可能较大。在PO发送应该是周期性波束扫描发送的,可能和PO放不到一起The advantage of this solution is that the network device is not required to perform beam scanning to send a paging message, and the PDCCH resource indication may not need to be performed. However, the possible drawback is that the paging message occupies a large amount of time-frequency resources. The PO transmission should be sent by periodic beam scanning, which may not be put together with the PO.
方式2:Method 2:
如图5所示,PO发送P-RNTI,PDCCH,以及paging message。As shown in FIG. 5, the PO transmits a P-RNTI, a PDCCH, and a paging message.
其中,可以用P-RNTI加扰的PDCCH(可以携带控制信号如DCI),以及paging message(可以由PDSCH承载)。将paging message的全部内容放在PO中进行全向波束遍历。Among them, a PDCCH (which can carry a control signal such as DCI) that can be scrambled by a P-RNTI, and a paging message (which can be carried by a PDSCH) can be used. Place the entire contents of the paging message in the PO for omnidirectional beam traversal.
可选地,PDCCH中的DCI可以和paging message可以频分复用,时域上放在同一个OFDM符号中;或者放在相邻的多个symbol里,该相邻多个symbol可以通过相同一个或多个波束发送。Optionally, the DCI in the PDCCH may be frequency-multiplexed with the paging message, placed in the same OFDM symbol in the time domain, or placed in multiple adjacent symbols, and the adjacent multiple symbols may pass the same one. Or multiple beam transmissions.
UE先检测出P-RNTI,若P-RNTI存在,则UE进一步根据DCI的资源指示接收PO中的paging message;若P-RNTI不存在,则UE无需监听该PO中的paging message。The UE first detects the P-RNTI. If the P-RNTI exists, the UE further receives the paging message in the PO according to the resource indication of the DCI. If the P-RNTI does not exist, the UE does not need to listen to the paging message in the PO.
本方案的利弊和方式1相似,好处是不需要基站重新进行波束扫描发送paging message,存在的弊端是paging message占用时频资源可能较大,也有可能PO应该是周期性波束扫描发送的,可能和PO放不到一起。The advantages and disadvantages of this solution are similar to those of mode 1. The advantage is that the base station does not need to perform beam scanning to send the paging message. The disadvantage is that the paging message occupies a large time-frequency resource. It is also possible that the PO should be sent by periodic beam scanning. PO can't be put together.
第二种类型的方式为在PO发送部分paging message消息,可以有方式3-5:The second type of way is to send a partial paging message message in the PO, which can have mode 3-5:
方式3:Method 3:
如图6所示,在PO发送P-RNTI,部分paging message以及是否还有其他部分paging message的指示。将部分paging message放在PO中进行全向波束遍历。As shown in FIG. 6, the PO sends a P-RNTI, a partial paging message, and an indication of whether there are other parts of the paging message. A partial paging message is placed in the PO for omnidirectional beam traversal.
是否还有其他部分paging message的指示可以是1比特的指示消息,举例地指示为0代表没有其他部分paging message,为1则代表还有其他部分paging message。此时承载paging message和是否还有其他部分paging message的指示的信道可以是PDSCH,或者PDCCH,其中PDCCH可以是一个与LTE不同的新定义的PDCCH格式,或者其它信道。Whether there is another indication of the partial paging message may be a 1-bit indication message, for example, 0 means that there is no other part of the paging message, and 1 means that there are other parts of the paging message. The channel carrying the paging message and the indication of other partial paging messages at this time may be a PDSCH, or a PDCCH, where the PDCCH may be a newly defined PDCCH format different from LTE, or other channels.
P-RNTI和paging message和是否还有其他部分paging message的指示的放置关系可 以是如下几种:The placement relationship between the P-RNTI and the paging message and whether there are other parts of the paging message can be as follows:
1.使用P-RNTI对承载paging message和是否还有其他部分paging message的指示的信道加扰。UE则通过盲检出P-RNTI,从而判断该PO包含paging消息;1. Use the P-RNTI to scramble the channel carrying the paging message and whether there are indications of other partial paging messages. The UE determines that the PO includes a paging message by blindly detecting the P-RNTI.
2.P-RNTI和部分paging message和是否还有其他部分paging message的指示放在同一个OFDM符号(英文可以为symbol)中,且P-RNTI和部分paging message和是否还有其他部分paging message的指示可以分别放在该OFDM symbol的相同或不同频域位置,频域位置可以通过协议预定。UE首先检测P-RNTI的时频资源位置,若UE检测到P-RNTI,则判断该PO包含部分paging消息,并进一步在部分paging message和是否还有其他部分paging message的指示的时频资源中解调出paging message的内容和是否还有其他部分paging message的指示;2. The P-RNTI and part of the paging message and whether there are other parts of the paging message are placed in the same OFDM symbol (English can be symbol), and the P-RNTI and part of the paging message and whether there are other parts of the paging message The indications may be placed in the same or different frequency domain locations of the OFDM symbol, respectively, and the frequency domain locations may be predetermined by protocol. The UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a partial paging message, and further in the time-frequency resource of the partial paging message and whether there is another indication of the paging message. Demodulate the content of the paging message and whether there are other indications of the paging message;
P-RNTI和部分paging message和是否还有其他部分paging message的指示放在相邻的多个OFDM symbol里,该相邻多个symbol可以通过相同一个或多个波束发送。同样的,该部分paging message和P-RNTI分别放在该多个OFDM symbol的相同或不同时和/或频域位置,时和/或频域位置可以通过协议预定。UE首先检测P-RNTI的时频资源位置,若UE检测到P-RNTI,则判断该PO包含paging消息,并进一步在paging message和是否还有其他部分paging message的指示的时频资源中解调出paging message的内容和是否还有其他部分paging message的指示。The indication of the P-RNTI and the partial paging message and whether there are other partial paging messages are placed in a plurality of adjacent OFDM symbols, and the adjacent plurality of symbols can be transmitted through the same one or more beams. Similarly, the part of the paging message and the P-RNTI are respectively placed at the same or different time and/or frequency domain positions of the plurality of OFDM symbols, and the time and/or frequency domain position may be predetermined by a protocol. The UE first detects the time-frequency resource location of the P-RNTI. If the UE detects the P-RNTI, it determines that the PO includes a paging message, and further demodulates in the time-frequency resource indicating the paging message and other indications of the paging message. The content of the paging message and whether there are other instructions for paging message.
根据LTE中36.331协议中的paging message介绍,paging message可以包括paging record list,systemInfoModification,ETWS,CMAS,eab-ParamModification,以及redistributionIndication等,考虑到paging record list占用空间相对较大,且不是很紧急的消息指示,可以不把paging record list放在PO中。According to the paging message in the 36.331 protocol in LTE, the paging message may include paging record list, systemInfoModification, ETWS, CMAS, eab-ParamModification, and redistributionIndication, etc., considering that the paging record list takes a relatively large space and is not very urgent. Instructions, you can not put the paging record list in the PO.
若UE在PO中先检测出P-RNTI,则解调出该PO中的paging message和是否还有其他部分paging message的指示,UE根据paging message的指示进行相应的动作(如根据ETWS指示去接收系统消息更新),同时若“是否还有其他部分paging message的指示”指示包含其他部分paging message,则UE需要进一步在相应的资源位置检测其它没有放在PO中的paging message,如图4所示,该相应的资源位置可以是相对该PO burst set一定范围的时频资源位置,例如在PO之后的第m个子帧/时隙(英文可以为s lot)中检测P-RNTI加扰的承载paging message的信道,其中m可以是固定的值,也可以可配,该信道可以是PDSCH;或者在PO之后的第m个子帧/s lot中首先检测P-RNTI加扰的PDCCH,再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定,If the UE first detects the P-RNTI in the PO, demodulate the paging message in the PO and whether there is another indication of the paging message, and the UE performs a corresponding action according to the indication of the paging message (eg, according to the ETWS indication) System message update), if the "Is there still indication of other partial paging message" indication contains other parts of the paging message, the UE needs to further detect other paging messages not placed in the PO at the corresponding resource location, as shown in FIG. The corresponding resource location may be a time-frequency resource location relative to the PO burst set, for example, a P-RNTI scrambled bearer paging in the mth subframe/slot after the PO (slot) The channel of the message, where m may be a fixed value or may be configured, the channel may be a PDSCH; or the P-RNTI scrambled PDCCH is first detected in the mth subframe/s lot after the PO, and then the solution is solved according to the The resource of the PDCCH indicates that the paging message is detected at the corresponding resource location, which is not limited herein.
其它没有放在PO中的paging message的发送方式可以采用如下但不限定的任一种方式:Other ways of sending the paging message that is not placed in the PO may be in any of the following ways:
1.通过全向波束扫描发送,UE则盲检全向波束扫描发送的paging message,这种方案则不能节省波束扫描开销;1. Through the omnidirectional beam scanning transmission, the UE blindly detects the paging message sent by the omnidirectional beam scanning, and this solution cannot save the beam scanning overhead;
2.网络设备根据UE上报的波束信息来发送,该波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息。该指示网络设备网络设备可用来发送寻呼消息的波束的相关信息为如下任一种或多种信息:波束ID,OFDM符号序号,天线端口号,时隙号,子帧号,无线帧号,前导序列。2. The network device sends, according to the beam information reported by the UE, the beam information is used to indicate information about a beam that the network device can use to send the paging message. The information related to the beam that the network device network device can use to send the paging message is any one or more of the following information: beam ID, OFDM symbol number, antenna port number, slot number, subframe number, radio frame number, Lead sequence.
如图3所示的无线帧(可以是用在高频中),一般会对同步信号块SS block进行重复(英文可以为repeat)发送,每个SS block通过不同的波束发送,以达到覆盖整个小区的目的。每个SS block可包含一个或两个以上的OFDM符号,其中携带同步信号比如PSS,SSS,还可以携带系统信息MIB等,一个SS block中的每个OFDM符号可通过一个或多个相同的波束发送。我们可以把在时域上连续发送的多个SS block称为一个同步信号块集合SS block burst,SS block burst中的不同SS block通过不同的波束发送,一个或多个SS block burst的波束遍历可以完成整个小区的覆盖,我们则可以把这一个或多个SS  block burst称为一个SS block burst set。以图3的SS block set#1为例,SS block burst set#1中有N个SS block burst,N个SS block burst可以是时域连续也可以是不连续的,这N个SS block burst中的信息是一样的,当发送N个SS block burst的波束不同,以便于达到完成覆盖不同方向的目的。The radio frame shown in FIG. 3 (which may be used in high frequency) is generally transmitted by repeating the synchronization signal block SS block (English may be repeat), and each SS block is transmitted through a different beam to reach the entire coverage. The purpose of the community. Each SS block may include one or more OFDM symbols, where a synchronization signal such as a PSS, an SSS, or a system information MIB may be carried, and each OFDM symbol in one SS block may pass one or more identical beams. send. We can refer to multiple SS blocks continuously transmitted in the time domain as a synchronization signal block set SS block burst, different SS blocks in the SS block burst are transmitted through different beams, and beam traversal of one or more SS block bursts can be To complete the coverage of the entire cell, we can refer to the one or more SS block bursts as an SS block burst set. Taking SS block set#1 of FIG. 3 as an example, there are N SS block bursts in SS block burst set#1, and N SS block bursts may be time-domain continuous or discontinuous, and these N SS block bursts The information is the same, when the beams of the N SS block bursts are sent differently, in order to achieve the purpose of covering different directions.
一般每个UE有自己的寻呼周期(英文可以为paging periodicity),PO可以是在寻呼周期中的一个或多个的SS burst block set一样的时间。以图3为例,以一个用户设备的寻呼周期和PO为例,PO可以是和SS burst block set#K的时间相同,可以将PO对于的传输资源块(方格线填充的资源快)和SS block(斜线填充的资源块)放在一起,采用频分方式或时分方式,通过和SS block相同的波束发送。Generally, each UE has its own paging cycle (English may be paging periodicity), and the PO may be the same time as one or more SS burst block sets in the paging cycle. Taking FIG. 3 as an example, taking the paging cycle and PO of a user equipment as an example, the PO may be the same as the time of the SS burst block set #K, and the PO may be used for the transmission resource block (the grid-filled resource is fast). It is placed together with the SS block (the slash-filled resource block) and transmitted in the same beam as the SS block in frequency division or time division.
则寻呼周期为SS block burst set周期的整数倍,比如N倍,N为正整数。SS block burst set可以有编号,SS block burst set的编号和无线帧号/子帧号/s lot号可以有对应关系。The paging cycle is an integer multiple of the SS block burst set period, such as N times, and N is a positive integer. The SS block burst set can be numbered, and the SS block burst set number and the radio frame number/subframe number/s lot number can have a corresponding relationship.
每个UE会计算自己的paging周期,并根据自己的paging周期在相应的PO中进行检测,由于UE也可能有多个波束,UE不知道用哪个波束去检测PO,connected态的用户可以随时进行同步波束扫描检测,维护一对可用TX/RX波束对。当检测的最佳TX波束发生改变则进行上报,inact ive态(比如支持grant-free的)用户也可以通过上行grant-free上报的方式维护一对可用TX/RX波束对。而idle态的用户则可能无法维护可用TX/RX波束对,同时频繁的进行波束扫描和上报也会浪费UE的功耗和信令开销。假设UE的波束个数为N,而SS block burst set的周期为T,则UE在监听自己的PO之前须在N*T之前开始检测这N个SS block burst set的同步波束(若UE处于idle/inact ive态则UE在这N个SS block burst set时醒来并检测,若UE处于connected则直接在这N个SS block burst set检测),对于每个SS block burst set分别用不同的接收波束检测,则可以在PO之前得到接收信号的可用(可以是最佳的)的接收波束RX,从而使用该可用接收波束来检测PO。UE检测这N个SS block burst set的同步波束也可以获得符合信号质量门限的下行发送波束TX,由于PO是要进行全向波束扫描的,从而UE在检测PO时,可以只在符合信号质量门限的下行发送波束的时隙中进行检测,也可以在该PO的所有扫描波束的时隙中检测。Each UE calculates its own paging period and detects it in the corresponding PO according to its own paging period. Since the UE may also have multiple beams, the UE does not know which beam to use to detect the PO, and the connected user can perform the operation at any time. Synchronous beam scanning detection maintains a pair of available TX/RX beam pairs. When the detected best TX beam changes, it is reported. The user in the inactive state (such as grant-free) can also maintain a pair of available TX/RX beam pairs by means of uplink grant-free reporting. Users in the idle state may not be able to maintain the available TX/RX beam pairs, and frequent beam scanning and reporting will also waste UE power consumption and signaling overhead. Assuming that the number of beams of the UE is N and the period of the SS block burst set is T, the UE must start detecting the synchronization beams of the N SS block burst sets before N*T before listening to its own PO (if the UE is in idle) In the /inact ive state, the UE wakes up and detects in the N SS block burst sets. If the UE is connected, it directly detects in the N SS block burst sets. For each SS block burst set, a different receiving beam is used. Detection, the available (possibly optimal) receive beam RX of the received signal can be obtained before the PO, thereby using the available receive beam to detect the PO. The UE detects the synchronization beam of the N SS block burst sets and can also obtain the downlink transmission beam TX that meets the signal quality threshold. Since the PO is to perform omnidirectional beam scanning, the UE can only meet the signal quality threshold when detecting the PO. The detection is performed in the time slot of the downlink transmission beam, and may also be detected in the time slot of all the scanning beams of the PO.
如果UE在监听自己的PO之前已经获得可用的TX/RX波束对,可用的TX/RX波束对可以包括最佳的TX/RX波束对。举例地,若UE使用RX波束检测到该PO包含P-RNTI,且“是否还有其他部分paging message的指示”指示还包含其他部分paging message,则UE上报检测的可用的TX波束信息,其中TX波束可以为网络设备给UE发送寻呼相关信息所使用的波束。UE使用获得的可用的RX波束方向来进行上报,其中RX波束可以为UE接收所使用的波束。这里不同状态下的UE可以通过不同的方式上报,connected态的UE可以使用上行控制信令/RRC信令等方式上报,若支持grant-free,则connected/inact ive的用户可通过上行grant-free上报,idle态的用户则可以通过RACH资源上报,等等,上报方式不作限定。上报的波束信息可以是波束ID,OFDM符号序号symbol index,天线端口号,时隙号,子帧号,无线帧号,前导序列(可以是随机接入中的preamble)的至少一种。基站则知道有哪些波束有用户收到了P-RNTI,则通过这些波束在相应的资源位置给上报的用户发送其他部分paging message,从而减少了全向波束扫描的开销。需要注意的是网络设备发送除在PO中发送的部分paging message外的paging message(可以简称其他paging message)的资源位置间隔该PO burst set的时长需要大于或等于UE进行上报波束信息的时延。If the UE has obtained available TX/RX beam pairs before listening to its own PO, the available TX/RX beam pairs may include the best TX/RX beam pair. For example, if the UE uses the RX beam to detect that the PO includes the P-RNTI, and the indication "whether there are other parts of the paging message" indicates that the paging message is further included, the UE reports the detected available TX beam information, where TX The beam may be a beam used by the network device to send paging related information to the UE. The UE reports using the obtained available RX beam direction, where the RX beam can receive the used beam for the UE. The UEs in different states can be reported in different manners. The connected UE can be reported by using the uplink control signaling/RRC signaling. If the grant-free is supported, the connected/inactive user can pass the grant-free. If the user is in the idle state, the RACH resource can be reported, and the reporting mode is not limited. The reported beam information may be at least one of a beam ID, an OFDM symbol number symbol index, an antenna port number, a slot number, a subframe number, a radio frame number, and a preamble sequence (which may be a preamble in random access). The base station knows which beams have received the P-RNTI, and then transmits the other partial paging messages to the reported users through the beams at the corresponding resource locations, thereby reducing the overhead of the omnidirectional beam scanning. It should be noted that the resource location interval of the paging message sent by the network device except for the partial paging message sent by the PO (which can be referred to as other paging messages) needs to be greater than or equal to the delay of the UE to report the beam information.
用户设备(可以是idle态的)通过随机接入RACH资源上报波束的方式可以采用但不限如下任一一种方式反馈:The manner in which the user equipment (which may be in the idle state) reports the beam by randomly accessing the RACH resource may be used in any of the following manners:
第一种方式:如上面所述,UE直接在RACH资源上发送波束信息,基站则在RACH资源 上进行盲检。比如可以在RACH资源划出一块时频资源用于UE上报波束信息,则UE直接在RACH资源上发送波束信息,网络设备收到则认为对准该下行波束的UE收到了P-RNTI,则使用该下行波束给UE发送paging message。The first mode: as described above, the UE directly transmits beam information on the RACH resource, and the base station performs blind detection on the RACH resource. For example, the RACH resource may be used to allocate a time-frequency resource for the UE to report the beam information, and the UE directly sends the beam information on the RACH resource. If the network device receives the P-RNTI, the UE that uses the downlink beam receives the P-RNTI. The downlink beam sends a paging message to the UE.
第二种方式:协议可以定义一组preamble,该preamble用于UE上报波束信息,而不用于发起随机接入,具体实施方式:UE选取一个preamble,并在RACH资源上发送该preamble,基站则在RACH资源上使用全向波束扫描的方式进行盲检,若基站的某个接收波束检测到UE发送的preamble,则基站认为对准该接收波束的该用户收到了P-RNTI,此时基站不会给UE回复随机接入相应(RAR:random access response),基站使用该接收波束的方向作为发送波束方向给该用户发送其他部分paging message;The second mode: the protocol can define a set of preambles for the UE to report the beam information, and is not used to initiate the random access. The specific implementation manner is as follows: the UE selects a preamble and sends the preamble on the RACH resource, where the base station is in the A blind detection is performed on the RACH resource by using an omnidirectional beam scanning method. If a certain receiving beam of the base station detects the preamble sent by the UE, the base station considers that the user that is aligned with the receiving beam receives the P-RNTI, and the base station does not Responding to the RAR (random access response), the base station uses the direction of the receiving beam as the direction of the transmitting beam to send other partial paging messages to the user;
第三种方式:在RACH资源中划出一段频段用于UE上报波束信息,UE在该频段发送preamble,基站则在RACH资源上使用全向波束扫描的方式进行盲检,若基站的某个接收波束在该专用频段上接收到UE发送的preamble,则基站认为对准该接收波束的该用户收到了P-RNTI,此时基站不会给UE回复随机接入相应(RAR:random access response),基站使用该接收波束的方向作为发送波束方向给该用户发送其他部分paging message。The third mode: a frequency band is allocated in the RACH resource for the UE to report the beam information, the UE sends the preamble in the frequency band, and the base station performs the blind detection on the RACH resource by using the omnidirectional beam scanning mode, if a certain receiving of the base station If the beam receives the preamble sent by the UE on the dedicated frequency band, the base station considers that the user that is in the receiving beam receives the P-RNTI, and the base station does not reply the RAR (random access response) to the UE. The base station uses the direction of the receive beam as the transmit beam direction to send other partial paging messages to the user.
方式4:Method 4:
同样如图6所示,在PO发送P-RNTI。PO中进行全向波束遍历。Also as shown in FIG. 6, the P-RNTI is transmitted at the PO. Omnidirectional beam traversal in PO.
若UE在PO中检测出P-RNTI,则在相应的资源位置检测所有的paging message,后续的操作可以同方式2的方案:该相应的资源位置可以是相对该PO burst set固定的时频资源位置,例如在在PO之后的第m个子帧/时隙检测P-RNTI加扰的承载paging message的信道,该信道可以是PDSCH;或者在在PO之后的第m(m可以是固定的值,也可以可配)个子帧/时隙首先检测P-RNTI加扰的PDCCH,再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定。If the UE detects the P-RNTI in the PO, all the paging messages are detected at the corresponding resource location, and the subsequent operations may be the same as the scheme of the second mode: the corresponding resource location may be a fixed time-frequency resource relative to the PO burst set. Position, for example, detecting the channel carrying the paging message scrambled by the P-RNTI at the mth subframe/time slot after the PO, the channel may be a PDSCH; or at the mth after the PO (m may be a fixed value, The PDCCHs that are scrambled by the P-RNTI are first detected in the subframes/slots, and the paging message is detected on the corresponding resource location according to the resource indication of the PDCCH, which is not limited herein.
其它没有放在PO中的paging message的发送方式,以及,用户设备(可以是idle态的)通过RACH资源上报波束的方式可以如上所述,不再赘述。The manner of sending the paging message that is not placed in the PO, and the manner in which the user equipment (which may be in the idle state) reports the beam through the RACH resource may be as described above, and will not be described again.
方式5:Method 5:
同样如图6所示,在PO发送P-RNTI,部分的paging message,指示其它部分paging message的资源位置的信息。As shown in FIG. 6, the P-RNTI is sent at the PO, and part of the paging message indicates information about the resource location of the other part of the paging message.
其中指示其他部分paging message的资源位置的信息可以是DCI控制信号,并且DCI可以通过PDCCH承载。该方式将含部分paging message放在PO中进行全向波束遍历。The information indicating the resource location of the other part of the paging message may be a DCI control signal, and the DCI may be carried by the PDCCH. This method puts a partial paging message in the PO for omnidirectional beam traversal.
此时的不包含全部的paging message,其中在PO中的部分的paging message,该部分paging message可以通过PDSCH,PDCCH(定义新的PDCCH格式),或者其它信道承载,P-RNTI和paging message,指示其它部分paging message的资源位置的信息可以同方式1的描述。At this time, all the paging messages are not included, and the paging message in the part of the PO may be indicated by the PDSCH, the PDCCH (defining a new PDCCH format), or other channel bearers, P-RNTIs and paging messages. The information of the resource location of other parts of the paging message can be the same as that of the mode 1.
UE在PO中先检测出P-RNTI,再检测PO中的部分paging message(如果有的话),并根据DCI控制信号的资源指示信息在相应的资源位置检测其它没有放在PO中的paging message(可以包含paging record list)。The UE first detects the P-RNTI in the PO, and then detects a part of the paging message in the PO (if any), and detects other paging messages not placed in the PO according to the resource indication information of the DCI control signal at the corresponding resource location. (Can include paging record list).
其它没有放在PO中的部分paging message的发送方式,以及,用户设备(可以是idle态的)通过RACH资源上报波束的方式可以如上所述,不再赘述。The manner of sending the partial paging message that is not placed in the PO, and the manner in which the user equipment (which may be in the idle state) reports the beam through the RACH resource may be as described above, and will not be described again.
第三种类型,在PO不发送paging message。The third type, the PO does not send a paging message.
方式6Mode 6
同样如图6所示,在PO发送P-RNTI,指示paging message的资源位置的信息。PO不包括paging message。As also shown in FIG. 6, the PO transmits a P-RNTI indicating information on the resource location of the paging message. PO does not include a paging message.
其中指示paging message的资源位置的信息可以是DCI控制信号,并且DCI可以通 过PDCCH承载。The information indicating the resource location of the paging message may be a DCI control signal, and the DCI may be carried over the PDCCH.
UE在PO中先检测出P-RNTI,再检测指示paging message的资源位置的信息比如DCI,并根据DCI控制信号的资源指示信息在相应的资源位置检测其它没有放在PO中的paging message(可以包含paging record list)。The UE first detects the P-RNTI in the PO, and then detects information indicating the resource location of the paging message, such as DCI, and detects other paging messages that are not placed in the PO according to the resource indication information of the DCI control signal. Contains paging record list).
paging message的发送方式,以及,用户设备(可以是idle态的)通过RACH资源上报波束的方式可以如上所述,不再赘述。The manner in which the paging message is sent, and the manner in which the user equipment (which may be in the idle state) reports the beam through the RACH resource may be as described above, and will not be described again.
其中,用户设备可以通过上报波束信息,使网络设备知道收到了P-RNTI的用户设备分别对准网络设备的哪些下行波束,则网络设备通过这些下行波束在相应的资源位置给上报的用户设备发送paging message,从而减少了全向波束扫描发送其它paging message的开销。The user equipment can notify the network device of the downlink beams of the network device by the user equipment that has received the P-RNTI, and the network device sends the reported user equipment to the reported user equipment at the corresponding resource location by using the downlink beam. Paging message, thereby reducing the overhead of sending other paging messages by omnidirectional beam scanning.
上述各方式描述的内容可以互相引用,为了是申请文件简洁,不再赘述。The contents described in the above manners may be referred to each other. In order to simplify the application documents, details are not described herein.
上面描述的用户设备给网络设备上报波束信息可以为图2的202,网络设备根据用户设备上报的波束信息进行发送可以为图2的203。202和203可以为可选的处理。The device information reported by the user equipment to the network device may be 202 of FIG. 2, and the network device may send the PON according to the beam information reported by the user equipment. 203. 202 and 203 may be optional processing.
图7是根据本申请实施例的用户设备装置的示意性框图。如图7所示,该装置700包括处理器710和收发器720。其中收发器720也可以由收发单元或收发电路来实现,处理器710可以由一个或多个单元或电路来实现。其中收发器的动作可以是处理器来指示收发器来完成的。FIG. 7 is a schematic block diagram of a user equipment apparatus according to an embodiment of the present application. As shown in FIG. 7, the apparatus 700 includes a processor 710 and a transceiver 720. The transceiver 720 can also be implemented by a transceiver unit or a transceiver circuit, and the processor 710 can be implemented by one or more units or circuits. The action of the transceiver may be a processor to instruct the transceiver to complete.
应理解,该装置700可以对应于各方法实施例中的网络设备,可以具有方法中的网络设备的任意功能,下面仅以部分功能为例进行介绍,但是本实施例并不限于此。It should be understood that the device 700 may correspond to the network device in each method embodiment, and may have any function of the network device in the method. The following only introduces some functions as an example, but the embodiment is not limited thereto.
收发器用于在指定时间发送寻呼相关信息,所述寻呼相关信息是采用波束扫描的方式发送的。The transceiver is configured to send paging related information at a specified time, and the paging related information is sent by using beam scanning.
可选,所述寻呼相关信息包括如下信息组合的任一种:Optionally, the paging related information includes any one of the following information combinations:
是否指示用户设备接收寻呼消息的信息,和,寻呼消息;Whether the user equipment is instructed to receive the information of the paging message, and the paging message;
是否指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息;Whether the user equipment is instructed to receive the information of the paging message, the resource location information of the paging message, and the paging message;
是否指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息;Whether to indicate information of the paging message received by the user equipment, and, part of the paging message, and whether there is indication information of other partial paging messages;
是否指示用户设备接收寻呼消息的信息;Whether to indicate that the user equipment receives the information of the paging message;
是否指示用户设备接收寻呼消息的信息,和,其他部分寻呼消息的资源位置信息,和,部分寻呼消息;Whether to indicate information of the paging message received by the user equipment, and resource location information of other partial paging messages, and, part of the paging message;
是否指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息。Whether to indicate information of the paging message received by the user equipment, and resource location information of the paging message.
可选地,所述是否指示用户设备接收寻呼消息的信息为无线网络临时标识P-RNTI,和/或,所述寻呼消息的资源位置信息为下行控制信息DCI,和/或,所述其他部分寻呼消息的资源位置信息为DCI,和/或,指定时间为寻呼时刻PO。Optionally, the information indicating whether the user equipment receives the paging message is a radio network temporary identifier P-RNTI, and/or the resource location information of the paging message is downlink control information DCI, and/or the The resource location information of other partial paging messages is DCI, and/or, the designated time is the paging moment PO.
可选地,所述收发器还用于接收用户设备发送的波束信息,所述波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息;所述处理器根据所述波束信息来确定发送其他部分寻呼消息或者寻呼消息所使用的波束;所述收发器还用于根据处理器确定的波束来发送其他部分寻呼消息或者寻呼消息。Optionally, the transceiver is further configured to receive beam information sent by the user equipment, where the beam information is used to indicate information about a beam that the network device can use to send a paging message, where the processor is configured according to the beam information. Determining a beam used to transmit other partial paging messages or paging messages; the transceiver is further configured to transmit other partial paging messages or paging messages according to a beam determined by the processor.
可选地,所述指示网络设备网络设备可用来发送寻呼消息的波束的相关信息为如下任一种或多种信息:波束ID,OFDM符号序号,天线端口号,时隙号,子帧号,无线帧号。可选地,该装置运用于高频场景中。Optionally, the information about the beam indicating that the network device network device can send the paging message is any one or more of the following information: a beam ID, an OFDM symbol sequence number, an antenna port number, a slot number, and a subframe number. , wireless frame number. Optionally, the device is used in a high frequency scene.
图8是根据本申请实施例的网络设备装置的示意性框图。如图8所示,该装置800包括处理器810和收发器820。其中收发器820也可以由收发单元或收发电路来实现,处理器810可以由一个或多个单元或电路来实现。其中收发器的动作可以是处理器来指示收发器来完成的。FIG. 8 is a schematic block diagram of a network device apparatus according to an embodiment of the present application. As shown in FIG. 8, the apparatus 800 includes a processor 810 and a transceiver 820. The transceiver 820 can also be implemented by a transceiver unit or a transceiver circuit, and the processor 810 can be implemented by one or more units or circuits. The action of the transceiver may be a processor to instruct the transceiver to complete.
应理解,该装置800可以对应于各方法实施例中的用户设备,可以具有方法中的用户设备的任意功能,下面仅以部分功能为例进行介绍,但是本实施例并不限于此。It should be understood that the device 800 may correspond to the user equipment in each method embodiment, and may have any function of the user equipment in the method. The following only introduces some functions as an example, but the embodiment is not limited thereto.
收发器用于接收寻呼相关信息;The transceiver is configured to receive paging related information;
收发器还用于根据所述寻呼相关信息获得寻呼消息。The transceiver is further configured to obtain a paging message according to the paging related information.
可选地,收发器还用于根据根据所述寻呼相关信息获得寻呼消息具体为:Optionally, the transceiver is further configured to obtain, according to the paging related information, a paging message, specifically:
其中,寻呼相关信息包括是否指示用户设备接收寻呼消息的信息,和,寻呼消息,收发器检测到是否指示用户设备接收寻呼消息的信息,再进一步检测寻呼相关信息中的寻呼消息;The paging related information includes information indicating whether the user equipment receives the paging message, and the paging message, the transceiver detects whether the user equipment is instructed to receive the paging message, and further detects the paging in the paging related information. Message
其中,寻呼相关信息包括是否指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息,收发器检测到是否指示用户设备接收寻呼消息的信息,再进一步根据寻呼消息的资源位置信息检测寻呼消息;The paging related information includes information indicating whether the user equipment receives the paging message, the resource location information of the paging message, and the paging message, and the transceiver detects whether the user equipment is instructed to receive the paging message, and further according to the information. The resource location information of the paging message detects a paging message;
其中,寻呼相关信息包括是否指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息,收发器检测到是否指示用户设备接收寻呼消息的信息,再进一步检测部分寻呼消息,并且根据是否还有其他部分寻呼消息的指示信息检测其他部分寻呼消息;The paging related information includes information indicating whether the user equipment receives the paging message, and, part of the paging message, and whether there is indication information of other partial paging messages, and the transceiver detects whether the user equipment is instructed to receive the paging. The information of the message further detects part of the paging message, and detects other partial paging messages according to whether there is another indication information of the partial paging message;
其中,寻呼相关信息包括是否指示用户设备接收寻呼消息的信息,收发器检测到是否指示用户设备接收寻呼消息的信息,再检测寻呼消息;The paging related information includes information indicating whether the user equipment is instructed to receive the paging message, and the transceiver detects whether the user equipment is instructed to receive the information of the paging message, and then detects the paging message.
其中,寻呼相关信息包括是否指示用户设备接收寻呼消息的信息,和,其他部分寻呼消息的资源位置信息,和,部分寻呼消息,收发器检测到是否指示用户设备接收寻呼消息的信息,再检测寻呼相关消息中的寻呼消息和根据其他部分寻呼消息的资源位置信息来检测其他部分寻呼消息;The paging related information includes information indicating whether the user equipment receives the paging message, and resource location information of other partial paging messages, and a partial paging message, and the transceiver detects whether the user equipment is instructed to receive the paging message. Information, detecting a paging message in the paging related message and detecting other partial paging messages according to resource location information of other partial paging messages;
其中,寻呼相关信息包括是否指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息,收发器检测到是否指示用户设备接收寻呼消息的信息,再检测其他部分寻呼消息的资源位置信息来检测寻呼消息。The paging related information includes information indicating whether the user equipment receives the paging message, and resource location information of the paging message, and the transceiver detects whether the user equipment is instructed to receive the paging message, and then detects other partial paging messages. Resource location information to detect paging messages.
可选地,收发器发送波束信息,所述波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息;收发器接收网络设备根据所述波束信息来发送其他部分寻呼消息或者寻呼消息。Optionally, the transceiver sends beam information, where the beam information is used to indicate related information of a beam that the network device can use to send the paging message; the transceiver receiving network device sends other partial paging messages or searches according to the beam information. Call the message.
可选地,收发器使用随机接入资源来发送所述波束信息。Optionally, the transceiver transmits the beam information using a random access resource.
可选地,处理器使用随机接入资源来发送前导序列。Optionally, the processor transmits the preamble sequence using a random access resource.
可选地,该装置运用于高频场景中。Optionally, the device is used in a high frequency scene.
可选地,装置700和装置800还可以包括存储器,该存储器可以存储程序代码和其他存储内容,处理器调用存储器存储的程序代码和其他存储内容,以实现该装置700和装置800的相应功能。Alternatively, apparatus 700 and apparatus 800 may also include a memory that may store program code and other stored content, and the processor invokes memory stored program code and other stored content to implement the respective functions of apparatus 700 and apparatus 800.
本申请实施方式还包括一个通信系统,包括上述网络设备实施例中的网络设备和用户设备实施例中的用户设备。The embodiment of the present application further includes a communication system, including the network device in the foregoing network device embodiment and the user equipment in the user equipment embodiment.
在上述方式3的描述中,其中“在PO之后的第m个子帧/时隙(英文可以为s lot)中检测P-RNTI加扰的承载paging message的信道,其中m可以是固定的值,也可以可配,该信道可以是PDSCH;或者在PO之后的第m个子帧/s lot中首先检测P-RNTI加扰的PDCCH,再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定”的描述,更为清楚的描述可以为:在PO之后的第m个子帧/时隙(英文可以为slot)开始的n个子帧/时隙中检测P-RNTI加扰的承载paging message的信道,其中m,n均为正整数,m,n可以是固定的值,也可以可配,该信道可以是PDSCH;或者在PO之后的第m个子帧/s lot开始的n个子帧/时隙中首先检测P-RNTI加扰的PDCCH,再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定In the description of the foregoing mode 3, wherein "the m-th subframe/slot after the PO (slot can be slot) is detected in the P-RNTI scrambled channel carrying the paging message, where m may be a fixed value, It may also be configurable, the channel may be a PDSCH; or the P-RNTI scrambled PDCCH is first detected in the mth subframe/s lot after the PO, and then the corresponding resource location is detected according to the resource indication of the PDCCH that is solved. The description of the paging message, which is not limited herein, may be more clearly described as: detecting P-RNTI plus in n subframes/slots starting from the mth subframe/slot after PO (slot may be in English) The channel carrying the paging message, where m, n are positive integers, m, n may be fixed values, or may be matched, the channel may be PDSCH; or the mth subframe /s lot after the PO starts The P-RNTI scrambled PDCCH is first detected in the n subframes/slots, and the paging message is detected on the corresponding resource location according to the resource indication of the solved PDCCH, which is not limited herein.
在上述方式4的描述中,其中,对于“在PO之后的第m个子帧/时隙检测P-RNTI加 扰的承载paging message的信道,该信道可以是PDSCH;或者在PO之后的第m(m可以是固定的值,也可以可配)个子帧/时隙首先检测P-RNTI加扰的PDCCH,再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定”的描述,更为清楚的描述可以为:在PO之后的第m个子帧/时隙开始的n个子帧/时隙(m和n是正整数,m和n可以是固定的值,也可以可配)检测P-RNTI加扰的承载paging message的信道,该信道可以是PDSCH;或者在PO之后的第m个子帧/时隙开始的n个子帧/时隙首先检测P-RNTI加扰的PDCCH,再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定In the description of the above mode 4, wherein, for the channel carrying the paging message scrambled by the P-RNTI after the PO, the channel may be a PDSCH; or the mth after the PO ( m may be a fixed value, or may be configured.) The subframe/slot is first detected by the P-RNTI scrambled PDCCH, and then the paging message is detected according to the resource indication of the PDCCH that is solved, which is not limited herein. For a description, a clearer description may be: n subframes/slots starting at the mth subframe/slot after PO (m and n are positive integers, and m and n may be fixed values, or may be </ RTI> detecting a channel carrying a paging message scrambled by the P-RNTI, the channel may be a PDSCH; or detecting n-subframes/slots starting at the mth subframe/slot after the PO first detecting the P-RNTI scrambled PDCCH Then, according to the resource indication of the PDCCH that is solved, the paging message is detected on the corresponding resource location, which is not limited herein.
在方式4中增加如下说明但未增加和变更原方案:Add the following description in Mode 4 but do not add or change the original scheme:
或者,因为在上述各实施例描述以指示用户设备是否接收寻呼消息的信息为P-RNTI为例,在一般的理解中,描述上也可以是替换成在PO发送指示用户设备是否接收寻呼消息的信息。其中指示用户设备是否接收寻呼消息的信息可以是比如1比特的指示信息。Or, because the information indicating whether the user equipment receives the paging message is the P-RNTI as an example in the foregoing embodiments, in a general understanding, the description may also be replaced by the sending of the PO to indicate whether the user equipment receives the paging. Message information. The information indicating whether the user equipment receives the paging message may be, for example, 1-bit indication information.
若UE在PO中检测出指示用户设备是否接收寻呼消息的信息,则在相应的资源位置检测paging message,后续的操作可以同方式2的方案:该相应的资源位置可以是相对该PO(因为业界有可能对于同一个物理量采用多种描述,所以业界如果采用类似于SS block burst set概念原理来理解的话,这里的PO也可以称为PO burst set,其中PO burst set由一个或多个PO burst组成)固定的时频资源位置,例如在PO之后的第m个开始的n个子帧/时隙(m和n是正整数,m和n可以是固定的值,也可以可配)检测P-RNTI加扰的承载paging message的信道,该P-RNTI加扰的P-RNTI可以是固定的16进制数FFFE,也可以是固定的别的数值,也可以是不固定的数值。该信道可以是PDSCH;或者在PO之后的第m个开始的n个子帧/时隙首先检测P-RNTI加扰的PDCCH,该P-RNTI加扰的P-RNTI可以是固定的16进制数FFFE,也可以是固定的别的数值,也可以是不固定的数值。再根据解出的PDCCH的资源指示去相应的资源位置上检测paging message,这里不做限定。If the UE detects information indicating whether the user equipment receives the paging message in the PO, the paging message is detected at the corresponding resource location, and the subsequent operation may be the same as the scheme of the mode 2: the corresponding resource location may be relative to the PO (because It is possible for the industry to use multiple descriptions for the same physical quantity. Therefore, if the industry understands the concept of SS block burst set, the PO here can also be called PO burst set, where the PO burst set consists of one or more PO bursts. A fixed time-frequency resource location, for example, n subframes/time slots starting at the mth after the PO (m and n are positive integers, m and n may be fixed values, and may be matched) to detect the P-RNTI The scrambled channel carrying the paging message may be a fixed hexadecimal FFFE, or may be a fixed value or an unfixed value. The channel may be a PDSCH; or the n-th subframe/slot starting at the mth after the PO first detects the P-RNTI scrambled PDCCH, and the P-RNTI scrambled P-RNTI may be a fixed hexadecimal number The FFFE can also be a fixed value or an unfixed value. The paging message is detected on the corresponding resource location according to the resource indication of the PDCCH, which is not limited herein.
未来可能需要支持网络分层(英语可以为slice)的架构,即不同的业务类型的控制需分离,对于paging来说,可以存在多种寻呼相关信息,针对不同的业务类型(如增强移动宽带(英文可以为enhanced Mobile Broadband,英文缩写可以为eMBB),超可靠低延迟通信(英文可以为Ultra-Reliable and Low Latency Communications,英文缩写可以为URLLC),机器类型通信(英文可以为Machine Type Communication,英文缩写可以为MTC)等业务类型)的UE分别进行寻呼控制,比如有eMBB寻呼相关信息,URLLC寻呼相关信息,MTC寻呼相关信息。举例的,不同种的寻呼相关信息中包含的P-RNTI的值可以不同。进一步可以对不同业务类型的UE配置不同的PO资源,比如存在多种寻呼相关信息所对应的时频资源,比如eMBB寻呼相关信息所对应的时频资源,URLLC寻呼相关信息所对应的时频资源,MTC寻呼相关信息所对应的时频资源,多种寻呼相关信息所对应的时频资源是时分复用或者频分复用,图9所示是频分的关系。比如举例如图9所示,在PO资源上可以划分为针对多个不同业务的寻呼相关信息所对应的时频资源,分别对不同业务类型的UE进行寻呼,如图所示PO(s)(eMBB)可以表示eMBB寻呼相关信息所对应的时频资源,因为业界有可能对于同一个物理量采用多种描述,所以PO后面加上s,可以认为POs的描述是采用的类似SS block burst set的类似理解方式,因此POs可以认为指一个或多个PO burst或者一个或者多个PO burst set。是其他业务类似表示,PO(s)(URLLC),PO(s)(MTC),多个不同业务的寻呼相关信息所对应的时频资源可以和SS block(同步信号块)的关系可以是时分复用,也可以是频分复用(如图所示),用波束扫描方式发送寻呼相关信息的波束可以与发送SS block的波束相同。如果寻呼相关信息所对应的时频资源和SS block不是时分复用或者频分复用的话,那么发送寻呼相关信息的波束扫描可以是和发送同步信号的波束扫描不同的另一轮波束扫描。各种业务类型的寻呼相关信息包含的消息内容及paging message的发送方式,UE的检测操作都可以如前面的实施例中提到的发送方 式1-6所示,不再赘述。In the future, it may be necessary to support the architecture of network layering (English can be slice), that is, the control of different service types needs to be separated. For paging, there may be multiple paging related information for different service types (such as enhanced mobile broadband). (English can be enhanced Mobile Broadband, English abbreviation can be eMBB), ultra-reliable low-latency communication (English can be Ultra-Reliable and Low Latency Communications, English abbreviation can be URLLC), machine type communication (English can be Machine Type Communication, The English abbreviation may be used for paging control of UEs such as MTC), such as eMBB paging related information, URLLC paging related information, and MTC paging related information. For example, the values of P-RNTIs included in different kinds of paging related information may be different. Further, different PO resources can be configured for different types of UEs, for example, time-frequency resources corresponding to multiple paging related information, such as time-frequency resources corresponding to eMBB paging related information, and URLLC paging related information. The time-frequency resource, the time-frequency resource corresponding to the MTC paging related information, and the time-frequency resource corresponding to the plurality of paging related information is time division multiplexing or frequency division multiplexing, and FIG. 9 is a frequency division relationship. For example, as shown in FIG. 9, the PO resource can be divided into time-frequency resources corresponding to paging related information of multiple different services, and paging is performed on UEs of different service types, as shown in the figure. PO(s (eMBB) can represent the time-frequency resources corresponding to the eMBB paging related information, because the industry may use multiple descriptions for the same physical quantity, so the PO is followed by s, and the description of the POs can be considered to be similar to the SS block burst. The set is similarly understood, so POs can be considered to refer to one or more PO bursts or one or more PO burst sets. Similar to other services, PO(s) (URLLC), PO(s) (MTC), the time-frequency resources corresponding to paging related information of multiple different services may be related to the SS block (synchronous signal block). Time division multiplexing, or frequency division multiplexing (as shown in the figure), the beam for transmitting paging related information by beam scanning may be the same as the beam for transmitting the SS block. If the time-frequency resource and the SS block corresponding to the paging related information are not time division multiplexed or frequency division multiplexed, the beam scanning for transmitting the paging related information may be another round of beam scanning different from the beam scanning for transmitting the synchronization signal. . The message content of the paging information of the various service types and the sending manner of the paging message can be detected by the UE as shown in the foregoing embodiment, and will not be described again.
由于网络中各种业务类型在同一时间不一定同时存在,比如,在某一时间段网络中并没有URLLC业务的UE,则PO(s)(URLLC)可以没有,则网络可以将PO(s)(URLLC)的资源用作其它类型业务的PO,或者将这块资源用作paging业务之外的其它业务,所以网络可以对寻呼相关信息的时频资源进行动态/半静态的配置,该配置可以通过例如系统消息广播发送给小区中的UE,可以采用比如寻呼相关信息的资源配置消息(该消息也可以是其他名称)。如图10所示,图10中的1001-1003可以类似图2中的201-203。其中1004的处理图例中是在1001之前,但实现中顺序可以不受图例的限制。在1004中网络设备向用户设备发送寻呼相关信息的资源配置消息。所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息,比如采用两个字段,第一字段用于指示寻呼相关信息种类,第二字段用于指示第一字段所指示的类型的寻呼相关信息的时频资源。具体的指示方法可以采用索引的方式或者其他方式。当然也可以使用其它方式发送。Since the various service types in the network do not necessarily exist at the same time, for example, if the UE does not have the URLLC service in the network for a certain period of time, the PO(s) (URLLC) may not exist, and the network may use the PO(s). The (URLLC) resource is used as a PO of other types of services, or the resource is used as a service other than the paging service, so the network can dynamically/semi-statically configure the time-frequency resources of the paging related information. The UE may be sent to the UE in the cell by, for example, a system message broadcast, and a resource configuration message such as paging related information may be employed (the message may also be another name). As shown in FIG. 10, 1001-1003 in FIG. 10 can be similar to 201-203 in FIG. The processing legend of 1004 is before 1001, but the order of implementation may not be limited by the legend. In 1004, the network device sends a resource configuration message of the paging related information to the user equipment. The resource configuration message of the paging related information is used to indicate information about time-frequency resources corresponding to at least one type of paging related information, for example, two fields are used, where the first field is used to indicate the type of paging related information, and the second field is used. A time-frequency resource for indicating paging related information of a type indicated by the first field. The specific indication method may be indexed or otherwise. Of course, it can also be sent in other ways.
相应地,可选地,上述网络设备实施例中的收发器收发器还用于在指定时间和指定频段发送寻呼相关信息,所述指定时间和指定频段是属于多种寻呼相关信息所对应的时频资源中的一种。对于多种寻呼相关信息,和,多种寻呼相关信息所对应的时频资源不再赘述。可选地,网络设备实施例中的收发器还用于发送寻呼相关信息的资源配置消息,所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息。Correspondingly, the transceiver transceiver in the network device embodiment is further configured to send paging related information at a specified time and a specified frequency band, where the specified time and the specified frequency band belong to multiple paging related information. One of the time-frequency resources. For a variety of paging related information, and the time-frequency resources corresponding to the plurality of paging related information are not described again. Optionally, the transceiver in the network device embodiment is further configured to send a resource configuration message of the paging related information, where the resource configuration message of the paging related information is used to indicate a time frequency corresponding to the at least one paging related information. Resource information.
相应地,可选地,上述用户设备实施例中的收发器收发器还用于在指定时间接收寻呼相关信息,进一步地还用于在指定时间和指定频段接收寻呼相关信息,所述指定时间和指定频段是属于多种寻呼相关信息所对应的时频资源中的一种。对于多种寻呼相关信息,和,多种寻呼相关信息所对应的时频资源不再赘述。可选地,用户设备实施例中的收发器还用于接收寻呼相关信息的资源配置消息,所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息。Correspondingly, the transceiver transceiver in the foregoing user equipment embodiment is further configured to receive paging related information at a specified time, and further configured to receive paging related information at a specified time and a specified frequency band, where the designation The time and the designated frequency band are one of the time-frequency resources corresponding to the plurality of paging related information. For a variety of paging related information, and the time-frequency resources corresponding to the plurality of paging related information are not described again. Optionally, the transceiver in the user equipment embodiment is further configured to receive a resource configuration message of the paging related information, where the resource configuration message of the paging related information is used to indicate a time frequency corresponding to the at least one paging related information. Resource information.
对于上述各方法、装置、系统实施例为了使描述更加清楚,把“是否指示用户设备接收寻呼消息的信息”修正为“指示用户设备接收寻呼消息的信息”For the above methods, devices, and system embodiments, in order to make the description clearer, the "information indicating whether the user equipment receives the paging message" is corrected to "information indicating that the user equipment receives the paging message"
本申请实施方式的装置可以是现场可编程门阵列(Field-Programmable Gate Array,FPGA),可以是专用集成芯片(Application Specific Integrated Circuit,ASIC),还可以是系统芯片(Systemon Chip,SoC),还可以是中央处理器(Central Processor Unit,CPU),还可以是网络处理器(Network Processor,NP),还可以是数字信号处理电路(Digital Signal Processor,DSP),还可以是微控制器(Micro Controller Unit,MCU),还可以是可编程控制器(Programmable Logic Device,PLD)或其他集成芯片。The device of the embodiment of the present invention may be a Field-Programmable Gate Array (FPGA), may be an Application Specific Integrated Circuit (ASIC), or may be a System on Chip (SoC). It can be a Central Processor Unit (CPU), a Network Processor (NP), a Digital Signal Processor (DSP), or a Micro Controller (Micro Controller). Unit, MCU), can also be a Programmable Logic Device (PLD) or other integrated chip.
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。Those of ordinary skill in the art will appreciate that the elements and algorithm steps of the various examples described in connection with the embodiments disclosed herein can be implemented in electronic hardware or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the solution. A person skilled in the art can use different methods for implementing the described functions for each particular application, but such implementation should not be considered to be beyond the scope of the present invention.
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。各实施例为了方便简洁,也可以互为参考引用,不再赘述。A person skilled in the art can clearly understand that for the convenience and brevity of the description, the specific working process of the system, the device and the unit described above can refer to the corresponding process in the foregoing method embodiment, and details are not described herein again. For convenience and brevity, the embodiments may also be referred to each other and will not be described again.
在本申请所提供的几个实施例中,应该理解到,所揭露的系统、装置和方法,可以通过其它的方式实现。例如,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,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,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,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。In the several embodiments provided by the present application, it should be understood that the disclosed systems, devices, and methods may be implemented in other manners. For example, the device embodiments described above are merely illustrative. For example, the division of the unit is only a logical function division. In actual implementation, there may be another division manner, for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
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网络单元上。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。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, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
另外,在本发明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。In addition, each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
所述功能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,本发明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部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。The functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product. Based on such understanding, the technical solution of the present invention, which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including The instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention. The foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应所述以权利要求的保护范围为准。The above is only a specific embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily think of changes or substitutions within the technical scope of the present invention. It should be covered by the scope of the present invention. Therefore, the scope of the invention should be determined by the scope of the claims.

Claims (54)

  1. 一种寻呼的方法:其特征在于:A method of paging: characterized by:
    网络设备在指定时间发送寻呼相关信息,所述寻呼相关信息是采用波束扫描的方式发送的。The network device sends paging related information at a specified time, and the paging related information is sent by using beam scanning.
  2. 根据权利要求1所述的方法:其特征在于:The method of claim 1 wherein:
    所述寻呼相关信息包括如下信息组合的任一种:The paging related information includes any one of the following combinations of information:
    指示用户设备接收寻呼消息的信息,和,寻呼消息;Instructing the user equipment to receive the information of the paging message, and the paging message;
    指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息;Instructing the user equipment to receive the information of the paging message, the resource location information of the paging message, and the paging message;
    指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息;Instructing the user equipment to receive the information of the paging message, and, in part, the paging message, and whether there is indication information of other partial paging messages;
    指示用户设备接收寻呼消息的信息;Instructing the user equipment to receive information of the paging message;
    指示用户设备接收寻呼消息的信息,和,其他部分寻呼消息的资源位置信息,和,部分寻呼消息;Information indicating that the user equipment receives the paging message, and resource location information of other partial paging messages, and, part of the paging message;
    指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息。Information indicating that the user equipment receives the paging message, and resource location information of the paging message.
  3. 根据权利要求2所述的方法:其特征在于:The method of claim 2 wherein:
    所述指示用户设备接收寻呼消息的信息为无线网络临时标识P-RNTI,和/或,所述寻呼消息的资源位置信息为下行控制信息DCI,和/或,所述其他部分寻呼消息的资源位置信息为DCI,和/或,指定时间为寻呼时刻PO。The information indicating that the user equipment receives the paging message is a radio network temporary identifier P-RNTI, and/or the resource location information of the paging message is downlink control information DCI, and/or the other partial paging message The resource location information is DCI, and/or, the specified time is the paging time PO.
  4. 根据权利要求1-3所述的任一方法,其特征在于:还包括A method according to any of claims 1-3, further comprising
    网络设备接收用户设备发送的波束信息,所述波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息;The network device receives beam information sent by the user equipment, where the beam information is used to indicate information about a beam that the network device can use to send the paging message;
    网络设备根据所述波束信息来确定发送其他部分寻呼消息或者寻呼消息所使用的波束;The network device determines, according to the beam information, a beam used to transmit other partial paging messages or paging messages;
    网络设备根据确定的波束来发送其他部分寻呼消息或者寻呼消息。The network device transmits other partial paging messages or paging messages according to the determined beam.
  5. 根据权利要求4所述的方法,其特征在于:The method of claim 4 wherein:
    所述指示网络设备可用来发送寻呼消息的波束的相关信息为如下任一种或多种信息:The information about the beam that the indication network device can use to send the paging message is any one or more of the following information:
    波束ID,OFDM符号序号,天线端口号,时隙号,子帧号,无线帧号,前导序列。Beam ID, OFDM symbol number, antenna port number, slot number, subframe number, radio frame number, preamble sequence.
  6. 根据权利要求4或5所述的方法,其特征在于:A method according to claim 4 or 5, wherein:
    所述波束信息是通过随机接入资源上报的。The beam information is reported by a random access resource.
  7. 根据上述权利要求任一所述的方法,其特征在于:A method according to any one of the preceding claims, wherein:
    所述寻呼相关信息和同步信号是采用相同的波束发送。The paging related information and the synchronization signal are transmitted using the same beam.
  8. 根据上述权利要求任一所述的方法,其特征在于:A method according to any one of the preceding claims, wherein:
    寻呼周期是同步信号块集合发送周期的N倍,N为正整数。The paging cycle is N times the transmission period of the synchronization signal block set, and N is a positive integer.
  9. 根据上述权利要求任一所述的方法,其特征在于:所述方法用于高频通信系统。A method according to any of the preceding claims, wherein the method is for a high frequency communication system.
  10. 根据上述权利要求任一所述的方法,其特征在于:所述寻呼相关信息是属于多种寻呼相关信息的一种。A method according to any of the preceding claims, wherein said paging related information is one of a plurality of paging related information.
  11. 根据上述权利要求10所述的方法,其特征在于:多种寻呼相关信息包括eMBB寻呼相关信息,URLLC寻呼相关信息,MTC寻呼相关信息。The method according to claim 10, wherein the plurality of paging related information comprises eMBB paging related information, URLLC paging related information, and MTC paging related information.
  12. 根据上述权利要求任一所述的方法,其特征在于:网络设备在指定时间发送寻呼相关信息具体为:The method according to any of the preceding claims, wherein the sending of the paging related information by the network device at a specified time is specifically:
    网络设备在指定时间和指定频段发送寻呼相关信息,所述指定时间和指定频段是属于多种寻呼相关信息所对应的时频资源中的一种。The network device sends paging related information at a specified time and a specified frequency band, where the specified time and the specified frequency band are one of time-frequency resources corresponding to the plurality of paging related information.
  13. 根据上述权利要求12所述的方法,其特征在于:多种寻呼相关信息所对应的时频资源包括:eMBB寻呼相关信息所对应的时频资源,URLLC寻呼相关信息所对应的时频资源,MTC寻呼相关信息所对应的时频资源。The method according to claim 12, wherein the time-frequency resources corresponding to the plurality of paging related information comprise: time-frequency resources corresponding to eMBB paging related information, and time-frequency corresponding to URLLC paging related information Resource, time-frequency resource corresponding to MTC paging related information.
  14. 根据上述权利要求12或者13所述的方法,其特征在于:多种寻呼相关信息所对应 的时频资源是时分复用或者频分复用。The method according to claim 12 or 13, wherein the time-frequency resources corresponding to the plurality of paging related information are time division multiplexing or frequency division multiplexing.
  15. 根据上述权利要求12-14任一所述的方法,其特征在于:多种寻呼相关信息所对应的时频资源,和,一个或多个同步信号资源块是时分复用或者频分复用。The method according to any one of the preceding claims 12-14, characterized in that the time-frequency resources corresponding to the plurality of paging related information, and the one or more synchronization signal resource blocks are time division multiplexing or frequency division multiplexing. .
  16. 根据上述权利要求任一所述的方法,其特征在于:网络设备发送寻呼相关信息的资源配置消息,所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息。The method according to any of the preceding claims, wherein the network device sends a resource configuration message of the paging related information, and the resource configuration message of the paging related information is used to indicate that the at least one paging related information corresponds to Information on time-frequency resources.
  17. 一种寻呼的方法,其特征在于:A method of paging, characterized in that:
    用户设备接收寻呼相关信息;The user equipment receives paging related information;
    用户设备根据所述寻呼相关信息获得寻呼消息。The user equipment obtains a paging message according to the paging related information.
  18. 根据权利要求17所述的方法,其特征在于:用户设备根据所述寻呼相关信息获得寻呼消息具体为如下任意一种:The method according to claim 17, wherein the user equipment obtains the paging message according to the paging related information, which is any one of the following:
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,寻呼消息,用户设备检测到指示用户设备接收寻呼消息的信息,再进一步检测寻呼相关信息中的寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and the paging message, the user equipment detects the information indicating that the user equipment receives the paging message, and further detects the paging message in the paging related information;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息,用户设备检测到指示用户设备接收寻呼消息的信息,再进一步根据寻呼消息的资源位置信息检测寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, resource location information of the paging message, and a paging message, and the user equipment detects the information indicating that the user equipment receives the paging message, and further according to the paging. The resource location information of the message detects the paging message;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息,用户设备检测到指示用户设备接收寻呼消息的信息,再进一步检测部分寻呼消息,并且根据是否还有其他部分寻呼消息的指示信息检测其他部分寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and, part of the paging message, and whether there is other partial paging message indication information, and the user equipment detects that the user equipment receives the paging message. Information, further detecting part of the paging message, and detecting other partial paging messages according to whether there are other partial paging message indication information;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,用户设备检测到指示用户设备接收寻呼消息的信息,再检测寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and the user equipment detects information indicating that the user equipment receives the paging message, and then detects the paging message;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,其他部分寻呼消息的资源位置信息,和,部分寻呼消息,用户设备检测到指示用户设备接收寻呼消息的信息,再检测寻呼相关消息中的寻呼消息和根据其他部分寻呼消息的资源位置信息来检测其他部分寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and resource location information of other partial paging messages, and a partial paging message, where the user equipment detects information indicating that the user equipment receives the paging message, And detecting the paging message in the paging related message and detecting the other partial paging message according to the resource location information of the other partial paging message;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息,用户设备检测到指示用户设备接收寻呼消息的信息,再检测其他部分寻呼消息的资源位置信息来检测寻呼消息。The paging related information includes information indicating that the user equipment receives the paging message, and resource location information of the paging message, and the user equipment detects the information indicating that the user equipment receives the paging message, and then detects resources of other partial paging messages. Location information to detect paging messages.
  19. 根据权利要求17或18所述的方法,其特征在于:A method according to claim 17 or 18, wherein:
    用户设备发送波束信息,所述波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息;The user equipment sends beam information, where the beam information is used to indicate information about a beam that the network device can use to send the paging message;
    用户设备接收网络设备根据所述波束信息来发送其他部分寻呼消息或者寻呼消息。The user equipment receiving network device transmits other partial paging messages or paging messages according to the beam information.
  20. 根据上述任一权利要求所述的方法,其特征在于:A method according to any of the preceding claims, wherein:
    用户设备使用随机接入资源来发送所述波束信息。The user equipment uses the random access resource to transmit the beam information.
  21. 根据权利要求20所述的方法,其特征在于:The method of claim 20 wherein:
    用户设备使用随机接入资源来发送前导序列。The user equipment uses a random access resource to transmit the preamble sequence.
  22. 根据上述权利要求任一所述的方法,其特征在于:所述寻呼相关信息是属于多种寻呼相关信息的一种。A method according to any of the preceding claims, wherein said paging related information is one of a plurality of paging related information.
  23. 根据上述权利要求22所述的方法,其特征在于:多种寻呼相关信息包括eMBB寻呼相关信息,URLLC寻呼相关信息,MTC寻呼相关信息。The method according to claim 22, wherein the plurality of paging related information comprises eMBB paging related information, URLLC paging related information, and MTC paging related information.
  24. 根据上述权利要求任一所述的方法,其特征在于:用户设备在指定时间接收寻呼相关信息。A method according to any of the preceding claims, wherein the user equipment receives paging related information at a specified time.
  25. 根据权利要求24所述的方法,其特征在于:用户设备在指定时间接收寻呼相关信息具体为:The method according to claim 24, wherein the receiving, by the user equipment, the paging related information at a specified time is:
    用户设备在指定时间和指定频段接收寻呼相关信息,所述指定时间和指定频段是属于多种寻呼相关信息所对应的时频资源中的一种。The user equipment receives paging related information at a specified time and a specified frequency band, and the designated time and the designated frequency band are one of time-frequency resources corresponding to the plurality of paging related information.
  26. 根据权利要求25所述的方法,其特征在于:多种寻呼相关信息所对应的时频资源包括:eMBB寻呼相关信息所对应的时频资源,URLLC寻呼相关信息所对应的时频资源,MTC寻呼相关信息所对应的时频资源。The method according to claim 25, wherein the time-frequency resources corresponding to the plurality of paging related information comprise: time-frequency resources corresponding to eMBB paging related information, and time-frequency resources corresponding to URLLC paging related information The time-frequency resource corresponding to the MTC paging related information.
  27. 根据权利要求25或26所述的方法,其特征在于:多种寻呼相关信息所对应的时频资源之间是时分复用或者频分复用。The method according to claim 25 or 26, wherein the time-frequency resources corresponding to the plurality of paging related information are time division multiplexed or frequency division multiplexed.
  28. 根据权利要求25-27任一所述的方法,其特征在于:多种寻呼相关信息所对应的时频资源,和,一个或多个同步信号资源块是时分复用或者频分复用。The method according to any one of claims 25-27, wherein the time-frequency resources corresponding to the plurality of paging related information, and the one or more synchronization signal resource blocks are time division multiplexed or frequency division multiplexed.
  29. 根据上述权利要求任一所述的方法,其特征在于:用户设备接收寻呼相关信息的资源配置消息,所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息。The method according to any of the preceding claims, wherein the user equipment receives a resource configuration message of the paging related information, and the resource configuration message of the paging related information is used to indicate that the at least one paging related information corresponds to Information on time-frequency resources.
  30. 一种网络设备,其特征在于:包括处理器和收发器A network device, including: a processor and a transceiver
    收发器用于在指定时间发送寻呼相关信息,所述寻呼相关信息是采用波束扫描的方式发送的。The transceiver is configured to send paging related information at a specified time, and the paging related information is sent by using beam scanning.
  31. 根据权利要求30所述的网络设备,其特征在于:A network device according to claim 30, wherein:
    所述寻呼相关信息包括如下信息组合的任一种:The paging related information includes any one of the following combinations of information:
    指示用户设备接收寻呼消息的信息,和,寻呼消息;Instructing the user equipment to receive the information of the paging message, and the paging message;
    指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息;Instructing the user equipment to receive the information of the paging message, the resource location information of the paging message, and the paging message;
    指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息;Instructing the user equipment to receive the information of the paging message, and, in part, the paging message, and whether there is indication information of other partial paging messages;
    指示用户设备接收寻呼消息的信息;Instructing the user equipment to receive information of the paging message;
    指示用户设备接收寻呼消息的信息,和,其他部分寻呼消息的资源位置信息,和,部分寻呼消息;Information indicating that the user equipment receives the paging message, and resource location information of other partial paging messages, and, part of the paging message;
    指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息。Information indicating that the user equipment receives the paging message, and resource location information of the paging message.
  32. 根据权利要求31所述的网络设备:其特征在于:A network device according to claim 31, characterized in that:
    所述指示用户设备接收寻呼消息的信息为无线网络临时标识P-RNTI,和/或,所述寻呼消息的资源位置信息为下行控制信息DCI,和/或,所述其他部分寻呼消息的资源位置信息为DCI,和/或,指定时间为寻呼时刻PO。The information indicating that the user equipment receives the paging message is a radio network temporary identifier P-RNTI, and/or the resource location information of the paging message is downlink control information DCI, and/or the other partial paging message The resource location information is DCI, and/or, the specified time is the paging time PO.
  33. 根据上述权利要求任一所述的网络设备,其特征在于:A network device according to any of the preceding claims, characterized in that:
    所述收发器还用于接收用户设备发送的波束信息,所述波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息;The transceiver is further configured to receive beam information sent by the user equipment, where the beam information is used to indicate information about a beam that the network device can use to send the paging message;
    所述处理器根据所述波束信息来确定发送其他部分寻呼消息或者寻呼消息所使用的波束;The processor determines, according to the beam information, a beam used to send other partial paging messages or paging messages;
    所述收发器还用于根据处理器确定的波束来发送其他部分寻呼消息或者寻呼消息。The transceiver is further configured to send other partial paging messages or paging messages according to a beam determined by the processor.
  34. 根据权利要求33所述的网络设备,其特征在于:A network device according to claim 33, wherein:
    所述指示网络设备网络设备可用来发送寻呼消息的波束的相关信息为如下任一种或多种信息:The information indicating the beam that the network device network device can use to send the paging message is any one or more of the following information:
    波束ID,OFDM符号序号,天线端口号,时隙号,子帧号,无线帧号。Beam ID, OFDM symbol number, antenna port number, slot number, subframe number, radio frame number.
  35. 根据上述权利要求任一所述的网络设备,其特征在于:所述寻呼相关信息是属于多种寻呼相关信息的一种。A network device according to any of the preceding claims, wherein said paging related information is one of a plurality of paging related information.
  36. 根据上述权利要求35所述的网络设备,其特征在于:多种寻呼相关信息包括eMBB寻呼相关信息,URLLC寻呼相关信息,MTC寻呼相关信息。The network device according to claim 35, wherein the plurality of paging related information comprises eMBB paging related information, URLLC paging related information, and MTC paging related information.
  37. 根据上述权利要求任一所述的网络设备,其特征在于:收发器还用于在指定时间和指定频段发送寻呼相关信息,所述指定时间和指定频段是属于多种寻呼相关信息所对应的时频资源中的一种。The network device according to any one of the preceding claims, wherein the transceiver is further configured to send paging related information at a specified time and a specified frequency band, where the specified time and the specified frequency band belong to a plurality of paging related information. One of the time-frequency resources.
  38. 根据上述权利要求37所述的网络设备,其特征在于:多种寻呼相关信息所对应的时频资源包括:eMBB寻呼相关信息所对应的时频资源,URLLC寻呼相关信息所对应的时频资源,MTC寻呼相关信息所对应的时频资源。The network device according to claim 37, wherein the time-frequency resources corresponding to the plurality of paging related information comprise: time-frequency resources corresponding to the eMBB paging-related information, and the time corresponding to the URLLC paging-related information Frequency resource, the time-frequency resource corresponding to the MTC paging related information.
  39. 根据上述权利要求37或者38所述的网络设备,其特征在于:多种寻呼相关信息所对应的时频资源之间是时分复用或者频分复用。The network device according to claim 37 or 38, wherein the time-frequency resources corresponding to the plurality of paging related information are time division multiplexed or frequency division multiplexed.
  40. 根据上述权利要求35-39任一所述的网络设备,其特征在于:多种寻呼相关信息所对应的时频资源,和,一个或多个同步信号资源块是时分复用或者频分复用。The network device according to any one of claims 35-39, characterized in that: the time-frequency resources corresponding to the plurality of paging related information, and the one or more synchronization signal resource blocks are time division multiplexed or frequency division multiplexed. use.
  41. 根据上述权利要求任一所述的网络设备,其特征在于:收发器还用于发送寻呼相关信息的资源配置消息,所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息。The network device according to any one of the preceding claims, wherein the transceiver is further configured to send a resource configuration message of the paging related information, where the resource configuration message of the paging related information is used to indicate at least one paging related Information about time-frequency resources corresponding to the information.
  42. 一种用户设备:其特征在于:包括处理器和收发器;其中,A user equipment: comprising: a processor and a transceiver; wherein
    收发器用于接收寻呼相关信息;The transceiver is configured to receive paging related information;
    收发器还用于根据所述寻呼相关信息获得寻呼消息。The transceiver is further configured to obtain a paging message according to the paging related information.
  43. 根据权利要求42所述的用户设备,其特征在于:The user equipment according to claim 42, wherein:
    收发器还用于根据所述寻呼相关信息获得寻呼消息具体为:The transceiver is further configured to obtain the paging message according to the paging related information, specifically:
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,寻呼消息,收发器检测到指示用户设备接收寻呼消息的信息,再进一步检测寻呼相关信息中的寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and the paging message, the transceiver detects the information indicating that the user equipment receives the paging message, and further detects the paging message in the paging related information.
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,寻呼消息的资源位置信息,和,寻呼消息,收发器检测到指示用户设备接收寻呼消息的信息,再进一步根据寻呼消息的资源位置信息检测寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, resource location information of the paging message, and a paging message, and the transceiver detects information indicating that the user equipment receives the paging message, and further according to the paging. The resource location information of the message detects the paging message;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,部分寻呼消息,和,是否还有其他部分寻呼消息的指示信息,收发器检测到指示用户设备接收寻呼消息的信息,再进一步检测部分寻呼消息,并且根据是否还有其他部分寻呼消息的指示信息检测其他部分寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and, part of the paging message, and whether there is indication information of other partial paging messages, and the transceiver detects that the user equipment receives the paging message. Information, further detecting part of the paging message, and detecting other partial paging messages according to whether there are other partial paging message indication information;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,收发器检测到指示用户设备接收寻呼消息的信息,再检测寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and the transceiver detects information indicating that the user equipment receives the paging message, and then detects the paging message;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,其他部分寻呼消息的资源位置信息,和,部分寻呼消息,收发器检测到指示用户设备接收寻呼消息的信息,再检测寻呼相关消息中的寻呼消息和根据其他部分寻呼消息的资源位置信息来检测其他部分寻呼消息;The paging related information includes information indicating that the user equipment receives the paging message, and resource location information of other partial paging messages, and a partial paging message, and the transceiver detects information indicating that the user equipment receives the paging message, And detecting the paging message in the paging related message and detecting the other partial paging message according to the resource location information of the other partial paging message;
    其中,寻呼相关信息包括指示用户设备接收寻呼消息的信息,和,寻呼消息的资源位置信息,收发器检测到指示用户设备接收寻呼消息的信息,再检测其他部分寻呼消息的资源位置信息来检测寻呼消息。The paging related information includes information indicating that the user equipment receives the paging message, and resource location information of the paging message, and the transceiver detects the information indicating that the user equipment receives the paging message, and then detects the resources of other partial paging messages. Location information to detect paging messages.
  44. 根据权利要求42或43所述的用户设备,其特征在于:User equipment according to claim 42 or 43, characterized in that:
    收发器发送波束信息,所述波束信息用于指示网络设备可用来发送寻呼消息的波束的相关信息;The transceiver transmits beam information, where the beam information is used to indicate information about a beam that the network device can use to send the paging message;
    收发器接收网络设备根据所述波束信息来发送其他部分寻呼消息或者寻呼消息。The transceiver receiving network device transmits other partial paging messages or paging messages according to the beam information.
  45. 根据上述任一权利要求所述的用户设备,其特征在于:User equipment according to any of the preceding claims, characterized in that:
    收发器使用随机接入资源来发送所述波束信息。The transceiver transmits the beam information using a random access resource.
  46. 根据权利要求45所述的用户设备,其特征在于:The user equipment according to claim 45, characterized in that:
    处理器使用随机接入资源来发送前导序列。The processor uses a random access resource to transmit the preamble sequence.
  47. 根据上述权利要求任一所述的用户设备,其特征在于:所述寻呼相关信息是属于多种寻呼相关信息的一种。The user equipment according to any of the preceding claims, wherein the paging related information is one of a plurality of paging related information.
  48. 根据上述权利要求47所述的用户设备,其特征在于:多种寻呼相关信息包括eMBB寻呼相关信息,URLLC寻呼相关信息,MTC寻呼相关信息。The user equipment according to claim 47, wherein the plurality of paging related information comprises eMBB paging related information, URLLC paging related information, and MTC paging related information.
  49. 根据上述权利要求任一所述的用户设备,其特征在于:收发器用于在指定时间接收寻呼相关信息。A user equipment according to any of the preceding claims, wherein the transceiver is operative to receive paging related information at a specified time.
  50. 根据权利要求49所述的用户设备,其特征在于:收发器还用于在指定时间和指定频段接收寻呼相关信息,所述指定时间和指定频段是属于多种寻呼相关信息所对应的时频资源中的一种。The user equipment according to claim 49, wherein the transceiver is further configured to receive paging related information at a specified time and a specified frequency band, where the specified time and the specified frequency band are corresponding to the plurality of paging related information. One of the frequency resources.
  51. 根据权利要求50所述的用户设备,其特征在于:多种寻呼相关信息所对应的时频资源包括:eMBB寻呼相关信息所对应的时频资源,URLLC寻呼相关信息所对应的时频资源,MTC寻呼相关信息所对应的时频资源。The user equipment according to claim 50, wherein the time-frequency resources corresponding to the plurality of paging related information comprise: time-frequency resources corresponding to eMBB paging related information, and time-frequency corresponding to URLLC paging related information Resource, time-frequency resource corresponding to MTC paging related information.
  52. 根据权利要求49或50所述的用户设备,其特征在于:多种寻呼相关信息所对应的时频资源之间是时分复用或者频分复用。The user equipment according to claim 49 or 50, characterized in that the time-frequency resources corresponding to the plurality of paging related information are time division multiplexing or frequency division multiplexing.
  53. 根据权利要求50-52任一所述的用户设备,其特征在于:多种寻呼相关信息所对应的时频资源,和,一个或多个同步信号资源块是时分复用或者频分复用。The user equipment according to any one of claims 50-52, characterized in that: the time-frequency resources corresponding to the plurality of paging related information, and the one or more synchronization signal resource blocks are time division multiplexing or frequency division multiplexing. .
  54. 根据上述权利要求任一所述的用户设备,其特征在于:用户设备接收寻呼相关信息的资源配置消息,所述寻呼相关信息的资源配置消息用于指示至少一种寻呼相关信息所对应的时频资源的信息。The user equipment according to any one of the preceding claims, wherein the user equipment receives a resource configuration message of the paging related information, where the resource configuration message of the paging related information is used to indicate that at least one type of paging related information corresponds to Information on time-frequency resources.
PCT/CN2018/071640 2017-01-06 2018-01-05 Multi-sectorized antenna and communication system WO2018127150A1 (en)

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KR1020197023139A KR102274089B1 (en) 2017-01-06 2018-01-05 Paging method and apparatus
BR112019014014-0A BR112019014014B1 (en) 2017-01-06 2018-01-05 COMMUNICATION METHOD, COMMUNICATION DEVICE, AND COMPUTER READable STORAGE MEDIA
CA3049500A CA3049500C (en) 2017-01-06 2018-01-05 Paging method and apparatus
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