WO2021143918A1 - 小区重选的方法及设备 - Google Patents

小区重选的方法及设备 Download PDF

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Publication number
WO2021143918A1
WO2021143918A1 PCT/CN2021/072628 CN2021072628W WO2021143918A1 WO 2021143918 A1 WO2021143918 A1 WO 2021143918A1 CN 2021072628 W CN2021072628 W CN 2021072628W WO 2021143918 A1 WO2021143918 A1 WO 2021143918A1
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WO
WIPO (PCT)
Prior art keywords
frequency priority
information
terminal
frequency
effective
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PCT/CN2021/072628
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English (en)
French (fr)
Inventor
张晓然
胡南
徐晓东
刘亮
Original Assignee
中国移动通信有限公司研究院
中国移动通信集团有限公司
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
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Application filed by 中国移动通信有限公司研究院, 中国移动通信集团有限公司 filed Critical 中国移动通信有限公司研究院
Priority to US17/793,514 priority Critical patent/US20230072951A1/en
Priority to EP21741429.1A priority patent/EP4093089A4/en
Priority to JP2022543729A priority patent/JP2023512493A/ja
Priority to CA3168455A priority patent/CA3168455A1/en
Priority to AU2021207189A priority patent/AU2021207189B2/en
Priority to MX2022008883A priority patent/MX2022008883A/es
Priority to BR112022014090-8A priority patent/BR112022014090B1/pt
Publication of WO2021143918A1 publication Critical patent/WO2021143918A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/34Reselection control
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/18Selecting a network or a communication service
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/20Selecting an access point
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0453Resources in frequency domain, e.g. a carrier in FDMA
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/56Allocation or scheduling criteria for wireless resources based on priority criteria
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/22Processing or transfer of terminal data, e.g. status or physical capabilities
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information

Definitions

  • the embodiments of the present disclosure relate to the field of communication technologies, and in particular, to a method and device for cell reselection.
  • the terminal in the idle state performs cell reselection based on the frequency priority configured by the network, and selects the frequency where the priority resides.
  • the broadcast frequency priority is the same for all terminals in the cell, and users cannot be distinguished.
  • RRC release radio resource control release
  • dedicated frequency priority is mainly used for network load balancing and offloading users to relatively idle carriers.
  • 5G era of wireless communication technology with the diversification of terminal types and the diversification of services supported by the terminal, the use of dedicated frequency priorities has become more diverse and flexible.
  • the same terminal can support multiple slice services, and the cell can also support multiple slice services, and the terminal can only access the sliced cell it supports.
  • the network configures a dedicated frequency priority for the terminal according to the slice supported by the terminal (for example, the frequency priority that supports the slice is increased), but when the terminal moves in other cells, the terminal will continue to use it according to the existing protocol Dedicated frequency priority, but in the new cell, the slice may no longer be supported. Therefore, still using the dedicated frequency priority at this time cannot achieve the original purpose, and may cause network load imbalance.
  • MR-DC multi-radio access technology dual connectivity
  • E-UTRA-NR Dual Connectivity, EN-DC 5G terminals and Ordinary 4G terminals all reside in the 4G LTE network in the idle state, but the network can configure a dedicated frequency priority for EN-DC terminals that is different from that for LTE terminals (for example, the LTE carrier frequency priority that supports EN-DC is increased).
  • the EN-DC terminal moves to other cells, according to the existing agreement, the terminal will continue to use the dedicated frequency priority, but in the new cell, there may be no 5G coverage. Therefore, the dedicated frequency priority terminal still cannot work in the 5G mode at this time, and may cause network load imbalance.
  • the embodiments of the present disclosure provide a method and device for cell reselection to solve the problem that the configured frequency priority cannot satisfy the flexibility of multiple terminal types and multiple services.
  • some embodiments of the present disclosure provide a method for cell reselection, which is applied to a terminal, and includes:
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the method further includes:
  • the priority index information determines the frequency priority used in cell reselection.
  • the indication information indicates one or more of the following:
  • the capability information of the terminal and/or the instruction information sent by the network device and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority Information, or the index information of the frequency priority, to determine the frequency priority used in cell reselection, including one or more of the following:
  • the frequency priority reason, or information about whether the frequency priority is effective, or the effective condition information of the frequency priority, or the index information of the frequency priority indicates: the frequency priority information adopted by the terminal, Determining the frequency priority corresponding to the frequency priority information as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support MR-DC, and the terminal supports MR-DC, Determine the frequency priority corresponding to the MR-DC as the frequency priority used in cell reselection;
  • the terminal receives the slice type supported by the cell and/or the neighboring cell, and the terminal supports slice or is about to initiate and slice For related services, the frequency priority corresponding to the slice is determined as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support the preset private network, or the When the terminal receives the private network type supported by the cell and/or the neighboring cell, and the terminal is in the preset private network, the frequency priority corresponding to the preset private network is determined as the current Frequency priority used in cell reselection;
  • the terminal receives the slice type supported by the cell and/or neighboring cells, and the terminal does not support slices, Determining the frequency priority corresponding to the load balancing or default as the frequency priority used in cell reselection;
  • the terminal receives that the current cell and/or neighboring cells support MR-DC, and the terminal does not support the MR-DC, the frequency priority corresponding to the load balancing or default is determined as the frequency priority used in cell reselection;
  • the frequency priority reason or the effective condition information of the frequency priority indicates: load balancing or default, and the terminal does not receive the indication information, the frequency priority corresponding to the load balancing or default is determined Is the frequency priority used in cell reselection.
  • the method further includes:
  • the frequency priority activation information sent by the network device is received, then according to the frequency priority activation information and the frequency priority reason, or information about whether the frequency priority is effective, or information about the effective condition of the frequency priority Or the index information of the frequency priority to determine the frequency priority used in cell reselection;
  • the default frequency priority is adopted as the cell reselection frequency priority.
  • the index information of the frequency priority includes:
  • the method further includes:
  • the method further includes:
  • the capability information of the terminal includes one or more of the following:
  • the MR-DC frequency band combination supported by the terminal is the MR-DC frequency band combination supported by the terminal.
  • some embodiments of the present disclosure also provide a method for cell reselection, which is applied to network equipment, and includes:
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the frequency priority and the frequency priority reason corresponding to the frequency priority are sent to the terminal, or information about whether the frequency priority is effective, or the effective condition information of the frequency priority, or
  • the index information of the frequency priority includes:
  • some embodiments of the present disclosure also provide a terminal, including:
  • the first receiving module is configured to receive the frequency priority from the network device, and the frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or the effective condition information of the frequency priority, Or index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • some embodiments of the present disclosure also provide a terminal, including: a first transceiver and a first processor;
  • the first transceiver is used for the first receiving module, and is used for receiving frequency priority from a network device, and the frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or The effective condition information of the frequency priority, or the index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • some embodiments of the present disclosure also provide a network device, including:
  • the second sending module is configured to send to the terminal the frequency priority and the frequency priority reason corresponding to the frequency priority, or whether the frequency priority is effective or not, or the effective condition information of the frequency priority, or Index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • some embodiments of the present disclosure also provide a network device, including: a second processor and a second transceiver;
  • the second transceiver is configured to send to the terminal the frequency priority, and the frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or information about the effective condition of the frequency priority , Or index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • some embodiments of the present disclosure also provide a communication device, including: a processor, a memory, and a program stored on the memory and capable of running on the processor, the program being used by the processor.
  • a communication device including: a processor, a memory, and a program stored on the memory and capable of running on the processor, the program being used by the processor.
  • some embodiments of the present disclosure further provide a computer-readable storage medium, wherein a computer program is stored on the computer-readable storage medium, and when the computer program is executed by a processor, the first aspect or the The steps of the method for cell reselection described in the second aspect.
  • an appropriate frequency priority can be selected for cell reselection according to the frequency priority reason, or whether it is effective information, or the effective condition, or index information, to satisfy multiple terminal types (for example, 5G terminals) And the flexibility of multiple businesses.
  • Figure 1 is a schematic diagram of the architecture of a wireless communication system
  • FIG. 2 is one of the flowcharts of the cell reselection method according to some embodiments of the present disclosure
  • FIG. 3 is the second flowchart of a cell reselection method according to some embodiments of the present disclosure
  • FIG. 4 is one of the schematic diagrams of the terminal of some embodiments of the present disclosure.
  • FIG. 5 is a second schematic diagram of a terminal according to some embodiments of the present disclosure.
  • FIG. 6 is one of the schematic diagrams of the network device of some embodiments of the present disclosure.
  • FIG. 7 is a second schematic diagram of a network device according to some embodiments of the present disclosure.
  • FIG. 8 is a schematic diagram of a communication device according to some embodiments of the disclosure.
  • words such as “exemplary” or “for example” are used as examples, illustrations, or illustrations. Any embodiment or design solution described as “exemplary” or “for example” in the embodiments of the present disclosure should not be construed as being more preferable or advantageous than other embodiments or design solutions. To be precise, words such as “exemplary” or “for example” are used to present related concepts in a specific manner.
  • the technology described in this article is not limited to the fifth-generation mobile communication (5th-generation, 5G) system and subsequent evolution communication systems, and is not limited to the LTE/LTE evolution (LTE-Advanced, LTE-A) system, and can also be used for various A kind of wireless communication system, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (Frequency Division Multiple Access, FDMA), Orthogonal Frequency Division Multiple Access (Orthogonal Frequency Division Multiple Access, OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA) and other systems.
  • CDMA Code Division Multiple Access
  • TDMA Time Division Multiple Access
  • FDMA Frequency Division Multiple Access
  • OFDMA Orthogonal Frequency Division Multiple Access
  • SC-FDMA Single-carrier Frequency-Division Multiple Access
  • the terms “system” and “network” are often used interchangeably.
  • the CDMA system can implement radio technologies such as CDMA2000 and Universal Terrestrial Radio Access (UTRA).
  • UTRA includes Wideband Code Division Multiple Access (WCDMA) and other CDMA variants.
  • the TDMA system can implement radio technologies such as the Global System for Mobile Communication (GSM).
  • OFDMA system can realize such as Ultra Mobile Broadband (UMB), Evolved UTRA ((Evolution-UTRA, E-UTRA)), IEEE 802.11 ((Wi-Fi)), IEEE802.16 ((WiMAX)), Radio technologies such as IEEE 802.20 and Flash-OFDM.
  • UMB Ultra Mobile Broadband
  • Evolved UTRA (Evolution-UTRA, E-UTRA)
  • IEEE 802.11 (Wi-Fi)
  • IEEE802.16 (WiMAX)
  • Radio technologies such as IEEE 802.20 and Flash-OFDM.
  • UMB Ultra Mobile Broadband
  • Evolved UTRA (Evolution-
  • LTE and more advanced LTE are new UMTS versions that use E-UTRA.
  • UTRA, E-UTRA, UMTS, LTE, LTE-A, and GSM are described in documents from an organization named "3rd Generation Partnership Project” (3GPP).
  • CDMA2000 and UMB are described in documents from an organization named “3rd Generation Partnership Project 2" (3GPP2).
  • the techniques described in this article can be used for the systems and radio technologies mentioned above, as well as other systems and radio technologies.
  • FIG. 1 it is a schematic diagram of the architecture of a wireless communication system provided by some embodiments of the present disclosure.
  • the wireless communication system may include: a first network device 10, a second network device 11, and a terminal 12.
  • the terminal 12 may be denoted as UE12, and the terminal 12 may be connected to the first network device 10 and the second network device 11.
  • Communication transmission of signaling or transmission of data.
  • the connection between the above-mentioned various devices may be a wireless connection.
  • a solid line is shown in FIG. 1.
  • the first network device 10 and the second network device 11 provided by some embodiments of the present disclosure may be a base station, and the base station may be a commonly used base station, or an evolved node base station (eNB), or Network equipment in the 5G system (for example, next generation node base station (gNB) or transmission and reception point (TRP)) and other equipment.
  • eNB evolved node base station
  • gNB next generation node base station
  • TRP transmission and reception point
  • the terminal 12 may be a mobile phone, a tablet computer, a notebook computer, an Ultra-Mobile Personal Computer (UMPC), a netbook or a Personal Digital Assistant (PDA), a mobile Internet device (Mobile Internet Device, MID), Wearable Device (Wearable Device), or vehicle-mounted device, etc.
  • UMPC Ultra-Mobile Personal Computer
  • PDA Personal Digital Assistant
  • Mobile Internet Device Mobile Internet Device, MID
  • Wearable Device Wearable Device
  • vehicle-mounted device etc.
  • some embodiments of the present disclosure provide a method for cell reselection.
  • the method may be executed by a terminal, and the specific steps include: step 201.
  • Step 201 Receive a frequency priority and a frequency priority reason corresponding to the frequency priority from a network device, or information about whether the frequency priority is effective, or information about the effective condition of the frequency priority, or the frequency Priority index information;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • frequency priority is used to indicate the priority of the terminal using a certain frequency for cell reselection.
  • the content of the frequency priority may include: one or more frequencies and the priority of the frequency, where the priority may be represented by a numerical value, for example, the larger the numerical value, the higher the priority, and the smaller the numerical value, the lower the priority.
  • frequency priority may include: 1.8GHz frequency priority is 2 (higher), 1.9GH frequency priority is 1 (lower), that is, 1.8GHz frequency is preferentially used for cell reselection; another example is frequency priority It may include: 4.9 GHz frequency priority is 2 (higher), 2.6 GHz frequency priority is 1 (lower), that is, the 4.9 GHz frequency is preferentially used for cell reselection.
  • the frequency priority reason is used to indicate the reason for configuring the frequency priority, for example, load balancing, slicing, or MR-DC.
  • the information about whether the frequency priority is effective is used to indicate whether the frequency priority is effective, for example, load balancing, slicing, or MR-DC.
  • the effective condition of the frequency priority is used to indicate the condition of whether the frequency priority is effective, for example, load balancing, slicing, or MR-DC.
  • the frequency priority index information is used to indicate the frequency priority identification, for example: f1 frequency priority is 1, f2 frequency priority is 2, and the corresponding frequency priority index information is index 0; The frequency priority of f1 is 2, and the frequency priority of f2 is 1, which corresponds to the frequency priority index information index 1.
  • the frequency priority is received from the network device through a system message or dedicated signaling, and the frequency priority reason corresponding to the frequency priority, or whether the frequency priority is valid Information, or effective condition information of the frequency priority, or index information of the frequency priority.
  • the condition that needs to be met for cell reselection according to the frequency priority also includes: the cell where the terminal resides remains unchanged.
  • the terminal moves to another cell, that is, the camping cell changes, the broadcast frequency priority is invalid, and the terminal reads the frequency priority in the system message of the new camping cell, and performs cell reselection according to the frequency priority .
  • a frequency priority reason or whether it is valid information, or valid condition information, or index information may correspond to the first or more frequency priorities, and if the priority reason is met, the terminal may Use the frequency priority configured based on the priority reason.
  • the frequency priority reason, or validity information, or validity condition information may include one or more of the following:
  • the network sets a higher priority of a time-division duplex (TDD) frequency with a larger bandwidth to carry more users and perform load balancing.
  • TDD time-division duplex
  • slice The slice type supported by the terminal (or simply referred to as slice);
  • the network will support the URLLC slice service with a higher frequency priority setting, so that the terminal Preferentially reside on the frequency that supports URLLC slicing services;
  • URLLC Ultra Reliable & Low Latency Communication
  • the network deploys the LTE 1.8GHz+NR 2.6GHz NSA frequency band combination, and the terminal also supports the MR-DC Combination of frequency bands
  • the network will set the priority of 1.8GHz LTE frequency higher, so that MR-DC terminal will preferentially reside on 1.8GHz frequency. If it preferentially reside on other frequencies, it will cause the need to switch to 1.8GHz after entering the connected state. Only the frequency can be configured with MR-DC, causing additional switching overhead and delay.
  • the 2.6GHz frequency priority is 2 (higher), the 4.9GHz frequency priority is 1 (lower), and the reason for the frequency priority is load balancing.
  • the frequency priority of 4.9 GHz is 2 (higher), the frequency priority of 2.6 GHz is 1 (lower), and the reason for the frequency priority is slicing.
  • the 1.8GHz frequency priority is 2 (higher), and the 1.9GH frequency priority is 1 (lower); the reason for the frequency priority is MR-DC.
  • the method shown in FIG. 2 may further include: according to the capability information of the terminal and/or the indication information sent by the network device, and the frequency priority reason, or the frequency priority Whether to validate information, or valid condition information of the frequency priority, or index information of the frequency priority, determine the frequency priority used in cell reselection.
  • the indication information may indicate one or more of the following: (1) whether the current cell and/or neighboring cells support MR-DC; (2) the slice type supported by the current cell and/or neighboring cells; (3) ) Whether the cell and/or neighboring cell supports a preset private network; (4) The type of private network supported by the cell and/or neighboring cell; (5) Frequency priority information used by the terminal.
  • the frequency priority information used by the terminal specifically includes when the network configures multiple sets of frequency priority information by means of broadcast or dedicated information commands, the frequency priority information can indicate which set of frequency priority information the terminal uses to perform cell processing. Re-elect.
  • the frequency priority reason or the effective condition information of the frequency priority indicates: a preset private network, and the terminal receives that the cell and/or neighboring cells support the preset private network, or When the terminal receives the private network type supported by the cell and/or the neighboring cell, and the terminal is in the preset private network, the frequency priority corresponding to the preset private network is determined as all State the frequency priority used in cell reselection;
  • different methods may be used to determine the frequency priority used in cell reselection according to whether the terminal receives the frequency priority activation information sent by the network device.
  • step A the terminal receives frequency priority and frequency priority index information sent by the network; for example: f1 frequency priority is 1, f2 frequency priority is 2, and the corresponding frequency priority index information is index 0; f1 frequency The priority is 2, and the frequency priority of f2 is 1, corresponding to the frequency priority index information index 1.
  • step B The terminal receives the frequency priority activation information sent by the network; for example, the received frequency priority activation information is index 1, which means the terminal The frequency priority of index 1 is used as the frequency priority of cell reselection, that is, (f1 frequency priority is 2, f2 frequency priority is 1).
  • step A the terminal receives frequency priority and frequency priority index information sent by the network; for example: f1 frequency priority is 1, f2 frequency priority is 2, and the corresponding frequency priority index information is index 0; step B : If the terminal does not receive the frequency priority activation information sent by the network, the default frequency priority is used as the frequency priority for cell reselection.
  • the method shown in FIG. 2 may further include: receiving slice information from the network device, where the slice information includes information about one or more frequencies or slices supported by a cell.
  • the slice information may include: 4.9GHz supports URLLC slices, and 2.6GHz supports eMBB slices.
  • the slice information may include: 4.9GHz supports URLLC slices.
  • the above-mentioned cells include: a serving cell and/or a neighboring cell.
  • the method shown in FIG. 2 may further include: receiving MR-DC information of one or more cells from the network device;
  • the MR-DC information includes one or more of the following:
  • the cell supports the set wireless communication technology (for example, 5G) or MR-DC;
  • the above-mentioned cells include: a serving cell and/or a neighboring cell.
  • the method shown in FIG. 2 may further include: receiving the effective time of the frequency priority from the network device, before the effective time of the frequency priority expires, or after receiving Before reaching the new frequency priority, if the frequency priority is not satisfied as the frequency priority condition used in cell reselection, the frequency priority is suspended.
  • the effective time can be a point in time or a time period. For example, if the effective time of the frequency priority has not expired, it means that the frequency priority can be used; if the effective time of the frequency priority expires, it means that the frequency priority cannot be used. .
  • the frequency priority configured by the dedicated signaling has an effective time.
  • the terminal uses the frequency priority in the dedicated signaling for cell reselection; after the effective time, the dedicated frequency priority becomes invalid and the terminal uses system messages The frequency priority in the broadcast is used for cell reselection.
  • the method shown in FIG. 2 may further include: before the receiving the frequency priority and the frequency priority reason from the network device, the method further includes:
  • the terminal information includes one or more of the following:
  • an appropriate frequency priority can be selected for cell reselection according to the frequency priority reason, or whether it is effective information, or the effective condition, or index information, to satisfy multiple terminal types (for example, 5G terminals) And the flexibility of multiple businesses.
  • an appropriate frequency priority can be selected for cell reselection according to the frequency priority reason, or whether it is effective information, or the effective condition, or index information, to satisfy multiple terminal types (for example, 5G terminals) And the flexibility of multiple businesses.
  • some embodiments of the present disclosure also provide a method for cell reselection.
  • the method may be executed by a network device, and includes: step 301.
  • Step 301 Send to the terminal the frequency priority and the frequency priority reason corresponding to the frequency priority, or whether the frequency priority is effective, or the effective condition information of the frequency priority, or the frequency priority Level index information;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the method shown in FIG. 3 may further include: sending instruction information to the terminal, where the instruction information indicates one or more of the following:
  • the method shown in FIG. 3 may further include: sending slice information to the terminal, where the slice information includes: information of one or more frequencies or slices supported by the cell.
  • the method shown in FIG. 3 may further include: sending MR-DC information of one or more cells to the terminal;
  • the MR-DC information includes one or more of the following:
  • the method shown in FIG. 3 may further include: sending the effective time of the frequency priority to the terminal.
  • the method shown in FIG. 3 may further include: receiving information of the terminal, where the information of the terminal includes one or more of the following:
  • a suitable frequency priority can be selected for cell reselection according to frequency priority reasons, cell-related information, and terminal-related information to satisfy multiple terminal types (such as 5G terminals) and multiple Business flexibility.
  • Embodiment 1 describes the cell reselection process in some embodiments of the present disclosure in conjunction with Embodiment 1, Embodiment 2, Embodiment 3, and Embodiment 4.
  • the network sends frequency priority through dedicated signaling, including: 4.9GHz frequency priority is 2 (higher), 2.6GHz frequency priority is 1 (lower), where the frequency priority reasons include: the type of slice supported by the terminal.
  • the slicing information sent by the network includes: 4.9GHz supports URLLC slicing, and 2.6GHz supports eMBB slicing.
  • the terminal that supports URLLC uses the frequency priority sent by dedicated signaling for cell reselection.
  • the cell's slice information sent by the cell includes: both 4.9GHz and 2.6GHz support eMBB services (the slice information in this cell does not include the slices supported by the terminal).
  • the URLLC terminal finds that the slice information in the cell does not include slices supported by the terminal, it does not use the dedicated frequency priority sent by the network for cell reselection, and uses the frequency priority in the broadcast message for cell reselection.
  • the frequency priority sent by the network through dedicated signaling includes: 4.9 GHz frequency priority is 2 (higher), 2.6 GHz frequency priority is 1 (lower), where the frequency priority reasons include: the slice type supported by the terminal.
  • the slicing information sent by the network includes: 4.9GHz supports URLLC slicing, and 2.6GHz supports eMBB slicing.
  • the terminal that supports URLLC uses the frequency priority sent by dedicated signaling for cell reselection.
  • the cell's slice information sent by the cell includes: 4.9GHz and 2.6GHz both support eMBB services; the neighbor cell's slice information includes: 4.9GHz supports URLLC slices, and 2.6GHz supports eMBB slices.
  • the URLLC terminal finds that the slice information includes the URLLC slice, it continues to use the frequency priority sent by the network dedicated signaling for cell reselection.
  • the network sends frequency priority through dedicated signaling, including: 1.8GHz frequency priority is 2 (higher), 1.9GH frequency priority is 1 (lower), among which the reasons for frequency priority include: MR-DC deployed by the network Frequency band combination and/or MR-DC frequency band combination supported by the terminal.
  • the network sends MR-DC information, including: 5G or MR-DC is supported, and the supported MR-DC frequency band combination is 1.8GHz (LTE) + 2.6GHz (NR).
  • the frequency priority sent by dedicated signaling is used for cell reconfiguration. select.
  • the terminal uses the frequency priority in the broadcast message to perform cell reselection.
  • the network sends the first frequency priority through a broadcast message, including: 4.9GHz frequency priority is 2 (higher), 2.6GHz frequency priority is 1 (lower), the reasons for frequency priority include: the type of slice supported by the terminal; Send the second frequency priority, including: 2.6GHz frequency priority is 2 (higher), 4.9GHz frequency priority is 1 (lower), frequency priority reason is load balancing
  • the slicing information sent by the network includes: 4.9GHz supports URLLC slicing.
  • the terminal supporting URLLC uses the frequency priority of the slice type supported by the terminal to perform cell reselection, for example, select 4.9 GHz for cell reselection.
  • Ordinary terminals that do not support URLLC use frequency priority for load balancing for cell reselection. For example, select 2.6 GHz for cell reselection.
  • the broadcast frequency priority becomes invalid.
  • the terminal reads the frequency priority in the system message of the new camping cell, and performs cell reselection according to the frequency priority.
  • the URLLC terminal finds that the slice information in the cell does not include slices supported by the terminal, it does not use the frequency priority sent by dedicated signaling for cell reselection, and uses the frequency priority in the broadcast message for cell reselection.
  • some embodiments of the present disclosure also provide a terminal, and the terminal 400 includes:
  • the first receiving module 401 is configured to receive a frequency priority and a frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or information about the effective condition of the frequency priority, from a network device , Or index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the terminal 400 further includes:
  • the first determining module is configured to perform, according to the capability information of the terminal and/or the instruction information sent by the network device, and the reason for the frequency priority, or information about whether the frequency priority is valid, or the validity of the frequency priority
  • the condition information or the index information of the frequency priority determines the frequency priority used in cell reselection.
  • the indication information indicates one or more of the following:
  • the first determining module is further used to:
  • the frequency priority reason, or information about whether the frequency priority is effective, or the effective condition information of the frequency priority, or the index information of the frequency priority indicates: the frequency priority information adopted by the terminal, Determining the frequency priority corresponding to the frequency priority information as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support MR-DC, and the terminal supports MR-DC, Determine the frequency priority corresponding to the MR-DC as the frequency priority used in cell reselection;
  • the terminal receives the slice type supported by the cell and/or the neighboring cell, and the terminal supports slice or is about to initiate and slice For related services, the frequency priority corresponding to the slice is determined as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support the preset private network, or the When the terminal receives the private network type supported by the cell and/or the neighboring cell, and the terminal is in the preset private network, the frequency priority corresponding to the preset private network is determined as the current Frequency priority used in cell reselection;
  • the terminal receives the slice type supported by the cell and/or neighboring cells, and the terminal does not support slices, Determining the frequency priority corresponding to the load balancing or default as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support MR-DC, and the terminal does not support all In the MR-DC, the frequency priority corresponding to the load balancing or default is determined as the frequency priority used in cell reselection;
  • the frequency priority reason or the effective condition information of the frequency priority indicates: load balancing or default, and the terminal does not receive the indication information, the frequency priority corresponding to the load balancing or default is determined Is the frequency priority used in cell reselection.
  • the terminal 400 further includes: a second determining module, configured to: if the frequency priority activation information sent by the network device is received, activate according to the frequency priority information and the frequency priority reason, or Whether the frequency priority is effective or not, or the effective condition information of the frequency priority, or the index information of the frequency priority, determines the frequency priority used in cell reselection; if the information sent by the network device is not received For the frequency priority activation information, the default frequency priority is used as the frequency priority for cell reselection.
  • a second determining module configured to: if the frequency priority activation information sent by the network device is received, activate according to the frequency priority information and the frequency priority reason, or Whether the frequency priority is effective or not, or the effective condition information of the frequency priority, or the index information of the frequency priority, determines the frequency priority used in cell reselection; if the information sent by the network device is not received For the frequency priority activation information, the default frequency priority is used as the frequency priority for cell reselection.
  • the first receiving module 401 is further configured to: receive a frequency priority from a network device through a broadcast message or dedicated signaling, and the frequency priority reason corresponding to the frequency priority, or the frequency priority Whether the level is valid or not, or the valid condition information of the frequency priority, or the index information of the frequency priority.
  • the terminal 400 further includes: a second receiving module, configured to receive the effective time of the frequency priority from the network device;
  • the terminal 400 further includes: a first sending module, which sends capability information of the terminal to the network device, and the capability information of the terminal includes one or more of the following:
  • the MR-DC frequency band combination supported by the terminal is the MR-DC frequency band combination supported by the terminal.
  • the terminal may execute the embodiment shown in FIG. 2 above, and its implementation principles and technical effects are similar, and details are not described herein again in this embodiment.
  • the terminal 500 includes: a first transceiver 501 and a first processor 502;
  • the first transceiver 501 is configured to receive a frequency priority from a network device, and the frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or information about the effective condition of the frequency priority , Or index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the first processor 502 is configured to, according to the capability information of the terminal and/or the instruction information sent by the network device, and the reason for the frequency priority, or information about whether the frequency priority is valid, or The effective condition information of the frequency priority or the index information of the frequency priority determines the frequency priority used in cell reselection.
  • the indication information indicates one or more of the following:
  • the first determining module is further used to:
  • the frequency priority reason, or information about whether the frequency priority is effective, or the effective condition information of the frequency priority, or the index information of the frequency priority indicates: the frequency priority information adopted by the terminal, Determining the frequency priority corresponding to the frequency priority information as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support MR-DC, and the terminal supports MR-DC, Determine the frequency priority corresponding to the MR-DC as the frequency priority used in cell reselection;
  • the terminal receives the slice type supported by the cell and/or the neighboring cell, and the terminal supports slice or is about to initiate and slice For related services, the frequency priority corresponding to the slice is determined as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support the preset private network, or the When the terminal receives the private network type supported by the cell and/or the neighboring cell, and the terminal is in the preset private network, the frequency priority corresponding to the preset private network is determined as the current Frequency priority used in cell reselection;
  • the terminal receives the slice type supported by the cell and/or neighboring cells, and the terminal does not support slices, Determining the frequency priority corresponding to the load balancing or default as the frequency priority used in cell reselection;
  • the terminal receives that the cell and/or neighboring cells support MR-DC, and the terminal does not support all In the MR-DC, the frequency priority corresponding to the load balancing or default is determined as the frequency priority used in cell reselection;
  • the frequency priority reason or the effective condition information of the frequency priority indicates: load balancing or default, and the terminal does not receive the indication information, the frequency priority corresponding to the load balancing or default is determined Is the frequency priority used in cell reselection.
  • the first processor 502 is further configured to: if the frequency priority activation information sent by the network device is received, according to the frequency priority activation information and the frequency priority reason, or the frequency priority Whether the priority is valid or not, or the valid condition information of the frequency priority, or the index information of the frequency priority, determines the frequency priority used in cell reselection; if the frequency priority sent by the network device is not received, the frequency priority is activated Information, the default frequency priority is used as the frequency priority for cell reselection.
  • the first transceiver 501 is further configured to: receive a frequency priority from a network device through a broadcast message or dedicated signaling, and the frequency priority reason corresponding to the frequency priority, or the frequency priority Whether the level is valid or not, or the valid condition information of the frequency priority, or the index information of the frequency priority.
  • the first transceiver 501 is further configured to receive the effective time of the frequency priority from the network device;
  • the first transceiver 501 is further configured to send capability information of the terminal to the network device, and the capability information of the terminal includes one or more of the following:
  • the MR-DC frequency band combination supported by the terminal is the MR-DC frequency band combination supported by the terminal.
  • the terminal may execute the embodiment shown in FIG. 2 above, and its implementation principles and technical effects are similar, and details are not described herein again in this embodiment.
  • some embodiments of the present disclosure also provide a network device, and the network device 600 includes:
  • the second sending module 601 is configured to send to the terminal the frequency priority, and the frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or the effective condition information of the frequency priority, Or index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the second sending module 601 is further configured to send the frequency priority and the frequency priority reason corresponding to the frequency priority to the terminal through a broadcast message or dedicated signaling, or the frequency priority Whether the priority is valid or not, or the valid condition information of the frequency priority, or the index information of the frequency priority.
  • the network device provided by some embodiments of the present disclosure may execute the embodiment shown in FIG. 3 above, and its implementation principles and technical effects are similar, and details are not described herein again in this embodiment.
  • the network device 700 includes: a second processor 701 and a second transceiver 702;
  • the second processor 701 is configured to send to the terminal the frequency priority, and the frequency priority reason corresponding to the frequency priority, or information about whether the frequency priority is effective, or information about the effective condition of the frequency priority, Or index information of the frequency priority;
  • the frequency priority, and the reason for the frequency priority, or information about whether the frequency priority is effective, or the effective condition of the frequency priority, or the index information of the frequency priority is used by the terminal to perform cell Re-elect.
  • the second processor 701 is further configured to: send a frequency priority and a frequency priority reason corresponding to the frequency priority to the terminal through a broadcast message or dedicated signaling, or the frequency priority Whether the priority is valid or not, or the valid condition information of the frequency priority, or the index information of the frequency priority.
  • the network device provided by some embodiments of the present disclosure may execute the embodiment shown in FIG. 3 above, and its implementation principles and technical effects are similar, and details are not described herein again in this embodiment.
  • FIG. 8 is a structural diagram of a communication device applied in some embodiments of the present disclosure.
  • the communication device 800 includes: a processor 801, a transceiver 802, a memory 803, and a bus interface.
  • the device 801 can be responsible for managing the bus architecture and general processing.
  • the memory 803 may store data used by the processor 801 when performing operations.
  • the communication device 800 further includes: a computer program that is stored in the memory 803 and can run on the processor 801, and the computer program is executed by the processor 801 to realize the above shown in FIG. 2 or FIG. Steps in the method.
  • the bus architecture may include any number of interconnected buses and bridges. Specifically, one or more processors represented by the processor 801 and various circuits of the memory represented by the memory 803 are linked together.
  • the bus architecture can also link various other circuits such as peripheral devices, voltage regulators, power management circuits, etc., which are all known in the art, and therefore, no further descriptions are provided herein.
  • the bus interface provides the interface.
  • the transceiver 802 may be a plurality of elements, including a transmitter and a receiver, and provide a unit for communicating with various other devices on a transmission medium.
  • the communication device provided by some embodiments of the present disclosure can execute the method embodiment shown in FIG. 2 or FIG. 3, and its implementation principles and technical effects are similar, and the details are not described herein again in this embodiment.
  • the steps of the method or algorithm described in conjunction with the disclosure of the present disclosure may be implemented in a hardware manner, or may be implemented in a manner of executing software instructions on a processor.
  • the software instructions can be composed of corresponding software modules, and the software modules can be stored in RAM, flash memory, ROM, EPROM, EEPROM, registers, hard disks, mobile hard disks, read-only optical disks, or any other form of storage medium known in the art.
  • An exemplary storage medium is coupled to the processor, so that the processor can read information from the storage medium and write information to the storage medium.
  • the storage medium may also be an integral part of the processor.
  • the processor and storage medium can be carried in an ASIC.
  • the ASIC can be carried in the core network interface device.
  • the processor and the storage medium may also exist as discrete components in the core network interface device.
  • the functions described in the present disclosure can be implemented by hardware, software, firmware, or any combination thereof.
  • these functions can be stored in a computer-readable medium or transmitted as one or more instructions or codes on the computer-readable medium.
  • the computer-readable medium includes a computer storage medium and a communication medium, where the communication medium includes any medium that facilitates the transfer of a computer program from one place to another.
  • the storage medium may be any available medium that can be accessed by a general-purpose or special-purpose computer.
  • the embodiments of the present disclosure can be provided as a method, a system, or a computer program product. Therefore, the embodiments of the present disclosure may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, the embodiments of the present disclosure may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
  • computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
  • modules, units, sub-modules, sub-units, etc. can be implemented in one or more application specific integrated circuits (ASICs), digital signal processors (Digital Signal Processing, DSP), digital signal processing equipment ( DSP Device, DSPD), Programmable Logic Device (Programmable Logic Device, PLD), Field-Programmable Gate Array (Field-Programmable Gate Array, FPGA), general-purpose processors, controllers, microcontrollers, microprocessors, Other electronic units or combinations thereof that perform the functions described in the present disclosure.
  • ASICs application specific integrated circuits
  • DSP Digital Signal Processing
  • DSP Device digital signal processing equipment
  • PLD Programmable Logic Device
  • Field-Programmable Gate Array Field-Programmable Gate Array
  • FPGA Field-Programmable Gate Array
  • These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing equipment to work in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture including the instruction device.
  • the device implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
  • These computer program instructions can also be loaded on a computer or other programmable data processing equipment, so that a series of operation steps are executed on the computer or other programmable equipment to produce computer-implemented processing, so as to execute on the computer or other programmable equipment.
  • the instructions provide steps for implementing the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.

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Abstract

提供一种小区重选的方法及设备,该方法包括:从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。

Description

小区重选的方法及设备
相关申请的交叉引用
本申请主张在2020年1月19日在中国提交的中国专利申请号No.202010057898.1的优先权,其全部内容通过引用包含于此。
技术领域
本公开实施例涉及通信技术领域,尤其涉及一种小区重选的方法及设备。
背景技术
空闲态的终端通过网络配置的频率优先级进行小区重选,选择优先驻留的频率,频率优先级配置的方式有两种:
(1)在系统消息中广播频率优先级,广播的频率优先级对于小区内所有终端都一样,无法区分用户
(2)通过专用信令(例如:无线资源控制释放(RRC release)消息)配置频率优先级。
在第四代无线通信技术(fourth generation,4G)时代,专用频率优先级主要用于网络进行负载均衡,将用户卸载到较为空闲的载波上。第五代无线通信技术(5th generation,5G)时代,随着终端类型多样化,终端支持的业务的多样化,专用的频率优先级的使用也更加多样和灵活。
例如,5G中引入的切片,同一个终端可以支持多个切片业务,小区也可以支持多个切片业务,终端仅能接入自己支持的切片的小区。通过相关技术,网络根据终端支持的切片,为终端配置了专用的频率优先级(例如将支持该切片的频率优先级提升),但是当终端移动其他小区中,按照现有协议,终端将继续使用专用的频率优先级,但是新小区中,可能已不支持该切片。因此,此时仍然使用该专用的频率优先级无法起到原来的目的,且可能导致网络负载不均衡。
再例如,在多无线接入技术双连接(MR-DC)场景中,以4G无线接入网与5G NR的双连接(E-UTRA-NR Dual Connectivity,EN-DC)为例,5G 终端和普通4G终端在空闲态均驻留在4G LTE网络中,但是网络可以为EN-DC终端配置和LTE终端不同的专用的频率优先级(例如将支持EN-DC的LTE载波频率优先级提升)。但是当EN-DC终端移动到其他小区,按照现有协议,终端将继续使用专用的频率优先级,但是在新小区中,可能已没有5G覆盖。因此,此时仍然使用专用的频率优先级终端也无法工作在5G模式下,且可能导致网络负载不均衡。
由此可知,配置的频率优先级无法满足多种终端类型和多样业务的灵活性。
发明内容
本公开实施例提供一种小区重选的方法及设备,解决配置的频率优先级无法满足多种终端类型和多样业务的灵活性的问题。
第一方面,本公开的一些实施例提供一种小区重选的方法,应用于终端,包括:
从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
可选地,所述方法还包括:
根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级。
可选地,所述指示信息指示以下一项或多项:
本小区和/或邻区是否支持MR-DC;
本小区和/或邻区支持的切片类型;
本小区和/或邻区是否支持预设的专用网络;
本小区和/或邻区支持的专用网络类型。
可选地,所述根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级,包括以下一项或多项:
如果所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息表示:所述终端采用的频率优先级信息,则将与所述频率优先级信息对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:MR-DC,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端支持MR-DC,则将与所述MR-DC对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:切片,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端支持切片或将要发起与切片相关的业务,则将与所述切片对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:预设的专用网络,所述终端接收到本小区和/或邻区支持所述预设的专用网络,或者所述终端接收到本小区和/或邻区支持的专用网络类型,且所述终端处于所述预设的专用网络中,则将与所述预设的专用网络对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端不支持切片,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端 不支持所述MR-DC,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端未接收所述指示信息,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级。
可选地,所述方法还包括:
如果接收到网络设备发送的频率优先级激活信息,则根据所述频率优先级激活信息和所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级;
如果没有接收到网络设备发送的频率优先级激活信息,则采用默认的频率优先级作为小区重选频率优先级。
可选地,所述从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,包括:
通过广播消息或者专用信令,从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
可选地,所述方法还包括:
从所述网络设备接收所述频率优先级的生效时间;
在所述频率优先级的生效时间到期之前,或者在接收到新的频率优先级之前,如果不满足将所述频率优先级确定为所述在小区重选时使用的频率优先级条件,则将所述频率优先级挂起。
可选地,所述方法还包括:
向所述网络设备发送所述终端的能力信息,所述终端的能力信息包括以下一项或多项:
所述终端支持的切片的信息;
所述终端支持的MR-DC频段组合。
第二方面,本公开的一些实施例还提供一种小区重选的方法,应用于网络设备,包括:
向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
可选地,所述向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,包括:
通过广播消息或者专用信令,向所述终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
第三方面,本公开的一些实施例还提供一种终端,包括:
第一接收模块,用于从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
第四方面,本公开的一些实施例还提供一种终端,包括:第一收发机和第一处理器;
所述第一收发机,用于第一接收模块,用于从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
第五方面,本公开的一些实施例还提供一种网络设备,包括:
第二发送模块,用于向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
第六方面,本公开的一些实施例还提供一种网络设备,包括:第二处理器和第二收发机;
所述第二收发机,用于向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
第七方面,本公开的一些实施例还提供一种通信设备,包括:处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序,所述程序被所述处理器执行时实现如第一方面或第二方面所述的小区重选的方法的步骤。
第八方面,本公开的一些实施例还提供一种计算机可读存储介质,其中,所述计算机可读存储介质上存储有计算机程序,所述计算机程序被处理器执行时实现如第一方面或第二方面所述的小区重选的方法的步骤。
在本公开的一些实施例中,可以根据频率优先级原因、或者是否生效信息、或者生效条件、或者索引信息,选择合适的频率优先级进行小区重选,满足多种终端类型(例如5G终端)和多种业务的灵活性。
附图说明
通过阅读下文优选实施方式的详细描述,各种其他的优点和益处对于本领域普通技术人员将变得清楚明了。附图仅用于示出优选实施方式的目的,而并不认为是对本公开的限制。而且在整个附图中,用相同的参考符号表示相同的部件。在附图中:
图1为无线通信系统的架构示意图;
图2为本公开的一些实施例的小区重选的方法的流程图之一;
图3为本公开的一些实施例的小区重选的方法的流程图之二;
图4为本公开的一些实施例的终端的示意图之一;
图5为本公开的一些实施例的终端的示意图之二;
图6为本公开的一些实施例的网络设备的示意图之一;
图7为本公开的一些实施例的网络设备的示意图之二;
图8为本公开的一些实施例的通信设备的示意图。
具体实施方式
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
本申请的说明书和权利要求书中的术语“包括”以及它的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。此外,说明书以及权利要求中使用“和/或”表示所连接对象的至少其中之一,例如A和/或B,表示包含单独A,单独B,以及A和B都存在三种情况。
在本公开实施例中,“示例性的”或者“例如”等词用于表示作例子、例证或说明。本公开实施例中被描述为“示例性的”或者“例如”的任何实施例或设计方案不应被解释为比其它实施例或设计方案更优选或更具优势。确切而言,使用“示例性的”或者“例如”等词旨在以具体方式呈现相关概念。
本文所描述的技术不限于第五代移动通信(5th-generation,5G)系统以 及后续演进通信系统,以及不限于LTE/LTE的演进(LTE-Advanced,LTE-A)系统,并且也可用于各种无线通信系统,诸如码分多址(Code Division Multiple Access,CDMA)、时分多址(Time Division Multiple Access,TDMA)、频分多址(Frequency Division Multiple Access,FDMA)、正交频分多址(Orthogonal Frequency Division Multiple Access,OFDMA)、单载波频分多址(Single-carrier Frequency-Division Multiple Access,SC-FDMA)和其他系统。
术语“系统”和“网络”常被可互换地使用。CDMA系统可实现诸如CDMA2000、通用地面无线电接入(Universal Terrestrial Radio Access,UTRA)等无线电技术。UTRA包括宽带CDMA(Wideband Code Division Multiple Access,WCDMA)和其他CDMA变体。TDMA系统可实现诸如全球移动通信系统(Global System for Mobile Communication,GSM)之类的无线电技术。OFDMA系统可实现诸如超移动宽带(Ultra Mobile Broadband,UMB)、演进型UTRA((Evolution-UTRA,E-UTRA))、IEEE 802.11((Wi-Fi))、IEEE802.16((WiMAX))、IEEE 802.20、Flash-OFDM等无线电技术。UTRA和E-UTRA是通用移动电信系统(Universal Mobile Telecommunications System,UMTS)的部分。LTE和更高级的LTE(如LTE-A)是使用E-UTRA的新UMTS版本。UTRA、E-UTRA、UMTS、LTE、LTE-A以及GSM在来自名为“第三代伙伴项目”(3rd Generation Partnership Project,3GPP)的组织的文献中描述。CDMA2000和UMB在来自名为“第三代伙伴项目2”(3GPP2)的组织的文献中描述。本文所描述的技术既可用于以上提及的系统和无线电技术,也可用于其他系统和无线电技术。
下面结合附图介绍本公开的实施例。本公开的一些实施例提供的一种小区重选的方法及设备可以应用于无线通信系统中。参考图1,为本公开的一些实施例提供的一种无线通信系统的架构示意图。如图1所示,该无线通信系统可以包括:第一网络设备10、第二网络设备11和终端12,终端12可以记做UE12,终端12可以与第一网络设备10、第二网络设备11通信(传输信令或传输数据)。在实际应用中上述各个设备之间的连接可以为无线连接,为了方便直观地表示各个设备之间的连接关系,图1中采用实线示意。
本公开的一些实施例提供的第一网络设备10、第二网络设备11可以为 基站,该基站可以为通常所用的基站,也可以为演进型基站(evolved node base station,eNB),还可以为5G系统中的网络设备(例如,下一代基站(next generation node base station,gNB)或发送和接收点(transmission and reception point,TRP))等设备。
本公开的一些实施例提供的终端12可以为手机、平板电脑、笔记本电脑、超级移动个人计算机(Ultra-Mobile Personal Computer,UMPC)、上网本或者个人数字助理(Personal Digital Assistant,PDA)、移动上网装置(Mobile Internet Device,MID)、可穿戴式设备(Wearable Device)或车载设备等。
参见图2,本公开的一些实施例提供一种小区重选的方法,该方法的执行主体可以为终端,具体步骤包括:步骤201。
步骤201:从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
在本公开的一些实施例中,频率优先级用于表示终端采用某种频率进行小区重选的优先程度。示例性地,频率优先级的内容可以包括:一个或多个频率和该频率的优先级,其中优先级可以通过数值表示,比如,数值越大优先级越高,数值越小优先级越低。
例如,频率优先级可以包括:1.8GHz频率优先级为2(较高),1.9GH频率优先级为1(较低),即优先采用1.8GHz的频率进行小区重选;又例如,频率优先级可以包括:4.9GHz频率优先级为2(较高),2.6GHz频率优先级为1(较低),即优先采用4.9GHz的频率进行小区重选。
需要说明的是,上述频率优先级的内容仅为示例,本公开的一些实施例对频率优先级的内容不做具体限定。
在本公开的一些实施例中,频率优先级原因用于表示配置频率优先级的原因,例如,负载均衡、切片或MR-DC等。
在本公开的一些实施例中,频率优先级是否生效信息用于表示频率优先级是否生效的相关信息,例如,负载均衡、切片或MR-DC等。
在本公开的一些实施例中,频率优先级的生效条件用于表示频率优先级是否生效的条件,例如,负载均衡、切片或MR-DC等。
在本公开的一些实施例中,频率优先级的索引信息用于表示频率优先级的标识,例如:f1频率优先级为1,f2频率优先级为2,对应频率优先级索引信息为索引0;f1频率优先级为2,f2频率优先级为1,对应频率优先级索引信息索引1。
在本公开的一些实施例中,可选地,通过系统消息或者专用信令从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
在本公开的一些实施例中,如果所述频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息是通过广播的系统消息接收到的,则根据所述频率优先级进行小区重选需要满足的条件还包括:所述终端的驻留小区保持不变。
进一步地,当终端移动到其他小区,即驻留小区发生改变,则广播的频率优先级失效,终端读取新的驻留小区系统消息中的频率优先级,根据该频率优先级进行小区重选。
在本公开的一些实施例中,一个频率优先级原因、或者是否生效信息、或者生效条件信息、或者索引信息可以与第一个或多个频率优先级对应,如果满足该优先级原因则终端可以使用基于该优先级原因配置的频率优先级。
示例性地,所述频率优先级原因、或者是否生效信息、或者生效条件信息可以包括以下一项或多项:
(1)负载均衡;
考虑网络的负载均衡设置的频率优先级,例如,网络将某带宽较大的时分双工(Time-Division Duplex,TDD)频率的优先级设置较高,用来承载更多的用户,进行负载均衡;
(2)终端支持的切片类型(或者简称为切片);
考虑终端支持切片类型设置的频率优先级,例如,终端支持超高可靠与低时延通信(Ultra Reliable&Low Latency Communication,URLLC)切片业务,网络将支持URLLC切片业务的频率优先级设置较高,让终端优先驻留在支持URLLC切片业务的频率上;
(3)网络部署的MR-DC频段组合和/或终端支持的MR-DC频段组合(或者简称为MR-DC)。
考虑网络部署的MR-DC频段组合和终端支持MR-DC频段组合设置的频率优先级,例如,网络部署了LTE 1.8GHz+NR 2.6GHz的NSA频段组合,且该终端也同时支持该MR-DC频段组合,则网络将1.8GHz LTE频率的优先级设置较高,让MR-DC终端优先驻留1.8GHz频率上,若优先驻留在其他频率上,将导致进入连接态后需要切换至1.8GHz频率才能配置MR-DC,造成额外的切换开销和时延。
例如,2.6GHz频率优先级为2(较高),4.9GHz频率优先级为1(较低),频率优先级原因为负载均衡。
又例如,4.9GHz频率优先级为2(较高),2.6GHz频率优先级为1(较低),频率优先级原因为切片。
又例如,1.8GHz频率优先级为2(较高),1.9GH频率优先级为1(较低);频率优先级原因为MR-DC。
在本公开的一些实施例中,图2所示的方法还可以包括:根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级。
可选地,所述指示信息可以指示以下一项或多项:(1)本小区和/或邻区是否支持MR-DC;(2)本小区和/或邻区支持的切片类型;(3)本小区和/或邻区是否支持预设的专用网络;(4)本小区和/或邻区支持的专用网络类型;(5)所述终端采用的频率优先级信息。
下面介绍实现确定在小区重选时使用的频率优先级的方式:
方式1:如果所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息表示:所述终端采用的频率优先级信息,则将与所述频率优先级信息对应的频率优先级确定为所述在小区重选时使用的频率优先级。
其中,所述终端采用的频率优先级信息具体包括当网络通过广播或者专用信息令的方式配置多组频率优先级信息时,该频率优先级信息可以指示终端具体使用哪一组频率优先级进行小区重选。
方式2:如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:切片,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端支持切片或将要发起与切片相关的业务,则将与所述切片对应的频率优先级确定为所述在小区重选时使用的频率优先级;
方式3:所述频率优先级原因、或者所述频率优先级的生效条件信息表示:预设的专用网络,所述终端接收到本小区和/或邻区支持所述预设的专用网络,或者所述终端接收到本小区和/或邻区支持的专用网络类型,且所述终端处于所述预设的专用网络中,则将与所述预设的专用网络对应的频率优先级确定为所述在小区重选时使用的频率优先级;
方式4:如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端不支持切片,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
方式5:如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端不支持所述MR-DC,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
方式6:如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端未接收所述指示信息,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级。
在本公开的一些实施例中,可以根据终端是否接收到网络设备发送的频率优先级激活信息,采用不同的方式确定在小区重选时使用的频率优先级。
方式1:如果接收到网络设备发送的频率优先级激活信息,则根据所述频率优先级激活信息和所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级;
示例性地,步骤A:终端接收网络发送的频率优先级和频率优先级索引信息;例如:f1频率优先级为1,f2频率优先级为2,对应频率优先级索引信息为索引0;f1频率优先级为2,f2频率优先级为1,对应频率优先级索引信息索引1;步骤B:终端接收网络发送的频率优先级激活信息;例如:接收到频率优先级激活信息为索引1,表示终端采用索引1的频率优先级作为小区重选频率优先级,即(f1频率优先级为2,f2频率优先级为1)。
方式2:如果没有接收到网络设备发送的频率优先级激活信息,则采用默认的频率优先级作为小区重选频率优先级。
示例性地,步骤A:终端接收网络发送的频率优先级和频率优先级索引信息;例如:f1频率优先级为1,f2频率优先级为2,对应频率优先级索引信息为索引0;步骤B:如果终端没收到网络发送的频率优先级激活信息,则采用默认的频率优先级作为小区重选频率优先级。
在本公开的一些实施例中,图2所示的方法还可以包括:从所述网络设备接收切片信息,所述切片信息包括一个或多个频率或小区支持的切片的信息。
例如,切片信息可以包括:4.9GHz支持URLLC切片,2.6GHz支持eMBB切片。或者,切片信息可以包括:4.9GHz支持URLLC切片。
可以理解的是,上述小区包括:服务小区和/或邻小区。
在本公开的一些实施例中,图2所示的方法还可以包括:从所述网络设备接收一个或多个小区的MR-DC信息;
其中,所述MR-DC信息包括以下一项或多项:
(1)所述小区是否支持设定的无线通信技术(例如5G)或MR-DC;
(2)所述小区支持的MR-DC的其他RAT的频率;
(3)所述小区支持的MR-DC的频段组合。
可以理解的是,上述小区包括:服务小区和/或邻小区。
在本公开的一些实施例中,图2所示的方法还可以包括:从所述网络设备接收所述频率优先级的生效时间,在所述频率优先级的生效时间到期之前,或者在接收到新的频率优先级之前,如果不满足将所述频率优先级确定为所述在小区重选时使用的频率优先级条件,则将所述频率优先级挂起。
其中,该生效时间可以是时间点或者时间段,例如,频率优先级的生效时间未到期则表示可以使用该频率优先级;频率优先级的生效时间到期则表示不可以使用该频率优先级。例如,专用信令配置的频率优先级有生效时间,在生效时间内,终端采用专用信令中的频率优先级进行小区重选;过了生效时间之后,专用频率优先级失效,终端采用系统消息广播中的频率优先级进行小区重选。
在本公开的一些实施例中,图2所示的方法还可以包括:在所述从网络设备接收频率优先级和频率优先级原因之前,所述方法还包括:
向所述网络设备发送所述终端的信息,所述终端的信息包括以下一项或多项:
(1)所述终端支持的切片的信息,例如终端支持的切片的列表。
(2)所述终端支持的MR-DC频段组合。
在本公开的一些实施例中,可以根据频率优先级原因、或者是否生效信息、或者生效条件、或者索引信息,选择合适的频率优先级进行小区重选,满足多种终端类型(例如5G终端)和多种业务的灵活性。
在本公开的一些实施例中,可以根据频率优先级原因、或者是否生效信息、或者生效条件、或者索引信息,选择合适的频率优先级进行小区重选,满足多种终端类型(例如5G终端)和多种业务的灵活性。
参见图3,本公开的一些实施例还提供一种小区重选的方法,该方法的执行主体可以为网络设备,包括:步骤301。
步骤301:向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
例如,通过广播消息或者专用信令,向所述终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
在本公开的一些实施例中,图3所示的方法还可以包括:向终端发送指示信息,所述指示信息指示以下一项或多项:
本小区和/或邻区是否支持MR-DC;
本小区和/或邻区支持的切片类型;
本小区和/或邻区是否支持预设的专用网络;
本小区和/或邻区支持的专用网络类型;
所述终端采用的频率优先级信息。在本公开的一些实施例中,图3所示的方法还可以包括:向终端发送切片信息,所述切片信息包括:一个或多个频率或小区支持的切片的信息。
在本公开的一些实施例中,图3所示的方法还可以包括:向所述终端发送一个或多个小区的MR-DC信息;
其中,所述MR-DC信息包括以下一项或多项:
(1)小区是否支持5G或MR-DC;
(2)小区支持的MR-DC的其他RAT的频率;
(3)小区支持的MR-DC的频段组合;
在本公开的一些实施例中,图3所示的方法还可以包括:向所述终端发送所述频率优先级的生效时间。
在本公开的一些实施例中,图3所示的方法还可以包括:接收所述终端的信息,所述终端的信息包括以下一项或多项:
(1)所述终端支持的切片的信息;
(2)所述终端支持的MR-DC频段组合。
在本公开的一些实施例中,可以根据频率优先级原因、小区的相关信息、终端的相关信息,选择合适的频率优先级进行小区重选,满足多种终端类型(例如5G终端)和多种业务的灵活性。
下面结合实施例一、实施例二、实施例三和实施例四介绍本公开的一些实施例中的小区重选的流程。
实施例一
网络通过专用信令发送频率优先级,包括:4.9GHz频率优先级为2(较高),2.6GHz频率优先级为1(较低),其中频率优先级原因包括:终端支持的切片类型。
网络发送的切片信息包括:4.9GHz支持URLLC切片,2.6GHz支持eMBB切片。
支持URLLC的终端,使用专用信令发送的频率优先级进行小区重选。
如果该URLLC终端移动到其他小区,该小区发送本小区的切片信息包括:4.9GHz和2.6GHz均支持eMBB业务(该小区中的切片信息中不包含终端支持的切片)。
此时,URLLC终端发现该小区中的切片信息不包含终端支持的切片,则不使用网络发送的专用频率优先级进行小区重选,使用广播消息中的频率优先级进行小区重选。
实施例二
网络通过专用信令发送频率优先级包括:4.9GHz频率优先级为2(较高),2.6GHz频率优先级为1(较低),其中,频率优先级原因包括:终端支持的切片类型。
网络发送的切片信息包括:4.9GHz支持URLLC切片,2.6GHz支持eMBB切片。
支持URLLC的终端,使用专用信令发送的频率优先级进行小区重选。
如果该URLLC终端移动到其他小区,该小区发送本小区的切片信息包括:4.9GHz和2.6GHz均支持eMBB业务;发送邻区的切片信息包括:4.9GHz支持URLLC切片,2.6GHz支持eMBB切片。
此时,该URLLC终端发现切片信息中包括:URLLC的切片,则继续使 用网络专用信令发送的频率优先级进行小区重选。
实施例三
网络通过专用信令发送频率优先级,包括:1.8GHz频率优先级为2(较高),1.9GH频率优先级为1(较低),其中,频率优先级原因包括:网络部署的MR-DC频段组合和/或所述终端支持的MR-DC频段组合。
网络发送MR-DC信息,包括:支持5G或MR-DC,且支持的MR-DC频段组合为1.8GHz(LTE)+2.6GHz(NR)。
支持1.8GHz(LTE)+2.6GHz(NR)MR-DC的终端,若测量到1.8GHz LTE和2.6GHz LTE的测量结果均高于一定门限,则使用专用信令发送的频率优先级进行小区重选。
如果该终端移动到其他小区,该小区的MR-DC信息包括:不支持5G或MR-DC,则终端使用广播消息中的频率优先级进行小区重选。
实施例四
网络通过广播消息发送第一频率优先级,包括:4.9GHz频率优先级为2(较高),2.6GHz频率优先级为1(较低),频率优先级原因包括:终端支持的切片类型;同时发送第二频率优先级,包括:2.6GHz频率优先级为2(较高),4.9GHz频率优先级为1(较低),频率优先级原因为负载均衡
网络发送的切片信息包括:4.9GHz支持URLLC切片。
支持URLLC的终端,使用频率优先级原因为终端支持的切片类型的频率优先级进行小区重选,例如,选择4.9GHz进行小区重选。
不支持URLLC的普通终端,使用频率优先级原因为负载均衡的频率优先级进行小区重选,例如,选择2.6GHz进行小区重选。
当终端移动到其他小区,即驻留小区发生改变,则广播的频率优先级失效,终端读取新的驻留小区系统消息中的频率优先级,根据该频率优先级进行小区重选。
如果URLLC终端发现该小区中的切片信息不包含终端支持的切片,则不使用专用信令发送的频率优先级进行小区重选,使用广播消息中的频率优先级进行小区重选。
参见图4,本公开的一些实施例还提供一种终端,该终端400包括:
第一接收模块401,用于从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
在一些实施方式中,终端400还包括:
第一确定模块,用于根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级。
可选地,所述指示信息指示以下一项或多项:
本小区和/或邻区是否支持MR-DC;
本小区和/或邻区支持的切片类型;
本小区和/或邻区是否支持预设的专用网络;
本小区和/或邻区支持的专用网络类型;
所述终端采用的频率优先级信息。在一些实施方式中,第一确定模块进一步用于:
如果所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息表示:所述终端采用的频率优先级信息,则将与所述频率优先级信息对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:MR-DC,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端支持MR-DC,则将与所述MR-DC对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:切片,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端支持切 片或将要发起与切片相关的业务,则将与所述切片对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:预设的专用网络,所述终端接收到本小区和/或邻区支持所述预设的专用网络,或者所述终端接收到本小区和/或邻区支持的专用网络类型,且所述终端处于所述预设的专用网络中,则将与所述预设的专用网络对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端不支持切片,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息如果表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端不支持所述MR-DC,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端未接收所述指示信息,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级。
在一些实施方式中,终端400还包括:第二确定模块,用于:如果接收到网络设备发送的频率优先级激活信息,则根据所述频率优先级激活信息和所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级;如果没有接收到网络设备发送的频率优先级激活信息,则采用默认的频率优先级作为小区重选频率优先级。
在一些实施方式中,第一接收模块401进一步用于:通过广播消息或者专用信令,从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
在一些实施方式中,终端400还包括:第二接收模块,用于从所述网络设备接收所述频率优先级的生效时间;
在所述频率优先级的生效时间到期之前,或者在接收到新的频率优先级之前,如果不满足将所述频率优先级确定为所述在小区重选时使用的频率优先级条件,则将所述频率优先级挂起。
在一些实施方式中,终端400还包括:第一发送模块,向所述网络设备发送所述终端的能力信息,所述终端的能力信息包括以下一项或多项:
所述终端支持的切片的信息;
所述终端支持的MR-DC频段组合。
本公开的一些实施例提供的终端,可以执行上述如图2所示的实施例,其实现原理和技术效果类似,本实施例此处不再赘述。
参见图5,本公开的一些实施例还提供一种终端,该终端500包括:第一收发机501和第一处理器502;
第一收发机501,用于从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
在一些实施方式中,第一处理器502,用于根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级。
可选地,所述指示信息指示以下一项或多项:
本小区和/或邻区是否支持MR-DC;
本小区和/或邻区支持的切片类型;
本小区和/或邻区是否支持预设的专用网络;
本小区和/或邻区支持的专用网络类型;
所述终端采用的频率优先级信息。在一些实施方式中,第一确定模块进一步用于:
如果所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息表示:所述终端采用的频率优先级信息,则将与所述频率优先级信息对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:MR-DC,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端支持MR-DC,则将与所述MR-DC对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:切片,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端支持切片或将要发起与切片相关的业务,则将与所述切片对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:预设的专用网络,所述终端接收到本小区和/或邻区支持所述预设的专用网络,或者所述终端接收到本小区和/或邻区支持的专用网络类型,且所述终端处于所述预设的专用网络中,则将与所述预设的专用网络对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端不支持切片,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息如果表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端不支持所述MR-DC,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端未接收所述指示信息,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级。
在一些实施方式中,第一处理器502还用于:如果接收到网络设备发送的频率优先级激活信息,则根据所述频率优先级激活信息和所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级;如果没有接收到网络设备发送的频率优先级激活信息,则采用默认的频率优先级作为小区重选频率优先级。
在一些实施方式中,第一收发机501进一步用于:通过广播消息或者专用信令,从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
在一些实施方式中,第一收发机501还用于从所述网络设备接收所述频率优先级的生效时间;
在所述频率优先级的生效时间到期之前,或者在接收到新的频率优先级之前,如果不满足将所述频率优先级确定为所述在小区重选时使用的频率优先级条件,则将所述频率优先级挂起。
在一些实施方式中,第一收发机501还用于向所述网络设备发送所述终端的能力信息,所述终端的能力信息包括以下一项或多项:
所述终端支持的切片的信息;
所述终端支持的MR-DC频段组合。
本公开的一些实施例提供的终端,可以执行上述如图2所示的实施例,其实现原理和技术效果类似,本实施例此处不再赘述。
参见图6,本公开的一些实施例还提供一种网络设备,该网络设备600包括:
第二发送模块601,用于向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
在一些实施方式中,第二发送模块601进一步用于:通过广播消息或者专用信令,向所述终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
本公开的一些实施例提供的网络设备,可以执行上述如图3所示的实施例,其实现原理和技术效果类似,本实施例此处不再赘述。
参见图7,本公开的一些实施例还提供一种网络设备,该网络设备700包括:第二处理器701和第二收发机702;
第二处理器701,用于向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
在一些实施方式中,第二处理器701进一步用于:通过广播消息或者专用信令,向所述终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
本公开的一些实施例提供的网络设备,可以执行上述如图3所示的实施例,其实现原理和技术效果类似,本实施例此处不再赘述。
请参阅图8,图8是本公开的一些实施例应用的通信设备的结构图,如图8所示,通信设备800包括:处理器801、收发机802、存储器803和总线接口,其中,处理器801可以负责管理总线架构和通常的处理。存储器803可以存储处理器801在执行操作时所使用的数据。
在本公开的一个实施例中,通信设备800还包括:存储在存储器上803并可在处理器801上运行的计算机程序,计算机程序被处理器801执行时实现以上图2或图3所示的方法中的步骤。
在图8中,总线架构可以包括任意数量的互联的总线和桥,具体由处理器801代表的一个或多个处理器和存储器803代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。收发机802可以是多个元件,即包括发送机和接收机,提供用于在传输介质上与各种其他装置通信的单元。
本公开的一些实施例提供的通信设备,可以执行上述图2或图3所示方法实施例,其实现原理和技术效果类似,本实施例此处不再赘述。
结合本公开公开内容所描述的方法或者算法的步骤可以硬件的方式来实现,也可以由在处理器执行软件指令的方式来实现。软件指令可以由相应的软件模块组成,软件模块可以被存放于RAM、闪存、ROM、EPROM、EEPROM、寄存器、硬盘、移动硬盘、只读光盘或者本领域熟知的任何其它形式的存储介质中。一种示例性的存储介质耦合至处理器,从而使处理器能够从该存储介质读取信息,且可向该存储介质写入信息。当然,存储介质也可以是处理器的组成部分。处理器和存储介质可以携带在ASIC中。另外,该ASIC可以携带在核心网接口设备中。当然,处理器和存储介质也可以作为分立组件存在于核心网接口设备中。
本领域技术人员应该可以意识到,在上述一个或多个示例中,本公开所描述的功能可以用硬件、软件、固件或它们的任意组合来实现。当使用软件实现时,可以将这些功能存储在计算机可读介质中或者作为计算机可读介质上的一个或多个指令或代码进行传输。计算机可读介质包括计算机存储介质和通信介质,其中通信介质包括便于从一个地方向另一个地方传送计算机程序的任何介质。存储介质可以是通用或专用计算机能够存取的任何可用介质。
以上所述的具体实施方式,对本公开的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本公开的具体实施方式而已,并不用于限定本公开的保护范围,凡在本公开的技术方案的基础之上, 所做的任何修改、等同替换、改进等,均应包括在本公开的保护范围之内。
本领域内的技术人员应明白,本公开实施例可提供为方法、系统、或计算机程序产品。因此,本公开实施例可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本公开实施例可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
可以理解的是,本公开实施例描述的这些实施例可以用硬件、软件、固件、中间件、微码或其组合来实现。对于硬件实现,模块、单元、子模块、子单元等可以实现在一个或多个专用集成电路(Application Specific Integrated Circuits,ASIC)、数字信号处理器(Digital Signal Processing,DSP)、数字信号处理设备(DSP Device,DSPD)、可编程逻辑设备(Programmable Logic Device,PLD)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)、通用处理器、控制器、微控制器、微处理器、用于执行本公开所述功能的其它电子单元或其组合中。
本公开实施例是参照根据本公开实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的 处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
显然,本领域的技术人员可以对本公开实施例进行各种改动和变型而不脱离本公开的精神和范围。这样,倘若本公开实施例的这些修改和变型属于本公开权利要求及其等同技术的范围之内,则本公开也意图包含这些改动和变型在内。

Claims (16)

  1. 一种小区重选的方法,应用于终端,包括:
    从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
    其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
  2. 根据权利要求1所述的方法,还包括:
    根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级。
  3. 根据权利要求2所述的方法,所述指示信息指示以下一项或多项:
    本小区和/或邻区是否支持MR-DC;
    本小区和/或邻区支持的切片类型;
    本小区和/或邻区是否支持预设的专用网络;
    本小区和/或邻区支持的专用网络类型。
  4. 根据权利要求3所述的方法,其中,所述根据所述终端的能力信息和/或网络设备发送的指示信息,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级,包括以下一项或多项:
    如果所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息表示:所述终端采用的频率优先级信息,则将与所述频率优先级信息对应的频率优先级确定为所述在小区重选时使用的频率优先级;
    如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:MR-DC,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端支持 MR-DC,则将与所述MR-DC对应的频率优先级确定为所述在小区重选时使用的频率优先级;
    如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:切片,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端支持切片或将要发起与切片相关的业务,则将与所述切片对应的频率优先级确定为所述在小区重选时使用的频率优先级;
    如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:预设的专用网络,所述终端接收到本小区和/或邻区支持所述预设的专用网络,或者所述终端接收到本小区和/或邻区支持的专用网络类型,且所述终端处于所述预设的专用网络中,则将与所述预设的专用网络对应的频率优先级确定为所述在小区重选时使用的频率优先级;
    如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持的切片类型,且所述终端不支持切片,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
    如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端接收到本小区和/或邻区支持MR-DC,且所述终端不支持所述MR-DC,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级;
    如果所述频率优先级原因、或者所述频率优先级的生效条件信息表示:负载均衡或默认,所述终端未接收所述指示信息,则将与所述负载均衡或默认对应的频率优先级确定为所述在小区重选时使用的频率优先级。
  5. 根据权利要求1所述的方法,还包括:
    如果接收到网络设备发送的频率优先级激活信息,则根据所述频率优先级激活信息和所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,确定在小区重选时使用的频率优先级;
    如果没有接收到网络设备发送的频率优先级激活信息,则采用默认的频率优先级作为小区重选频率优先级。
  6. 根据权利要求1所述的方法,其中,所述从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,包括:
    通过广播消息或者专用信令,从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
  7. 根据权利要求2所述的方法,还包括:
    从所述网络设备接收所述频率优先级的生效时间;
    在所述频率优先级的生效时间到期之前,或者在接收到新的频率优先级之前,如果不满足将所述频率优先级确定为所述在小区重选时使用的频率优先级条件,则将所述频率优先级挂起。
  8. 根据权利要求1所述的方法,还包括:
    向所述网络设备发送所述终端的能力信息,所述终端的能力信息包括以下一项或多项:
    所述终端支持的切片的信息;
    所述终端支持的MR-DC频段组合。
  9. 一种小区重选的方法,应用于网络设备,包括:
    向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
    其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
  10. 根据权利要求9所述的方法,其中,所述向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息,包括:
    通过广播消息或者专用信令,向所述终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息。
  11. 一种终端,包括:
    第一接收模块,用于从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
    其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
  12. 一种终端,包括:第一收发机和第一处理器;
    所述第一收发机,用于第一接收模块,用于从网络设备接收频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
    其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
  13. 一种网络设备,包括:
    第二发送模块,用于向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
    其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
  14. 一种网络设备,包括:第二处理器和第二收发机;
    所述第二收发机,用于向终端发送频率优先级,以及与所述频率优先级对应的频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件信息、或者所述频率优先级的索引信息;
    其中,所述频率优先级,以及所述频率优先级原因、或者所述频率优先级是否生效信息、或者所述频率优先级的生效条件、或者所述频率优先级的索引信息用于终端进行小区重选。
  15. 一种通信设备,包括:处理器、存储器及存储在所述存储器上并可在所述处理器上运行的程序,所述程序被所述处理器执行时实现如权利要求1至10中任一项所述的小区重选的方法的步骤。
  16. 一种计算机可读存储介质,其中,所述计算机可读存储介质上存储有计算机程序,所述计算机程序被处理器执行时实现如权利要求1至10中任一项所述的小区重选的方法的步骤。
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