WO2018133606A1 - 接入控制方法、接入网网元、用户设备及计算机存储介质 - Google Patents

接入控制方法、接入网网元、用户设备及计算机存储介质 Download PDF

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WO2018133606A1
WO2018133606A1 PCT/CN2017/117031 CN2017117031W WO2018133606A1 WO 2018133606 A1 WO2018133606 A1 WO 2018133606A1 CN 2017117031 W CN2017117031 W CN 2017117031W WO 2018133606 A1 WO2018133606 A1 WO 2018133606A1
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data
mode
access
service
threshold
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PCT/CN2017/117031
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English (en)
French (fr)
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戴谦
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中兴通讯股份有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/02Access restriction performed under specific conditions
    • H04W48/06Access restriction performed under specific conditions based on traffic conditions

Definitions

  • the present invention relates to the field of wireless communications, and in particular, to an access control method, an access network element, a user equipment (User Equipment, UE), and a computer storage medium.
  • an access control method an access network element, a user equipment (User Equipment, UE), and a computer storage medium.
  • UE User Equipment
  • the IoT device has a short duration of access to the network, and the amount of data transmitted is small, but the amount of equipment is very large.
  • the control plane signaling overhead is greater than the user plane data amount, which leads to low system transmission efficiency and corresponding network element overload and congestion problems.
  • embodiments of the present invention are expected to provide an access control method, an access network element, a UE, and a computer storage medium, and it is desirable to at least alleviate an overload or congestion condition.
  • the technical solution of the present invention is implemented as follows:
  • the first aspect of the embodiments of the present invention provides an access control method, including:
  • the access network element When the network load of the core network or the access network meets the overload condition, or the congestion condition of the core network or the access network meets the congestion condition, the access network element sends the indication information of the access restriction rule to the UE;
  • the access restriction rule includes at least one of the following:
  • the access mode prohibited by the UE
  • a second aspect of the embodiments of the present invention provides an access control method, including:
  • the indication information is used to indicate an access restriction rule
  • the access restriction rule includes at least one of the following:
  • the access mode used by the user equipment UE is prohibited
  • the type of UE is prohibited
  • a third aspect of the embodiments of the present invention provides an access network element, including:
  • the sending unit is configured to send an access restriction rule to the user equipment UE when the network load of the core network or the access network meets an overload condition, or the congestion status of the core network or the access network meets a congestion condition.
  • the access restriction rule includes at least one of the following:
  • the access mode prohibited by the UE
  • a fourth aspect of the embodiments of the present invention provides a UE, including:
  • the receiving unit is configured to receive the indication information sent by the access network element to receive the indication information sent by the access network element, where the indication information is used to indicate an access restriction rule, where the access restriction rule includes at least the following One:
  • the access mode prohibited by the UE
  • the type of UE is prohibited
  • An access unit configured to determine whether to initiate an access according to the access restriction rule pointed to by the indication information.
  • Embodiments of the present invention provide a computer storage medium in which computer executable instructions are stored, the computer executable instructions being used in one or more of the foregoing access control methods.
  • the access network element sends the indication information to the UE, and the UE is instructed to perform the corresponding access restriction rule, where the access restriction rule is mainly used.
  • the UE is prohibited from initiating access in a specific case. Therefore, the UE that temporarily delays the transmission of the service data or the delayed access may temporarily prohibit the access, and the access resource and the opportunity may be delayed.
  • the use of the data and/or the UE that can not delay access can reduce the overload or congestion of the access network or the core network caused by a large number of UEs simultaneously initiating various accesses.
  • FIG. 1 is a schematic flowchart of a first access control method according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a second access control method according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a third access control method according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a UE according to an embodiment of the present disclosure.
  • FIG. 5 is a schematic flowchart diagram of a fourth access control method according to an embodiment of the present invention.
  • this embodiment provides an access control method, including:
  • Step S110 When the network load of the core network or the access network meets the overload condition, or the congestion condition of the core network or the access network meets the congestion condition, the access network element sends an indication of the access restriction rule to the user equipment UE. information;
  • the access restriction rule includes at least one of the following:
  • the access mode prohibited by the UE
  • the access control method provided in this embodiment is a method applied to a network side, for example, a method applied to a network element of an access network, for example, an method in an evolved base station (eNB) .
  • the access network element may be the eNB or next generation Node B (gNB) or other wireless access node (AP).
  • the access network may be interconnected by access network elements.
  • the access network element may include other nodes such as a relay node (RN) located in the access network in addition to the base station and the AP.
  • RN relay node
  • the step S110 in this embodiment may include:
  • Step S111 When the network load of the core network or the access network meets the overload condition, or the congestion condition of the core network or the access network meets the congestion condition, acquire an overload condition or a congestion status with the access network or the core network.
  • the step S110 may be: the network load of the predetermined network meets the overload condition, or the congestion condition of the predetermined network serves the congestion condition, and then needs to generate or receive the current overload condition or the congestion condition.
  • Adapted indication information is the core network and/or the access network.
  • Step S112 Send the indication information to the UE.
  • the method for obtaining the indication information may be: the network element of the access network, and the self-generating the indication information according to the load status or the congestion status of the access network or the core network, or may be the network element from the core network.
  • the reception for example, is received from a Mobility Management Entity (MME).
  • MME Mobility Management Entity
  • the network element forming the indication information is preset with a correspondence between the load ratio or the congestion status and the corresponding indication information, and when the indication information that needs to be sent to the UE is formed, the current load ratio and the congestion status are used. And the information is used to query the corresponding relationship, and the indication information that matches the information such as the load rate and the congestion status is selected as the indication information that needs to be sent to the UE.
  • the indication information there are many ways to generate the indication information, and are not limited to the above examples.
  • the core network or the access network may be considered when the load rate of the access network or the core network reaches the load rate threshold or the load exceeds the load threshold.
  • the network load meets the overload condition.
  • determining the network load of the core network may include determining whether the current load rate of the MME or the current load amount reaches a corresponding threshold.
  • the network load of the access network meets the overload condition, and may include: determining whether the current load rate or load of the base station reaches a corresponding threshold.
  • the congestion status of the core network or the access network may be represented by the load status of the current core network or the access network, or may be characterized according to parameters such as the available resource status of the current network or the number of requests to be responded.
  • the congestion condition satisfies certain conditions, the core network or the access network may be considered to be congested, and congestion needs to be alleviated. For example, if the number of requests to be responded in the current MME or eNB queue exceeds the threshold, or the usage rate of the processing resources of the current MME or eNB reaches the upper usage limit, etc., congestion may be considered to meet the congestion condition.
  • the access network element sends the indication information to all UEs covered by the access network element by using a broadcast message.
  • the indication information can be used to indicate the validity or execution of the access restriction rule.
  • the access network element sends the indication information to the UE, and the UE may be sent by using a broadcast message or a non-broadcast message.
  • the broadcast message can include a system message.
  • the indication information may be carried in the master information block (MIB) or the system information block (SIB) of the system message and sent to the UE.
  • MIB master information block
  • SIB system information block
  • the access mode used when the UE is prohibited from accessing
  • the type of the UE that is forbidden to be accessed can be differentiated by the UE's UE capability. It can be: Indicates which UE-capable UEs are prohibited from accessing.
  • the access mode used for the UE to prohibit the access, the type of the UE that is forbidden to access, and the type of the service that is prohibited from being counted can be regarded as the limiting parameters of the access restriction rule.
  • the access restriction rule indicated by the indication information may include: formed by combining one or more restriction parameters.
  • the access restriction rule when the access restriction rule includes two or more restriction parameters, the access restriction rule is: simultaneously satisfying two of the access restriction rules or UEs with more than two access restriction parameters are prohibited from accessing.
  • the access restriction rule includes: the restriction parameter is two, and is: an access mode used for prohibiting the UE from accessing and a service type that is forbidden to access, and the use of the corresponding mode to initiate the corresponding service type is prohibited. call.
  • the access restriction rule when the access restriction rule includes two or more restriction parameters, the access restriction rule is: if the UE that satisfies one of the restriction parameters prohibits access, an access restriction rule
  • the method includes: the restriction parameter is two, and is respectively: an access mode used when the UE is prohibited from accessing and a service type that is prohibited from being accessed, and may be used to prohibit the call of any service initiated by the UE of the corresponding type, and prohibit any UE at the same time. Initiate a call for the corresponding service type in any way.
  • the combination of the restriction parameters forms a specific access restriction rule according to a combination manner of the restriction parameters.
  • the combination manner here includes at least the first combination mode in the example 1 and the second combination mode in the example 2.
  • the limiting parameter may further include one or more of a time parameter, a proportional parameter, and a model parameter.
  • the indication information may be divided into three types of indication bits, which are a first type indication bit, a second type indication bit, and a third type indication bit; one or more bits of the first type indication bit are used to indicate prohibition.
  • the access mode of the access mode, the second type of indicator bit is used to indicate the type of the UE that is forbidden to access, and the third type of indicator bit is used to indicate the type of service that is prohibited from accessing.
  • the indication bits corresponding to the indication information are split into three types for characterization. In this case, when the access restriction rule is valid, the combination of at least two types of indication bits can be flexibly combined to meet the requirements. Execution of access restriction rules for current network conditions.
  • the sending of the indication information indicates that the currently-used access restriction rule is not a complete access restriction rule, and has the characteristics of small signaling overhead and high flexibility.
  • the UE After receiving the indication information, the UE knows which restriction access rules are currently in effect. Before initiating the access, the UE needs to determine whether it is allowed to initiate the access according to the current access restriction rule.
  • the prohibiting the UE from using the access mode includes at least one of the following:
  • Control plane optimizes data transmission CP mode
  • the radio resource control connection establishes a legacy mode
  • the type of the UE that is prohibited from accessing includes at least one of the following:
  • the type of the service that is prohibited from accessing includes at least one of the following:
  • the CP mode includes: the terminal directly transmits data to the MME through control plane signaling, for example, a non-access stratum (NAS) message, and the MME forwards the data to the external network instead of using the gateway.
  • the MME needs to participate in the transmission of data in the CP mode. If there are too many UEs in the CP mode, the MME may be overloaded or congested.
  • the UP mode is: before the connection between the UE and the network side is released, the network side saves the historical context of the UE, and uses the saved context to establish a connection access mode when the terminal initiates the connection with the network side next time.
  • the access mode requires a storage network element storage context such as a base station. If too many UEs are accessed or too many contexts are saved, the cache resources are reduced. In the next access, the previous save may be needed.
  • the context also requires a certain amount of processing resources.
  • the processing resources herein may include resources such as calculations, queries, and retrievals provided by the processor or processing circuitry.
  • the legacy mode is a manner of establishing a connection by using RRC signaling.
  • the mo-exception data usually points to a burst type of service, for example, an alarm service, an abnormal type of data reporting service, and the like.
  • the network protocol IP data service may be simply referred to as a non-IP-data service; the network protocol IP data service may be referred to as an IP-data service.
  • the data packet corresponding to the non-IP-data service does not carry the destination IP address, and the non-destination IP address-based route is used for forwarding.
  • the data packet corresponding to the IP-data service carries the destination IP address.
  • the congestion condition is loaded, especially when the current condition of the MME loads the overload condition or the congestion.
  • the indication information sent by the network element of the access network may be used to indicate that some or all of the terminals are prohibited from using the CP to initiate the access, or the access restriction rule for instructing all or part of the service to initiate the access by using the CP is effective. To alleviate the overload or congestion of the core network.
  • the indication information sent by the access network element is used to indicate that all or part of the terminals are allowed to access in the UP mode, or all or part of the services are accessed in the UP mode.
  • the restriction rule takes effect, thereby alleviating the overload or congestion of the access network.
  • the type of the UE in this embodiment is determined according to the UE capability of the access mode supported by the UE. For example, the UE may be classified into one type of UE supporting only the CP mode, and another type of UE supporting the CP mode and the UP mode.
  • the indication information may indicate that the corresponding access restriction rule is valid, thereby limiting access of a certain type of UE.
  • the network element of the access network may use the second type of indication bit to indicate that the access restriction rule that only supports the UE in the CP mode is valid when the core network is congested or overloaded.
  • the access network element may use the second type of bit to indicate that the UE in the CP mode and the UP mode is prohibited from accessing when the access network is congested or overloaded, or the UE in the same mode and the UP mode is indicated. Accessed by CP.
  • the indication information indicates that the effective access restriction rule may include at least one of the following:
  • Rule 1 It is forbidden to use the UP mode or the legacy mode to initiate a call of the calling data service mo-data, the calling abnormal data mo-ExceptionData, the delay tolerant access service delayTolerantAccess, or the calling signaling service mo-signaling; Rule 1 can be further divided into:
  • Rule 2 prohibiting the use of the CP mode to initiate the call of the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • Rule 3 prohibiting a predetermined proportion of UEs from using the CP mode to initiate the call of the mo-data
  • Rule 4 prohibiting a UE that supports only the CP mode from initiating the call of the mo-data, the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • Rule 5 prohibiting a UE that supports both the CP mode and the UP mode from initiating the call of the mo-data, the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • Rule 6 prohibiting a UE that supports both the CP mode and the UP mode from using the CP mode to initiate the call of the mo-data, the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • Rule 7 The UE that supports both the CP mode and the UP mode is prohibited from initiating the call of the mo-data, or the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling by using the UP mode or the legacy mode; It can be divided:
  • the UE that supports both the CP mode and the UP mode is prohibited from using the legacy mode to initiate the call of the mo-data, or the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • the UE that supports both the CP mode and the UP mode is prohibited from using the UP mode to initiate the call of the mo-data, or the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • Rule 9 prohibiting the sending of the non-IP-data service in which the single data packet exceeds the first preset data packet length threshold, and the non-IP-data service in which the accumulated connection transmission data amount is greater than the first accumulation threshold, and the traffic exceeds The non-IP-data service of the first preset traffic threshold or the non-IP-data service with consecutive data packets, wherein the non-IP-data service with consecutive data packets is: Transmitting the non-IP-data service of multiple data packets through one connection;
  • Rule 11 prohibiting the sending of the IP-data service whose single data packet exceeds the second preset data packet length threshold, the IP-data service whose primary connection accumulated data volume is greater than the second cumulative threshold, and the traffic exceeding the second preset traffic The IP-data service of the threshold;
  • Rule 12 It is forbidden to use the CP mode to initiate services that exceed the third preset packet length threshold, the services whose accumulated data exceeds the third cumulative threshold in one connection, the traffic whose traffic exceeds the third preset traffic threshold, or have continuous data packets. business;
  • Rule 13 It is forbidden to use the UP mode to initiate services that are lower than the fourth preset packet length threshold, the services whose accumulated data volume is lower than the fourth cumulative threshold, or the traffic whose traffic is lower than the fourth preset traffic threshold.
  • the access network element may indicate that the corresponding access restriction rule takes effect according to the current location of the congestion or overload phenomenon and the effect of restricting access according to the access restriction rule.
  • the foregoing multiple restricted access rules may be pre-stored in the UE and the access network element, or may be pre-negotiated by the UE and the access network element, or may be pre-defined by the communication protocol.
  • the access network element and the UE may have corresponding paths to obtain the access restriction rule, and obtain a correspondence between the indication information and the access restriction rule, thereby
  • the subsequent UE can perform or implement the specific access restriction rule according to the indication information, thereby implementing access control, and alleviating overload or congestion caused by a large number of UEs, especially the Internet of Things terminals accessing the network at the same time.
  • the UE randomly generates a random number between 0 and 1 before initiating the access, and compares the random number with the predetermined ratio, if the random number is greater than The predetermined ratio allows the UE to initiate access, otherwise the UE is prohibited from initiating access.
  • the random number is not greater than the predetermined written test, the UE is allowed to initiate access, otherwise the UE is prohibited from accessing.
  • rules 1 to 13 may be the specific access restriction rules described above.
  • the access restriction rule may be divided into two parts, the first part is the rule content, and the second part is the restriction parameter of the rule execution.
  • the limiting parameter may include one or more of a time parameter, a proportional parameter, and a data model parameter.
  • an exception parameter or the like may also be included.
  • the exception parameter here can be at least which special case corresponds to the case where the rule content does not take effect.
  • the access restriction rule further includes at least one of a time parameter, a proportional parameter, and a data model parameter;
  • the time parameter is used to specify an effective duration of the access restriction rule
  • the ratio parameter is used to indicate a proportion of user equipment that restricts access or an effective probability of the access restriction rule
  • the data model parameters include: a data model threshold;
  • the data model threshold includes at least one of the following;
  • the threshold of the number of data of consecutive data packets is the threshold of the number of data of consecutive data packets
  • the frequency or period threshold for the transmission of consecutive packets is the frequency or period threshold for the transmission of consecutive packets.
  • the effective duration corresponds to the length of time of a time window. If the UE receives the indication information, the rule content of the access restriction rule is read, and the time parameter is extracted. According to the effective duration of the restriction in the time parameter, the access may be started or read from the time when the indication information is received. The restriction rule begins and the calculation takes effect.
  • the ratio parameter indicates the effective probability of one or more rules or the proportion of the user terminal. When the ratio parameter is a ratio of UEs that restrict access, the UE may compare the random number with the ratio by generating a random number, and then determine whether an access request is currently initiated.
  • the restriction parameter may be separately written in each bar access restriction rule, and the one restriction parameter may also be shared by multiple restriction rules at the same time.
  • the time parameter may be a parameter shared by multiple access restriction rules.
  • the time parameter may be sent by the base station to the UE, or the base station may indicate to the UE.
  • the step S110 may further include:
  • the access network element sends the indication information to the UE by using a broadcast message, where the broadcast message includes: a system message.
  • the step S110 may include:
  • the access network element sends the indication information by using a paging message, a physical downlink control channel, or dedicated RRC signaling.
  • the indication information is preferably sent by using a broadcast message, so that the access control of multiple UEs is indicated at one time. If the access request has not been initiated yet, the initiation of the access request is controlled according to the indication information.
  • the access network element to send the indication information to the UE, and are not limited to any one of the foregoing.
  • this embodiment provides an access control method, including:
  • Step S210 Receive indication information that is sent by the network element of the access network, where the indication information is used to indicate an access restriction rule, where the access restriction rule includes at least one of the following:
  • the access mode prohibited by the UE
  • the type of UE is prohibited
  • Step S220 Determine whether to initiate access according to the access restriction rule pointed to by the indication information.
  • the method described in this embodiment may be a method applied to a UE.
  • the access network element may be any communication node that enables the base station to connect to the wireless network, for example, various types of base stations and the like.
  • step S210 the indication information sent by the access network element is received.
  • the recruitment in step S210 may include receiving indication information of the broadcast transmission, indication information of the multicast transmission, or indication information of the unicast mode.
  • the indication information of the broadcast mode of the access network element is received.
  • step S210 may include:
  • the indication information may be carried in the SIB or MIB and sent to the UE.
  • the indication information may be used to indicate an access mode that prohibits the UE from accessing, a type of the UE that is prohibited from accessing, and one of the types of services that are prohibited from being accessed. Therefore, in the embodiment, the indication information may include the foregoing three types of indication bits.
  • the prohibiting the UE from using the access mode includes at least one of the following:
  • Control plane optimizes data transmission CP mode
  • the radio resource control connection establishes a legacy mode
  • the type of the UE that is prohibited from accessing includes at least one of the following:
  • the type of the service that is prohibited from accessing includes at least one of the following:
  • the access restriction rule includes at least one of the following:
  • the UE that supports both the CP mode and the UP mode is prohibited from initiating the call of the mo-data, the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • the UE that supports both the CP mode and the UP mode is prohibited from using the CP mode to initiate the call of the mo-data, the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • the UE that supports both the CP mode and the UP mode is prohibited from using the UP mode or the legacy mode to initiate the call of the mo-data, or the mo-ExceptionData, the delayTolerantAccess, or the mo-signaling;
  • the non-IP-data service in which the single data packet exceeds the first preset data packet length threshold is prohibited, and the non-IP-data service whose cumulative transmission data volume is greater than the first accumulation threshold is exceeded in the first connection.
  • the non-IP-data service with a traffic threshold, or the non-IP-data service with a continuous data packet, where the non-IP-data service with consecutive data packets is: one connection Transmitting the non-IP-data service of multiple data packets;
  • IP-data service in which the single data packet exceeds the second preset data packet length threshold, the IP-data service whose primary connection accumulated data amount is greater than the second cumulative threshold, and the traffic exceeding the second preset traffic threshold are prohibited. Said IP-data business;
  • the access restriction rule received here is consistent with the access restriction rule sent by the access network element such as the base station.
  • the access restriction rule further includes at least one of a time parameter, a proportional parameter, and a data model parameter; the time parameter is used to specify an effective duration of the access restriction rule; The ratio of the user equipment indicating the restricted access or the effective probability of the access restriction rule;
  • the data model parameters include: a data model threshold;
  • the data model threshold includes at least one of the following;
  • the threshold of the number of data of consecutive data packets is the threshold of the number of data of consecutive data packets
  • the frequency or period threshold for the transmission of consecutive packets is the frequency or period threshold for the transmission of consecutive packets.
  • various parameters such as the effective time of the access restriction rule, the effective probability, and the effective model can be specified, which can ensure the use of further control access restriction rules, thereby better limiting the UE, especially the Internet of Things UE. Access, so that the network side can reduce congestion and overload.
  • This example is used to illustrate the access restriction procedure initiated by the radio access network itself.
  • This example uses an LTE access network as an example, and its radio access network element is an eNB.
  • Step 101 The eNB determines whether the load level of the eNB is high or overloaded. If yes, the eNB initiates access restriction on the terminal, and the eNB sends the access restriction rule and or the restriction parameter to the UE through the SIB broadcast or through the paging channel.
  • Step 102 The UE acquires an access restriction rule and/or a restriction parameter sent by the eNB before initiating the access.
  • Step 103 The UE determines whether the access behavior can be initiated according to the received access restriction rule and the restriction parameter.
  • This example is used to illustrate which access restriction methods and effects can be formed by a combination of different access restriction indications.
  • the present embodiment specifically illustrates, in the example 1, the access restriction rules and or the restriction parameters included in the SIB, or the paging message, or the RRC dedicated signaling, which manners may be included, and what kind of access control effect is performed;
  • Example 2 Combining this example with Example 1, a complete detailed example including access control flow and access control parameters can be formed.
  • the access restriction rules and or restriction parameters included by the eNB in the SIB, or the paging message, or the RRC dedicated signaling include the following categories:
  • the device is prohibited from initiating a call of mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling for the UE supporting only the CP mode;
  • the UE that prohibits the device capability to "support both the CP mode and the UP mode" uses the CP mode to initiate a call of mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling;
  • the device that prohibits the device capability to "support both the CP mode and the UP mode" initiates the call of mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling, using the UP mode or the legacy mode;
  • the threshold may be The network side notifies the UE or is preset by the transmitting and receiving parties;
  • the eNB selects a type 1 rule in the above access restriction rule according to the severity level of the load condition and the main cause of the load, or selects multiple rules that do not conflict with each other; for example, the following example:
  • Example 1 Selecting rule (1), the selected restricted service type is delayTolerantAccess, and the eNB includes the following indications in the RRC connection reject signaling, the RRC connection reestablishment reject signaling, or the RRC connection release signaling:
  • the UE that receives the above-mentioned indication, when it initiates the service of the delayTolerantAccess, can initiate the access only by using methods other than the UP mode and the legacy mode according to the indicated access restriction rule.
  • Example 2 The rule (1) is still selected, and the selected restricted service type is mo-data and delayTolerantAccess, and the eNB includes the following indications in the RRC connection reject signaling, the RRC connection re-establishment rejection signaling, or the RRC connection release signaling:
  • the UE that receives the above-mentioned indication, when it initiates the service of the delayTolerantAccess or the service of the mo-data, can initiate the access only by using methods other than the UP mode and the legacy mode according to the indicated access restriction rule.
  • Example 3 Rule (1) is still selected, the selected restricted service types are mo-ExceptionData and mo-signaling, and mo-data and delayTolerantAccess, then the eNB is in RRC Connection Rejection Signaling, RRC Connection Reestablishment Rejection Signaling, or RRC Connection.
  • the release signaling includes the following indications:
  • the UE that receives the above-mentioned indication can initiate the access only by using methods other than the UP mode and the legacy mode when it initiates the above four types of services restricted by the rule.
  • Example 4 For the usage of Rule 2, refer to Rule 1, see Example 1, 2, 3;
  • Example 5 Selecting rule (3), the selected restricted service type is mo-data, and the eNB includes the following indications in the RRC connection reject signaling, the RRC connection reestablishment reject signaling, or the RRC connection release signaling:
  • the UE (user equipment) of a certain proportion X is prohibited from initiating a call of the mo-data by using the CP mode;
  • the ratio X may be configured by the eNB, and the UE is notified by using a broadcast message or dedicated signaling, for example, when the load is heavy, the ratio may be X is set higher, for example 80%.
  • the UE receives the above-mentioned indication, when it initiates the mo-data service restricted by the rule, if the method other than the CP method is used, the access may be directly initiated. If the CP mode is adopted, the random number is uniformly calculated. The probability of initiating access, when the ratio X is 80%, only 20% of the probability can use the CP method to initiate access.
  • the device is prohibited from initiating a call for mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling for a UE that supports only CP mode.
  • the rule limits the types of capabilities that the UE has and the type of services it initiates.
  • the service restrictions can be selected in a variety of free combinations, for example:
  • the device is prohibited from initiating a call for mo-data for the UE that supports only the CP mode.
  • the device is not allowed to initiate a call to the delayTolerantAccess for the UE that supports only the CP mode.
  • the device is prohibited from initiating a call of mo-ExceptionData or mo-signaling for a UE that supports only CP mode.
  • the device is prohibited from initiating a mo-signaling call for the UE that supports only the CP mode.
  • the device with the device capability of "supporting both the CP mode and the UP mode" is prohibited from initiating a call of mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling.
  • the rule sets an access restriction for another UE capability; the usage can refer to Example 6;
  • the device that prohibits the device capability to "support both the CP mode and the UP mode" uses the CP mode to initiate a call of mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling.
  • the rule includes three restrictions on the UE capability, the access method used, and the type of service initiated. For the usage, refer to the previous example.
  • the device with the device capability of "supporting both the CP mode and the UP mode” is used to initiate the call of mo-data, or mo-ExceptionData, or delayTolerantAccess, or mo-signaling, using the UP mode or the legacy mode.
  • the rule only restricts access to the service type, and is directed to services that are not based on the IP address transmission technology.
  • the services in the current LTE protocol are mostly transmitted by using the CP mode.
  • a UE that receives the rule only needs to initiate a non-IP-data service, and no matter what its capabilities are, no matter what access method it uses, it cannot initiate access;
  • the access restriction condition of the rule for the non-IP-data service is more relaxed than the rule (8), and the access restriction is performed on a part of the non-IP-data service from the perspective of the service data feature.
  • the limitation angle of the service data feature includes one or more of the following combinations:
  • Example 12 Selection rule (10) or (11) can refer to rule (8) or (9);
  • the threshold can be notified by the network side.
  • the UE is preset by the transmitting and receiving parties;
  • the rule combines the restriction conditions of the service data feature with the restriction conditions of the access method, and the usage can refer to the previous rule with the restriction condition of the CP scheme and the restriction condition of the service data feature.
  • the rule also combines the restriction conditions of the service data feature with the restriction conditions of the access method, except that the restriction condition of the access method is for the UP mode, and thus the constraint conditions and rules (13) of the corresponding service data feature are Differently, this example emphasizes that the UP scheme cannot be used to transmit small packets or low-traffic services.
  • the eNB When the eNB sends the above rules, one of them may be selected, or multiple of them may be selected. When selecting multiple rules, it should be ensured that there is no conflict between the rules, and there is no overlapping part.
  • This example is used to illustrate a more flexible access restriction method that can be formed by combining additional restriction parameters.
  • the eNB may additionally send other restriction parameters to cooperate with the access restriction rule to form a new and more flexible access restriction rule.
  • the additional restriction parameters include:
  • - Proportion parameter increasing the probability factor or the scale factor to specify the probability that the access restriction rule is effective or the proportion of the UE;
  • - data model threshold increasing the packet size threshold, or the accumulated data volume threshold, or the traffic threshold, or the number of consecutive packets, or the frequency/period threshold of consecutive packets to specify that the access restriction rule includes The business is prohibited from exceeding the data model threshold, or is prohibited from being lower than the data model threshold;
  • the above three parameters may be selected by one parameter or a combination of multiple parameters, and combined with the aforementioned access restriction rule to form a new rule.
  • the specific values of the above three parameters may be configured by the eNB and notified to the UE by broadcast messages or paging, or dedicated signaling.
  • Example 1 Combining rule (2) "Prohibiting the use of CP mode to initiate mo-ExceptionData, or delayTolerantAccess, or mo-signaling call" with the time parameter, can form a new rule as follows:
  • the time range A may be configured by the eNB and notified to the UE by a broadcast message or dedicated signaling.
  • Example 2 Combining rule (2) "Prohibiting the use of CP mode to initiate mo-ExceptionData, or delayTolerantAccess, or mo-signaling call" with the proportional parameter, can form a new rule as follows:
  • the preset ratio B may be configured by the eNB and notified to the UE by using a broadcast message or dedicated signaling. In this way, the eNB can prohibit the number of users in the proportion B from using the CP mode to initiate a call of the restricted service type.
  • Example 3 Combining rule (2) "prohibiting the use of CP mode to initiate mo-ExceptionData, or delayTolerantAccess, or mo-signaling call" with the data model threshold, wherein the data model threshold in turn includes a packet size threshold, or accumulated data
  • the threshold, or the traffic threshold, or the threshold of the number of consecutive packets, or the frequency/period threshold of consecutive packets, may be selected one or more.
  • New rules can be formed as follows:
  • Example 4 The rule “prohibit sending non-IP-data services” is combined with time parameters, proportional parameters, and data model thresholds to form new rules as follows:
  • the number of users of the preset ratio B is prohibited from transmitting non-IP-data services exceeding the traffic threshold;
  • This example is used to describe the relationship between the access restriction rules and restriction parameters of the present invention and the existing LTE Access Barring (ACB) and (Extended Access Barring, EAB).
  • ACB existing LTE Access Barring
  • EAB Extended Access Barring
  • the existing LTE has the ACB and the EAB mechanism, and the parameters are all sent by the system broadcast message SIB2.
  • the access restriction rule and the restriction parameter of the present invention are in a parallel relationship with the ACB or the EAB, and the following two methods are used to process the two. relationship:
  • the UE After the UE obtains the ACB parameter and the EAB parameter, and the access restriction rule and the restriction parameter in the embodiment of the present invention, the UE first performs the determination of the access restriction rule and the restriction parameter according to the present invention, and if the UE passes the judgment, The UE needs to perform the ACB parameter or the EAB parameter again;
  • the UE After the UE obtains the ACB parameters and the EAB parameters, and the access restriction rule and the restriction parameter in the embodiment of the present invention, the UE performs ACB or EAB first. If the UE passes the judgment, the UE needs to perform the access according to the present invention. Limit rules and limit parameter judgments.
  • This embodiment provides an access network element, including:
  • the sending unit is configured to send an access restriction rule to the user equipment UE when the network load of the core network or the access network meets an overload condition, or the congestion status of the core network or the access network meets a congestion condition.
  • the access restriction rule includes at least one of the following:
  • the access mode prohibited by the UE
  • the network element of the access network in this embodiment may correspond to a device that can be accessed by the UE to the network side, such as a base station.
  • the sending unit may be corresponding to a sending antenna of the access network element, and may be used to send the indication information to the UE.
  • the access network element may further include a processor or the like, and the processor may be a microprocessor, a digital signal processor, a programmable array, or a central processing unit, etc., and may be used for generating or The message sent by the peripheral is parsed to obtain the indication information.
  • the processor is coupled to the transmit antenna and can be used for data transmission.
  • the access restriction rule in this embodiment may also include various parameters such as an access mode and a data type that prohibit the UE from accessing.
  • the access network element provided in this embodiment is configured as the access control method performed by the access network element. Therefore, the details of all the access restriction rules can be found in the corresponding part. repeated.
  • the sending unit may broadcast the indication information, multicast the indication information, or unicast the indication information.
  • the sending unit is configured to send, by the access network element, the indication information to the UE by using a broadcast message, where the broadcast message includes: a system message.
  • the sending unit is specifically configured to send the indication information by using a paging message, a physical downlink control channel, or dedicated RRC signaling.
  • this embodiment provides a user equipment UE, including:
  • the receiving unit 210 is configured to receive the indication information sent by the access network element to receive the indication information sent by the access network element, where the indication information is used to indicate an access restriction rule, where the access restriction rule includes at least the following one:
  • the access mode prohibited by the UE
  • the type of UE is prohibited
  • the access unit 220 is configured to determine whether to initiate an access according to the access restriction rule that the indication information points to.
  • the receiving unit 210 may be configured to receive antennas of the UE, and may be configured to receive the indication information.
  • the receiving unit 210 may receive a broadcast message, a multicast message, or a unicast message, and extract the indication information from a broadcast message or a multicast message or a unicast message.
  • the access unit 220 may correspond to a processor and a transmitting antenna connected to the processor, and may be configured to send an access request according to an access restriction rule or not to send an access request.
  • the processor determines that the current UE has an access requirement, it first queries the currently-used access restriction rule, and determines the matching of the currently accepted access restriction rule by determining the parameter acquisition. Initiating access, and initiating access when the matching is unsuccessful.
  • the judgment parameter here may be: a parameter of the access mode of the UE, the type of the UE, or the type of the service that needs to initiate the access.
  • the access restriction rule here is the same as that in the foregoing embodiment, and therefore will not be repeated here.
  • the embodiment further provides an access control method, including:
  • Step S1 The eNB sends indication information to the UE.
  • Step S2 The UE determines, according to the indication information, an access restriction rule that is currently in effect;
  • Step S3 When there is an access requirement, query the current access restriction rule to determine whether to allow the initiation of the access request corresponding to the current access requirement;
  • Step S4 If access is allowed, an access request is initiated
  • Step S5 If the access is not allowed, the response of the current access requirement is blocked.
  • the type of the UE that is forbidden to access may be determined according to the priority and/or model of the UE of different types, and the UE with the large access delay is preferentially selected as the type of the UE that is prohibited from accessing.
  • the type of the service that is forbidden to access may be selected according to the priority of the service, the allowable delay, and the quality of service (QoS).
  • QoS quality of service
  • the service with low QoS requirements is used as the service type for which the access is prohibited.
  • the access mode that is forbidden to use may be used according to the current resource and busyness of the UE when each access mode is used, and the access mode that is currently prohibited is selected. In some cases, if the load rate of the current network is higher or the congestion degree is higher, the access mode that consumes a large amount of the access mode is preferentially disabled, or the bandwidth consumed by the UE that uses the mode is large.
  • the access mode is the forbidden access mode, and the service with the high latency and the service corresponding to the low importance can be selected according to the importance of the corresponding access mode and the delay and other parameters.
  • the mode is a prohibited access method.
  • the embodiment of the invention further discloses a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute an access control method provided by one or more of the foregoing technical solutions, for example, , as shown in Figure 1, Figure 2, Figure 3 and Figure 5.
  • the computer storage medium provided in this embodiment may include: a mobile storage device, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and the like, and may store program codes. Medium, optional as non-transitory storage medium.
  • the disclosed apparatus and method 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 such as: multiple units or components may be combined, or Can be integrated into another system, or some features can be ignored or not executed.
  • the coupling, or direct coupling, or communication connection of the components shown or discussed may be indirect coupling or communication connection through some interfaces, devices or units, and may be electrical, mechanical or other forms. of.
  • the units described above as separate components may or may not be physically separated, and the components displayed as the unit may or may not be physical units, that is, may be located in one place or 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 module, or each unit may be separately used as one unit, or two or more units may be integrated into one unit; the above integration
  • the unit can be implemented in the form of hardware or in the form of hardware plus software functional units.
  • the UE when the load status or the congestion status of the access network or the core network reflects that the network is busy, the UE is sent to the UE to prevent the UE from continuously initiating the access, causing the congestion to be further serious or the load rate to be further increased.
  • the indication information of the access restriction rule is used to restrict the access of part of the UE or part of the service, thereby achieving the purpose of alleviating congestion or reducing the load rate, thereby ensuring that the currently urgently transmitted service or the emergency access UE can normally transmit data,
  • the positive industrial effect at the same time, can be easily realized by the transmission of the indication information and the operation of the UE according to the access restriction rule, and has the characteristics of strong achievability.

Abstract

本发明实施例公开了一种接入控制方法、接入网网元、UE及计算机存储介质,所述方法包括:当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向用户设备(UE)发送接入限制规则的指示信息;其中,所述接入限制规则包括以下至少之一:禁止UE使用的接入方式;禁止接入的UE类型;禁止接入的业务类型。

Description

接入控制方法、接入网网元、用户设备及计算机存储介质
本申请基于申请号为201710058991.2、申请日为2017年01月23日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本发明涉及无线通信领域,尤其涉及一种接入控制方法、接入网网元、用户设备(User Equipment,UE)和计算机存储介质。
背景技术
在物联网引入,使得大量的低成本、小带宽、小数据是物联网设备连接到网络。但是物联网设备接入网络的持续时间短,传输数据量小,但设备保有量非常巨大,每一次设备和无线通信网络建立连接都会导致大量空口的控制面信令以及地面侧的控制面信令的开销,但相比于设备传输的数据量来说,出现了控制面信令开销大于用户面数据量的情况,这导致系统传输效率的低下及对应的网元过载以及拥塞的问题。
发明内容
有鉴于此,本发明实施例期望提供一种接入控制方法、接入网网元、UE及计算机存储介质,希望至少缓解过载或拥塞状况。
本发明的技术方案是这样实现的:本发明实施例第一方面提供一种接入控制方法,包括:
当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向UE发送接入限制规则的指示信息;
其中,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止接入的UE类型;
禁止接入的业务类型。
本发明实施例第二方面提供一种接入控制方法,包括:
接收接入网网元发送的指示信息,其中,所述指示信息用于指示接入限制规则,所述接入限制规则包括以下至少之一:
禁止用户设备UE使用的接入方式;
禁止UE的类型;
禁止接入的业务类型;
根据所述指示信息指向的所述接入限制规则,确定是否发起接入。
本发明实施例第三方面提供一种接入网网元,包括:
发送单元,配置为当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向用户设备UE发送接入限制规则的指示信息;
其中,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止接入的UE类型;
禁止接入的业务类型。
本发明实施例第四方面提供一种UE,包括:
接收单元,配置为接收接入网网元发送的指示信息接收接入网网元发送的指示信息,其中,所述指示信息用于指示接入限制规则,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止UE的类型;
禁止接入的业务类型;
接入单元,用于根据所述指示信息指向的所述接入限制规则,确定是否发起接入。
本发明实施例提供一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于前述一个或多个接入控制方法。
本发明实施例提供的接入控制方法、接入网网元及UE,接入网网元会向UE下发指示信息,指示UE执行对应的接入限制规则,该接入限制规则主要是用于禁止UE的在特定情况下发起接入,如此,针对暂时可以延时发送的业务数据或延时接入的UE就可以暂时禁止接入,将接入资源和机会让渡给不可以延时发送数据和/或不可以延时接入的UE的使用,可以减少大量UE同时发起各种接入,导致的接入网或核心网的过载或拥塞现象。
附图说明
图1为本发明实施例提供的第一种接入控制方法的流程示意图;
图2为本发明实施例提供的第二种接入控制方法的流程示意图;
图3为本发明实施例提供的第三种接入控制方法的流程示意图;
图4为本发明实施例提供的一种UE的结构示意图;
图5为本发明实施例提供的第四种接入控制方法的流程示意图。
具体实施方式
以下结合说明书附图及具体实施例对本发明的技术方案做进一步的详细阐述,应当理解,以下所说明的优选实施例仅用于说明和解释本发明,并不用于限定本发明。
如图1所示,本实施例提供一种接入控制方法,包括:
步骤S110:当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向用户设备UE发送接入限制规则的指示信息;
其中,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止接入的UE类型;
禁止接入的业务类型。
本实施例所述的提供的接入控制方法,为应用于网络侧的方法,例如,应用于接入网的网元中的方法,例如,演进型基站(evolution Node B,eNB)中的方法。该接入网网元可为所述eNB或下一代基站(next generation Node B,gNB)或,其他无线接入节点(Access Point,AP)等。在本实施例中,所述接入网可以由接入网网元相互连接而成。所述接入网网元除了基站、AP,还可以包括各种位于接入网中的中继节点(Relay Node,RN)等其他节点。
在本实施例中所述步骤S110可包括:
步骤S111:当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,获取与所述接入网或核心网的过载状况或拥塞状况,相适配的指示信息;总之,所述步骤S110可为:预定网络的网络负载符合过载条件,或者,预定网络的拥塞状况服务拥塞条件,则需要生成或接收与当前过载状况或拥塞状况相适配的指示信息。这里的预定网络为所述核心网和/或所述接入网。
步骤S112:将所述指示信息发送给UE。
获取所述指示信息的方式,可以是2所述接入网网元,自身根据接入网或核心网的负载状况或拥塞状况,自行产生所述指示信息,也可以是从核心网的网元接收,例如,从移动管理实体(Mobility Management Entity, MME)接收。
例如,形成所述指示信息的网元中预先设定有,负载率或拥塞状况与对应的指示信息的对应关系,在形成需要下发给UE的指示信息时,以当前的负载率及拥塞状况等信息,查询所述对应关系,选择所述对应关系中与负载率及拥塞状况等信息匹配的指示信息,作为当前需要下发给UE的指示信息。当然产生所述指示信息的方式有多种,不局限于上述举例。
当核心网或接入网的网络负载符合预设条件可包括:当接入网或核心网的负载率达到负载率门限或负载量超过负载量门限时,可认为所述核心网或接入网的网络负载符合所述过载条件。在本实施例中判断所述核心网的网络负荷,可包括判断MME的当前负载率或当前负载量是否达到对应的门限。所述接入网的网络负荷符合所述过载条件,可包括:判断基站的当前负载率或负载量是否达到对应的门限。
所述核心网或接入网的拥塞状况,可以用当前核心网或接入网的负载状况来表示,也可以根据当前网络的可用资源状况或待响应请求的数量等参数来表征所述拥塞状况,当拥塞状况满足一定的条件时,可认为核心网或接入网络发生拥塞,需要缓解拥塞。例如,当前MME或eNB队列中的待响应的请求数量超过数量阈值,或,当前MME或eNB的处理资源的使用率达到使用率上限等,即可认为出现了拥塞,符合上述拥塞条件。
此时,所述接入网网元通过广播消息向该接入网网元覆盖的所有UE发送指示信息。该指示信息可用于指示接入限制规则的生效或执行。
在本实施例中接入网网元向UE发送指示信息,可通过广播消息或非广播消息发送所述UE。
所述广播消息可包括系统消息。所述指示信息可以携带在系统消息的主设备信息块(Master Information Block,MIB)或系统信息块(System Information Block,SIB)中发送给UE。
在本实施例中所述指示信息指示的接入限制规则可包括:
禁止UE接入时使用的接入方式;
禁止接入的UE的类型,这种类型,可以由UE的UE能力来进行区分,可为:指示具有哪些UE能力的UE禁止接入。
禁止接入的业务类型。
所述禁止UE接入时使用的接入方式、禁止接入的UE的类型及禁止计入的业务类型,都可以视为接入限制规则的限制参数。
所述指示信息指示的接入限制规则可包括:一个或多个限制参数组合形成的。此时,在一种实施例中,当所述接入限制规则包括两个或两个以上的限制参数时,则该条接入限制规制为:同时满足该条接入限制规则的两个或两个以上的接入限制参数的UE禁止接入。
例1,某一个接入限制规则包括:限制参数为两个,且分别是:禁止UE接入时使用的接入方式及禁止接入的业务类型;则表示禁止使用对应方式发起对应业务类型的呼叫。
例2,当所述接入限制规则包括两个或两个以上的限制参数时,则该条接入限制规制为:只要满足其中一个限制参数的UE就禁止接入,某一个接入限制规则包括:限制参数为两个,且分别是:禁止UE接入时使用的接入方式及禁止接入的业务类型,则可表示禁止对应类型的UE发起的任意业务的呼叫,且同时禁止任何UE使用任何方式发起对应业务类型的呼叫。
故在一些实施例中,当所述接入限制规则包括两个或两个以上的限制参数时,根据限制参数的组合方式,组合所述限制参数形成具体接入限制规则。这里的组合方式,至少包括:例1中的第一组合方式,和例2中的第二组合方式。
在一些实施例中,所述限制参数还可包括:时间参数、比例参数及模型参数中的一个或多个。
所述指示信息可分为三类指示比特,分别是第一类指示比特、第二类指示比特和第三类指示比特;所述第一类指示比特中的一个或多个比特用于指示禁止接入的接入方式,第二类指示比特用于指示禁止接入的UE类型;所述第三类指示比特用于指示禁止接入的业务类型。在本实施例中将指示信息对应的指示比特拆分成三种类型进行表征,这样的话,在进行接入限制规则的生效时,可以通过至少两类指示比特的组合,可以灵活的组合出符合当前网络状况的接入限制规则的执行。且通过指示信息的发送,指示当前生效的接入限制规则,而并非完整的接入限制规则的发送,具有信令开销小,且灵活度高的特点。
UE在接收到所述指示信息之后,知道哪些限制接入规则当前生效,在发起接入之前,需要根据当期生效的接入限制规则,确定自身是否被允许发起接入。
在一些实施例中,所述禁止UE使用接入方式包括以下至少之一:
控制面优化数据传输CP方式;
用户面优化数据传输UP方式;
无线资源控制连接建立legacy方式;
所述禁止接入的UE类型包括以下至少之一:
仅支持所述CP方式接入的UE;
同时支持所述CP方式和所述UP方式进入的UE;
所述禁止接入的业务类型包括以下至少之一:
主叫数据业务mo-data;
主叫超常数据mo-Exception Data;
延时容忍接入业务Delay Tolerant Access;
主叫信令业务mo-signaling;
网络协议IP数据业务;
非IP数据业务。
所述CP方式包括:终端通过控制面信令,例如,非接入层(Non-access stratum,NAS)消息,将数据直接传送给MME,由MME将数据转发个外网,而不是通过网关将数据转发给外网的接入方式。CP方式需要MME参与数据的传输,若CP方式接入的UE过多,可能会导致MME的过载或拥塞。
所述UP方式为:UE和网络侧的连接释放之前,网络侧将保存UE的历史上下文,在终端下一次发起和网络侧连接时,利用保存过的上下文来建立连接的接入方式。该接入方式,需要基站等接入网网元存储上下文,若接入的UE过多或保存的上下文过多,会导致出现缓存资源减少,在下次接入时,可能还需要检索前一次保存的上下文,还需要消耗一定的处理资源。这里的处理资源可包括处理器或处理电路提供的计算、查询及检索等资源。
所述legacy方式为利用RRC信令建立连接的方式。
所述mo-exception data通常指向的为突发类型的业务,例如,报警业务、异常类型的数据上报业务等。
所述网络协议IP数据业务可以简称为non-IP-data业务;所述网络协议IP数据业务可以称之为IP-data业务。通常non-IP-data业务对应的数据包中不携带有目的IP地址,采用的非基于目的IP地址的路由转发。所述IP-data业务对应的数据包时携带有目的IP地址。
针对上述CP方式的限制,通常当核心网的网络负荷符合所述过载条件或核心网的拥塞状况负荷所述拥塞条件时,尤其是当所述MME的当前状况负荷所述过载条件或所述拥塞条件时,所述接入网网元发送的所述指示信息,可用于指示禁止部分或全部终端采用CP方式发起接入,或指示全部或部分业务采用CP方式发起接入的接入限制规则生效,从而缓解核心网的过 载或拥塞状况。
针对上述UP方式的限制,通常当接入网的网络负荷符合所述过载条件或接入网的拥塞状况符合所述拥塞条件时,尤其是基站的剩余缓存小于缓存阈值,或缓存出现紧张、或者剩余处理资源小于处理资源阈值等情况时,所述接入网网元发送的指示信息,用于指示禁止全部或部分终端采用UP方式接入或,全部或部分业务采用UP方式接入的接入限制规则生效,从而缓解接入网的过载或拥塞状况。
在本实施例中所述UE的类型,是根据UE支持的接入方式的UE能力来确定的。例如,所述UE可以分为仅支持CP方式的一类UE,同时支持CP方式和UP方式的另一类UE。
所述指示信息,可以指示对应的接入限制规则生效,从而限制某一类UE的接入。例如,接入网网元可以通过第二类指示比特,在核心网出现拥塞或过载时,指示禁止仅支持CP方式的UE进入的接入限制规则生效。再例如,接入网网元可以通过第二类比特,在接入网出现拥塞或过载时,指示禁止同时支持CP方式和UP方式的UE进行接入,或指示同时CP方式和UP方式的UE采用CP方式接入。
可选地,所述指示信息指示生效的接入限制规则可包括以下至少之一:
规则1:禁止使用UP方式或者legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;该规则1又可以分为:
禁止使用legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
禁止使用UP方式发起主叫数据业务mo-data、所述主叫超常数据 mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫
规则2:禁止使用CP方式发起所述mo-ExceptionData、所述delayTolerantAccess、或者所述mo-signaling的呼叫;
规则3:禁止预定比例的UE使用CP方式发起所述mo-data的呼叫;
规则4:禁止只支持CP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
规则5:禁止同时支持CP方式和UP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
规则6:禁止同时支持CP方式和UP方式的UE使用CP方式发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
规则7:禁止同时支持CP方式和UP方式的UE,使用UP方式或者legacy方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;该规则7又可以分为:
禁止同时支持CP方式和UP方式的UE,使用legacy方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
禁止同时支持CP方式和UP方式的UE,使用UP方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
规则8:禁止发送非网络协议数据non-IP-data业务;
规则9:禁止发送单个数据包超过第一预设数据包长度门限的所述non-IP-data业务、一次连接累积发送数据量大于第一累积门限的所述 non-IP-data业务、流量超过第一预设流量门限的所述non-IP-data业务、或者具有连续数据包的所述non-IP-data业务,其中,所述具有连续数据包的所述non-IP-data业务为:通过一次连接发送多个数据包的所述non-IP-data业务;
规则10:禁止发送网络协议数据IP-data业务;
规则11:禁止发送单个数据包超过第二预设数据包长度门限的所述IP-data业务、一次连接累积数据量大于第二累积门限的所述IP-data业务、流量超过第二预设流量门限的所述IP-data业务;
规则12:禁止使用CP方式发起超过第三预设数据包长度门限的业务、一次连接累积数据量超过第三累积门限的业务、流量超过第三预设流量门限的业务,或者具有连续数据包的业务;
规则13:禁止使用UP方式发起低于第四预设数据包长度门限的业务、一次连接累积数据量低于第四累积门限的业务、或者流量低于第四预设流量门限的业务。
上述预设数据包长度门限、累积门限之前的“第一”、“第二”及“第三”等序数词都是用于区分不同情况下的门限,并不代表实质的意义。
在本实施例中所述接入网网元,可以根据当前发送拥塞状况或过载现象的位置,及根据所述接入限制规则的限制接入的效果,指示对应的接入限制规则生效。
在本实施例中前述多条限制接入规则可为预先存储在UE和接入网网元中,也可以为UE和接入网网元预先协商的,也可以是通信协议预先规定的。总之,在发送所述指示信息之前,所述接入网网元和所述UE都可以有相应的途径获取上述接入限制规则,并获得指示信息与接入限制规则之间的对应关系,从而可以方便后续UE根据指示信息,执行或生效那一条具体的接入限制规则的执行,从而实现接入控制,缓解大量的UE,尤其是物联 网终端同时接入网络导致的过载或拥塞。
例如,当所述指示信息指示规则3生效时,UE在发起接入之前,会随机产生一个0到1之间的随机数,将随机数与所述预定比例进行比较,若该随机数大于所述预定比例,则允许该UE发起接入,否则禁止该UE发起接入。当然,也可以是若所述随机数不大于所述预定笔试时,允许UE发起接入,否则禁止UE接入。
以上仅是接入限制规则的举例,但是具体实现时不局限于上述任意一条规则。
这里的规则1至规则13可为前述的具体接入限制规则。
在本实施例中所述接入限制规则可分为两部分,第一部分为规则内容,第二部分为规则执行的限制参数。所述限制参数可包括时间参数、比例参数及数据模型参数中的一个或多个,当然具体实现时,还可包括例外参数等。这里的例外参数可至少哪些特殊情况对应规则内容不生效的情况。可选地,所述接入限制规则还包括时间参数、比例参数及数据模型参数的至少其中之一;
所述时间参数,用于规定所述接入限制规则的生效时长;
所述比例参数,用于指示限制接入的用户设备的比例或所述接入限制规则的生效概率;
所述数据模型参数,包括:数据模型门限;
所述数据模型门限包括以下至少之一;
数据包长度门限;
累积数据量的累积门限;
流量门限;
连续数据包的数据个数门限;
连续数据包的发送频次或周期门限。
所述生效时长对应于的一个时间窗口的时间长度。若UE接收到指示信息之后,读取了某一条接入限制规则的规则内容,同时提取了时间参数,根据时间参数中限制的生效时长,可以从接收到指示信息时刻开始或读取到接入限制规则开始,计算生效时间。所述比例参数,指示的某一条或多条规则的生效概率或用户终端的比例。当所述比例参数为限制接入的UE的比例时,所述UE可以通过产生随机数的方式,然后将随机数与比例进行比较,然后确定当前是否发起接入请求。
在本实施例中所述限制参数可为单独写在每一个条接入限制规则中,该一个所述限制参数也可以同时被多条限制规则共用。例如,所述时间参数可为被多条接入限制规则共用的参数。该时间参数可以由所述基站发送给UE,也可以是基站向UE指示。
所述步骤S110还可包括:
所述接入网网元向所述UE通过广播消息发送所述指示信息,其中,所述广播消息包括:系统消息。
在另一些实施例中,所述步骤S110可包括:
所述接入网网元通过寻呼消息、物理下行控制信道或专用RRC信令发送所述指示信息。
在本实施例中优选采用广播消息发送所述指示信息,从而一次性指示多个UE的接入控制。暂时还未发起接入请求的,则会根据所述指示信息控制自身的接入请求的发起。
总之,所述接入网网元向UE下发所述指示信息的方式有多种,不局限于上述任意一种。
如图2所示,本实施例提供一种接入控制方法,包括:
步骤S210:接收接入网网元发送的指示信息,其中,所述指示信息用于指示接入限制规则,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止UE的类型;
禁止接入的业务类型;
步骤S220:根据所述指示信息指向的所述接入限制规则,确定是否发起接入。
本实施例所述的方法可为应用于UE中的方法。所述接入网网元可为任意可以使得基站连接到无线网络的通信节点,例如,各种类型的基站等。
在步骤S210中接收接入网网元发送的指示信息,这里的指示信息的相关描述可以参见前述实施例的对应部分。在步骤S210招工可包括接收广播发送的指示信息、组播发送的指示信息或单播方式的指示信息。优选为,接收接入网网元广播方式的指示信息。
例如,所述步骤S210可包括:
接收广播信息,从广播信息中提取所述指示信息;这里的广播信息可包括系统消息。所述指示信息可携带在SIB或MIB中发送给UE。
接收寻呼消息或物理下行控制信道发送的消息或专有RRC信令携带的所述指示信息。
在本实施例中所述指示信息,可用于分别指示禁止UE接入的接入方式、禁止接入的UE类型及禁止接入的业务类型的一种。故在本实施例中同样的,所述指示信息可包括前述三类的指示比特。
在一些实施例中,所述禁止UE使用接入方式包括以下至少之一:
控制面优化数据传输CP方式;
用户面优化数据传输UP方式;
无线资源控制连接建立legacy方式;
所述禁止接入的UE类型包括以下至少之一:
仅支持所述CP方式接入的UE;
同时支持所述CP方式和所述UP方式进入的UE;
所述禁止接入的业务类型包括以下至少之一:
主叫数据业务mo-data;
主叫超常数据mo-Exception Data;
延时容忍接入业务Delay Tolerant Access;
主叫信令业务mo-signaling;
网络协议IP数据业务;
非IP数据业务。
在本实施例中上述接入方式、数据类型的相关定义可以参见前述实施例,在此就不重复描述了。
进一步地,所述接入限制规则至少包括以下之一:
禁止使用UP方式或者legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
禁止使用CP方式发起所述mo-ExceptionData、所述delayTolerantAccess、或者所述mo-signaling的呼叫;
禁止预定比例的UE使用CP方式发起所述mo-data的呼叫;
禁止只支持CP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
禁止同时支持CP方式和UP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
禁止同时支持CP方式和UP方式的UE使用CP方式发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
禁止同时支持CP方式和UP方式的UE,使用UP方式或者legacy方 式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
禁止发送非网络协议数据non-IP-data业务;
禁止发送单个数据包超过第一预设数据包长度门限的所述non-IP-data业务、一次连接累积发送数据量大于第一累积门限的所述non-IP-data业务、流量超过第一预设流量门限的所述non-IP-data业务、或者具有连续数据包的所述non-IP-data业务,其中,所述具有连续数据包的所述non-IP-data业务为:通过一次连接发送多个数据包的所述non-IP-data业务;
禁止发送网络协议数据IP-data业务;
禁止发送单个数据包超过第二预设数据包长度门限的所述IP-data业务、一次连接累积数据量大于第二累积门限的所述IP-data业务、流量超过第二预设流量门限的所述IP-data业务;
禁止使用CP方式发起超过第三预设数据包长度门限的业务、一次连接累积数据量超过第三累积门限的业务、流量超过第三预设流量门限的业务,或者具有连续数据包的业务;
禁止使用UP方式发起低于第四预设数据包长度门限的业务、一次连接累积数据量低于第四累积门限的业务、或者流量低于第四预设流量门限的业务。
此处接收的接入限制规则与基站等接入网网元发送的接入限制规则是一致的。
进一步地,所述接入限制规则还包括时间参数、比例参数及数据模型参数的至少其中之一;所述时间参数,用于规定所述接入限制规则的生效时长;所述比例参数,用于指示限制接入的用户设备的比例或所述接入限制规则的生效概率;
所述数据模型参数,包括:数据模型门限;
所述数据模型门限包括以下至少之一;
数据包长度门限;
累积数据量的累积门限;
流量门限;
连续数据包的数据个数门限;
连续数据包的发送频次或周期门限。
通过上述参数的限定,可以规定接入限制规则的生效时间、生效概率及生效模型等各种参数,可以确保进一步的控制接入限制规则的使用,从而更好的限制UE,尤其是物联网UE的接入,从而可以网络侧减少拥塞和过载的现象。
以下结合上述实施例提供几个具体示例:
示例1:
本示例用来说明由无线接入网自己发起的接入限制流程。
本示例采用LTE接入网作为例子,其无线接入网网元为eNB。
如图3所示:
步骤101:eNB判断自己的负荷等级是否为高或者过载,如果是,则eNB发起对终端的接入限制,eNB通过SIB广播或者通过寻呼信道将接入限制规则和或限制参数发送给UE。
步骤102:UE在发起接入之前,获取eNB发送的接入限制规则和/或限制参数;
步骤103:UE根据收到所述的接入限制规则和或限制参数判断能否发起接入行为。
示例2:
本示例用来说明不同的接入限制指示的组合可以形成哪些接入限制方法和效果。
本实施具体说明在示例1中,eNB在SIB、或者寻呼消息、或者RRC专用信令中包含的接入限制规则和或限制参数可以包括哪些方式,起到怎样的接入控制效果;
将本示例和示例1进行结合,就可以形成包括接入控制流程和接入控制参数的完整详细的示例子。
eNB在SIB、或者寻呼消息、或者RRC专用信令中包含的接入限制规则和或限制参数包括下面几类:
(1)禁止使用UP方式或者legacy方式发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
(2)禁止使用CP方式发起mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
(3)禁止一定比例X的UE(用户设备)使用CP方式发起mo-data的呼叫;
(4)禁止设备能力为“只支持CP方式”的UE发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
(5)禁止设备能力为“同时支持CP方式和UP方式”的UE发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
(6)禁止设备能力为“同时支持CP方式和UP方式”的UE使用CP方式发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
(7)禁止设备能力为“同时支持CP方式和UP方式”的UE使用UP方式或者legacy方式发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
(8)禁止发送non-IP-data业务;
(9)禁止发送超过预设数据包大小门限的non-IP-data业务、或者超过累积数据量门限的non-IP-data业务、或者超过预设流量门限的non-IP-data业务、或者具有连续数据包的non-IP-data业务;
(10)禁止发送IP-data业务;
(11)禁止发送超过预设数据包大小门限的IP-data业务、或者超过累积数据量门限的IP-data业务、或者超过预设流量门限的IP-data业务;
(12)禁止使用CP方案发起超过预设数据包大小门限的业务、或者超过累积数据量门限的业务、或者超过预设流量门限的业务,或者具有连续数据包的业务,所述的门限可以由网络侧通知UE或者由收发双方预设置;
(13)禁止使用UP方案发起低于预设数据包大小门限的业务、或者低于累积数据量门限的业务、或者低于预设流量门限的业务(指禁止使用UP方式发送小数据/小流量业务,因为UP方案适合用于传输大数据/大流量)。
eNB根据自己负荷情况的严重等级,以及导致负荷的主要原因,在上述接入限制规则中选择1类规则,或者选择多种无相互冲突的规则;例如下面的例子:
以选择1种规则为例:
例1:选择规则(1),选择的受限业务类型为delayTolerantAccess,则eNB在RRC连接拒绝信令、RRC连接重建拒绝信令或者RRC连接释放信令中包含下述指示:
禁止使用UP方式或者legacy方式发起delayTolerantAccess的呼叫;
收到上述指示的UE,当其发起delayTolerantAccess的业务时,需根据指示的接入限制规则,只能使用除UP方式和legacy方式以外的方法 来发起接入;
例2:仍然选择规则(1),选择的受限业务类型为mo-data和delayTolerantAccess,则eNB在RRC连接拒绝信令、RRC连接重建拒绝信令或者RRC连接释放信令中包含下述指示:
禁止使用UP方式或者legacy方式发起mo-data、或者delayTolerantAccess的呼叫;
收到上述指示的UE,当其发起delayTolerantAccess的业务或者mo-data的业务时,需根据指示的接入限制规则,只能使用除UP方式和legacy方式以外的方法来发起接入。
例3:仍然选择规则(1),选择的受限业务类型为mo-ExceptionData和mo-signaling,以及mo-data和delayTolerantAccess,则eNB在RRC连接拒绝信令、RRC连接重建拒绝信令或者RRC连接释放信令中包含下述指示:
禁止使用UP方式或者legacy方式发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
收到上述指示的UE,当其发起规则所限制的上述4种业务时,只能使用除UP方式和legacy方式以外的方法来发起接入。
例4:规则2的用法可参考规则1,见例1,2,3;
例5:选择规则(3),选择的受限业务类型为mo-data,则eNB在RRC连接拒绝信令、RRC连接重建拒绝信令或者RRC连接释放信令中包含下述指示:
禁止一定比例X的UE(用户设备)使用CP方式发起mo-data的呼叫;所述比例X可以由eNB配置,通过广播消息或者专用信令通知UE,例如:当负荷较重时,可以将比例X设置得较高,例如80%。
收到上述指示的UE,当其发起规则所限制的mo-data业务时,如果 采用CP方式以外的其他方法,可以直接发起接入,如果采用CP方式,则需要按照均匀分布随机数来计算自己可以发起接入的概率,当比例X为80%时,只有20%的概率能使用CP方式来发起接入。
例6:选择规则(4)
禁止设备能力为“只支持CP方式”的UE发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫。
该规则对UE具有的能力种类以及发起的业务类型都进行了限制,除了能力限制外,业务的限制可以选择多种自由组合,例如:
禁止设备能力为“只支持CP方式”的UE发起mo-data的呼叫;
禁止设备能力为“只支持CP方式”的UE发起delayTolerantAccess的呼叫;
禁止设备能力为“只支持CP方式”的UE发起mo-ExceptionData或者mo-signaling的呼叫;
禁止设备能力为“只支持CP方式”的UE发起mo-signaling的呼叫;
例7:选择规则(5)
禁止设备能力为“同时支持CP方式和UP方式”的UE发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫。该规则设定了对另一种UE能力的接入限制;用法可参考例6;
例8:选择规则(6)
禁止设备能力为“同时支持CP方式和UP方式”的UE使用CP方式发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫。
该规则包含对UE能力、使用的接入方法、以及发起的业务类型的3种限制条件,使用方法可参考前面的例子;
例9:选择规则(7)
禁止设备能力为“同时支持CP方式和UP方式”的UE使用UP方式或者legacy方式发起mo-data、或者mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
和规则6类似,只是在对使用的接入方法的限制条件不同;
例10:选择规则(8)
禁止发送non-IP-data业务;
该规则仅对业务类型进行限制接入,而且针对的是非基于IP地址传输技术的业务,该类业务在目前的LTE协议中多采用CP方式来进行传输。
收到该规则的UE只要发起的是non-IP-data业务,无论其能力是什么、无论其采用什么接入方法,均不能发起接入;
例11:选择规则(9)
禁止发送超过预设数据包大小门限的non-IP-data业务、或者超过累积数据量门限的non-IP-data业务、或者超过预设流量门限的non-IP-data业务、或者具有连续数据包的non-IP-data业务
该规则对non-IP-data业务的接入限制条件相对于规则(8)更宽松一些,从业务数据特征的角度对non-IP-data业务的一部分做了限制接入。其中业务数据特征的限制角度包括下面的一种或者多种的组合:
禁止超过预设数据包大小门限;
禁止超过累积数据量门限;
禁止超过预设流量门限;
禁止具有连续数据包;
例12:选择规则(10)或(11)可参考规则(8)或(9);
例13:选择规则(12):
禁止使用CP方案发起超过预设数据包大小门限的业务、或者超过 累积数据量门限的业务、或者超过预设流量门限的业务,或者具有连续数据包的业务,所述的门限可以由网络侧通知UE或者由收发双方预设置;
该规则将业务数据特征的限制条件与接入方法的限制条件进行了结合,其用法可参考前面的有CP方案限制条件和业务数据特征的限制条件的规则。
例14:选择规则(13):
禁止使用UP方案发起低于预设数据包大小门限的业务、或者低于累积数据量门限的业务、或者低于预设流量门限的业务(指禁止使用UP方式发送小数据/小流量业务,因为UP方案适合用于传输大数据/大流量)
该规则也将业务数据特征的限制条件与接入方法的限制条件进行了结合,不同的是接入方法的限制条件针对UP方式,因而其对应的业务数据特征的限制条件和规则(13)是不同的,本例强调UP方案不能用来传输小数据包或者低流量的业务。
eNB发送上述规则时,可以选择其中一条,也可以选择多条,选择多条规则时应当保证规则之间没有相互冲突,也没有相互重复的部分。
示例3:
本示例用来说明结合额外的限制参数后可以形成的更灵活的接入限制方式。
在示例2的接入限制规则的基础上,eNB还可以额外发送其他限制参数来和接入限制规则进行配合,形成新的更加灵活的接入限制规则。
所述额外的限制参数包括:
时间参数、比例参数、数据模型参数:
-时间参数:增加对应的wait timer,以规定所述接入限制规则生效 的时长;
-比例参数:增加概率因子或者比例因子,以规定所述接入限制规则生效的概率或者UE比例;
-数据模型门限:增加数据包大小门限、或者累积数据量门限、或者流量门限、或者连续数据包的数量门限、或者连续数据包的频度/周期门限,以规定所述接入限制规则中包含的业务禁止超过所述数据模型门限、或者禁止低于所述数据模型门限;
上述3种参数可以选择1种参数或者多种参数的组合,与前述的接入限制规则进行结合来形成新的规则。
上述3种参数的具体数值可由eNB配置,并通过广播消息或者寻呼、或者专用信令通知给UE。
例1:将规则(2)“禁止使用CP方式发起mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫”与所述时间参数结合,可以形成新的规则如下:
在设定时间范围A内禁止使用CP方式发起mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫。
所述时间范围A可由eNB配置,并通过广播消息或者专用信令通知给UE。
例2:将规则(2)“禁止使用CP方式发起mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫”与所述比例参数结合,可以形成新的规则如下:
禁止预设比例B的用户数使用CP方式发起mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫。
所述预设比例B可由eNB配置,并通过广播消息或者专用信令通知给UE。eNB可以通过这种方式禁止比例B的用户数量使用CP方式发起 受限制业务类型的呼叫。
例3:将规则(2)“禁止使用CP方式发起mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫”与所述数据模型门限结合,其中数据模型门限又包含数据包大小门限、或者累积数据量门限、或者流量门限、或者连续数据包的数量门限、或者连续数据包的频度/周期门限,可以选择其中一种或者多种。可以形成新的规则如下:
禁止使用CP方式发起超过数据包大小门限的delayTolerantAccess的呼叫;
禁止使用CP方式发起超过累积数据量门限的mo-signaling的呼叫;
禁止使用CP方式发起超过流量门限的mo-ExceptionData的呼叫;
禁止使用CP方式发起超过连续数据包的频度/周期门限的mo-ExceptionData、或者delayTolerantAccess、或者mo-signaling的呼叫;
禁止使用CP方式发起超过流量门限,或者超过连续数据包的数量门限的mo-ExceptionData的呼叫;
例4:将规则“禁止发送non-IP-data业务”与时间参数、比例参数以及数据模型门限同时结合,形成新规则如下:
在预设时间范围A内,禁止预设比例B的用户数量发送超过流量门限的non-IP-data业务;
示例4:
本示例用来说明本发明所述的接入限制规则和限制参数与现有的LTE接入限制(Access Barring,ACB)以及(Extended Access Barring,EAB)的关系。
现有LTE已经有ACB和EAB机制,其参数均通过系统广播消息SIB2发送,本发明所述的接入限制规则和限制参数与ACB或者EAB属于并列关系,有以下2种方法来处理二者的关系:
UE获取ACB参和EAB参数,以及本发明实施例所述的接入限制规则和限制参数后,UE先执行本发明所述的接入限制规则和限制参数的判断,如果UE通过了判断,则UE需要再执行ACB参或者EAB参;
UE获取ACB参和EAB参数,以及本发明实施例所述的接入限制规则和限制参数后,UE先执行ACB或者EAB,如果UE通过了判断,则UE需要再执行本发明所述的接入限制规则和限制参数的判断。
本实施例提供一种接入网网元,包括:
发送单元,配置为当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向用户设备UE发送接入限制规则的指示信息;
其中,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止接入的UE类型;
禁止接入的业务类型。
本实施例所述接入网网元可对应于基站等可以供UE接入到网络侧的设备。所述发送单元可对应于接入网网元的发送天线,可用于向UE发送所述指示信息。
在本实施例中所述接入网网元还可包括处理器等结构,所述处理器可为微处理器、数字信号处理器、可编程阵列或中央处理器等,可以用于自行产生或解析外设发送的消息,得到所述指示信息。该处理器与所述发送天线连接,可用于数据的发送。
本实施例中所述接入限制规则的详细内容,可以参见前述实施例的部分,同样可包括禁止UE接入的接入方式、数据类型等各种参数。
总之,本实施例提供的接入网网元,是配置为前述由接入网网元执行的接入控制方法,故所有的接入限制规则的详细内容可以参见前述对应部 分,在此就不重复了。
所述发送单元可广播发送所述指示信息、组播发送所述指示信息或单播发送所述指示信息。
在一些实施例中,所述发送单元,配置为所述接入网网元向所述UE通过广播消息发送所述指示信息,其中,所述广播消息包括:系统消息。
在另一些实施例中,所述发送单元,具体用于通过寻呼消息、物理下行控制信道或专用RRC信令发送所述指示信息。
如图4所示,本实施例提供一种用户设备UE,包括:
接收单元210,用于接收接入网网元发送的指示信息接收接入网网元发送的指示信息,其中,所述指示信息用于指示接入限制规则,所述接入限制规则包括以下至少之一:
禁止UE使用的接入方式;
禁止UE的类型;
禁止接入的业务类型;
接入单元220,用于根据所述指示信息指向的所述接入限制规则,确定是否发起接入。
所述接收单元210可定于UE的接收天线,可用于接收所述指示信息。
所述接收单元210可接收广播消息、组播消息或单播消息,从广播消息或组播消息或单播消息中提取所述指示信息。
所述接入单元220可对应于处理器及与处理器连接的发送天线,可用于根据接入限制规则发送接入请求,或不发送接入请求。所述处理器当确定当前UE有接入需求时,先要查询当前生效的接入限制规则,通过判断参数的获取,将判断参与当前生效的接入限制规则的匹配,当匹配成功,则不发起接入,当匹配不成功则发起接入。这里的判断参数可为:UE的接入方式、UE的类型或需要发起接入的业务类型等参数。
这里的接入限制规则与前述实施例中的一致,故在此就不重复了。
如图5所示,本实施例还提供一种接入控制方法,包括:
步骤S1:eNB向UE发送指示信息;
步骤S2:UE基于所述指示信息,确定当前生效的接入限制规则;
步骤S3:当有接入需求时,查询当前生效的接入限制规则,确定是否允许当前接入需求对应的接入请求的发起;
步骤S4:若允许接入,发起接入请求;
步骤S5:若不允许接入,屏蔽当前接入需求的响应。
在一些特定情况,所述禁止接入的UE的类型,可以根据不同类型的UE的优先级和/或型号来确定,优先选择接入允许延时大的UE作为禁止接入的UE的类型。
在还有一些特定情况下,所述禁止接入的业务的类型,可以根据业务的优先级、允许延时性及服务质量(Quality of Service,QoS)等,选择优先级低、允许延时大及QoS的要求低的业务作为所述禁止接入的业务类型。
所述禁止使用的接入方式,可以根据当前每一种接入方式用于UE接入时所消耗的资源及繁忙程度,选择当前禁止使用的接入方式。在一些情况下,若当前网络的负载率越高或拥塞程度越高,优先选择接入方式消耗大的接入方式为禁止接入的方式,或使用该方式的UE接入之后消耗的带宽大的接入方式为禁止使用的接入方式,也可以根据对应接入方式发起业务的重要性及可延时性等参数来选择可延时性大的业务及重要性低的业务对应的接入方式为禁止使用的接入方式。
本发明实施例还公开了一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行前述一个或多个技术方案提供的接入控制方法,例如,如图1、图2、图3及图5所示的方法。
本实施例提供的计算机存储介质可包括:移动存储设备、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,可选为非瞬间存储介质。
在本申请所提供的几个实施例中,应该理解到,所揭露的设备和方法,可以通过其它的方式实现。以上所描述的设备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,如:多个单元或组件可以结合,或可以集成到另一个系统,或一些特征可以忽略,或不执行。另外,所显示或讨论的各组成部分相互之间的耦合、或直接耦合、或通信连接可以是通过一些接口,设备或单元的间接耦合或通信连接,可以是电性的、机械的或其它形式的。
上述作为分离部件说明的单元可以是、或也可以不是物理上分开的,作为单元显示的部件可以是、或也可以不是物理单元,即可以位于一个地方,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全部单元来实现本实施例方案的目的。
另外,在本发明各实施例中的各功能单元可以全部集成在一个处理模块中,也可以是各单元分别单独作为一个单元,也可以两个或两个以上单元集成在一个单元中;上述集成的单元既可以采用硬件的形式实现,也可以采用硬件加软件功能单元的形式实现。
本领域普通技术人员可以理解:实现上述方法实施例的全部或部分步骤可以通过程序指令相关的硬件来完成,前述的程序可以存储于一计算机可读取存储介质中,该程序在执行时,执行包括上述方法实施例的步骤。
工业实用性
本发明实施例中当接入网或核心网的负载状况或拥塞状况反映出网络比较忙时,为了避免所有的UE仍然不断发起接入导致拥塞进一步严重或负载率进一步增高,会向UE发送携带有接入限制规则的指示信息,以限制部分UE或部分业务的接入,从而达到缓解拥塞或降低负载率的目的,从而保证当前紧急传输的业务或紧急接入的UE能够正常传输数据,具有积极的工业效果,与此同时通过指示信息的传输及UE的按照接入限制规则的操作,就可以简便的实现,具有可实现性强的特点。

Claims (21)

  1. 一种接入控制方法,包括:
    当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向用户设备UE发送接入限制规则的指示信息;
    其中,所述接入限制规则包括以下至少之一:
    禁止UE使用的接入方式;
    禁止接入的UE类型;
    禁止接入的业务类型。
  2. 根据权利要求1所述的方法,其中,
    所述禁止UE使用接入方式包括以下至少之一:
    控制面优化数据传输CP方式;
    用户面优化数据传输UP方式;
    无线资源控制连接建立legacy方式;
    所述禁止接入的UE类型包括以下至少之一:
    仅支持所述CP方式接入的UE;
    同时支持所述CP方式和所述UP方式进入的UE;
    所述禁止接入的业务类型包括以下至少之一:
    主叫数据业务mo-data;
    主叫超常数据mo-Exception Data;
    延时容忍接入业务Delay Tolerant Access;
    主叫信令业务mo-signaling;
    网络协议IP数据业务;
    非IP数据业务。
  3. 根据权利要求1或2所述的方法,其中,
    所述接入限制规则至少包括以下之一:
    禁止使用UP方式发起主叫数据业务mo-data、主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用CP方式发起所述mo-ExceptionData、所述delayTolerantAccess、或者所述mo-signaling的呼叫;
    禁止预定比例的UE使用CP方式发起所述mo-data的呼叫;
    禁止只支持CP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用CP方式发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用UP方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用UP方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止发送非网络协议数据non-IP-data业务;
    禁止发送单个数据包超过第一预设数据包长度门限的所述non-IP-data业务、一次连接累积发送数据量大于第一累积门限的所述non-IP-data业务、流量超过第一预设流量门限的所述non-IP-data业务、或者具有连续数据包的所述non-IP-data业务,其中,所述具有连续数据包的所述non-IP-data业务为:通过一次连接发送多个数据包的所述non-IP-data业务;
    禁止发送网络协议数据IP-data业务;
    禁止发送单个数据包超过第二预设数据包长度门限的所述IP-data业务、一次连接累积数据量大于第二累积门限的所述IP-data业务、流量超过第二预设流量门限的所述IP-data业务;
    禁止使用CP方式发起超过第三预设数据包长度门限的业务、一次连接累积数据量超过第三累积门限的业务、流量超过第三预设流量门限的业务,或者具有连续数据包的业务;
    禁止使用UP方式发起低于第四预设数据包长度门限的业务、一次连接累积数据量低于第四累积门限的业务、或者流量低于第四预设流量门限的业务。
  4. 根据权利要求1或2所述的方法,其中,
    所述接入限制规则还包括:时间参数、比例参数及数据模型参数的至少其中之一;
    所述时间参数,用于规定所述接入限制规则的生效时长;
    所述比例参数,用于指示限制接入的用户设备的比例或所述接入限制规则的生效概率;
    所述数据模型参数,包括:数据模型门限;
    所述数据模型门限包括以下至少之一;
    数据包长度门限;
    累积数据量的累积门限;
    流量门限;
    连续数据包的数据个数门限;
    连续数据包的发送频次或周期门限。
  5. 根据权利要求1所述的方法,其中,
    所述接入网网元向用户设备UE发送接入限制规则的指示信息,包括:
    所述接入网网元向所述UE通过广播消息发送所述指示信息,其中,所述广播消息包括:系统消息。
  6. 根据权利要求1所述的方法,其中,
    所述接入网网元向用户设备UE发送接入限制规则的指示信息,包括:
    所述接入网网元通过寻呼消息、物理下行控制信道或专用RRC信令发送所述指示信息。
  7. 一种接入控制方法,包括:
    接收接入网网元发送的指示信息,其中,所述指示信息用于指示接入限制规则,所述接入限制规则包括以下至少之一:
    禁止用户设备UE使用的接入方式;
    禁止UE的类型;
    禁止接入的业务类型;
    根据所述指示信息指向的所述接入限制规则,确定是否发起接入。
  8. 根据权利要求7所述的方法,其中,
    所述禁止UE使用接入方式包括以下至少之一:
    控制面优化数据传输CP方式;
    用户面优化数据传输UP方式;
    无线资源控制连接建立legacy方式;
    所述禁止接入的UE类型包括以下至少之一:
    仅支持所述CP方式接入的UE;
    同时支持所述CP方式和所述UP方式进入的UE;
    所述禁止接入的业务类型包括以下至少之一:
    主叫数据业务mo-data;
    主叫超常数据mo-Exception Data;
    延时容忍接入业务Delay Tolerant Access;
    主叫信令业务mo-signaling;
    网络协议IP数据业务;
    非IP数据业务。
  9. 根据权利要求7或8所述的方法,其中,
    所述接入限制规则至少包括以下之一:
    禁止使用UP方式发起主叫数据业务mo-data、主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用CP方式发起所述mo-ExceptionData、所述delayTolerantAccess、或者所述mo-signaling的呼叫;
    禁止预定比例的UE使用CP方式发起所述mo-data的呼叫;
    禁止只支持CP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用CP方式发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的 呼叫;
    禁止同时支持CP方式和UP方式的UE使用UP方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用legacy方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止发送非网络协议数据non-IP-data业务;
    禁止发送单个数据包超过第一预设数据包长度门限的所述non-IP-data业务、一次连接累积发送数据量大于第一累积门限的所述non-IP-data业务、流量超过第一预设流量门限的所述non-IP-data业务、或者具有连续数据包的所述non-IP-data业务,其中,所述具有连续数据包的所述non-IP-data业务为:通过一次连接发送多个数据包的所述non-IP-data业务;
    禁止发送网络协议数据IP-data业务;
    禁止发送单个数据包超过第二预设数据包长度门限的所述IP-data业务、一次连接累积数据量大于第二累积门限的所述IP-data业务、流量超过第二预设流量门限的所述IP-data业务;
    禁止使用CP方式发起超过第三预设数据包长度门限的业务、一次连接累积数据量超过第三累积门限的业务、流量超过第三预设流量门限的业务,或者具有连续数据包的业务;
    禁止使用UP方式发起低于第四预设数据包长度门限的业务、一次连接累积数据量低于第四累积门限的业务、或者流量低于第四预设流量门限的业务。
  10. 根据权利要求7或8所述的方法,其中,
    所述接入限制规则还包括时间参数、比例参数及数据模型参数的至少 其中之一;
    所述时间参数,用于规定所述接入限制规则的生效时长;
    所述比例参数,用于指示限制接入的用户设备的比例或所述接入限制规则的生效概率;
    所述数据模型参数,包括:数据模型门限;
    所述数据模型门限包括以下至少之一;
    数据包长度门限;
    累积数据量的累积门限;
    流量门限;
    连续数据包的数据个数门限;
    连续数据包的发送频次或周期门限。
  11. 一种接入网网元,包括:
    发送单元,配置为当核心网或接入网的网络负载符合过载条件,或所述核心网或接入网的拥塞状况符合拥塞条件时,接入网网元向用户设备UE发送接入限制规则的指示信息;
    其中,所述接入限制规则包括以下至少之一:
    禁止UE使用的接入方式;
    禁止接入的UE类型;
    禁止接入的业务类型。
  12. 根据权利要求11所述的网元,其中,
    所述禁止UE使用接入方式包括以下至少之一:
    控制面优化数据传输CP方式;
    用户面优化数据传输UP方式;
    无线资源控制连接建立legacy方式;
    所述禁止接入的UE类型包括以下至少之一:
    仅支持所述CP方式接入的UE;
    同时支持所述CP方式和所述UP方式进入的UE;
    所述禁止接入的业务类型包括以下至少之一:
    主叫数据业务mo-data;
    主叫超常数据mo-Exception Data;
    延时容忍接入业务Delay Tolerant Access;
    主叫信令业务mo-signaling;
    网络协议IP数据业务;
    非IP数据业务。
  13. 根据权利要求11或12所述的网元,其中,
    所述接入限制规则至少包括以下之一:
    禁止使用UP方式发起主叫数据业务mo-data、主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用CP方式发起所述mo-ExceptionData、所述delayTolerantAccess、或者所述mo-signaling的呼叫;
    禁止预定比例的UE使用CP方式发起所述mo-data的呼叫;
    禁止只支持CP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用CP方式发起所述mo-data、 所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用UP方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用legacy方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止发送非网络协议数据non-IP-data业务;
    禁止发送单个数据包超过第一预设数据包长度门限的所述non-IP-data业务、一次连接累积发送数据量大于第一累积门限的所述non-IP-data业务、流量超过第一预设流量门限的所述non-IP-data业务、或者具有连续数据包的所述non-IP-data业务,其中,所述具有连续数据包的所述non-IP-data业务为:通过一次连接发送多个数据包的所述non-IP-data业务;
    禁止发送网络协议数据IP-data业务;
    禁止发送单个数据包超过第二预设数据包长度门限的所述IP-data业务、一次连接累积数据量大于第二累积门限的所述IP-data业务、流量超过第二预设流量门限的所述IP-data业务;
    禁止使用CP方式发起超过第三预设数据包长度门限的业务、一次连接累积数据量超过第三累积门限的业务、流量超过第三预设流量门限的业务,或者具有连续数据包的业务;
    禁止使用UP方式发起低于第四预设数据包长度门限的业务、一次连接累积数据量低于第四累积门限的业务、或者流量低于第四预设流量门限的业务。
  14. 根据权利要求11或12所述的网元,其中,
    所述接入限制规则还包括时间参数、比例参数及数据模型参数的至少其中之一;
    所述时间参数,用于规定所述接入限制规则的生效时长;
    所述比例参数,用于指示限制接入的用户设备的比例或所述接入限制规则的生效概率;
    所述数据模型参数,包括:数据模型门限;
    所述数据模型门限包括以下至少之一;
    数据包长度门限;
    累积数据量的累积门限;
    流量门限;
    连续数据包的数据个数门限;
    连续数据包的发送频次或周期门限。
  15. 根据权利要求11所述的网元,其中,
    所述发送单元,还配置为向所述UE通过广播消息发送所述指示信息,其中,所述广播消息包括:系统消息。
  16. 根据权利要求11所述的网元,其中,
    所述发送单元,配置为通过寻呼消息、物理下行控制信道或专用RRC信令发送所述指示信息。
  17. 一种用户设备UE,包括:
    接收单元,配置为接收接入网网元发送的指示信息接收接入网网元发送的指示信息,其中,所述指示信息用于指示接入限制规则,所述接入限制规则包括以下至少之一:
    禁止UE使用的接入方式;
    禁止UE的类型;
    禁止接入的业务类型;
    接入单元,用于根据所述指示信息指向的所述接入限制规则,确定是否发起接入。
  18. 根据权利要求17所述的UE,其中,
    所述禁止UE使用接入方式包括以下至少之一:
    控制面优化数据传输CP方式;
    用户面优化数据传输UP方式;
    无线资源控制连接建立legacy方式;
    所述禁止接入的UE类型包括以下至少之一:
    仅支持所述CP方式接入的UE;
    同时支持所述CP方式和所述UP方式进入的UE;
    所述禁止接入的业务类型包括以下至少之一:
    主叫数据业务mo-data;
    主叫超常数据mo-Exception Data;
    延时容忍接入业务Delay Tolerant Access;
    主叫信令业务mo-signaling;
    网络协议IP数据业务;
    非IP数据业务。
  19. 根据权利要求17或18所述的UE,其中,
    所述接入限制规则至少包括以下之一:
    禁止使用UP方式发起主叫数据业务mo-data、主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用legacy方式发起主叫数据业务mo-data、所述主叫超常数据mo-ExceptionData、延时容忍接入业务delayTolerantAccess、或者主叫信令业务mo-signaling的呼叫;
    禁止使用CP方式发起所述mo-ExceptionData、所述delayTolerantAccess、或者所述mo-signaling的呼叫;
    禁止预定比例的UE使用CP方式发起所述mo-data的呼叫;
    禁止只支持CP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用CP方式发起所述mo-data、所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE,使用UP方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止同时支持CP方式和UP方式的UE使用legacy方式发起所述mo-data、或者所述mo-ExceptionData、所述delayTolerantAccess或者所述mo-signaling的呼叫;
    禁止发送非网络协议数据non-IP-data业务;
    禁止发送单个数据包超过第一预设数据包长度门限的所述non-IP-data业务、一次连接累积发送数据量大于第一累积门限的所述non-IP-data业务、流量超过第一预设流量门限的所述non-IP-data业务、或者具有连续数据包的所述non-IP-data业务,其中,所述具有连续数据包的所述non-IP-data业务为:通过一次连接发送多个数据包的所述non-IP-data业务;
    禁止发送网络协议数据IP-data业务;
    禁止发送单个数据包超过第二预设数据包长度门限的所述IP-data业务、一次连接累积数据量大于第二累积门限的所述IP-data业务、流量超过 第二预设流量门限的所述IP-data业务;
    禁止使用CP方式发起超过第三预设数据包长度门限的业务、一次连接累积数据量超过第三累积门限的业务、流量超过第三预设流量门限的业务,或者具有连续数据包的业务;
    禁止使用UP方式发起低于第四预设数据包长度门限的业务、一次连接累积数据量低于第四累积门限的业务、或者流量低于第四预设流量门限的业务。
  20. 根据权利要求17或18所述的UE,其中,
    所述接入限制规则还包括时间参数、比例参数及数据模型参数的至少其中之一;
    所述时间参数,用于规定所述接入限制规则的生效时长;
    所述比例参数,用于指示限制接入的用户设备的比例或所述接入限制规则的生效概率;
    所述数据模型参数,包括:数据模型门限;
    所述数据模型门限包括以下至少之一;
    数据包长度门限;
    累积数据量的累积门限;
    流量门限;
    连续数据包的数据个数门限;
    连续数据包的发送频次或周期门限。
  21. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1至10任一项提供方法。
PCT/CN2017/117031 2017-01-23 2017-12-18 接入控制方法、接入网网元、用户设备及计算机存储介质 WO2018133606A1 (zh)

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