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WO2018049626A1 - Procédé de traitement de service, et dispositif et système associés - Google Patents

Procédé de traitement de service, et dispositif et système associés Download PDF

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Publication number
WO2018049626A1
WO2018049626A1 PCT/CN2016/099116 CN2016099116W WO2018049626A1 WO 2018049626 A1 WO2018049626 A1 WO 2018049626A1 CN 2016099116 W CN2016099116 W CN 2016099116W WO 2018049626 A1 WO2018049626 A1 WO 2018049626A1
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WIPO (PCT)
Prior art keywords
service
user terminal
base station
user
level
Prior art date
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Ceased
Application number
PCT/CN2016/099116
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English (en)
Chinese (zh)
Inventor
余庆祥
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hytera Communications Corp Ltd
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Hytera Communications Corp Ltd
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Filing date
Publication date
Application filed by Hytera Communications Corp Ltd filed Critical Hytera Communications Corp Ltd
Priority to PCT/CN2016/099116 priority Critical patent/WO2018049626A1/fr
Publication of WO2018049626A1 publication Critical patent/WO2018049626A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications

Definitions

  • the present application belongs to the field of broadband cluster technology, and in particular, to a service processing method, related equipment and system.
  • the broadband cluster system is a dedicated wireless communication system that provides command and dispatch functions based on broadband wireless communication technology and in the form of multimedia cluster services.
  • the broadband cluster system it is necessary to meet the requirements of the reliability and low latency of the private network service while meeting the high bandwidth requirements of the data service.
  • the present application discloses a service processing method, a related device, and a system, to solve the problem in the prior art that the service requirement and the service transmission requirement cannot be simultaneously satisfied.
  • a service processing method is applicable to a base station, and the service processing method includes:
  • the base station is based on a pre-defined service type and quality of service Qos, and a quality of service level QCI Correspondence relationship, determine the business characteristics corresponding to the type of business to be executed;
  • the base station performs corresponding radio resource allocation and scheduling for the user terminal according to the service feature.
  • the user context setup request signaling carries the user subscription information SPID of the user terminal, and further includes:
  • the base station acquires the user subscription information SPID of the user terminal in the user context establishment request signaling, and compares the user subscription information SPID of the user terminal with a pre-defined user subscription information SPID, to obtain the User attribute of the user terminal;
  • the base station invokes a corresponding scheduling policy and radio resource configuration based on the user attribute.
  • the user attribute includes: a user terminal transmission power level or a user terminal authority level; the base station invokes a corresponding scheduling policy and a radio resource configuration based on the user attribute, including:
  • the base station invokes a highest-level scheduling policy, and configures a wireless resource for the user terminal;
  • the base station invokes a general-level scheduling policy, and configures a radio resource for the user terminal;
  • the base station uses an unpowered mode for the user terminal
  • the base station configures the user terminal to meet a minimum required radio resource or does not configure a radio resource to the user terminal.
  • the correspondence between the pre-defined service type and the service quality Qos and the service quality level QCI includes:
  • the base station is configured to synchronize the service features of the different service types with the core network, and complete the extension of the service quality level QCI, and establish a correspondence between the service feature and the service quality Qos and the service quality level QCI;
  • the base station performs corresponding radio resource allocation and scheduling for the user terminal, according to the service feature, including:
  • the base station allocates the user terminal to perform service transmission on a dedicated bearer based on the service characteristics of the private network service, where the dedicated bearer is pre-divided by the core network.
  • the dedicated bearer is used for performing service transmission of the private network service;
  • the base station configures, to the user terminal, a radio resource that meets a minimum requirement
  • the base station invokes a highest-level scheduling policy for the high-latency request and/or the high-service priority included in the service feature, and configures the radio resource for the user terminal.
  • a service processing device comprising:
  • a receiving unit configured to receive a service request initiated by the user terminal, and obtain a service type to be executed, where the service request carries a service type to be executed, where the service type includes a private network service and a common service;
  • a determining unit configured to determine a service feature corresponding to the service type to be executed, based on a correspondence between a pre-defined service type and a quality of service Qos and a quality of service level QCI;
  • the first scheduling allocation unit is configured to perform corresponding radio resource allocation and scheduling for the user terminal according to the service feature.
  • the method further includes:
  • the receiving unit is further configured to: receive user context establishment request signaling sent by the core network to the base station after the user terminal initiates access to the core network, where the user context setup request signaling carries User subscription information SPID of the user terminal;
  • An acquiring unit configured to acquire a user subscription information SPID of the user terminal in the user context establishment request signaling, and compare the user subscription information SPID of the user terminal with a pre-defined user subscription information SPID, to obtain User attributes of the user terminal;
  • a second scheduling allocation unit configured to invoke a corresponding scheduling policy and wireless resources based on the user attribute Source configuration.
  • the user attribute includes: a user terminal transmission power level or a user terminal authority level; and the second scheduling allocation unit includes:
  • a first configuration module configured to: when the user terminal is a high-level or medium-level user, the base station invokes a highest-level scheduling policy, and configures a wireless resource for the user terminal;
  • a second configuration module configured to: when the user terminal is a low-level user, the base station invokes a common level scheduling policy, and configures a wireless resource for the user terminal;
  • a third configuration module configured to: when the user terminal is a fixed or high-power user terminal, the base station uses an unpowered mode for the user terminal;
  • a fourth configuration module configured to: when the user terminal is a static user terminal, the base station configures, to the user terminal, a wireless resource that meets a minimum requirement or does not configure a wireless resource to the user terminal.
  • the first scheduling and allocating unit that performs corresponding radio resource allocation and scheduling for the user terminal according to the service feature includes:
  • a fifth configuration module configured to: when the service type is a private network service, allocate the user terminal to perform service transmission on a dedicated bearer according to the service feature of the private network service, where the dedicated bearer is a core network Pre-divided, the dedicated bearer is used for performing service transmission of the private network service;
  • a sixth configuration module configured to: when the service type is a non-dedicated network service, configure, to the user terminal, a wireless resource that meets a minimum requirement;
  • the seventh configuration module is configured to invoke a highest-level scheduling policy for the high-latency request and/or the high-service priority included in the service feature, and configure a radio resource for the user terminal.
  • a base station comprising:
  • a receiver configured to receive a service request initiated by the user terminal
  • a processor configured to acquire, according to the service request received by the receiver, a service type that is required to be performed in the service request, where the service type includes a private network service and a common service, and is based on a pre-defined Correspondence between service type and service quality Qos and service quality level QCI Determining the service characteristics corresponding to the service type to be executed, and performing corresponding radio resource allocation and scheduling for the user terminal according to the service characteristics.
  • a service processing system comprising: the foregoing service processing apparatus applicable to a base station or the foregoing base station, a core network, and a user terminal for requesting access to a core network to perform a corresponding service by using the base station.
  • the embodiment of the application discloses a method, a related device and a system for processing a service.
  • the service processing method is applicable to a base station, and the base station receives a service request initiated by the user terminal, and obtains a service type to be executed, where the service request carries a service type to be executed, and the service type includes a private network service and Ordinary service; then, the base station determines, according to the correspondence between the pre-defined service type and the quality of service Qos and the quality of service level QCI, the service characteristics corresponding to the service type to be executed; and finally, the base station according to the service characteristics
  • the user terminal performs corresponding radio resource allocation and scheduling.
  • the technical solution disclosed in the embodiment of the present application determines the service characteristics corresponding to the service type based on the service type currently required by the user terminal, based on the correspondence between the pre-specified service type and the service quality Qos and the service quality level QCI, and
  • the service feature is to complete the radio resource allocation and scheduling to the user terminal, thereby ensuring that both the service requirement and the service transmission requirement are met.
  • FIG. 1 is a flowchart of a service processing method disclosed in Embodiment 1 of the present application;
  • FIG. 2 is a flowchart of a service processing method disclosed in Embodiment 3 of the present application.
  • FIG. 3 is a schematic block diagram showing the structure of a base station according to Embodiment 4 of the present application.
  • FIG. 4 is a schematic block diagram showing another structure of a base station according to Embodiment 4 of the present application.
  • SPID SubscriberProfile ID for RAT/Frequency priority, user subscription information
  • QCI QoS Class Identifier, quality of service level
  • QoS Quality of Service, quality of service.
  • FIG. 1 it is a flowchart of a service processing method disclosed in Embodiment 1 of the present application.
  • the service processing method is applicable to a base station, and includes the following steps:
  • the base station receives a service request initiated by a user terminal, and obtains a service type to be executed.
  • the service request carries a service type that needs to be performed, and the service type includes a private network service and a common service;
  • the base station determines, according to a correspondence between a pre-defined service type and a service quality Qos and a quality of service level QCI, a service feature corresponding to a service type to be executed.
  • the technical solution disclosed in the embodiment of the present application provides a correspondence between the service type and Qos and QCI in advance. This correspondence actually reflects the business characteristics by extending QCI.
  • the base station and the core network synchronize the service characteristics of different service types, complete the extension of the QCI, and then establish the correspondence between the service features and the Qos and QCI.
  • the base station receives the correspondence between the service characteristics established by the core network and the QCI and the extended QCI. That is to say, the correspondence between the service features and Qos and QCI is uniformly configured by the core network and sent to the base station.
  • the service relationship corresponding to the service type to be executed is determined by the foregoing corresponding relationship between the service type and the Qos and the QCI.
  • the service features here include, but are not limited to, uplink and downlink identification, delay requirement, packet loss rate requirement, service data volume level, service transmission frequency level, and user terminal level.
  • the base station performs corresponding radio resource allocation and scheduling for the user terminal according to the service feature.
  • the corresponding resource that the service feature corresponding to the service type should be allocated is determined. And performing corresponding radio resource allocation and scheduling for the user terminal, thereby ensuring that both the service requirement and the service transmission requirement are met.
  • the base station Based on the service processing method disclosed in the first embodiment, in combination with the correspondence between the service type and the Qos and the QCI, which are pre-defined by the S102, the base station performs the allocation of the corresponding radio resource for the user terminal based on the service feature. And the process of scheduling:
  • the base station configures, to the user terminal, a radio resource that meets a minimum requirement
  • the base station allocates the user terminal to perform service transmission on a dedicated bearer based on the service characteristics of the private network service, where the dedicated bearer is pre-divided by the core network.
  • the dedicated bearer is used for performing service transmission of the private network service;
  • the base station may adopt a corresponding radio resource management policy for the service type pre-defined for the service characteristics of the private network service and the correspondence between the Qos and the QCI.
  • the private network service uniformly uses the dedicated bearer pre-divided by the core network to perform service transmission, and the other common services perform service data transmission under the default bearer.
  • the base station may also allocate corresponding radio resources for service transmission according to the service characteristics in Table 1.
  • the base station performs radio resource allocation and scheduling according to the service feature. For example, the base station invokes a highest level scheduling policy for a high latency requirement and/or a high service priority included in the service feature. Configuring wireless resources for the user terminal.
  • the second embodiment of the present application can fully utilize the service characteristics of the private network service.
  • the terminal selects the most suitable radio resource and scheduling policy to ensure that both the private network service requirement and the private network service transmission requirement are met.
  • the third embodiment of the present application further discloses a service processing method, as shown in FIG. 2, including the following steps:
  • the base station receives user context establishment request signaling sent by the core network to the base station.
  • the user context setup request signaling carries the user subscription information SPID of the user terminal, and the user subscription information SPID is obtained by the core network when the user terminal initiates an access request to the core network.
  • the base station acquires the user subscription information SPID of the user terminal in the user context establishment request signaling, and compares the user subscription information SPID of the user terminal with a pre-defined user subscription information SPID.
  • the obtained user attributes include, but are not limited to, a user terminal transmission power level or a user terminal authority level; for example, as shown in Table 2, the SPID corresponding to the corresponding user terminal pre-defined for the user attribute.
  • Y means "yes”
  • N means “no”
  • H means "high”
  • L means "low”. The higher the number in the user privilege level, the higher the level.
  • the base station invokes a corresponding scheduling policy and a radio resource configuration based on the user attribute.
  • the user attribute of the user terminal may be determined by the SPID corresponding to the corresponding user terminal, for example, whether it is a mobile device, whether pre-scheduling is required, whether it is a public network user, and a level of transmission power. How much, user terminal permission level, and so on. Then, in S203, the scheduling policy and the radio resource configuration are correspondingly invoked for the determined user attribute.
  • the base station invokes a corresponding scheduling policy and a radio resource configuration based on the user attribute, including:
  • the base station invokes a highest-level scheduling policy, and configures a wireless resource for the user terminal;
  • the base station invokes a general-level scheduling policy, and configures a radio resource for the user terminal;
  • the base station uses an unpowered mode for the user terminal
  • the base station configures the user terminal to meet a minimum required radio resource or does not configure a radio resource to the user terminal.
  • the user attribute of the user terminal can be determined by using a corresponding SPID corresponding to the user terminal, and the user attribute of the user terminal is fully utilized to distinguish whether the user terminal is a private network user or a public network user, and Further, based on the user attribute, the most suitable radio resource and scheduling policy are selected for the user terminal, thereby ensuring that both the private network service requirement and the private network service transmission requirement are satisfied.
  • the embodiment of the present application further discloses a base station, which can perform the service processing method disclosed above, and the specific structure of the base station 100 is as shown in FIG.
  • the indication includes: a receiving unit 101, a determining unit 102 and a first scheduling allocating unit.
  • the receiving unit 101 is configured to receive a service request initiated by the user terminal, and obtain a service type to be executed, where the service request carries a service type to be executed, where the service type includes a private network service and a common service. ;
  • the determining unit 102 is configured to calculate a Qos based on a pre-defined service type and quality of service Corresponding relationship of the level QCI, determining the service characteristics corresponding to the type of service to be executed;
  • the first scheduling and allocating unit 103 is configured to perform corresponding radio resource allocation and scheduling for the user terminal according to the service feature.
  • the first scheduling allocation unit includes:
  • a fifth configuration module configured to: when the service type is a private network service, allocate the user terminal to perform service transmission on a dedicated bearer according to the service feature of the private network service, where the dedicated bearer is a core network Pre-divided, the dedicated bearer is used for performing service transmission of the private network service;
  • a sixth configuration module configured to: when the service type is a non-dedicated network service, configure, to the user terminal, a wireless resource that meets a minimum requirement;
  • the first scheduling allocation unit includes:
  • the seventh configuration module is configured to invoke a highest-level scheduling policy for the high-latency request and/or the high-service priority included in the service feature, and configure a radio resource for the user terminal.
  • the receiving unit 101 is further configured to receive a user context establishment request sent by the core network to the base station after the user terminal initiates access to the core network.
  • the user context establishment request signaling carries the user subscription information SPID of the user terminal;
  • the base station 100 further includes: an obtaining unit 104 and a second scheduling allocating unit 105;
  • the obtaining unit 104 is configured to acquire the user subscription information SPID of the user terminal in the user context establishment request signaling, and compare the user subscription information SPID of the user terminal with a pre-designated user subscription information SPID. And obtaining a user attribute of the user terminal;
  • the second scheduling allocation unit 105 is configured to invoke a corresponding scheduling policy and a radio resource configuration based on the user attribute.
  • the user attribute includes, but is not limited to, a user terminal transmit power level or a user terminal permission level
  • the second scheduling and allocating unit 105 specifically includes:
  • a first configuration module configured to: when the user terminal is a high-level or medium-level user, the base station invokes a highest-level scheduling policy, and configures a wireless resource for the user terminal;
  • a second configuration module configured to: when the user terminal is a low-level user, the base station invokes a common level scheduling policy, and configures a wireless resource for the user terminal;
  • a third configuration module configured to: when the user terminal is a fixed or high-power user terminal, the base station uses an unpowered mode for the user terminal;
  • a fourth configuration module configured to: when the user terminal is a static user terminal, the base station configures, to the user terminal, a wireless resource that meets a minimum requirement or does not configure a wireless resource to the user terminal.
  • a service processing system including the foregoing base station disclosed in Embodiment 4 of the present application, and a core network and a request for accessing the core network through the base station to perform corresponding operations.
  • User terminal for the service including the foregoing base station disclosed in Embodiment 4 of the present application, and a core network and a request for accessing the core network through the base station to perform corresponding operations.
  • each unit in the above disclosed base station may be integrated into an entity, the receiving unit may be integrated into the receiver, and other units may be integrated into the processor.
  • the processor may specifically be a central processing unit CPU, or a specific integrated circuit ASIC, or one or more integrated circuits configured to implement embodiments of the present application.
  • the base station includes:
  • a receiver configured to receive a service request initiated by the user terminal
  • a processor configured to acquire, according to the service request received by the receiver, a service type that is required to be performed in the service request, where the service type includes a private network service and a common service, and is based on a pre-defined Corresponding relationship between the service type and the service quality Qos and the service quality level (QCI), determining the service characteristics corresponding to the service type to be executed, and performing corresponding radio resource allocation and scheduling for the user terminal according to the service characteristics.
  • QCI service quality level
  • the embodiment of the present application further correspondingly discloses a storage device, where the storage device is applicable to the base station, and the storage device includes a memory and a processor connected to the memory through a bus;
  • the memory stores program code for performing business processing, the program code including calculation Operating instructions, the processor is configured to run the program code;
  • the program code for performing message processing includes the service processing methods disclosed in the first embodiment to the third embodiment.
  • the technical solution disclosed in the embodiment of the present application determines, according to the service type currently required by the user terminal, based on the correspondence between the pre-specified service type and the service quality Qos and the service quality level QCI, the service characteristics corresponding to the service type should be allocated.
  • the resource or the RRC algorithm is used to allocate the appropriate radio resource to the user terminal, so as to ensure that the service requirement and the service transmission requirement are met at the same time; or the user attribute of the user terminal can be determined by the SPID corresponding to the corresponding user terminal.

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  • Engineering & Computer Science (AREA)
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  • Computer Networks & Wireless Communication (AREA)
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  • Mobile Radio Communication Systems (AREA)

Abstract

La présente invention concerne un procédé de traitement de service, ainsi qu'un dispositif et un système associés. Le procédé consiste à : recevoir, par une station de base, une demande de service lancée par un terminal utilisateur, et obtenir un type de service à exécuter; ensuite, déterminer, sur la base d'une relation correspondante prédéterminée entre le type de service, la qualité de service, et une classe de qualité de service, une caractéristique de service correspondant au type de service à exécuter; et enfin, effectuer une distribution et une répartition de ressources sans fil correspondantes pour le terminal utilisateur en fonction de la caractéristique de service. Par détermination d'une caractéristique de service correspondant à un type de service au moyen d'une relation correspondante prédéterminée entre le type de service, la qualité de service et une classe de qualité de service, et par l'achèvement de la distribution et de la répartition de ressources sans fil correspondantes pour le terminal utilisateur en fonction de la caractéristique de service, la présente invention répond aux exigences de service et aux exigences de transmission de service.
PCT/CN2016/099116 2016-09-14 2016-09-14 Procédé de traitement de service, et dispositif et système associés Ceased WO2018049626A1 (fr)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110519182A (zh) * 2019-07-30 2019-11-29 安徽电信规划设计有限责任公司 一种基于大数据的专网业务网络指标分配整合系统
WO2023071616A1 (fr) * 2021-10-29 2023-05-04 北京邮电大学 Procédé et appareil de traitement de service, dispositif électronique et support

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105207787A (zh) * 2015-08-28 2015-12-30 华为技术有限公司 一种业务QoS控制方法及网络设备

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105207787A (zh) * 2015-08-28 2015-12-30 华为技术有限公司 一种业务QoS控制方法及网络设备

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110519182A (zh) * 2019-07-30 2019-11-29 安徽电信规划设计有限责任公司 一种基于大数据的专网业务网络指标分配整合系统
CN110519182B (zh) * 2019-07-30 2022-10-14 安徽电信规划设计有限责任公司 一种基于大数据的专网业务网络指标分配整合系统
WO2023071616A1 (fr) * 2021-10-29 2023-05-04 北京邮电大学 Procédé et appareil de traitement de service, dispositif électronique et support

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