WO2011143912A1 - 一种融合业务系统及其业务实现方法 - Google Patents

一种融合业务系统及其业务实现方法 Download PDF

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Publication number
WO2011143912A1
WO2011143912A1 PCT/CN2010/080124 CN2010080124W WO2011143912A1 WO 2011143912 A1 WO2011143912 A1 WO 2011143912A1 CN 2010080124 W CN2010080124 W CN 2010080124W WO 2011143912 A1 WO2011143912 A1 WO 2011143912A1
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WIPO (PCT)
Prior art keywords
service
resource
subsystem
management subsystem
metadata
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PCT/CN2010/080124
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English (en)
French (fr)
Inventor
汪峰来
丁岩
朱科支
邹岩
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中兴通讯股份有限公司
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Priority to EP10851669.1A priority Critical patent/EP2573996A4/en
Publication of WO2011143912A1 publication Critical patent/WO2011143912A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/04Network management architectures or arrangements
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/50Network service management, e.g. ensuring proper service fulfilment according to agreements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/10Protocols in which an application is distributed across nodes in the network
    • H04L67/1001Protocols in which an application is distributed across nodes in the network for accessing one among a plurality of replicated servers
    • H04L67/1004Server selection for load balancing
    • H04L67/1008Server selection for load balancing based on parameters of servers, e.g. available memory or workload
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/56Provisioning of proxy services
    • H04L67/567Integrating service provisioning from a plurality of service providers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0823Network architectures or network communication protocols for network security for authentication of entities using certificates
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/23Processing of content or additional data; Elementary server operations; Server middleware
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/47End-user applications
    • H04N21/482End-user interface for program selection

Definitions

  • the present invention relates to the field of converged services, and in particular, to a converged service system and a service implementation method thereof. Background technique
  • IP technology makes it possible to unify existing multiple service subnets into one converged multi-service network, and the service markets of telecommunication networks, Internet and cable TV networks begin to merge.
  • Operation management is independent of each other and cannot achieve unified operation of multi-network services.
  • Operation management provides operators or service providers with core functions such as service management, service accounting, service authentication and service authentication. Independent management of operations poses challenges for the promotion and development of cross-network convergence services, It is difficult for the network business to achieve unified management, unified billing, unified authentication, and unified authentication.
  • cross-network deep integration services refer to application scenarios such as cross-network ordering, cross-network collection, and displacement TV.
  • Cross-network ordering refers to a network ordering multi-network viewing, such as ordering on mobile phones and using on IPTV;
  • cross-network collection refers to a network collection and multiple network viewing, such as collection on IPTV, use on mobile phones; Continuous playback of the same video can be achieved between different terminals.
  • This kind of business is based on the shared resources, and the resources of multiple networks should be managed in a unified manner to achieve seamless use of cross-network convergence services. Summary of the invention
  • the main purpose of the present invention is to provide a converged service system and a service implementation method thereof, which can realize a cross-network convergence service, facilitate sharing of resources, and can realize unified operation of multiple network services, and facilitate deep integration of services across networks.
  • the launch can realize a cross-network convergence service, facilitate sharing of resources, and can realize unified operation of multiple network services, and facilitate deep integration of services across networks.
  • a converged service system comprising: a resource management subsystem, an operation management subsystem, a service engine subsystem, and a user portal subsystem;
  • the resource management subsystem is configured to be responsible for managing multi-network service resources, including introducing original resources; editing imported original resources to obtain resource metadata; programming edited resource metadata; and synchronizing resource metadata to operation management Subsequent, and synchronizing resource metadata orchestration information to the user portal subsystem;
  • the operation management subsystem is configured to: after the resource management subsystem synchronizes resource metadata into the operation management subsystem, associate product metadata with resource metadata, and then synchronize resource metadata to In the business engine subsystem;
  • the service engine subsystem is configured to provide service capability access, implement service distribution scheduling, and global load balancing;
  • the user portal subsystem is configured to synchronize the number of resources according to the resource management subsystem According to the arrangement information and the type of user terminal, the user is provided with a corresponding user portal.
  • the resource metadata acquired by the resource management subsystem includes two characteristics of a single network service and a multi-network service.
  • the resource management subsystem is further configured to perform packet processing on the acquired resource metadata, and synchronize the packaged resource metadata to the operation management subsystem.
  • the resource management subsystem is further configured to review resource metadata and its orchestration information, pass the audit, and perform a subsequent synchronization process; otherwise, re-edit the original resource.
  • the user portal subsystem is further configured to receive a service usage request of the user, and notify the service engine subsystem;
  • the service engine subsystem is further configured to load the service usage request into a corresponding service engine, and the service engine requests authentication and authentication from the operation management subsystem. After the authentication and authentication is passed, the service engine is used by the service engine.
  • the operation management subsystem is further configured to perform corresponding authentication authentication and return an authentication authentication response according to the request of the service engine in the service engine subsystem.
  • the operation management subsystem is further configured to be responsible for management of multi-network service operations, including service billing management, service authentication, and authentication.
  • a method for implementing a converged service comprising:
  • the resource management subsystem of the converged service system edits the imported original resource to obtain the resource metadata, and after the processing and processing the resource metadata, synchronizes the resource metadata to the operation management subsystem of the converged service system, And synchronizing the resource metadata scheduling information into the user portal subsystem of the converged service system;
  • the operation management subsystem synchronizes the data of the service engine subsystem of the converged service system according to the resource metadata synchronized by the resource management subsystem, and the user portal subsystem compiles the information and the type of the user terminal according to the resource metadata synchronized by the resource management subsystem.
  • the resource metadata includes two characteristics of a single network service and a multi-network service.
  • the method further includes the steps of: packaging the acquired resource metadata,
  • the synchronizing the resource metadata to the operations management subsystem is: synchronizing the packaged resource metadata to the operations management subsystem.
  • the resource management subsystem Before the resource management subsystem synchronizes data, it also includes the steps of: reviewing the resource metadata and its orchestration information, reviewing and executing, and performing a subsequent synchronization process; otherwise, re-editing the original resource.
  • the converged service system provides services for users as follows:
  • the user portal subsystem After receiving the service usage request of the user, the user portal subsystem notifies the service engine subsystem; the service engine subsystem loads the service usage request to the corresponding service engine; and the service engine requests the operation management subsystem to request authentication and authentication;
  • the authentication and authentication are passed, and the service engine provides services for the user.
  • the method further includes: the operation management subsystem is responsible for management of multi-network service operations, including service billing management, service authentication and authentication.
  • the invention integrates the service system and the service implementation method thereof, and loosely couples resources and operations in the multi-network service system into two dimensions of resource management and operation management, and the resource management is responsible for introducing and editing resources in the network integration service system.
  • the operation management is responsible for the accounting, authentication, and authentication management of the service by the operator or the service provider.
  • the resources and products are the management metadata, and the resources generated by the resource metadata are respectively packaged.
  • the relationship between the metadata package and the product metadata is the link between the resource management and the operation management.
  • the resource metadata is managed by the resource management dimension.
  • the flexible service experience is provided through flexible editing and orchestration, and the product metadata is managed by the operation.
  • Uniform management of dimensions providing rich services for operators or service providers Service strategy, which makes the relative independence of resource management and operation management, and provides unified resource management and unified operation management for multi-network convergence services.
  • the invention integrates resources and operations in a multi-network service system into two dimensions of resource management and operation management, and resource management and operation management are relatively independent, thereby realizing cross-network convergence services, facilitating sharing of resources, and realizing
  • the unified operation of multi-network services facilitates the deep integration of services across the network.
  • FIG. 1 is a schematic structural diagram of a converged service system according to the present invention.
  • FIG. 2 is a schematic diagram of functions and specific structures of various subsystems of a converged service system according to the present invention
  • FIG. 3 is a schematic flowchart of a method for implementing a converged service according to the present invention
  • step 301 of the present invention is a detailed flow chart of step 301 of the present invention.
  • FIG. 5 is a schematic flowchart of data synchronization of a service engine subsystem according to resource metadata synchronized by a resource management subsystem according to the present invention
  • FIG. 6 is a schematic flowchart of a service provided by a converged service system for a user according to the present invention. detailed description
  • the basic idea of the present invention is: loosely coupling resources and operations in a multi-network service system into two dimensions of resource management and operation management, and resource management is responsible for introducing, editing, and corresponding resources in a cross-network convergence service system.
  • the operation management is responsible for the billing, authentication and authentication management of the service by the operator or the service provider.
  • the resources and products are management metadata, and the resource metadata packets generated after the resource metadata is packaged are
  • the association relationship of product metadata is the link between resource management and operation management.
  • the resource metadata is managed by the resource management dimension.
  • the flexible service experience is provided through flexible editing and orchestration.
  • the product metadata is managed by the operation management dimension.
  • the converged service system of the present invention includes: a resource management subsystem (RMS) 101, an operation management subsystem (OMS) 102, and a service engine subsystem (SES).
  • RMS resource management subsystem
  • OMS operation management subsystem
  • SES service engine subsystem
  • UPS User Portal Subsystem
  • the resource management subsystem 101 is configured to be responsible for management of multi-network service resources, including introducing original resources from different networks, editing imported original resources, resource orchestration management, resource workflow management, and resource data synchronization.
  • the functions and specific structures of the subsystems of the converged service system of the present invention are shown in FIG.
  • importing original resources from different networks to the resource management subsystem is a prerequisite for unified management of resources, and the original resources include message data, images, audio and video, monitoring devices, and sensors. Information in the network business.
  • the original resource introduced by the resource management subsystem 101 is to edit the resources in the different network systems, and edit and process the resource metadata that is suitable for the integrated service system, where the resource metadata includes a single network service and multiple Two characteristics of the network service, the resource metadata of the single network service feature is suitable for providing resources for a single service system, and the resource metadata of the multi-network service feature is suitable for providing resources for the multi-network convergence service.
  • a 1080P (1920*1080) movie is introduced, and after editing, files of 720P (1280*720), CIF (352*288), and QCIF (176*144) are displayed, so that the resource element
  • the data includes information in 1080P (1920*1080), 720P (1280*720), CIF (352*288), and QCIF (176*144) display formats, which can provide resources for multi-network convergence services, including 1080P. (1920*1080), 720P (1280*720) Suitable for use on computers and set-top terminals in the Internet and cable networks.
  • CIF (352*288) and QCIF (176*144) are suitable for use on mobile phone terminals in telecommunication networks.
  • resource metadata needs to be packaged, and the packaged resource metadata is synchronized to the operation management subsystem, and the packaged resource metadata is associated with the resource manager. The link between the system and the operations management subsystem.
  • the resource management subsystem performs resource scheduling management on the portal of different users according to the requirements of specific services.
  • the display of resource metadata is dynamically adjusted, which is conducive to the promotion of multi-network convergence services.
  • the layout can not only provide a personalized presentation for a certain business, but also provide a common way to use multi-network convergence services.
  • the IPTV service on the cable TV network is used by users through columns, programs, albums, etc., so that the hierarchy of the columns can be flexibly created through resource orchestration, and the relationship between the programs and the columns can be associated.
  • resources can be passed. Orchestration creates a common access path for use by different business systems to access converged services.
  • the resource management subsystem 101 performs resource workflow management to complete the verification of the legality, quality, and scheduling information of the resource metadata, and only the resources passed through the audit can enter the corresponding business system for use by the user, and the resources that are not approved for the audit. , you need to re-edit the original resource. It should be noted that the audit step is an optional step.
  • the resource management subsystem 101 performs synchronization of the resource data by two parts: one part is to synchronize the resource metadata into the operation management subsystem 102, and the other part is to synchronize the resource metadata scheduling information into the user portal subsystem 104.
  • the operation management subsystem 102 is configured to be responsible for management of multi-network service operations, including service billing management, service authentication, and authentication.
  • the operation management subsystem 102 performs multi-network service management, which refers to service information that needs to be managed in the converged service system, including different services of different networks.
  • the service management subsystem 102 performs service billing management, including product management and billing policy management in the service operation, where the product including the billing policy is metadata of the operation management, and provides rich services for the operator or the service provider. Service strategy.
  • the authentication and authentication of the service management subsystem 102 refers to authenticating the access of the user and authenticating the use of the service, so as to ensure that the user can access the legal service.
  • the operation management subsystem 102 associates the product metadata with the resource metadata, thereby achieving relative independence of resource management and operation management.
  • the resource presentation is separated from the business operation.
  • the resource layout can be dynamically adjusted according to the business development needs. This adjustment has nothing to do with the business operation. It is because it has nothing to do with the operation, and it also makes the unified management of resources possible.
  • the operation management subsystem 102 further synchronizes the resource metadata to the service engine.
  • the service engine in the service engine subsystem 103 provides services to the user according to the resource metadata.
  • the service engine subsystem 103 is configured to provide service capability access for the multi-network service system, implement distribution scheduling of services, and global load balancing.
  • the service engine subsystem 103 is generally composed of multiple service engines, wherein each service engine provides corresponding service capability access, different service engines can provide the same service capability, and can provide service capabilities on different networks.
  • the system implements distribution scheduling and global load balancing for all business engines.
  • the service engine subsystem 103 implements the distribution scheduling of all the service engines, and determines the service capability of the user according to the type of the user access, distributes the user's request to the corresponding service engine, and provides the service by the service engine.
  • the service engine subsystem 103 implements the global load balancing of all the service engines, and determines the service capability of the user according to the type of the user access. For the user who uses the same service capability, according to the idle state of the service engine, The user's request is loaded onto a relatively idle service engine, which is served by the service engine.
  • the user portal subsystem 104 is configured to provide a user presentation portal for multi-network services.
  • User portal subsystem 104 is typically composed of multiple user portals (business portals), each of which Each user provides a corresponding business presentation. For different user terminals, different user portals are provided for the user to use. For example, for the IPTV service, the EPG is provided for use by the cable television network, and for the mobile phone video and television, the WAP portal is provided for use by the mobile terminal.
  • the user portal subsystem 104 After the resource management subsystem 101 synchronizes the scheduling information of different services to the user portal subsystem 104 according to the result of the resource scheduling management, the user portal subsystem 104 provides the corresponding presentation mode for the user according to the different user terminals.
  • the user portal subsystem receives the service usage request of the user, and notifies the service engine subsystem, and the service engine subsystem loads the service usage request into the corresponding service engine, and the service engine moves to the operation manager.
  • the system requests authentication and authentication. After the authentication and authentication is passed, the service engine provides services for the user.
  • FIG. 3 is a schematic flowchart of a method for implementing a converged service according to the present invention. As shown in FIG. 3, the method for implementing a fusion service of the present invention includes:
  • Step 301 The resource management subsystem of the converged service system edits the imported original resource to obtain the resource metadata, and after the processing and processing the resource metadata, synchronizes the resource metadata to the operation management sub-system of the converged service system.
  • the resource metadata orchestration information is synchronized to the user portal subsystem of the converged business system.
  • Step 302 The operation management subsystem performs data synchronization on the service engine subsystem of the converged service system according to the resource metadata synchronized by the resource management subsystem, and the user portal subsystem compiles the information according to the resource metadata synchronized by the resource management subsystem.
  • the user terminal type provides the user with a corresponding user portal.
  • Step 303 When the user initiates a service use request on the user portal, the converged service system provides a service for the user.
  • step 301 includes:
  • Step 3011 The resource management subsystem introduces the original resources from different networks.
  • the original resources include information in multi-network services such as message-type data, images, audio and video, monitoring devices, and sensors, and the introduction of original resources is a prerequisite for unified management.
  • Step 3012 The resource management subsystem edits the imported original resource, and the editing process is processed into resource metadata suitable for the integrated service system.
  • the resource metadata includes two characteristics of a single network service and a multi-network service.
  • the resource metadata of the single network service feature is suitable for providing resources for a single service
  • the resource metadata of the multi-network service feature is suitable for providing resources for the multi-network convergence service.
  • the resource management subsystem needs to package the resource metadata
  • the packaged resource metadata package is a link between the resource management subsystem and the operation management subsystem.
  • Synchronizing resource metadata to the operations management subsystem is: Synchronizing the packaged resource metadata to the operations management subsystem.
  • Step 3013 The resource management subsystem performs resource orchestration management, that is, the resource metadata is displayed on the portal of different users according to the requirements of the specific service.
  • the layout can not only provide a personalized presentation for a certain business, but also provide a common way for multi-network convergence services.
  • Step 3014 The resource management subsystem reviews the resource metadata and its scheduling information, and the process proceeds to step 3015. Otherwise, the original resource needs to be re-edited, and the process returns to step 3012.
  • Resource metadata and orchestration information review is the review of the legality, quality and scheduling information of the completed resources. Only the resources passed for review can enter the corresponding business system for users to use.
  • this step is an optional step.
  • Step 3015 The resource management subsystem performs resource data synchronization.
  • the synchronization of the resource data includes two parts, one part is to synchronize the resource metadata (generally referred to as the packaged resource metadata) into the operation management subsystem, and the part is the resource.
  • Metadata orchestration information is synchronized into the user portal subsystem.
  • FIG. 5 is a schematic flowchart of the data synchronization of the service engine subsystem according to the resource metadata synchronized by the resource management subsystem in step 302 of the present invention.
  • the operation management subsystem of the present invention is shown in FIG.
  • data synchronization for the service engine subsystem includes:
  • Step 3021 The operator administrator associates the resource metadata package synchronized by the operation management subsystem with the resource management subsystem with the product metadata.
  • Step 3022 The operations management subsystem synchronizes operational system service data, resource metadata, product metadata, and the like into the service engine subsystem.
  • FIG. 6 is a schematic flowchart of a service provided by a converged service system for a user in step 303 of the present invention.
  • the service provided by the converged service system of the present invention includes:
  • Step 3031 After receiving the service usage request of the user, the user portal subsystem notifies the service engine subsystem.
  • Step 3032 The service engine subsystem loads the service usage request to the corresponding service engine.
  • Step 3033 The service engine requests authentication authentication from the operation management subsystem.
  • Step 3034 The service is provided by the corresponding service engine for the request for authentication and authentication.
  • Resource presentation and business operations are loosely coupled.
  • the existing converged service system resource presentation and business operation are tightly coupled, and resource changes and business operation strategy changes affect each other. This tightly coupled relationship is difficult to support flexible and cross-network convergence services.
  • Loose coupling of resource presentation and business operations provides good conditions for unified management of multi-network convergence service resources. Unified resource management is conducive to the sharing of resources for multi-network convergence services. 3) Uniform management of operations can be achieved. Loose coupling of resource presentation and business operations also provides conditions for unified management of operations. Unified management of operations is conducive to unified management, unified billing, unified authentication, and unified authentication.

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Description

一种融合业务系统及其业务实现方法 技术领域
本发明涉及融合业务领域, 尤其涉及一种融合业务系统及其业务实现 方法。 背景技术
目前, IP技术的发展使得将已有的多个业务子网统一成一个融合的多 业务网络成为可能, 电信网、 互联网和有线电视网的业务市场开始融合。
但是, 现有技术中同一业务的资源和运营统一管理、 不同网络业务的 接入、 资源和运营独立管理, 对于普通用户, 要想使用不同网络的业务, 必须具备访问该网络业务资源的权限, 对于运营商, 不同网络的业务需要 建立各自独立的管理系统, 这样就会存在以下问题:
1 )资源展现和业务运营紧耦合。 资源的变更和业务运营策略的改变相 互影响, 对于瞬息万变的信息资源来讲, 这种紧耦合的关系很难支撑灵活 多变的跨网络融合业务。
2 )不便于共享资源。 电信网、 互联网和有线电视网包含了大量的消息 类数据、 图像、 音视频、 监控设备和传感器等资源信息, 由于这些信息分 布在不同的网络上, 要实现跨网络的业务访问, 需要定义一套相互准入的 标准, 这套标准既要兼顾不同网络业务的特定应用场景, 又要适应跨网络 融合业务的发展, 实际制定起来相当困难, 这为多网络业务资源的互联互 通制造了壁垒。
3 )运营管理相互独立, 不能实现多网络业务的统一运营。 运营管理为 运营商或服务提供商提供业务管理、 业务计费、 业务认证和业务鉴权等核 心功能。 运营的独立管理为跨网络融合业务推广和发展提出了难题, 不同 网络的业务难以实现统一管理、 统一计费、 统一认证和统一鉴权。
4 )不便于跨网络深层次融合业务的开展。 其中, 跨网络深层次融合业 务指的是跨网络订购、 跨网络收藏、 位移电视等应用场景。 跨网络订购指 的是一网络订购多网络观看, 例如手机上订购, IPTV上使用; 跨网络收藏 指的是一网络收藏多网络观看, 例如在 IPTV上收藏, 手机上使用; 位移电 视指的是不同终端之间可以实现同一视频的连续播放。 这类业务以共享资 源作为前提, 同时要对多网络的资源进行统一管理, 以实现跨网络融合业 务的无缝使用。 发明内容
有鉴于此, 本发明的主要目的在于提供一种融合业务系统及其业务实 现方法, 能够实现跨网络融合业务, 便于共享资源, 且能实现多网络业务 的统一运营, 便于跨网络深层次融合业务的开展。
为达到上述目的, 本发明的技术方案是这样实现的:
一种融合业务系统, 包括: 资源管理子系统、 运营管理子系统、 业务 引擎子系统和用户门户子系统; 其中,
所述资源管理子系统, 用于负责多网络业务资源的管理, 包括引入原 始资源; 编辑引入的原始资源获取资源元数据; 对编辑后的资源元数据进 行编排; 将资源元数据同步到运营管理子系统, 以及将资源元数据编排信 息同步到用户门户子系统;
所述运营管理子系统, 用于在所述资源管理子系统将资源元数据同步 到所述运营管理子系统中后, 将产品元数据与资源元数据建立关联关系, 之后将资源元数据同步到业务引擎子系统中;
所述业务引擎子系统, 用于提供业务能力接入, 实现业务的分发调度 与全局的负载均衡;
所述用户门户子系统, 用于根据资源管理子系统同步过来的资源元数 据编排信息及用户终端类型为用户提供相应的用户门户。
所述资源管理子系统获取的资源元数据包括单网络业务和多网络业务 两个特征。
所述资源管理子系统, 还用于对获取的资源元数据进行打包处理, 并 将打包后的资源元数据同步到运营管理子系统。
所述资源管理子系统, 还用于对资源元数据及其编排信息进行审核, 审核通过, 执行后续同步流程; 否则, 重新对原始资源进行编辑。
所述用户门户子系统, 还用于接收用户的业务使用请求, 并通知业务 引擎子系统;
所述业务引擎子系统, 还用于将所述业务使用请求负载到其中相应的 业务引擎, 由所述业务引擎向运营管理子系统请求认证鉴权, 认证鉴权通 过后, 由所述业务引擎为用户提供服务;
所述运营管理子系统, 还用于根据业务引擎子系统中业务引擎的请求 , 进行相应的认证鉴权并返回认证鉴权响应。
所述运营管理子系统, 还用于负责多网络业务运营的管理, 包括业务 计费管理、 业务的认证与鉴权。
一种融合业务实现方法, 包括:
融合业务系统的资源管理子系统对引入的原始资源进行编辑获取资源 元数据, 并对所述资源元数据进行编排处理后, 将所述资源元数据同步到 融合业务系统的运营管理子系统中, 并将资源元数据编排信息同步到融合 业务系统的用户门户子系统中;
运营管理子系统根据资源管理子系统同步过来的资源元数据, 对融合 业务系统的业务引擎子系统进行数据同步, 用户门户子系统根据资源管理 子系统同步过来的资源元数据编排信息及用户终端类型为用户提供相应的 用户门户; 用户在用户门户上发起业务使用请求时, 融合业务系统为用户提供服 务。
所述资源元数据包括单网络业务和多网络业务两个特征。
资源管理子系统获取资源元数据后, 还包括步骤: 对所述获取的资源 元数据进行打包处理,
所述将资源元数据同步到运营管理子系统为: 将打包后的资源元数据 同步到运营管理子系统。
资源管理子系统进行数据同步之前, 还包括步骤: 对资源元数据及其 编排信息进行审核, 审核通过, 执行后续同步流程; 否则, 重新对原始资 源进行编辑。
所述融合业务系统为用户提供服务为:
用户门户子系统接收用户的业务使用请求后, 通知业务引擎子系统; 业务引擎子系统将所述业务使用请求负载到相应的业务引擎; 所述业务引擎向运营管理子系统请求认证鉴权;
认证鉴权通过, 所述业务引擎为用户提供服务。
该方法还包括: 运营管理子系统负责多网络业务运营的管理, 包括业 务计费管理、 业务的认证与鉴权。
本发明融合业务系统及其业务实现方法, 将多网络业务系统中的资源 和运营松耦合, 分离成资源管理和运营管理两个维度, 资源管理负责跨网 络融合业务系统中资源的引入、 编辑及在相应业务系统中的编排等, 运营 管理负责运营商或服务提供商对业务的计费、 认证和鉴权管理, 两者分别 以资源、 产品为管理元数据, 资源元数据打包后生成的资源元数据包和产 品元数据的关联关系是联系资源管理和运营管理的纽带, 资源元数据由资 源管理维度统一管理, 通过灵活的编辑、 编排为用户提供灵活的业务体验, 产品元数据由运营管理维度统一管理, 为运营商或服务提供商提供丰富的 服务策略, 这样就实现资源管理和运营管理的相对独立, 同时为多网络融 合业务提供了统一的资源管理和统一的运营管理。 本发明通过将多网络业 务系统中的资源和运营^^耦合, 分成资源管理和运营管理两个维度, 资源 管理和运营管理相对独立, 从而实现了跨网络融合业务, 便于共享资源, 且能实现多网络业务的统一运营, 便于跨网络深层次融合业务的开展。 附图说明
图 1为本发明融合业务系统结构示意图;
图 2为本发明融合业务系统各子系统功能及具体结构示意图; 图 3为本发明融合业务实现方法流程示意图;
图 4为本发明步骤 301的详细流程示意图;
图 5 为本发明运营管理子系统根据资源管理子系统同步过来的资源元 数据, 对业务引擎子系统进行数据同步的流程示意图;
图 6为本发明融合业务系统为用户提供服务的流程示意图。 具体实施方式
本发明的基本思想是: 将多网络业务系统中的资源和运营松耦合, 分 离成资源管理和运营管理两个维度, 资源管理负责跨网络融合业务系统中 资源的引入、 编辑及在相应业务系统中的编排等, 运营管理负责运营商或 服务提供商对业务的计费、 认证和鉴权管理, 两者分别以资源、 产品为管 理元数据, 资源元数据打包后生成的资源元数据包和产品元数据的关联关 系是联系资源管理和运营管理的纽带, 资源元数据由资源管理维度统一管 理, 通过灵活的编辑、 编排为用户提供灵活的业务体验, 产品元数据由运 营管理维度统一管理, 为运营商或服务提供商提供丰富的服务策略, 这样 就实现资源管理和运营管理的相对独立, 同时为多网络融合业务提供了统 一的资源管理和统一的运营管理, 以解决现有多网络融合业务系统中的资 源展现和业务运营紧耦合造成的资源难以共享、 资源和运营管理分散、 多 网络业务融合难等问题。
图 1为本发明融合业务系统结构示意图, 如图 1所示, 本发明融合业 务系统包括: 资源管理子系统(RMS ) 101、 运营管理子系统(OMS ) 102、 业务引擎子系统(SES ) 103、 用户门户子系统(UPS ) 104; 其中,
资源管理子系统 101 , 用于负责多网络业务资源的管理, 包括从不同网 络引入原始资源、 编辑引入的原始资源、 资源编排管理、 资源工作流管理、 资源数据同步等。 本发明融合业务系统各子系统功能及具体结构如图 2所 示。
具体的,对于资源管理子系统 101 ,从不同网络引入原始资源到所述资 源管理子系统是资源统一管理的前提, 所述原始资源包括消息类数据、 图 像、 音视频、 监控设备和传感器等多网络业务中的信息。
具体的, 资源管理子系统 101 编辑引入的原始资源是将不同网络系统 中的资源进行编辑, 编辑处理成适合所述融合业务系统需要的资源元数据, 所述资源元数据包括单网络业务和多网络业务两个特征, 单网络业务特征 的资源元数据适合为单一的业务系统提供资源, 多网络业务特征的资源元 数据适合为多网络融合业务提供资源。 例如, 引入一部 1080P ( 1920*1080 ) 的电影,经过编辑后生成 720P( 1280*720 )、CIF( 352*288 )、QCIF( 176*144 ) 三种视频显示格式的文件,这样,资源元数据就包含了 1080P ( 1920*1080 )、 720P ( 1280*720 )、 CIF ( 352*288 )、 QCIF ( 176*144 )四种显示格式的信息, 可以为多网络融合业务提供资源, 其中, 1080P ( 1920*1080 )、 720P ( 1280*720 ) 适合在互联网和有线电视网的计算机和机顶盒终端上使用, CIF ( 352*288 )、 QCIF ( 176*144 )适合在电信网的手机终端上使用。 需要 说明的是, 一般还需要对资源元数据进行打包处理, 并将打包后的资源元 数据同步到运营管理子系统, 打包后的资源元数据是联系所述资源管理子 系统和运营管理子系统的纽带。
具体的, 资源管理子系统 101 进行资源编排管理是将资源元数据按照 具体业务的需求展现在不同用户的门户上。 根据业务的发展需要动态调整 资源元数据的展现方式, 有利于多网络融合业务的推广。 这里面的编排既 可以为某个业务制定个性化的展现方式, 也可以为多网络融合业务提供公 用的使用途径。 例如, 有线电视网上的 IPTV业务是通过栏目、 节目、 专辑 等方式供用户使用的, 这样就可以通过资源编排灵活创建栏目的层次, 关 联节目和栏目的关系, 对于多网络融合业务, 可以通过资源编排创建公共 的访问途径, 供不同业务系统访问融合业务时使用。
具体的, 资源管理子系统 101 进行资源工作流管理指完成对资源元数 据的合法性、 质量及编排信息的审核, 只有审核通过的资源才能进入相应 业务系统供用户使用, 对于审核不通过的资源, 需要重新对原始资源进行 编辑。 需要说明的是, 审核步骤为可选步骤。
具体的, 资源管理子系统 101 进行资源数据的同步包括两个部分: 一 部分是将资源元数据同步到运营管理子系统 102 中, 一部分是将资源元数 据编排信息同步到用户门户子系统 104中。
运营管理子系统 102, 用于负责多网络业务运营的管理, 包括业务计费 管理、 业务的认证与鉴权等功能。
具体的, 运营管理子系统 102进行多网络业务管理指的是融合业务系 统中需要管理的业务信息, 包括不同网络的不同业务。
具体的, 运营管理子系统 102进行业务计费管理包括业务运营中的产 品管理、 计费策略管理等, 其中包含计费策略的产品是运营管理的元数据, 为运营商或者服务提供商提供丰富的服务策略。
具体的, 运营管理子系统 102进行业务的认证与鉴权指的是对用户的 接入进行认证和对业务的使用进行鉴权, 确保用户能够访问合法的业务资 资源管理子系统 101将资源元数据同步到运营管理子系统 102中后, 运营管理子系统 102会将产品元数据与资源元数据建立关联关系, 这样就 实现资源管理和运营管理的相对独立, 将资源展现和业务运营分开, 可以 由资源编排根据业务发展需要动态调整资源展现方式, 这种调整和业务运 营无关, 正因为和运营无关, 同时也将资源统一管理变成可能。
另外,资源管理子系统 101中的资源元数据同步到运营管理子系统 102 并由运营管理子系统 102建立元数据关联关系后, 运营管理子系统 102还 会进一步将资源元数据同步到业务引擎子系统 103 中, 由业务引擎子系统 103中的业务引擎根据资源元数据为用户提供服务。
业务引擎子系统 103 , 用于为多网络业务系统提供业务能力接入, 实现 业务的分发调度与全局的负载均衡。
业务引擎子系统 103 —般由多个业务引擎组成, 其中每个业务引擎提 供相应的业务能力接入, 不同的业务引擎可以提供相同的业务能力也可以 提供不同网络上的业务能力, 业务引擎子系统实现所有业务引擎的分发调 度与全局负载均衡。
具体的, 业务引擎子系统 103 实现所有业务引擎的分发调度是指根据 用户接入的类型判断用户使用的是何种业务能力, 将用户的请求分发到相 应的业务引擎, 由业务引擎提供服务。
具体的, 业务引擎子系统 103 实现所有业务引擎的全局负载均衡是指 根据用户接入的类型判断用户使用的是何种业务能力, 对于使用相同业务 能力的用户, 根据业务引擎的空闲状态, 将用户的请求负载到相对空闲的 业务引擎上, 由该业务引擎提供服务。
用户门户子系统 104, 用于为多网络业务提供用户展现门户。
用户门户子系统 104—般由多个用户门户 (业务门户)组成, 其中每 个用户提供相应的业务展现。 对于不同的用户终端, 提供不同的用户门户 供用户使用。 例如, 对于 IPTV业务, 提供 EPG供有线电视网使用, 对于 手机影视, 提供 WAP门户供手机终端使用。
资源管理子系统 101 根据资源编排管理的结果将不同业务的编排信息 同步到用户门户子系统 104后, 用户门户子系统 104会才艮据用户终端的不 同为用户提供相应的展现方式。
用户请求服务时, 用户门户子系统接收用户的业务使用请求, 并通知 业务引擎子系统, 业务引擎子系统将所述业务使用请求负载到其中相应的 业务引擎, 由所述业务引擎向运营管理子系统请求认证鉴权, 认证鉴权通 过后, 由所述业务引擎为用户提供服务。
图 3为本发明融合业务实现方法流程示意图, 如图 3所示, 本发明融 合业务实现方法包括:
步骤 301 :融合业务系统的资源管理子系统对引入的原始资源进行编辑 得到资源元数据, 并对所述资源元数据进行编排处理后, 将所述资源元数 据同步到融合业务系统的运营管理子系统中, 并将资源元数据编排信息同 步到融合业务系统的用户门户子系统中。
步骤 302: 运营管理子系统根据资源管理子系统同步过来的资源元数 据, 对融合业务系统的业务引擎子系统进行数据同步,用户门户子系统根据 资源管理子系统同步过来的资源元数据编排信息及用户终端类型为用户提 供相应的用户门户。
步骤 303: 用户在用户门户上发起业务使用请求时, 融合业务系统为用 户提供服务。
图 4为本发明步骤 301的详细流程示意图, 如图 4所示, 步骤 301具 体包括:
步骤 3011: 资源管理子系统从不同网络引入原始资源。 这里, 原始资源包括消息类数据、 图像、 音视频、 监控设备和传感器 等多网络业务中的信息, 原始资源的引入是统一管理的前提。
步骤 3012: 资源管理子系统将所述引入的原始资源进行编辑, 编辑处 理成适合所述融合业务系统需要的资源元数据。
这里, 资源元数据包括单网络业务和多网络业务两个特征, 单网络业 务特征的资源元数据适合为单一的业务提供资源, 多网络业务特征的资源 元数据适合为多网络融合业务提供资源。
另外, 资源管理子系统需要对资源元数据进行打包处理, 打包后的资 源元数据包是联系所述资源管理子系统和所述运营管理子系统的纽带。 将 资源元数据同步到运营管理子系统为: 将打包后的资源元数据同步到运营 管理子系统。
步骤 3013 : 资源管理子系统进行资源编排管理, 即将资源元数据按照 具体业务的需求展现在不同用户的门户上。
根据业务的发展需要动态调整资源元数据的展现方式, 有利于多网络 融合业务的推广。 这里面的编排既可以为某个业务制定个性化的展现方式, 也可以为多网络融合业务提供公用的使用途径。
步骤 3014: 资源管理子系统对资源元数据及其编排信息进行审核, 审 核通过, 执行步骤 3015; 否则, 需要重新对原始资源进行编辑, 返回步骤 3012。
资源元数据及编排信息审核是完成资源的合法性、 质量及编排信息的 审核, 只有审核通过的资源才能进入相应业务系统供用户使用。
需要说明的是, 该步骤为可选步骤。
步骤 3015: 资源管理子系统进行资源数据同步。
这里, 资源数据的同步包括两个部分, 一部分是将资源元数据(一般 指打包后的资源元数据) 同步到所述运营管理子系统中, 一部分是将资源 元数据编排信息同步到用户门户子系统中。
图 5为本发明步骤 302中运营管理子系统才艮据资源管理子系统同步过 来的资源元数据, 对业务引擎子系统进行数据同步的流程示意图, 如图 5 所示, 本发明运营管理子系统根据资源管理子系统同步过来的资源元数据, 对业务引擎子系统进行数据同步包括:
步骤 3021 : 运营商管理员在运营管理子系统对所述资源管理子系统同 步过来的资源元数据包与产品元数据进行关联。
步骤 3022: 运营管理子系统将运营系统业务数据、 资源元数据、 产品 元数据等同步到所述业务引擎子系统中。
图 6为本发明步骤 303中融合业务系统为用户提供服务的流程示意图, 如图 6所示, 本发明融合业务系统为用户提供服务包括:
步骤 3031 : 用户门户子系统接收用户的业务使用请求后, 通知业务引 擎子系统。
步骤 3032: 业务引擎子系统将所述业务使用请求负载到相应的业务引 擎。
步骤 3033 : 所述业务引擎向运营管理子系统请求认证鉴权。
步骤 3034: 对于认证鉴权通过的请求, 由相应业务引擎为用户提供服 务。
可以看出, 与现有的融合业务系统相比, 本发明具有以下优点:
1 )资源展现和业务运营松耦合。 现有的融合业务系统资源展现和业务 运营紧耦合, 资源的变更和业务运营策略的改变相互影响, 这种紧耦合的 关系很难支撑灵活多变的跨网络融合业务。
2 )便于共享资源。 资源展现和业务运营松耦合为多网络融合业务资源 的统一管理提供了良好的条件, 资源统一管理有利于多网络融合业务的资 源的共享。 3 )可以实现运营的统一管理。 资源展现和业务运营松耦合同时也为运 营的统一管理提供了条件, 运营统一管理有利于实现统一管理、 统一计费、 统一认证和统一鉴权。
4 ) 资源和运营的统一管理为跨网络深层次融合业务的开展创造了条 件。
以上所述, 仅为本发明的较佳实施例而已, 并非用于限定本发明的保护 范围。

Claims

权利要求书
1、 一种融合业务系统, 其特征在于, 该系统包括: 资源管理子系统、 运营管理子系统、 业务引擎子系统和用户门户子系统; 其中,
所述资源管理子系统, 用于负责多网络业务资源的管理, 包括引入原 始资源; 编辑引入的原始资源获取资源元数据; 对编辑后的资源元数据进 行编排; 将资源元数据同步到运营管理子系统, 以及将资源元数据编排信 息同步到用户门户子系统;
所述运营管理子系统, 用于在所述资源管理子系统将资源元数据同步 到所述运营管理子系统中后, 将产品元数据与资源元数据建立关联关系, 之后将资源元数据同步到业务引擎子系统中;
所述业务引擎子系统, 用于提供业务能力接入, 实现业务的分发调度 与全局的负载均衡;
所述用户门户子系统, 用于根据资源管理子系统同步过来的资源元数 据编排信息及用户终端类型为用户提供相应的用户门户。
2、 根据权利要求 1所述的系统, 其特征在于, 所述资源管理子系统获 取的资源元数据包括单网络业务和多网络业务两个特征。
3、 根据权利要求 1所述的系统, 其特征在于, 所述资源管理子系统, 还用于对获取的资源元数据进行打包处理, 并将打包后的资源元数据同步 到运营管理子系统。
4、 根据权利要求 1所述的系统, 其特征在于, 所述资源管理子系统, 还用于对资源元数据及其编排信息进行审核, 审核通过, 执行后续同步流 程; 否则, 重新对原始资源进行编辑。
5、 根据权利要求 1至 4任一项所述的系统, 其特征在于,
所述用户门户子系统, 还用于接收用户的业务使用请求, 并通知业务 引擎子系统; 所述业务引擎子系统, 还用于将所述业务使用请求负载到其中相应的 业务引擎, 由所述业务引擎向运营管理子系统请求认证鉴权, 认证鉴权通 过后, 由所述业务引擎为用户提供服务;
所述运营管理子系统, 还用于根据业务引擎子系统中业务引擎的请求 , 进行相应的认证鉴权并返回认证鉴权响应。
6、 根据权利要求 1所述的系统, 其特征在于,
所述运营管理子系统, 还用于负责多网络业务运营的管理, 包括业务 计费管理、 业务的认证与鉴权。
7、 一种融合业务实现方法, 其特征在于, 该方法包括:
融合业务系统的资源管理子系统对引入的原始资源进行编辑获取资源 元数据, 并对所述资源元数据进行编排处理后, 将所述资源元数据同步到 融合业务系统的运营管理子系统中, 以及将资源元数据编排信息同步到融 合业务系统的用户门户子系统中;
运营管理子系统根据资源管理子系统同步过来的资源元数据, 对融合 业务系统的业务引擎子系统进行数据同步, 用户门户子系统根据资源管理 子系统同步过来的资源元数据编排信息及用户终端类型为用户提供相应的 用户门户;
用户在用户门户上发起业务使用请求时, 融合业务系统为用户提供服 务。
8、 根据权利要求 7所述的方法, 其特征在于, 所述资源元数据包括单 网络业务和多网络业务两个特征。
9、 根据权利要求 7所述的方法, 其特征在于, 资源管理子系统获取资 源元数据后, 该方法还包括: 资源管理子系统对所述获取的资源元数据进 行打包处理,
所述将资源元数据同步到运营管理子系统为: 将打包后的资源元数据 同步到运营管理子系统。
10、 根据权利要求 7所述的方法, 其特征在于, 资源管理子系统进行 数据同步之前, 该方法还包括: 资源管理子系统对资源元数据及其编排信 息进行审核, 审核通过, 执行后续同步流程; 否则, 重新对原始资源进行 编辑。
11、 根据权利要求 7至 10任一项所述的方法, 其特征在于, 所述融合 业务系统为用户提供服务为:
用户门户子系统接收用户的业务使用请求后, 通知业务引擎子系统; 业务引擎子系统将所述业务使用请求负载到相应的业务引擎; 所述业务引擎向运营管理子系统请求认证鉴权;
认证鉴权通过, 所述业务引擎为用户提供服务。
12、 根据权利要求 7所述的方法, 其特征在于, 该方法还包括: 运营 管理子系统负责多网络业务运营的管理, 包括业务计费管理、 业务的认证 与鉴权。
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