Cross-provincial MPLS VPN private line opening scheduling method and related product
By splitting inter-provincial MPLS VPN orders into sub-orders and performing automated configuration and scheduling, the complexity of inter-provincial MPLS VPN dedicated line deployment is resolved, and efficient and accurate inter-provincial MPLS VPN dedicated line activation is achieved.
Patent Information
- Application Number
- CN202511002668.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-21
- Publication Date
- 2025-09-30
AI Technical Summary
In the existing technology, there are few deployments of cross-provincial MPLS VPN dedicated lines, and there is a lack of automatic activation methods for multiple lines and configuration methods for changing service parameters, which makes cross-provincial networking tasks complicated and difficult to manage.
By obtaining the order parameters of cross-provincial MPLS VPN orders, they are split into multiple sub-orders based on the province of installation and product instance identifier, and automated configuration and scheduling are performed. The secondary service orchestrator and network management system are used to match devices and configure port information. Circuit scheduling is carried out in conjunction with the resource system, and finally verification is performed to ensure the activation results.
It achieved efficient activation of cross-provincial MPLS VPN dedicated lines, reduced operational risks caused by manual intervention, improved the consistency and accuracy of configuration results, ensured that each sub-order was activated according to standards, and formed a complete delivery closed loop.
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Figure CN120729671A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of data communication technology, and in particular to a method for scheduling the opening of an inter-provincial MPLS VPN dedicated line and related products. Background Art
[0002] With the continuous expansion of corporate business and organizational scale, the demand for secure and efficient communications between corporate headquarters and branches is increasing. MPLS VPN, a network connection method built on MPLS (Multi-Protocol Label Switching) technology, can establish a virtual private network over the public network, providing highly secure and stable communications between headquarters and branches. However, most companies currently deploy MPLS VPNs primarily within their own province, with relatively few deploying them across provinces. Summary of the Invention
[0003] Based on the above problems, this application provides a cross-provincial MPLS VPN dedicated line activation scheduling method and related products, the purpose of which is to realize the cross-provincial MPLS VPN dedicated line activation.
[0004] The embodiments of this application disclose the following technical solutions:
[0005] In a first aspect, the present application provides a method for scheduling the opening of an inter-provincial MPLS VPN dedicated line. The method is applied to a first-level service orchestrator. The method includes:
[0006] Get order parameters for inter-provincial MPLS VPN orders;
[0007] Splitting the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders;
[0008] Configuring multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a configuration result corresponding to each inter-provincial MPLS VPN sub-order;
[0009] Scheduling the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order;
[0010] Verification is performed based on the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order to obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order.
[0011] Optionally, configuring the multiple inter-province MPLS VPN sub-orders based on the order parameters of the multiple inter-province MPLS VPN sub-orders to obtain a configuration result corresponding to each inter-province MPLS VPN sub-order specifically includes:
[0012] Performing device matching on each inter-provincial MPLS VPN sub-order based on the order parameters of each inter-provincial MPLS VPN sub-order, and obtaining the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order;
[0013] Configuration is performed based on the on-site docking device and port information of the on-site docking device corresponding to each inter-provincial MPLS VPN sub-order, and a configuration result corresponding to each inter-provincial MPLS VPN sub-order is obtained.
[0014] Optionally, performing device matching on each inter-provincial MPLS VPN sub-order based on the order parameters of each inter-provincial MPLS VPN sub-order to obtain the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order specifically includes:
[0015] The order parameters of the multiple inter-provincial MPLS VPN sub-orders are sent to the secondary service orchestrator, so that the secondary service orchestrator determines the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order based on the province of installation in the order parameters of each inter-provincial MPLS VPN sub-order.
[0016] Optionally, the configuration based on the on-site docking device and port information of the on-site docking device corresponding to each inter-provincial MPLS VPN sub-order is performed to obtain a configuration result corresponding to each inter-provincial MPLS VPN sub-order, specifically including:
[0017] The allocation capability is called to transmit the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order to the network management system, so that the network management system configures each inter-provincial MPLS VPN sub-order based on the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order, and generates a configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0018] Optionally, the scheduling of the multiple inter-province MPLS VPN sub-orders based on the order parameters of the multiple inter-province MPLS VPN sub-orders to obtain a scheduling result corresponding to each inter-province MPLS VPN sub-order specifically includes:
[0019] The configuration results corresponding to each inter-provincial MPLS VPN sub-order are sent to the secondary business orchestrator according to the installation province information in the order parameters of each inter-provincial MPLS VPN sub-order; after receiving the configuration results corresponding to each inter-provincial MPLS VPN sub-order, the secondary business orchestrator transmits the order parameters of each inter-provincial MPLS VPN sub-order to the resource system; the resource system determines the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order according to the order parameters of each inter-provincial MPLS VPN sub-order, and sends them to the secondary business orchestrator; the secondary business orchestrator calls the circuit application capability to transmit the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order to the intra-provincial transmission workstation; the intra-provincial transmission workstation performs circuit scheduling based on the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order, and feeds back the scheduling results corresponding to each inter-provincial MPLS VPN sub-order to the primary business orchestrator through the secondary business orchestrator.
[0020] Optionally, the verifying based on the configuration result and the scheduling result corresponding to each inter-provincial MPLS VPN sub-order to obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order specifically includes:
[0021] Verify the configuration and scheduling results for each inter-provincial MPLS VPN sub-order;
[0022] If the configuration result and the scheduling result meet the verification success condition, it indicates that the inter-provincial MPLS VPN sub-order is successfully opened; the verification success condition includes that the configuration result and the scheduling result corresponding to the inter-provincial MPLS VPN sub-order are both verified successfully;
[0023] If the configuration results and scheduling results do not meet the verification success conditions, it indicates that the inter-provincial MPLS VPN sub-order activation has failed.
[0024] A second aspect of the present application provides a device for scheduling inter-provincial MPLS VPN dedicated line activation, the device comprising:
[0025] The acquisition module is used to obtain the order parameters of the inter-provincial MPLS VPN order;
[0026] a splitting module, configured to split the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain a plurality of inter-provincial MPLS VPN sub-orders;
[0027] a configuration module, configured to configure the plurality of inter-province MPLS VPN sub-orders based on the order parameters of the plurality of inter-province MPLS VPN sub-orders, and obtain a configuration result corresponding to each inter-province MPLS VPN sub-order;
[0028] a scheduling module, configured to schedule the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders, and obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order;
[0029] The verification module is used to verify based on the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order, and obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order.
[0030] The third aspect of the present application provides a computer device, including: a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the inter-provincial MPLS VPN dedicated line activation scheduling method provided in the first aspect.
[0031] The fourth aspect of the present application provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, the inter-provincial MPLS VPN dedicated line activation scheduling method provided in the first aspect is implemented.
[0032] The fifth aspect of the present application provides a computer program product, including a computer program, which, when executed by a processor, implements the inter-provincial MPLS VPN dedicated line activation scheduling method provided in the first aspect.
[0033] Compared with the existing technology, this application has the following beneficial effects:
[0034] The present application includes obtaining order parameters of an inter-provincial MPLS VPN order; splitting the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders; configuring the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain configuration results corresponding to each inter-provincial MPLS VPN sub-order; scheduling the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain scheduling results corresponding to each inter-provincial MPLS VPN sub-order; verifying the configuration results and scheduling results corresponding to each inter-provincial MPLS VPN sub-order to obtain activation results corresponding to each inter-provincial MPLS VPN sub-order.
[0035] This application makes the originally complex cross-provincial networking task easier to manage and execute by splitting sub-orders, allowing sub-orders in different provinces to be handled independently by local operators or technical teams at the same time, thereby improving the overall deployment speed. Based on the order parameters of multiple cross-provincial MPLS VPN sub-orders, multiple cross-provincial MPLS VPN sub-orders are automatically configured. The automated configuration reduces the potential risks brought by manual operations, improves the consistency and accuracy of the configuration results of each cross-provincial MPLS VPN sub-order, and completes the provincial segment networking design based on the order parameters of multiple cross-provincial MPLS VPN sub-orders, schedules the transmission network to complete the circuit activation, and finally determines the corresponding activation result of each cross-provincial MPLS VPN sub-order based on the configuration results and scheduling results of each cross-provincial MPLS VPN sub-order, ensuring that each sub-order is activated in strict accordance with the established standards, forming a complete delivery closed loop, and realizing the activation of cross-provincial MPLS VPN dedicated lines. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0037] Figure 1 A flowchart of a method for activating and scheduling an inter-provincial MPLS VPN dedicated line provided in an embodiment of the present application;
[0038] Figure 2 An application diagram of a method for activating and scheduling an inter-provincial MPLS VPN dedicated line provided in an embodiment of the present application;
[0039] Figure 3 A schematic diagram of an application for order dispatching provided in an embodiment of the present application;
[0040] Figure 4 A schematic diagram of the ground docking device provided in an embodiment of the present application;
[0041] Figure 5 A schematic diagram of configuration parameter allocation provided in an embodiment of the present application;
[0042] Figure 6 A schematic diagram of forwarding configuration results provided in an embodiment of the present application;
[0043] Figure 7 A schematic diagram of intra-provincial deployment provided in an embodiment of the present application;
[0044] Figure 8This is a structural diagram of a cross-provincial MPLS VPN dedicated line activation and scheduling device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0045] As previously described, most enterprises currently deploy MPLS VPNs within their own provinces, with relatively few deploying them across provinces. Traditional methods involve entering two configuration processes, based on access point data configuration and general point data configuration. These processes then automatically allocate, pre-configure, and occupy device information parameters for the devices involved in MPLS VPN activation. Furthermore, they automatically identify and match MPLS VPN service activation templates corresponding to different vendors and models of network elements. Finally, they output the configuration results. If the configuration is successful, MPLS VPN is automatically activated. However, this traditional method matches MPLS VPN activation templates for different vendors and models of network elements at the device parameter level, assembles parameters within the templates, and instructs the devices to configure and activate the devices. There is a lack of methods for cross-provincial MPLS VPN dedicated line activation, a lack of automated activation methods for single-line multi-line configuration, and a lack of configuration methods for changing service parameters.
[0046] In view of the above problems, the present application provides a method for scheduling the activation of an inter-provincial MPLS VPN dedicated line and related products, the method comprising: obtaining order parameters of an inter-provincial MPLS VPN order; splitting the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders; obtaining a configuration result and a scheduling result corresponding to each inter-provincial MPLS VPN sub-order based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders; and verifying the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order to obtain an activation result corresponding to each inter-provincial MPLS VPN sub-order.
[0047] This application automates the configuration and scheduling of multiple cross-provincial MPLS VPN sub-orders based on their order parameters, effectively reducing operational risks and configuration errors caused by manual intervention and enabling efficient activation of cross-provincial MPLS VPN dedicated lines. Furthermore, the system splits the original order based on the "installation province" and "product instance identifier" in the order parameters, generating multiple independently executable cross-provincial MPLS VPN sub-orders, thus resolving the technical challenge of traditional methods, which lack the ability to automatically activate multiple lines from a single order.
[0048] Explanation of relevant professional terms:
[0049] IP Network Management System (IPNMS): A centralized management system that provides unified configuration, monitoring, scheduling, and maintenance for IP network devices (such as routers, switches, and firewalls).
[0050] Landing PE Device: In the network architecture, a PE device is responsible for processing traffic from a customer site to and from the carrier's backbone network.
[0051] Intra-Provincial Transmission Workbench: A centralized management system specifically used to manage and schedule transmission resources within a province, including but not limited to optical fiber lines, transmission equipment (such as SDH, OTN), access points, etc.
[0052] Furthermore, this application uses order parameters as the data foundation for configuration and scheduling, demonstrating excellent dynamic adaptability: when service parameters change, the system can reconfigure and reschedule based on the updated parameters, effectively addressing the technical shortcomings of traditional methods, which lack a flexible response mechanism to parameter changes. This application significantly improves the automation, flexibility, and operational efficiency of cross-provincial MPLSVPN dedicated line deployments, making it suitable for large-scale network service provisioning needs in complex networking scenarios.
[0053] In order to help those skilled in the art better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of this application.
[0054] A method for scheduling the opening of an inter-provincial MPLS VPN dedicated line, wherein the method is applied to a first-level service orchestrator. Figure 1 A flow chart of a method for activating and scheduling an inter-provincial MPLS VPN dedicated line provided in an embodiment of the present application is shown in FIG. Figure 1 As shown, the method includes:
[0055] S101: Obtain order parameters of an inter-provincial MPLS VPN order.
[0056] This application does not limit the first-level business orchestrator, which can be understood as the first-level business orchestrator for the province where the company's headquarters is located. The first-level business orchestration system receives order parameters for cross-provincial MPLSVPN orders from the order system. This application does not limit order parameters. For example, order parameters include but are not limited to "a certain group customer, order number, work order type, product instance identifier, VPN name, PE port bandwidth, bandwidth unit, service assurance level, PE-CE access method, MTU value, interconnection routing protocol between PE and CE, whether MD5 authentication is enabled for BGP interconnection, BGP password allocation method, BGP password, customer AS number provision method, customer AS number, AS Override (if PE / CE run BGP), routing entries published by CE, interconnection address allocation method between PE and CE, interconnection IP address type between PE and CE, customer network address segment / mask published by PE, province where installation is located, city where installation is located, district and county where installation is located, detailed installation address" and other information.
[0057] S101 ensures that all necessary order parameters are accurately collected, laying the foundation for subsequent processing.
[0058] In order to ensure the validity of the order parameters, this application also provides an optional embodiment:
[0059] After receiving the order parameters, the first-level business orchestrator performs compliance checks on the order parameter logic, including mandatory and conditional field constraints, as well as logic verification. For example, if the "Customer AS Number Provision Method" is set to "Customer Provided," the order system must also provide the "Customer AS Number" information; otherwise, it will be considered a logic error. If the first-level business orchestrator fails all compliance checks, the order system will display an error message and reject the order. If all compliance checks pass, the order is successfully accepted.
[0060] By performing compliance verification on order parameters, the validity of order parameters can be improved, laying the foundation for the accuracy of subsequent activation results.
[0061] S102: Split the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders.
[0062] Based on the order parameters for an inter-provincial MPLS VPN order, the first-level service orchestrator splits the order into multiple sub-orders based on the province of installation and the product instance ID. The first-level service orchestrator then sends these sub-orders to different second-level service orchestrators (for example, the second-level service orchestrators in the provinces where each branch is located) based on the province of installation.
[0063] By using S102 to split inter-provincial MPLS VPN orders into multiple inter-provincial MPLS VPN sub-orders, the originally complex inter-provincial networking task becomes easier to manage and execute, and sub-orders in different provinces can be handled independently by local operators or technical teams at the same time, thereby improving the overall deployment speed.
[0064] S103: configuring the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0065] This application does not limit the configuration method of multiple inter-provincial MPLS VPN sub-orders. For example: the first-level business orchestrator sends multiple inter-provincial MPLS VPN sub-orders to different second-level business orchestrators according to the province where the order parameters of each inter-provincial MPLS VPN sub-order are installed, and uses the second-level business orchestrator to determine the landing PE device and port information of the landing PE device corresponding to each inter-provincial MPLS VPN sub-order; the first-level business orchestrator triggers the configuration parameter allocation task, calls the allocation capability provided by the IP system, and passes the landing PE device and port information as input parameters to the IP network management system; the IP network management system generates configuration results and configuration parameters based on the landing PE device and port information, and sends the configuration results and configuration parameters to the first-level business orchestrator.
[0066] The above embodiment only shows a more specific embodiment and does not mean that the configuration method of this application is limited to this method. This application focuses on determining the configuration results corresponding to each inter-provincial MPLS VPN sub-order, laying a data foundation for the subsequent determination of the activation results of each inter-provincial MPLS VPN sub-order.
[0067] S104: Scheduling the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order.
[0068] This application does not limit the scheduling method of multiple cross-provincial MPLS VPN sub-orders. For example: the first-level business orchestrator sends the configuration parameters and configuration results to the second-level business orchestrator based on the installation province information; after receiving the configuration parameters and configuration results, the second-level business orchestrator passes the order parameters as input parameters to the resource system; the resource system determines the docking equipment and port information at both ends of the AZ of the circuit according to the order requirements, and sends it to the second-level business orchestrator; the second-level business orchestrator calls the circuit application capability provided by the intra-provincial transmission workstation and passes the docking equipment and port information at both ends of the AZ of the circuit as input parameters to the intra-provincial transmission workstation; the intra-provincial transmission workstation completes circuit scheduling based on the docking equipment and port information at both ends of the AZ of the circuit, and feeds back the scheduling results to the second-level business orchestrator; the second-level business orchestrator feeds back the scheduling results to the first-level business orchestrator.
[0069] The above embodiment only shows a more specific embodiment and does not mean that the scheduling method of this application is limited to this method. This application focuses on determining the scheduling results corresponding to each inter-provincial MPLS VPN sub-order, laying a data foundation for the subsequent determination of the activation results of each inter-provincial MPLS VPN sub-order.
[0070] S105: Verify the configuration result and the scheduling result corresponding to each inter-provincial MPLS VPN sub-order to obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order.
[0071] This application does not limit the method for determining the activation result. You can set it according to the actual application situation. For example:
[0072] Verify the configuration and scheduling results corresponding to each inter-provincial MPLS VPN sub-order.
[0073] If the configuration result and the scheduling result meet the verification success condition, it indicates that the inter-provincial MPLS VPN sub-order is successfully activated; the verification success condition includes that the configuration result and the scheduling result corresponding to the inter-provincial MPLS VPN sub-order are both verified successfully.
[0074] If the configuration results and scheduling results do not meet the verification success conditions, it indicates that the inter-provincial MPLS VPN sub-order activation has failed.
[0075] After completing the provincial scheduling configuration, the secondary service orchestrator automatically initiates the service commissioning task. Upon successful commissioning, the secondary service orchestrator reports the provincial configuration results to the primary service orchestrator. The primary service orchestrator verifies the compliance of the IP network management configuration results with the provincial configuration results. The order is successfully provisioned only when both sides have successful configurations. If configuration fails on either side, the order configuration fails.
[0076] This application independently verifies the configuration results and scheduling results of each cross-provincial MPLS VPN sub-order. Only when both meet the preset verification success conditions, the sub-order is deemed to be successfully activated. This double verification mechanism effectively prevents service quality issues caused by configuration errors or scheduling anomalies, and builds a complete closed-loop management process from configuration issuance to service delivery. Through a strict verification process, it ensures that each sub-order service is fully verified before activation, thereby improving the stability and consistency of the overall service. Users can use the cross-provincial MPLS VPN network with confidence without worrying about communication interruptions or performance degradation due to configuration errors or improper scheduling, which significantly improves customer experience and trust.
[0077] Because each line's activation timeline varies, the first-level business orchestrator reports the final order activation results to the order system, line by line. Once all lines under an order have been activated, the order is finalized and archived, and the second-level business orchestrators in the affected provinces are notified to synchronize the order archive.
[0078] The above is the main technical solution of this application. To fully illustrate the main technical solution of this application, this application also provides a specific application embodiment:
[0079] Figure 2 This is an application diagram of a method for scheduling inter-provincial MPLS VPN dedicated line activation provided by an embodiment of the present application, such as Figure 2 As shown in the figure, the process of opening an inter-provincial MPLS VPN line includes:
[0080] Order dispatch: The order system collects business requirements and then transmits order parameters to the first-level service orchestrator. Based on the product form of the inter-provincial MPLS VPN, the first-level service orchestrator extracts parameters such as the order type, product instance ID, and installation province. It then splits the order into multiple sub-orders and dispatches them to the second-level service orchestrator by route.
[0081] Connected device acquisition, configuration parameter acquisition, and configuration result forwarding: After the second-level service orchestrator feedbacks the landing PE device and port information, the first-level service orchestrator passes this information to the automatic allocation service of the IP bearer network, obtains parameters such as the PE-side interface IP address, CE-side interface IP address, VLAN ID, VPN RD, VPN RT, and returns the configuration results to the second-level service orchestrator.
[0082] Intra-provincial scheduling configuration and service commissioning: The secondary service orchestrator completes the provincial solution design based on the parameters, utilizes the provincial transmission network capabilities for circuit scheduling, and dispatches installation and maintenance personnel for end-to-end commissioning, ultimately enabling the launch of the MPLS VPN dedicated line.
[0083] Order completion: After the first-level business orchestrator summarizes the activation results of all sub-orders, it feeds the final results back to the order system to complete the business activation.
[0084] The above is the main technical solution of this application. Now we will introduce the expansion and implementation of the main technical solution of this application. The details are as follows:
[0085] With respect to S101 obtaining order parameters of an inter-provincial MPLS VPN order and S102 splitting the inter-provincial MPLS VPN order based on the installation province and product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders, the present application provides an optional embodiment:
[0086] Figure 3 The application diagram of order dispatch provided in the embodiment of the present application is as follows: Figure 3 As shown, the order system sends the order parameters of the inter-provincial MPLS VPN order to the first-level business orchestrator; the first-level business orchestrator splits the inter-provincial MPLS VPN order according to the installation province / product room instance identifier and other parameters in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders; the first-level business orchestration system dispatches the inter-provincial MPLS VPN sub-orders to the corresponding provinces based on the installation province in the order parameters of each inter-provincial MPLS VPN sub-order, and the second-level business orchestrator of the corresponding province processes the inter-provincial MPLS VPN sub-orders; for example, if the installation province in the order parameters of a certain inter-provincial MPLS VPN sub-order is Province A, then the inter-provincial MPLS VPN sub-order is dispatched to the second-level business orchestrator of Province A; if the installation province in the order parameters of a certain inter-provincial MPLS VPN sub-order is Province B, then the inter-provincial MPLS VPN sub-order is dispatched to the second-level business orchestrator of Province B, and so on.
[0087] Orders are dispatched based on the province where the installation is located in the order parameters of each order, which can ensure that the opened inter-provincial MPLS VPN can meet the needs of users and ensure the effectiveness of the inter-provincial MPLS VPN.
[0088] After the distribution of each inter-provincial MPLS VPN sub-order is completed, it is necessary to open the inter-provincial MPLS VPN between the corporate headquarters and each province where the installation is located. This application divides the opening of the inter-provincial MPLS VPN into two parts: configuration and scheduling, that is, S103 configures multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders, and obtains the configuration results corresponding to each inter-provincial MPLS VPN sub-order and S104 schedules multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders, and obtains the scheduling results corresponding to each inter-provincial MPLS VPN sub-order.
[0089] Now, with respect to S103, multiple inter-provincial MPLS VPN sub-orders are configured based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain the configuration result corresponding to each inter-provincial MPLS VPN sub-order. The present application has been expanded with specific embodiments as follows:
[0090] Device matching is performed on each inter-provincial MPLS VPN sub-order based on the order parameters of each inter-provincial MPLS VPN sub-order to obtain the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order.
[0091] This application does not limit the method for determining the ground docking device and the port information of the ground docking device. As an optional embodiment, the order parameters of the multiple inter-provincial MPLS VPN sub-orders are sent to the secondary business orchestrator, so that the secondary business orchestrator determines the ground docking device and the port information of the ground docking device corresponding to each inter-provincial MPLS VPN sub-order based on the province of installation in the order parameters of each inter-provincial MPLS VPN sub-order.
[0092] This application also provides a specific application embodiment. Figure 4 This is a schematic diagram of the ground docking device provided in the embodiment of the present application, as shown in FIG. Figure 4 As shown in the figure, after the first-level service orchestrator sends the order parameters of multiple inter-provincial MPLS VPN sub-orders to the second-level service orchestrator, the second-level service orchestrator obtains PE device information (i.e., the landing docking device and the port information of the landing docking device) through the resource system and feeds back the PE device information to the first-level service orchestrator.
[0093] Order parameters are uniformly issued through the first-level business orchestrator, and the second-level business orchestrator completes equipment matching based on localized information (such as the province where the installation is located). This not only ensures the uniformity of overall scheduling, but also takes into account the flexibility of deployment in various regions and the differences in actual network environments. The optimal landing equipment and corresponding ports can be automatically identified without manual intervention, avoiding the risk of errors caused by manual configuration and improving the accuracy and execution efficiency of resource allocation. In complex scenarios involving multiple provinces and multiple operators, it can ensure that each sub-order can be accurately matched to local network resources, thereby achieving efficient and stable cross-provincial MPLS VPN networking. By automatically obtaining device and port information, standardized input is provided for subsequent configuration generation, policy issuance, and service activation, pushing the entire MPLS VPN service activation process towards full-link automation.
[0094] After determining the on-site docking device and port information of the on-site docking device corresponding to each inter-provincial MPLS VPN sub-order, it is necessary to determine the configuration result corresponding to each inter-provincial MPLS VPN sub-order based on this. That is, configuration is performed based on the on-site docking device and port information of the on-site docking device corresponding to each inter-provincial MPLS VPN sub-order to obtain the configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0095] This application does not limit the method for determining the configuration results. As an optional embodiment, the allocation capability is called to transmit the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order to the network management system, so that the network management system configures each inter-provincial MPLS VPN sub-order based on the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order, and generates the configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0096] This application also provides a specific application embodiment. Figure 5 A schematic diagram of configuration parameter allocation provided in an embodiment of the present application, such as Figure 5 As shown in the figure, after the first-level service orchestrator receives the grounded PE device feedback from the second-level service orchestrator, it automatically triggers the task of allocating configuration parameters, calls the allocation capability provided by the IP network management system, and passes the application parameters (grounded PE device and device port) as input parameters; the IP network management system generates configuration parameters through internal instructions, including parameters such as the PE-side interface IP address, the CE-side interface IP address, VLAN ID, VPN RD, VPN RT, and returns the allocated parameters to the first-level service orchestrator; after obtaining the feedback parameters, the first-level service orchestrator performs data integrity verification and stores the data after the verification passes.
[0097] Figure 6 A schematic diagram of forwarding configuration results provided in an embodiment of the present application is shown in FIG. Figure 6 As shown in the figure, after the first-level service orchestrator obtains the configuration parameters assigned by the IP network manager, it simultaneously initiates two parallel tasks: First, it sends the configuration parameter information obtained from the order to the second-level service orchestrator based on the installation province information; second, to improve configuration efficiency, it simultaneously waits for the configuration result from the IP network manager. After receiving the configuration result information (success / failure) from the IP network manager, the first-level service orchestrator forwards the configuration result to the second-level service orchestrator.
[0098] This application calls upon the resource allocation capability of the network management system to pass the landing docking equipment and its port information corresponding to each inter-provincial MPLS VPN sub-order as parameters into the network management system. The network management system automatically completes the configuration processing of the corresponding sub-order based on this information and generates the corresponding configuration results. This achieves standardization and automation of the configuration process, reduces configuration errors and inefficiencies caused by manual intervention, improves the accuracy, consistency, and execution efficiency of the inter-provincial MPLS VPN dedicated line service activation, and provides high-quality data support for subsequent scheduling, verification, and activation, enhancing the overall intelligence level of business deployment and controllability of operation and maintenance.
[0099] The above is a relatively complete description of the specific technical solution of the configuration. Now, with respect to S104, multiple inter-provincial MPLS VPN sub-orders are scheduled based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain the scheduling results corresponding to each inter-provincial MPLS VPN sub-order. This application has been expanded with specific embodiments as follows:
[0100] The configuration results corresponding to each inter-provincial MPLS VPN sub-order are sent to the secondary business orchestrator according to the installation province information in the order parameters of each inter-provincial MPLS VPN sub-order; after receiving the configuration results corresponding to each inter-provincial MPLS VPN sub-order, the secondary business orchestrator transmits the order parameters of each inter-provincial MPLS VPN sub-order to the resource system; the resource system determines the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order according to the order parameters of each inter-provincial MPLS VPN sub-order, and sends them to the secondary business orchestrator; the secondary business orchestrator calls the circuit application capability to transmit the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order to the intra-provincial transmission workstation; the intra-provincial transmission workstation performs circuit scheduling based on the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order, and feeds back the scheduling results corresponding to each inter-provincial MPLS VPN sub-order to the primary business orchestrator through the secondary business orchestrator.
[0101] This application also provides a specific application embodiment. Figure 7 A schematic diagram of the intra-provincial deployment provided in the embodiment of this application is shown in FIG. Figure 7As shown, the first-level business orchestrator forwards the configuration results to the second-level business orchestrator; after the second-level business orchestrator receives the configuration results and configuration parameters synchronized by the first-level business orchestrator for the first time, it immediately starts the configuration scheduling task within the province, including circuit docking resource acquisition and circuit scheduling. The second-level business orchestrator first interacts with the resource system and passes the order parameters as input parameters to the resource system. The resource system automatically returns the docking equipment and port information at both ends of the AZ of the circuit based on the order parameters. Next, the second-level business orchestrator calls the circuit application capability provided by the provincial transmission workstation and passes the docking equipment and port information at both ends of AZ as input parameters to the provincial transmission workstation. After the provincial transmission workstation completes the circuit scheduling, it feeds back the circuit scheduling results to the second-level business orchestrator. At the same time, when performing provincial scheduling configuration, the second-level business orchestrator needs to be able to receive the IP network management configuration results forwarded by the first-level business orchestrator in real time.
[0102] This application sends the configuration results of each cross-provincial MPLS VPN sub-order to the corresponding secondary business orchestrator according to the information of the province where it is installed. The secondary business orchestrator further synchronizes the order parameters of the sub-order to the resource system, thereby driving the resource system to automatically identify and determine the circuit docking equipment and its port information corresponding to the sub-order. Subsequently, the secondary business orchestrator calls the circuit application capability and passes the relevant equipment and port information to the provincial transmission workbench, which completes the circuit scheduling operation and finally feeds the scheduling results back to the primary business orchestrator via the secondary business orchestrator, forming a complete scheduling closed loop. This mechanism realizes the full-link automation and coordination of resource configuration, circuit scheduling and information feedback in the cross-provincial MPLS VPN dedicated line activation process, significantly improving deployment efficiency, resource configuration accuracy and the refinement level of operation and maintenance management, while enhancing the linkage capability between systems and the controllability of service delivery in cross-provincial multi-point networking scenarios.
[0103] This application adopts a two-level business orchestrator approach. The first-level business orchestrator implements the scheduling of the group system capabilities and the issuance of work orders, and the second-level business orchestrator is responsible for completing the configuration scheduling of the provincial end lines. Through the two-level orchestrator scheduling, the collaboration of multiple domains such as the first-level business orchestrator, the second-level business orchestrator, the IP bearer network, the provincial resource system, and the provincial transmission workbench is finally realized. The orchestrator obtains the parameter information input by the order system, splits the order by line according to the product instance identifier and the province where the installation is located, and automatically generates multiple work orders. The work orders are dispatched by line to the second-level business orchestrator for collaborative scheduling according to the landing province.
[0104] By intelligently splitting the original cross-provincial MPLS VPN order by region, operator, or business requirement, generating multiple independently processable sub-orders, the system effectively reduces the complexity of individual orders and improves overall deployment efficiency. Especially when multiple provinces and operators are collaborating, the sub-order mechanism enables parallel processing, significantly shortening delivery cycles. Based on each sub-order's order parameters (such as bandwidth, QoS level, and access method), the system independently generates configurations and distributes policies, ensuring precise adaptation to the network environment, customer needs, and service standards of different regions. Compared to traditional centralized configuration methods, this approach avoids configuration conflicts and resource waste, improving configuration accuracy and service stability. This not only improves network availability but also effectively alleviates backbone network congestion. After each sub-order is configured and scheduled, the system automatically verifies and provides feedback on the commissioning results, including link connectivity testing, QoS compliance verification, and security policy checks. This ensures that each sub-task meets service level agreement (SLA) requirements, creating a complete closed-loop management system from order issuance to service provisioning, enhancing the controllability and transparency of service delivery.
[0105] Figure 8 The structure diagram of a cross-provincial MPLS VPN dedicated line activation scheduling device provided in the embodiment of the present application is as follows Figure 8 As shown, based on the inter-provincial MPLS VPN dedicated line activation scheduling method provided in the previous embodiment, this application also provides an inter-provincial MPLS VPN dedicated line activation scheduling device including:
[0106] The acquisition module is used to obtain the order parameters of the inter-provincial MPLS VPN order.
[0107] The splitting module is used to split the inter-provincial MPLS VPN order based on the installation province and the product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders.
[0108] The configuration module is used to configure multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0109] The scheduling module is used to schedule the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order.
[0110] The verification module is used to verify based on the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order, and obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order.
[0111] As an optional embodiment, the configuration module specifically includes:
[0112] The device matching unit is used to perform device matching on each inter-provincial MPLS VPN sub-order based on the order parameters of each inter-provincial MPLS VPN sub-order, and obtain the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order.
[0113] The configuration unit is used to configure based on the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order, and obtain the configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0114] As an optional embodiment, the device matching unit is specifically configured to:
[0115] The order parameters of the multiple inter-provincial MPLS VPN sub-orders are sent to the secondary service orchestrator, so that the secondary service orchestrator determines the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order based on the province of installation in the order parameters of each inter-provincial MPLS VPN sub-order.
[0116] As an optional embodiment, the configuration unit is specifically configured to:
[0117] The allocation capability is called to transmit the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order to the network management system, so that the network management system configures each inter-provincial MPLS VPN sub-order based on the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order, and generates a configuration result corresponding to each inter-provincial MPLS VPN sub-order.
[0118] As an optional embodiment, the scheduling module is specifically configured to:
[0119] The configuration results corresponding to each inter-provincial MPLS VPN sub-order are sent to the secondary business orchestrator according to the installation province information in the order parameters of each inter-provincial MPLS VPN sub-order; after receiving the configuration results corresponding to each inter-provincial MPLS VPN sub-order, the secondary business orchestrator transmits the order parameters of each inter-provincial MPLS VPN sub-order to the resource system; the resource system determines the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order according to the order parameters of each inter-provincial MPLS VPN sub-order, and sends them to the secondary business orchestrator; the secondary business orchestrator calls the circuit application capability to transmit the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order to the intra-provincial transmission workstation; the intra-provincial transmission workstation performs circuit scheduling based on the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order, and feeds back the scheduling results corresponding to each inter-provincial MPLS VPN sub-order to the primary business orchestrator through the secondary business orchestrator.
[0120] As an optional embodiment, the verification module specifically includes:
[0121] The verification unit is used to verify the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order.
[0122] The activation success determination unit is used to indicate that the inter-provincial MPLS VPN sub-order is successfully activated if the configuration result and the scheduling result meet the verification success condition; the verification success condition includes that the configuration result and the scheduling result corresponding to the inter-provincial MPLS VPN sub-order are both verified successfully.
[0123] The activation failure determination unit is used to indicate that the activation of the inter-provincial MPLS VPN sub-order has failed if the configuration result and the scheduling result do not meet the verification success condition.
[0124] An embodiment of the present application provides a computer device, including: a memory, a processor, and a computer program stored in the memory and executable on the processor. The processor executes the computer program to implement a method for scheduling the activation of inter-provincial MPLS VPN dedicated lines.
[0125] An embodiment of the present application provides a computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, a method for scheduling the activation of an inter-provincial MPLS VPN dedicated line is implemented.
[0126] An embodiment of the present application provides a computer program product, including a computer program, which, when executed by a processor, implements a method for scheduling the activation of an inter-provincial MPLS VPN dedicated line.
[0127] It should be noted that the various embodiments in this specification are described in a progressive manner, and the same or similar parts between the various embodiments can be referred to each other, and each embodiment focuses on the differences from other embodiments. In particular, for the device and apparatus embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiments. The device and apparatus embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components indicated as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the scheme of this embodiment. A person of ordinary skill in the art can understand and implement it without expending creative work.
[0128] The above is merely one specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.
Claims
1. A method for scheduling inter-provincial MPLS VPN dedicated line activation, characterized in that: The inter-provincial MPLS VPN dedicated line activation scheduling method is applied to a first-level service orchestrator, and the method includes: Get order parameters for inter-provincial MPLS VPN orders; Splitting the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain multiple inter-provincial MPLS VPN sub-orders; Configuring multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a configuration result corresponding to each inter-provincial MPLS VPN sub-order; Scheduling the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order; Verification is performed based on the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order to obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order.
2. The inter-provincial MPLS VPN dedicated line activation and scheduling method according to claim 1, characterized in that: The configuring the multiple inter-province MPLS VPN sub-orders based on the order parameters of the multiple inter-province MPLS VPN sub-orders to obtain a configuration result corresponding to each inter-province MPLS VPN sub-order specifically includes: Performing device matching on each inter-provincial MPLS VPN sub-order based on the order parameters of each inter-provincial MPLS VPN sub-order, and obtaining the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order; Configuration is performed based on the on-site docking device and port information of the on-site docking device corresponding to each inter-provincial MPLS VPN sub-order, and a configuration result corresponding to each inter-provincial MPLS VPN sub-order is obtained.
3. The inter-provincial MPLS VPN dedicated line activation and scheduling method according to claim 2, characterized in that: The device matching of each inter-provincial MPLS VPN sub-order based on the order parameters of each inter-provincial MPLS VPN sub-order to obtain the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order specifically includes: The order parameters of the multiple inter-provincial MPLS VPN sub-orders are sent to the secondary service orchestrator, so that the secondary service orchestrator determines the landing docking device and port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order based on the province of installation in the order parameters of each inter-provincial MPLS VPN sub-order.
4. The inter-provincial MPLS VPN dedicated line activation and scheduling method according to claim 2, characterized in that: The configuration is performed based on the on-site docking device and port information of the on-site docking device corresponding to each inter-provincial MPLS VPN sub-order, to obtain the configuration result corresponding to each inter-provincial MPLS VPN sub-order, specifically including: The allocation capability is called to transmit the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order to the network management system, so that the network management system configures each inter-provincial MPLS VPN sub-order based on the landing docking device and the port information of the landing docking device corresponding to each inter-provincial MPLS VPN sub-order, and generates a configuration result corresponding to each inter-provincial MPLS VPN sub-order.
5. The inter-provincial MPLS VPN dedicated line activation and scheduling method according to claim 1, characterized in that: The step of scheduling the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders to obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order specifically includes: The configuration results corresponding to each inter-provincial MPLS VPN sub-order are sent to the secondary business orchestrator according to the installation province information in the order parameters of each inter-provincial MPLS VPN sub-order; after receiving the configuration results corresponding to each inter-provincial MPLS VPN sub-order, the secondary business orchestrator transmits the order parameters of each inter-provincial MPLS VPN sub-order to the resource system; the resource system determines the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order according to the order parameters of each inter-provincial MPLS VPN sub-order, and sends them to the secondary business orchestrator; the secondary business orchestrator calls the circuit application capability to transmit the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order to the intra-provincial transmission workstation; the intra-provincial transmission workstation performs circuit scheduling based on the circuit docking device and the port information of the circuit docking device corresponding to each inter-provincial MPLS VPN sub-order, and feeds back the scheduling results corresponding to each inter-provincial MPLS VPN sub-order to the primary business orchestrator through the secondary business orchestrator.
6. The inter-provincial MPLS VPN dedicated line activation and scheduling method according to claim 1, characterized in that: The verification is performed based on the configuration result and the scheduling result corresponding to each inter-provincial MPLS VPN sub-order to obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order, specifically including: Verify the configuration and scheduling results for each inter-provincial MPLS VPN sub-order; If the configuration result and the scheduling result meet the verification success condition, it indicates that the inter-provincial MPLS VPN sub-order is successfully opened; the verification success condition includes that the configuration result and the scheduling result corresponding to the inter-provincial MPLS VPN sub-order are both verified successfully; If the configuration results and scheduling results do not meet the verification success conditions, it indicates that the inter-provincial MPLS VPN sub-order activation has failed.
7. A device for opening and dispatching inter-provincial MPLS VPN dedicated lines, characterized in that: The inter-provincial MPLS VPN dedicated line opening and dispatching device comprises: The acquisition module is used to obtain the order parameters of the inter-provincial MPLS VPN order; a splitting module, configured to split the inter-provincial MPLS VPN order based on the province of installation and the product instance identifier in the order parameters to obtain a plurality of inter-provincial MPLS VPN sub-orders; a configuration module, configured to configure the plurality of inter-province MPLS VPN sub-orders based on the order parameters of the plurality of inter-province MPLS VPN sub-orders, and obtain a configuration result corresponding to each inter-province MPLS VPN sub-order; a scheduling module, configured to schedule the multiple inter-provincial MPLS VPN sub-orders based on the order parameters of the multiple inter-provincial MPLS VPN sub-orders, and obtain a scheduling result corresponding to each inter-provincial MPLS VPN sub-order; The verification module is used to verify based on the configuration result and scheduling result corresponding to each inter-provincial MPLS VPN sub-order, and obtain the activation result corresponding to each inter-provincial MPLS VPN sub-order.
8. A computer device comprising: A memory, a processor, and a computer program stored in the memory and runnable on the processor, wherein the processor executes the computer program to implement the inter-provincial MPLS VPN dedicated line activation scheduling method according to any one of claims 1 to 6.
9. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the inter-provincial MPLS VPN dedicated line activation scheduling method according to any one of claims 1 to 6 is implemented.
10. A computer program product comprising a computer program, characterized in that When the computer program is executed by a processor, the inter-provincial MPLS VPN dedicated line activation scheduling method according to any one of claims 1 to 6 is implemented.