WO2021115451A1 - 波分接入设备的配置方法、交叉配置方法、装置及设备 - Google Patents

波分接入设备的配置方法、交叉配置方法、装置及设备 Download PDF

Info

Publication number
WO2021115451A1
WO2021115451A1 PCT/CN2020/135915 CN2020135915W WO2021115451A1 WO 2021115451 A1 WO2021115451 A1 WO 2021115451A1 CN 2020135915 W CN2020135915 W CN 2020135915W WO 2021115451 A1 WO2021115451 A1 WO 2021115451A1
Authority
WO
WIPO (PCT)
Prior art keywords
service
client
port
side port
configuration information
Prior art date
Application number
PCT/CN2020/135915
Other languages
English (en)
French (fr)
Inventor
冯富强
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2021115451A1 publication Critical patent/WO2021115451A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q11/0067Provisions for optical access or distribution networks, e.g. Gigabit Ethernet Passive Optical Network (GE-PON), ATM-based Passive Optical Network (A-PON), PON-Ring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04JMULTIPLEX COMMUNICATION
    • H04J14/00Optical multiplex systems
    • H04J14/02Wavelength-division multiplex systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04JMULTIPLEX COMMUNICATION
    • H04J14/00Optical multiplex systems
    • H04J14/02Wavelength-division multiplex systems
    • H04J14/0227Operation, administration, maintenance or provisioning [OAMP] of WDM networks, e.g. media access, routing or wavelength allocation
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q2011/0079Operation or maintenance aspects

Definitions

  • This application relates to the technical field of communication networks, and in particular to a configuration method, device, device, and storage medium of a wavelength division access device.
  • WDM access equipment In order to solve the end-to-end bearer transmission capability of user services in the Optical Transport Network (OTN), WDM access equipment was created accordingly. With the gradual development of products such as Dense Wavelength Division Multiplexing (DWDM) and OTN WDM access equipment, the client side of WDM access equipment supports more and more types of accessible services. Configuration and cross configuration are becoming more and more complicated. The business start-up process of the equipment puts forward higher requirements on the professional skills and product familiarity of users, which makes the operation of the equipment more difficult, resulting in an increase in labor and time costs, and errors are prone to errors in the configuration process.
  • DWDM Dense Wavelength Division Multiplexing
  • OTN WDM access equipment supports more and more types of accessible services. Configuration and cross configuration are becoming more and more complicated.
  • the business start-up process of the equipment puts forward higher requirements on the professional skills and product familiarity of users, which makes the operation of the equipment more difficult, resulting in an increase in labor and time costs, and errors are prone to errors in the
  • This application provides a configuration method, cross configuration method, device and equipment for WDM access equipment.
  • the embodiment of the present application provides a configuration method of a wavelength division access device for a client port of the wavelength division access device, including: receiving a service signal sent by a client; polling each client port according to the service signal, And perform alarm recognition on the current client-side port polled; determine the service type of the service signal according to the alarm recognition result; generate configuration information corresponding to the current client-side port according to the service type, and combine the configuration information Configured in the business management chip.
  • the embodiment of the application provides a cross-configuration method for a wavelength division access device, which includes: determining an optical path frame structure type according to the service type of a service signal; determining the time slot required by the service signal according to the optical path frame structure type Quantity; obtain available time slots from the time slot resource pool according to the number of time slots required by the service signal, and create a cross configuration of client-side ports and line-side ports according to the available time slots.
  • the embodiment of the application provides a configuration method of a wavelength division access device, which is used for the line side transmission port of the wavelength division access device, including: polling each line side transmission port, if the current line side transmission port configuration is polled For services, the configuration information and cross-configuration information of the client-side port corresponding to the current line-side sending port are determined according to the configured service; the configuration information and the cross-configuration information are converted into overhead information according to the set protocol; The overhead information includes client-side port number, service type, optical path frame structure type, and index of available time slots; the overhead information is inserted into the overhead register of the service management chip.
  • the embodiment of the application provides a configuration method of a wavelength division access device, which is used for the line side receiving port of the wavelength division access device, including: receiving service signals and overhead information sent by the line side; the overhead information includes the service of the service signal Type, client-side port number, optical path frame structure type, and index of available time slots; poll each line-side receiving port, if the current line-side receiving port configuration information and cross configuration information and the overhead information are polled If there is no match, update the configuration information and cross configuration information of the current receiving port on the line side according to the overhead information.
  • the embodiment of the application provides a configuration device for a wavelength division access device, which is set on a client side port of the wavelength division access device, and includes: a service signal receiving module for receiving service signals sent by a client; and an alarm recognition module for Polling each client-side port according to the service signal, and performing alarm recognition on the current client-side port that is polled; a service type determining module, used to determine the service type of the service signal according to the alarm recognition result; generating configuration information The module is used to generate configuration information corresponding to the current client-side port according to the service type, and configure the configuration information in the service management chip.
  • the embodiment of the application provides a cross-configuration device for wavelength division access equipment, including: an optical path frame structure type determining module for determining the optical path frame structure type according to the service type of a service signal; and a time slot number determining module for The number of time slots required by the service signal is determined according to the type of the optical path frame structure; the cross configuration creation module is used to obtain the available time slots from the time slot resource pool according to the number of time slots required by the service signal, and Create a cross configuration of the client side port and the line side port according to the available time slot.
  • the embodiment of the present application provides a configuration device for wavelength division access equipment, which is set on the line-side transmission port of the wavelength division access equipment, and includes: a configuration information determination module, which polls each line-side transmission port, if the current polled When the line-side sending end configures the service, the configuration information and cross-configuration information of the client-side port corresponding to the current line-side sending port is determined according to the configured service; the overhead information acquisition module is used to combine the configuration information with the cross-configuration The information is converted into overhead information according to the set protocol; the overhead information includes the client port number, service type, optical path frame structure type, and the index of the available time slot; the overhead information insertion module is used to insert the overhead information into the service In the overhead register of the management chip.
  • the embodiment of the application provides a configuration device for a wavelength division access device, which is set on a line side receiving port of the wavelength division access device, and includes: an overhead information receiving module for receiving service signals and overhead information sent by the line side;
  • the overhead information includes the service type of the service signal, the client-side port number, the optical path frame structure type, and the index of the available time slot;
  • the information update module is used to poll each line-side receiving port, if the current line-side receiving port is polled If the configuration information and cross configuration information of the port do not match the overhead information, the configuration information and cross configuration information of the current line-side receiving port are updated according to the overhead information.
  • the embodiment of the present application provides a wavelength division access device, including a memory, a processor, and a computer program stored in the memory and capable of running on the processor.
  • the processor executes the program, the implementation is as described in the embodiment of the present application. The configuration method described.
  • the embodiment of the present application provides a storage medium that stores a computer program, and when the computer program is executed by a processor, any one of the methods in the embodiments of the present application is implemented.
  • FIG. 1 is a flowchart of a method for configuring a wavelength division access device in an embodiment of this application
  • FIG. 3 is a flowchart of a method for cross-configuration of a wavelength division access device in an embodiment of this application;
  • FIG. 5 is a flowchart of a method for configuring a wavelength division access device in an embodiment of the application
  • FIG. 6 is a schematic structural diagram of a device for configuring a wavelength division access device in an embodiment of the application
  • FIG. 7 is a schematic structural diagram of a cross configuration apparatus for a wavelength division access device in an embodiment of the application.
  • FIG. 8 is a schematic structural diagram of a device for configuring a wavelength division access device in an embodiment of the application.
  • FIG. 9 is a schematic structural diagram of a device for configuring a wavelength division access device in an embodiment of the application.
  • FIG. 10 is a schematic structural diagram of a wavelength division access device in an embodiment of this application.
  • Fig. 1 is a flowchart of a method for configuring a wavelength division access device in an embodiment of the present application. This embodiment is applicable to the configuration of the client-side port of the WDM access device. This embodiment may be executed by a terminal, and the terminal may be a wavelength division access equipment (Customer Premise Equipment, CPE). As shown in Figure 1, the method includes S110-S140.
  • CPE Customer Premise Equipment
  • S110 Receive a service signal sent by the client.
  • S120 Polling each client-side port according to the service signal, and performing alarm recognition on the current client-side port that is polled.
  • S140 Generate configuration information corresponding to the current client-side port according to the service type, and configure the configuration information in the service management chip.
  • the client can be a terminal that can be connected to a wired network or a wireless network, such as a mobile terminal, a PC, and a network TV.
  • the CPE device includes multiple client-side ports, and the client-side port is responsible for receiving service signals sent by the client and sending service signals to the client.
  • the CPE device After the CPE device receives the service signal sent by the client, it starts to poll each client port to detect the signal loss alarm on the current client port; if there is no signal loss alarm on the current client port, it will perform the signal loss alarm on the current client port.
  • Frame loss alarm detection if the current client port has no frame loss alarm, poll the service type supported by the current client port; perform frame loss alarm detection on the polled service type to obtain the alarm recognition result.
  • the current client-side port For the current client-side port that is polled, first detect whether the current client-side port has a signal loss alarm, if not, continue to detect whether the current client-side port has a frame loss alarm, if not, get the current client-side port support business type. And poll the service type supported by the current client-side port, detect whether the polled service type has a frame loss alarm, if not, determine the polled service type as the service type of the service signal.
  • the method further includes the following steps: if the current client port has a signal loss alarm, delay the first set period of time, and return to the current client port. Perform the operation of signal loss alarm detection; if the current client-side port continuously has signal loss alarms for more than the first set number of times, the polling of the current client-side port will be exited.
  • the first set times can be set to 3-5 times. For example, if it is set to 3 times, if the current client port has a signal loss alarm after three consecutive detections, the polling of the current client port will be exited.
  • the current client-side port after detecting whether the current client-side port has a frame loss alarm, it further includes: if the current client-side port has a frame loss alarm, delaying a second set period of time, and returning to perform signalling to the current client-side port Loss alarm detection operation; if the number of times that the current client-side port continuously has frame loss alarms exceeds the second set number of times, the polling of the current client-side port is exited.
  • the second set times can be set to 3-5 times. For example, if it is set to 3 times, if the current client-side port has a frame loss alarm after three consecutive detections, the polling of the current client-side port will be exited.
  • the CPE device after determining the service type of the service signal, the CPE device generates configuration information corresponding to the current client-side port according to the service type, and configures the configuration information in the service management chip.
  • the business management chip may be an FPGA chip or a Framer chip.
  • the configuration information may include the mapping relationship between the port number of the client side port and the service type, etc.
  • the CPE device reports the configuration information to the network management system, and the network management system displays the configuration information on the interface.
  • FIG. 2 is a flowchart of yet another method for configuring a wavelength division access device in an embodiment of the present application.
  • the method includes the following steps: After the CPE device receives the service signal sent by the client, it polls each client port to detect whether the current client port has signal loss If there is an alarm, the current client port will be polled after the first set period of time is delayed. If not, the current client port will be detected if there is a frame loss alarm. If so, the second set period of time will be delayed and then re-polled.
  • Polling the current client if not, poll the service type supported by the current client-side port, check whether the polled service type has a frame loss alarm, if there is, then re-polling after the third set time delay
  • the service type if not, the service type is determined as the service type of the service signal, and the configuration information corresponding to the current client-side port is generated according to the service type, and the configuration information is configured in the service management chip.
  • Fig. 3 is a flowchart of a method for cross-configuration of a wavelength division access device in an embodiment of the present application.
  • This embodiment is suitable for the cross configuration between the client side port and the line side port of the WDM access device.
  • This embodiment may be executed by a terminal, and the terminal may be a wavelength division access equipment (Customer Premise Equipment, CPE).
  • the method includes S210-S230.
  • S210 Determine an optical path frame structure type according to the service type of the service signal.
  • S220 Determine the number of time slots required by the service signal according to the type of the optical path frame structure.
  • S230 Obtain available time slots from the time slot resource pool according to the number of time slots required by the service signal, and create a cross configuration of client-side ports and line-side ports according to the available time slots.
  • the process of creating the cross configuration of the client-side port and the line-side port according to the available time slots may be: obtaining the index of the available time slot; creating the cross configuration of the client-side port and the line-side port according to the index of the available time slot .
  • the index of the available time slot can be understood as the port number of the line side port indexed by the available time slot.
  • the cross configuration information may include: client-side port number, available time slot number, and line-side port number.
  • the CPE device after identifying the service type of the received service signal, extracts the optical channel frame structure (ODUk) type corresponding to the service type, and determines the number of time slots required by the service signal according to the ODUk type, and then Search the current available timeslots in the resource pool, determine whether the available timeslots in the resource pool are enough, if enough, get the index of the available timeslots, and finally create a cross configuration of the client-side port and the line-side port according to the index of the available timeslots . If there are not enough time slots available, exit the configuration process.
  • ODUk optical channel frame structure
  • the method further includes: forwarding the service signal according to the service path corresponding to the cross configuration.
  • Fig. 4 is a flowchart of another method for configuring a wavelength division access device in an embodiment of the present application.
  • This embodiment is suitable for configuring the line-side transmission port of the wavelength division access device.
  • This embodiment may be executed by a terminal, and the terminal may be a wavelength division access equipment (Customer Premise Equipment, CPE).
  • CPE Customer Premise Equipment
  • the method includes S310-S330.
  • S320 Convert the configuration information and the cross configuration information into overhead information according to the set protocol.
  • the overhead information includes client-side port number, service type, optical path frame structure type, and index of available time slot.
  • the CPE device includes multiple line-side transmission ports, and the line-side transmission port is responsible for sending service signals to the line for transmission.
  • the CPE equipment can be set with the automatic configuration switch of the transmission port on the line side. If the automatic configuration switch is turned on, the transmission port on the line side will be automatically configured following the configuration of the client side port.
  • the CPE device polls the transmission port on the line side. If the current line side transmission port that is polled has no service configured, it exits from polling the current line side transmission port. If the polled current line side transmission port is configured If the service is completed, the configuration information and cross configuration information of the corresponding client-side port are determined according to the configured service. Then the configuration information and the cross configuration information are converted into the overhead information of the set protocol according to the set protocol, and the overhead information is inserted into the overhead register of the FPGA or Framer chip.
  • the method further includes the following steps: mapping and encapsulating the overhead information and the service signal, and sending them to the communication network. This allows the downstream CPR device to update the configuration information and cross-configuration information according to the overhead information.
  • the communication network may be an OTN network or a synchronous digital hierarchy (Synchronous Digital Hierarchy, SDH) network.
  • SDH Synchronous Digital Hierarchy
  • Fig. 5 is a flowchart of a method for configuring a wavelength division access device in an embodiment of the present application.
  • This embodiment is suitable for configuring the line-side receiving port of the wavelength division access device.
  • This embodiment may be executed by a terminal, and the terminal may be a wavelength division access equipment (Customer Premise Equipment, CPE).
  • CPE Customer Premise Equipment
  • the method includes S410-S420.
  • S410 Receive the service signal and overhead information sent by the line side.
  • the overhead information includes the service type of the service signal sent by the upstream CPE device, the client-side port number, the optical path frame structure type, and the index of the available time slot.
  • the CPE device includes multiple line-side receiving ports, and the line-side transmitting port is responsible for receiving service signals transmitted from the line side.
  • the automatic configuration switch of the receiving port on the line side can be set in the CPE equipment. If the automatic configuration switch is turned on, the transmitting port on the line side will be automatically configured according to the received overhead information.
  • the CPE device polls the line-side receiving port, and determines whether the polled current line-side receiving port configuration information and cross configuration information are the same as the overhead If the information matches, if it does not match, update the configuration information and cross configuration information of the receiving port on the current line side according to the overhead information. If it matches, continue to poll the next line-side receiving port.
  • the method further includes: forwarding the service signal according to the service path corresponding to the updated cross configuration information.
  • the service signal is forwarded to the client according to the service path.
  • FIG. 6 is a schematic structural diagram of a configuration device of a wavelength division access device in an embodiment of the present application.
  • the device is set on the client side port of the wavelength division access device and includes: a service signal receiving module 510, an alarm recognition module 520, and a service The type determining module 530 and the configuration information generating module 540.
  • the service signal receiving module 510 is configured to receive the service signal sent by the client;
  • the alarm recognition module 520 is configured to poll each client-side port according to the service signal, and perform alarm recognition on the current client-side port that is polled;
  • the service type determining module 530 is configured to determine the service type of the service signal according to the alarm recognition result
  • the configuration information generating module 540 is configured to generate configuration information corresponding to the current client-side port according to the service type, and configure the configuration information in the service management chip.
  • the alarm recognition module 520 is further used for:
  • the service type of the service signal is determined according to the alarm recognition result, including:
  • the polled service type is determined as the service type of the service signal.
  • the method further includes:
  • the method further includes:
  • FIG. 7 is a schematic structural diagram of a cross configuration device for a wavelength division access device in an embodiment of the present application. As shown in FIG. 7, the device includes: an optical path frame structure type determining module 610, and a time slot number determining module 620 cross Configure the creation module 630.
  • the optical path frame structure type determining module 610 is configured to determine the optical path frame structure type according to the service type of the service signal;
  • the number of time slots determining module 620 is configured to determine the number of time slots required by the service signal according to the type of the optical path frame structure;
  • the cross configuration creation module 630 is configured to obtain available time slots from the time slot resource pool according to the number of time slots required by the service signal, and create a cross configuration of the client side port and the line side port according to the available time slot.
  • the cross configuration creation module 630 is also used to:
  • the method further includes: forwarding the service signal according to the service path corresponding to the cross configuration.
  • FIG. 8 is a schematic structural diagram of a configuration device for a wavelength division access device in an embodiment of the present application, which is set at the line side transmission port of the wavelength division access device and includes: a configuration information determining module 710, an overhead information acquiring module 720, and an overhead Information insertion module 730.
  • the configuration information determining module 710 is configured to poll each line-side sending port. If the current line-side sending end is configured with a service through the polling, determine the configuration of the client-side port corresponding to the current line-side sending port according to the configured service Information and cross configuration information;
  • the overhead information acquisition module 720 is used to convert configuration information and cross configuration information into overhead information according to a set protocol; the overhead information includes client-side port number, service type, optical path frame structure type, and index of available time slot;
  • the overhead information insertion module 730 is used to insert the overhead information into the overhead register of the service management chip.
  • the method further includes: mapping and encapsulating the overhead information and the service signal, and sending the overhead information and the service signal to the communication network.
  • FIG. 9 is a schematic structural diagram of a configuration device for a wavelength division access device in an embodiment of the present application.
  • the device is set at the line side receiving port of the wavelength division access device and includes: an overhead information receiving module 810 and an information updating module 820.
  • the overhead information receiving module 810 is used to receive the service signal and overhead information sent by the line side; the overhead information includes the service type of the service signal, the client-side port number, the optical path frame structure type, and the index of the available time slot;
  • the information update module 820 is configured to poll each line-side receiving port, and if the polled configuration information and cross configuration information of the current line-side receiving port do not match the overhead information, update the current line according to the overhead information The configuration information and cross configuration information of the receiving port on the side.
  • the method further includes: forwarding the service signal according to the service path corresponding to the updated cross configuration information.
  • FIG. 10 is a schematic structural diagram of a wavelength division access device in an embodiment of this application.
  • the device provided by the present application includes: a processor 910 and a memory 920.
  • the number of processors 910 in the device may be one or more.
  • One processor 910 is taken as an example in FIG. 10.
  • the number of memories 920 in the device may be one or more.
  • one memory 920 is taken as an example.
  • the processor 910 and the memory 920 of the device may be connected through a bus or in other ways, and connection through a bus is taken as an example in FIG. 10.
  • the device is the sender.
  • the sending end may be one of a scheduling node, a base station, or a UE.
  • the memory 920 can be configured to store software programs, computer-executable programs, and modules, such as program instructions/modules corresponding to the device of any embodiment of the present application (for example, the encoding module and the module in the data transmission device).
  • the memory 920 may include a program storage area and a data storage area, where the program storage area may store an operating system and an application program required by at least one function; the data storage area may store data created according to the use of the device, and the like.
  • the memory 920 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other non-volatile solid-state storage devices.
  • the memory 920 may further include a memory remotely provided with respect to the processor 910, and these remote memories may be connected to the device through a network. Examples of the aforementioned networks include, but are not limited to, the Internet, corporate intranets, local area networks, mobile communication networks, and combinations thereof.
  • the above-provided device can be configured to execute the configuration method of the wavelength division access device provided in any of the above-mentioned embodiments, and has corresponding functions and effects.
  • the program stored in the corresponding memory 920 may be program instructions/modules corresponding to the feedback channel mapping method provided in the embodiments of the present application.
  • the processor 910 executes the computer by running the software programs, instructions, and modules stored in the memory 920 One or more functional applications and data processing of the device, that is, implement the configuration method applied to the wavelength division access device in the foregoing method embodiment. It is understandable that when the above-mentioned device is the receiving end, the configuration method applied to the wavelength division access device provided by any embodiment of the present application can be executed, and has corresponding functions and effects.
  • the device may be one of a base station or a UE.
  • the embodiment of the present application also provides a storage medium containing computer-executable instructions.
  • the computer-executable instructions are executed by a computer processor, they are used to execute a method for configuring a wavelength division access device.
  • the method includes: receiving a client sending The service signal; poll each client-side port according to the service signal, and perform alarm recognition on the current client-side port polled; determine the service type of the service signal according to the alarm recognition result; generate according to the service type Configure the configuration information corresponding to the current client-side port, and configure the configuration information in the service management chip.
  • user equipment encompasses any suitable type of wireless user equipment, such as a mobile phone, a portable data processing device, a portable web browser, or a vehicle-mounted mobile station.
  • the various embodiments of the present application can be implemented in hardware or dedicated circuits, software, logic or any combination thereof.
  • some aspects may be implemented in hardware, while other aspects may be implemented in firmware or software that may be executed by a controller, microprocessor, or other computing device, although the present application is not limited thereto.
  • Computer program instructions can be assembly instructions, Instruction Set Architecture (ISA) instructions, machine instructions, machine-related instructions, microcode, firmware instructions, state setting data, or written in any combination of one or more programming languages Source code or object code.
  • ISA Instruction Set Architecture
  • the block diagram of any logic flow in the drawings of the present application may represent program steps, or may represent interconnected logic circuits, modules, and functions, or may represent a combination of program steps and logic circuits, modules, and functions.
  • the computer program can be stored on the memory.
  • the memory can be of any type suitable for the local technical environment and can be implemented using any suitable data storage technology, such as but not limited to read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), optical Memory devices and systems (Digital Video Disc (DVD) or Compact Disk (CD)), etc.
  • Computer-readable media may include non-transitory storage media.
  • the data processor can be any type suitable for the local technical environment, such as but not limited to general-purpose computers, special-purpose computers, microprocessors, digital signal processors (Digital Signal Processing, DSP), application specific integrated circuits (ASICs) ), programmable logic devices (Field-Programmable Gate Array, FGPA), and processors based on multi-core processor architecture.
  • DSP Digital Signal Processing
  • ASICs application specific integrated circuits
  • FGPA programmable logic devices

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Optical Communication System (AREA)

Abstract

本申请提出一种波分接入设备的配置方法、交叉配置方法、装置及设备。该方法包括:接收客户端发送的业务信号;根据所述业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;根据告警识别结果确定所述业务信号的业务类型;根据所述业务类型生成所述当前客户侧端口对应的配置信息,并将所述配置信息配置于业务管理芯片。

Description

波分接入设备的配置方法、交叉配置方法、装置及设备
相关申请的交叉引用
本申请基于申请号为201911288690.4、申请日为2019年12月12日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此以引入方式并入本申请。
技术领域
本申请涉及通信网络技术领域,具体涉及一种波分接入设备的配置方法、装置、设备及存储介质。
背景技术
为解决用户业务在光传送网(OpticalTransportNetwork,OTN)中端到端的承载传输能力,波分接入设备随之产生。随着密集型光波复用(Dense Wavelength Division Multiplexing,DWDM)和OTN波分接入设备等产品的逐步发展,波分接入设备客户侧支持的可接入业务类型越来越多,对设备的配置及交叉配置也越来越复杂。设备的业务开通过程对用户的专业技能和产品熟悉程度提出了更高的要求使得设备操作难度增大,从而造成人力成本及时间成本的提高,且配置过程中容易出错。
发明内容
本申请提供用于波分接入设备的配置方法、交叉配置方法、装置及设备。
本申请实施例提供一种波分接入设备的配置方法,用于波分接入设备的客户侧端口,包括:接收客户端发送的业务信号;根据所述业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;根据告警识别结果确定所述业务信号的业务类型;根据所述业务类型生成所述当前客户侧端口对应 的配置信息,并将所述配置信息配置于业务管理芯片。
本申请实施例提供一种波分接入设备的交叉配置方法,包括:根据业务信号的业务类型确定光通路帧结构类型;根据所述光通路帧结构类型确定所述业务信号所需的时隙数量;根据所述业务信号所需的时隙数量从时隙资源池中获取可用时隙,并根据所述可用时隙创建客户侧端口和线路侧端口的交叉配置。
本申请实施例提供一种波分接入设备的配置方法,用于波分接入设备的线路侧发送端口,包括:轮询每个线路侧发送端口,若轮询到的当前线路侧发送端口配置业务,则根据配置的业务确定所述当前线路侧发送端口对应的客户侧端口的配置信息及交叉配置信息;将所述配置信息和所述交叉配置信息按照设定协议转化为开销信息;所述开销信息包括客户侧端口号、业务类型、光通路帧结构类型及可用时隙的索引;将所述开销信息插入到业务管理芯片的开销寄存器中。
本申请实施例提供一种波分接入设备的配置方法,用于波分接入设备的线路侧接收端口,包括:接收线路侧发送的业务信号及开销信息;所述开销信息包括业务信号的业务类型、客户侧端口号、光通路帧结构类型及可用时隙的索引;轮询每个线路侧接收端口,若轮询到的当前线路侧接收端口的配置信息及交叉配置信息与所述开销信息不匹配,则根据所述开销信息更新当前线路侧接收端口的配置信息及交叉配置信息。
本申请实施例提供一种波分接入设备的配置装置,设置于波分接入设备的客户侧端口,包括:业务信号接收模块,用于接收客户端发送的业务信号;告警识别模块,用于根据所述业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;业务类型确定模块,用于根据告警识别结果确定所述业务信号的业务类型;配置信息生成模块,用于根据所述业务类型生成所述当前客户侧端口对应的配置信息,并将所述配置信息配置于业务管理芯片。
本申请实施例提供一种波分接入设备的交叉配置装置,包括:光通路帧结构类型确定模块,用于根据业务信号的业务类型确定光通路帧结构类型;时隙数量确定模块,用于根据所述光通路帧结构类型确定所述业务信号所需的时隙数量;交叉配置创建模块,用于根据所述业务信号所需的时隙数量从时隙资源池中获取可用时隙,并根据所述可用时隙创建客户侧端口和线路侧端口的交叉 配置。
本申请实施例提供一种波分接入设备的配置装置,设置于波分接入设备的线路侧发送端口,包括:配置信息确定模块,轮询每个线路侧发送端口,若轮询到的当前线路侧发送端配置业务,则根据配置的业务确定所述当前线路侧发送端口对应的客户侧端口的配置信息及交叉配置信息;开销信息获取模块,用于将所述配置信息和所述交叉配置信息按照设定协议转化为开销信息;所述开销信息包括客户侧端口号、业务类型、光通路帧结构类型及可用时隙的索引;开销信息插入模块,用于将所述开销信息插入到业务管理芯片的开销寄存器中。
本申请实施例提供一种波分接入设备的配置装置,设置于波分接入设备的线路侧接收端口,包括:开销信息接收模块,用于接收线路侧发送的业务信号及开销信息;所述开销信息包括业务信号的业务类型、客户侧端口号、光通路帧结构类型及可用时隙的索引;信息更新模块,用于轮询每个线路侧接收端口,若轮询到的当前线路侧接收端口的配置信息及交叉配置信息与所述开销信息不匹配,则根据所述开销信息更新当前线路侧接收端口的配置信息及交叉配置信息。
本申请实施例提供一种波分接入设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述程序时实现如本申请实施例所述的配置方法。
本申请实施例提供了一种存储介质,所述存储介质存储有计算机程序,所述计算机程序被处理器执行时实现本申请实施例中的任意一种方法。
关于本申请的以上实施例和其他方面以及其实现方式,在附图说明、具体实施方式和权利要求中提供更多说明。
附图说明
图1为本申请实施例中的一种波分接入设备的配置方法的流程图;
图2为本申请实施例中的又一种波分接入设备的配置方法的流程图;
图3为本申请实施例中的一种波分接入设备的交叉配置方法的流程图;
图4为本申请实施例中的另一种波分接入设备的配置方法的流程图;
图5为本申请实施例中的一种波分接入设备的配置方法的流程图;
图6为本申请实施例中的一种波分接入设备的配置装置的结构示意图;
图7为本申请实施例中的一种波分接入设备的交叉配置装置的结构示意图;
图8为本申请实施例中的一种波分接入设备的配置装置的结构示意图;
图9为本申请实施例中的一种波分接入设备的配置装置的结构示意图;
图10为本申请实施例中的一种波分接入设备的结构示意图。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚明白,下文中将结合附图对本申请的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
图1是本申请实施例中的一种波分接入设备的配置方法的流程图。本实施例适用于波分接入设备的客户侧端口进行配置的情况。本实施例可以通过终端来执行,该终端可以是波分接入设备(Customer Premise Equipment,CPE)。如图1所示,该方法包括S110-S140。
S110,接收客户端发送的业务信号。
S120,根据业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别。
S130,根据告警识别结果确定业务信号的业务类型。
S140,根据业务类型生成当前客户侧端口对应的配置信息,并将配置信息配置于业务管理芯片。
其中,客户端可以是移动终端、PC机及网络电视等可以连接有线网或无线网的终端。
在一个实施例中,CPE设备包括多个客户侧端口,客户侧端口负责接收客户端发送的业务信号以及向客户端发送业务信号。CPE设备在接收到客户端发送的业务信号后,开始轮询每个客户侧端口,对当前客户侧端口进行信号丢失告警检测;若当前客户侧端口没有信号丢失告警,则对当前客户侧端口进行帧丢失告警检测;若当前客户侧端口没有帧丢失告警,则轮询当前客户侧端口支持的业务类型;对轮询到的业务类型进行帧丢失告警检测,获得告警识别结果。即对于轮询到的当前客户侧端口,首先检测当前客户侧端口是否有信号丢失告 警,如果没有,则继续检测当前客户侧端口是否具有帧丢失告警,如果没有,则获取当前客户侧端口支持的业务类型。并轮询当前客户侧端口支持的业务类型,检测轮询到的业务类型是否具有帧丢失告警,如果没有,则将轮询到的业务类型确定为所述业务信号的业务类型。
在一个实施例中,在检测当前客户侧端口是否具有信号丢失告警之后,还包括如下步骤:若当前客户侧端口具有信号丢失告警,则延时第一设定时长,返回执行对当前客户侧端口进行信号丢失告警检测的操作;若当前客户侧端口连续具有信号丢失告警的次数超过第一设定次数,则退出对当前客户侧端口的轮询。
其中,第一设定次数可以设置为3-5次。例如,设置为3次,若对当前客户侧端口连续检测3次都具有信号丢失告警,则退出对当前客户侧端口的轮询。
在一个实施例中,在检测当前客户侧端口是否具有帧丢失告警之后,还包括:若当前客户侧端口具有帧丢失告警,则延时第二设定时长,返回执行对当前客户侧端口进行信号丢失告警检测的操作;若当前客户侧端口连续具有帧丢失告警的次数超过第二设定次数,则退出对当前客户侧端口的轮询。
其中,第二设定次数可以设置为3-5次。例如,设置为3次,若对当前客户侧端口连续检测3次都具有帧丢失告警,则退出对当前客户侧端口的轮询。
在一个实施例中,在确定了业务信号的业务类型后,CPE设备根据业务类型生成当前客户侧端口对应的配置信息,并将配置信息配置于业务管理芯片中。其中,业务管理芯片可以是FPGA芯片或者Framer芯片。配置信息可以包括客户侧端口的端口号与业务类型的映射关系等。
在一个实施例中,在将配置信息配置于业务管理芯片之后,CPE设备将配置信息上报于网络管理系统,网络管理系统将配置信息显示于界面中。
在一个实施例中,图2是本申请实施例中的又一种波分接入设备的配置方法的流程图。作为对上述实施例的进一步解释,如图2所示,该方法包括如下步骤:CPE设备接收到客户端发送的业务信号后,轮询每个客户侧端口,检测当前客户侧端口是否具有信号丢失告警,如果有,则延时第一设定时长后重新轮询当前客户侧端口,如果没有,则检测当前客户侧端口是否具有帧丢失告警,如果有,则延时第二设定时长后重新轮询当前客户端,如果没有,则轮询当前 客户侧端口支持的业务类型,检测轮询到的业务类型是否具有帧丢失告警,如果有,则延时第三设定时长后重新轮询该业务类型,如果没有,则将该业务类型确定为业务信号的业务类型,并根据业务类型生成当前客户侧端口对应的配置信息,并将配置信息配置于业务管理芯片。
图3是本申请实施例中的一种波分接入设备的交叉配置方法的流程图。本实施例适用于波分接入设备的客户侧端口及线路侧端口间的交叉配置的情况。本实施例可以通过终端来执行,该终端可以是波分接入设备(Customer Premise Equipment,CPE)。如图3所示,该方法包括S210-S230。
S210,根据业务信号的业务类型确定光通路帧结构类型。
S220,根据光通路帧结构类型确定业务信号所需的时隙数量。
S230,根据所述业务信号所需的时隙数量从时隙资源池中获取可用时隙,并根据可用时隙创建客户侧端口和线路侧端口的交叉配置。
在一个实施例中,根据可用时隙创建客户侧端口和线路侧端口的交叉配置的过程可以是:获取可用时隙的索引;根据可用时隙的索引创建客户侧端口和线路侧端口的交叉配置。
其中,可用时隙的索引可以理解为可用时隙索引的线路侧端口的端口号。交叉配置信息可以包括:客户侧端口号、可用时隙编号及线路侧端口号。
在一个实施例中,CPE设备在识别出接收的业务信号的业务类型后,提取业务类型对应的光通路帧结构(ODUk)类型,并根据ODUk类型确定业务信号所需的时隙数量,然后在资源池中搜索当前的可用时隙,判断资源池中的可用时隙是否足够,若足够,则获取可用时隙的索引,最后根据可用时隙的索引创建客户侧端口和线路侧端口的交叉配置。若没有足够的可用时隙,则退出配置过程。
在一个实施例中,在根据可用时隙创建客户侧端口和线路侧端口的交叉配置之后,还包括:按照交叉配置对应的业务路径转发业务信号。
图4是本申请实施例中的另一种波分接入设备的配置方法的流程图。本实施例适用于对波分接入设备的线路侧发送端口进行配置的情况。本实施例可以通过终端来执行,该终端可以是波分接入设备(Customer Premise Equipment,CPE)。如图3所示,该方法包括S310-S330。
S310,轮询每个线路侧发送端口,若轮询到的当前线路侧发送端口配置业务,则根据配置的业务确定当前线路侧发送端口对应的客户侧端口的配置信息及交叉配置信息。
S320,将配置信息和交叉配置信息按照设定协议转化为开销信息。
S330,将开销信息插入到业务管理芯片的开销寄存器中。
其中,开销信息包括客户侧端口号、业务类型、光通路帧结构类型及可用时隙的索引。
在一个实施例中,CPE设备包括多个线路侧发送端口,线路侧发送端口负责将业务信号发送至线路中进行传输。CPE设备中可以设置线路侧发送端口自动配置开关,若自动配置开关打开,则线路侧发送端口会跟随客户侧端口的配置进行自动配置。
在一个实施例中,CPE设备轮询线路侧发送端口,如果轮询到的当前线路侧发送端口没有配置业务,则退出轮询当前线路侧发送端口,如果轮询到的当前线路侧发送端口配置了业务,则根据配置的业务确定对应的客户侧端口的配置信息及交叉配置信息。然后将配置信息和交叉配置信息按照设定协议转化为设定协议的开销信息,并将开销信息插入到FPGA或Framer芯片的开销寄存器中。
在一个实施例中,将开销信息插入到业务管理芯片的开销寄存器中之后,还包括如下步骤:将开销信息和业务信号进行映射封装,并发送至通信网络中。使得下游的CPR设备根据开销信息对配置信息及交叉配置信息进行更新。
其中,通信网络可以是OTN网络或同步数字体系(Synchronous Digital Hierarchy,SDH)网络。
图5是本申请实施例中的一种波分接入设备的配置方法的流程图。本实施例适用于对波分接入设备的线路侧接收端口进行配置的情况。本实施例可以通过终端来执行,该终端可以是波分接入设备(Customer Premise Equipment,CPE)。如图5所示,该方法包括S410-S420。
S410,接收线路侧发送的业务信号及开销信息。
S420,轮询每个线路侧接收端口,若轮询到的当前线路侧接收端口的配置信息及交叉配置信息是否与开销信息不匹配,则根据开销信息更新当前线路侧 接收端口的配置信息及交叉配置信息。
其中,开销信息包括由上游CPE设备发送类的业务信号的业务类型、客户侧端口号、光通路帧结构类型及可用时隙的索引。
在一个实施例中,CPE设备包括多个线路侧接收端口,线路侧发送端口负责接收线路侧传输来的业务信号。CPE设备中可以设置线路侧接收端口自动配置开关,若自动配置开关打开,则线路侧发送端口会根据接收的开销信息进行自动配置。
在一个实施例中,CPE设备接收到线路侧传输来的业务信号及开销信息后,轮询线路侧接收端口,并判断轮询到的当前线路侧接收端口的配置信息及交叉配置信息是否与开销信息匹配,若不匹配,则根据开销信息更新当前线路侧接收端口的配置信息及交叉配置信息。若匹配,则继续轮询下一个线路侧接收端口。
在一个实施例中,在根据开销信息更新当前线路侧接收端口的配置信息及交叉配置信息之后,还包括:按照更新后的交叉配置信息对应的业务路径转发业务信号。将业务信号按照业务路径转发至客户端。
图6是本申请实施例中的一种波分接入设备的配置装置的结构示意图,该装置设置于波分接入设备的客户侧端口,包括:业务信号接收模块510,告警识别模块520,业务类型确定模块530和配置信息生成模块540。
业务信号接收模块510,用于接收客户端发送的业务信号;
告警识别模块520,用于根据业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;
业务类型确定模块530,用于根据告警识别结果确定业务信号的业务类型;
配置信息生成模块540,用于根据业务类型生成当前客户侧端口对应的配置信息,并将配置信息配置于业务管理芯片。
在一个实施例中,告警识别模块520,还用于:
检测当前客户侧端口是否具有信号丢失告警;
若没有,则检测当前客户侧端口是否具有帧丢失告警;
若没有,轮询当前客户侧端口支持的业务类型;
检测轮询到的业务类型是否具有帧丢失告警,获得告警识别结果;
相应的,根据告警识别结果确定业务信号的业务类型,包括:
若轮询到的业务类型没有帧丢失告警,则将轮询到的业务类型确定为业务信号的业务类型。
在一个实施例中,在检测当前客户侧端口是否具有信号丢失告警之后,还包括:
若当前客户侧端口具有信号丢失告警,则延时第一设定时长,返回执行检测当前客户侧端口是否具有信号丢失告警的操作;
若当前客户侧端口连续具有信号丢失告警的次数超过第一设定次数,则退出对当前客户侧端口的轮询。
在一个实施例中,在检测当前客户侧端口是否具有帧丢失告警之后,还包括:
若当前客户侧端口具有帧丢失告警,则延时第二设定时长,返回执行检测当前客户侧端口是否具有信号丢失告警的操作;
若当前客户侧端口连续具有帧丢失告警的次数超过第二设定次数,则退出对当前客户侧端口的轮询。
图7是本申请实施例中的一种波分接入设备的交叉配置装置的结构示意图,如图7所示,该装置包括:光通路帧结构类型确定模块610,时隙数量确定模块620交叉配置创建模块630。
光通路帧结构类型确定模块610,用于根据业务信号的业务类型确定光通路帧结构类型;
时隙数量确定模块620,用于根据光通路帧结构类型确定业务信号所需的时隙数量;
交叉配置创建模块630,用于根据所述业务信号所需的时隙数量从时隙资源池中获取可用时隙,并根据所述可用时隙创建客户侧端口和线路侧端口的交叉配置。
在一个实施例中,交叉配置创建模块630,还用于:
获取可用时隙的索引;
根据可用时隙的索引创建客户侧端口和线路侧端口的交叉配置。
在一个实施例中,在根据可用时隙创建客户侧端口和线路侧端口的交叉配 置之后,还包括:按照交叉配置对应的业务路径转发业务信号。
图8是本申请实施例中的一种波分接入设备的配置装置的结构示意图,设置于波分接入设备的线路侧发送端口,包括:配置信息确定模块710,开销信息获取模块720和开销信息插入模块730。
配置信息确定模块710,用于轮询每个线路侧发送端口,若轮询到的当前线路侧发送端配置业务,则根据配置的业务确定所述当前线路侧发送端口对应的客户侧端口的配置信息及交叉配置信息;
开销信息获取模块720,用于将配置信息和交叉配置信息按照设定协议转化为开销信息;开销信息包括客户侧端口号、业务类型、光通路帧结构类型及可用时隙的索引;
开销信息插入模块730,用于将开销信息插入到业务管理芯片的开销寄存器中。
在一个实施例中,在将开销信息插入到业务管理芯片的开销寄存器中之后,还包括:将开销信息和业务信号进行映射封装,并发送至通信网络中。
图9是本申请实施例中的一种波分接入设备的配置装置的结构示意图,设置于波分接入设备的线路侧接收端口,包括:开销信息接收模块810和信息更新模块820。
开销信息接收模块810,用于接收线路侧发送的业务信号及开销信息;开销信息包括业务信号的业务类型、客户侧端口号、光通路帧结构类型及可用时隙的索引;
信息更新模块820,用于轮询每个线路侧接收端口,若轮询到的当前线路侧接收端口的配置信息及交叉配置信息与所述开销信息不匹配,则根据所述开销信息更新当前线路侧接收端口的配置信息及交叉配置信息。
在一个实施例中,在根据开销信息更新当前线路侧接收端口的配置信息及交叉配置信息之后,还包括:按照更新后的交叉配置信息对应的业务路径转发业务信号。
图10为本申请实施例中一种波分接入设备的结构示意图。如图10所示,本申请提供的设备,包括:处理器910以及存储器920。该设备中处理器910的数量可以是一个或者多个,图10中以一个处理器910为例。该设备中存储器 920的数量可以是一个或者多个,图10中以一个存储器920为例。该设备的处理器910以及存储器920可以通过总线或者其他方式连接,图10中以通过总线连接为例。实施例中,该设备为发送端。其中,发送端可以为调度节点、基站或UE中的其中一个。
存储器920作为一种计算机可读存储介质,可设置为存储软件程序、计算机可执行程序以及模块,如本申请任意实施例的设备对应的程序指令/模块(例如,数据传输装置中的编码模块和第一发送模块)。存储器920可包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序;存储数据区可存储根据设备的使用所创建的数据等。此外,存储器920可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。在一些实例中,存储器920可进一步包括相对于处理器910远程设置的存储器,这些远程存储器可以通过网络连接至设备。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。
上述提供的设备可设置为执行上述任意实施例提供的波分接入设备的配置方法,具备相应的功能和效果。
对应存储器920中存储的程序可以是本申请实施例所提供应用于反馈信道的映射方法对应的程序指令/模块,处理器910通过运行存储在存储器920中的软件程序、指令以及模块,从而执行计算机设备的一种或多种功能应用以及数据处理,即实现上述方法实施例中应用于波分接入设备的配置方法。可以理解的是,上述设备为接收端时,可执行本申请任意实施例所提供的应用于波分接入设备的配置方法,且具备相应的功能和效果。其中,设备可以为基站或UE中的其中一个。
本申请实施例还提供一种包含计算机可执行指令的存储介质,计算机可执行指令在由计算机处理器执行时用于执行一种波分接入设备的配置方法,该方法包括:接收客户端发送的业务信号;根据所述业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;根据告警识别结果确定所述业务信号的业务类型;根据所述业务类型生成所述当前客户侧端口对应的配置信息,并将所述配置信息配置于业务管理芯片。
本领域内的技术人员应明白,术语用户设备涵盖任何适合类型的无线用户设备,例如移动电话、便携数据处理装置、便携网络浏览器或车载移动台。
一般来说,本申请的多种实施例可以在硬件或专用电路、软件、逻辑或其任何组合中实现。例如,一些方面可以被实现在硬件中,而其它方面可以被实现在可以被控制器、微处理器或其它计算装置执行的固件或软件中,尽管本申请不限于此。
本申请的实施例可以通过移动装置的数据处理器执行计算机程序指令来实现,例如在处理器实体中,或者通过硬件,或者通过软件和硬件的组合。计算机程序指令可以是汇编指令、指令集架构(Instruction Set Architecture,ISA)指令、机器指令、机器相关指令、微代码、固件指令、状态设置数据、或者以一种或多种编程语言的任意组合编写的源代码或目标代码。
本申请附图中的任何逻辑流程的框图可以表示程序步骤,或者可以表示相互连接的逻辑电路、模块和功能,或者可以表示程序步骤与逻辑电路、模块和功能的组合。计算机程序可以存储在存储器上。存储器可以具有任何适合于本地技术环境的类型并且可以使用任何适合的数据存储技术实现,例如但不限于只读存储器(Read-Only Memory,ROM)、随机访问存储器(Random Access Memory,RAM)、光存储器装置和系统(数码多功能光碟(Digital Video Disc,DVD)或光盘(Compact Disk,CD))等。计算机可读介质可以包括非瞬时性存储介质。数据处理器可以是任何适合于本地技术环境的类型,例如但不限于通用计算机、专用计算机、微处理器、数字信号处理器(Digital Signal Processing,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程逻辑器件(Field-Programmable Gate Array,FGPA)以及基于多核处理器架构的处理器。
通过示范性和非限制性的示例,上文已提供了对本申请的示范实施例的详细描述。但结合附图和权利要求来考虑,对以上实施例的多种修改和调整对本领域技术人员来说是显而易见的,但不偏离本发明的范围。因此,本发明的恰当范围将根据权利要求确定。

Claims (17)

  1. 一种波分接入设备的配置方法,用于波分接入设备的客户侧端口,包括:
    接收客户端发送的业务信号;
    根据所述业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;
    根据告警识别结果确定所述业务信号的业务类型;
    根据所述业务类型生成所述当前客户侧端口对应的配置信息,并将所述配置信息配置于业务管理芯片。
  2. 根据权利要求1所述的方法,其中,对轮询到的当前客户侧端口进行告警识别,包括:
    对当前客户侧端口进行信号丢失告警检测;
    若当前客户侧端口没有信号丢失告警,则对当前客户侧端口进行帧丢失告警检测;
    若当前客户侧端口没有帧丢失告警,则轮询所述当前客户侧端口支持的业务类型;
    对轮询到的业务类型进行帧丢失告警检测,获得告警识别结果;
    相应的,根据告警识别结果确定所述业务信号的业务类型,包括:
    若轮询到的业务类型没有帧丢失告警,则将轮询到的业务类型确定为所述业务信号的业务类型。
  3. 根据权利要求2所述的方法,其中,对当前客户侧端口进行信号丢失告警检测之后,还包括:
    若当前客户侧端口具有信号丢失告警,则延时第一设定时长,返回执行对当前客户侧端口进行信号丢失告警检测的操作;
    若当前客户侧端口连续具有信号丢失告警的次数超过第一设定次数,则退出对所述当前客户侧端口的轮询。
  4. 根据权利要求2所述的方法,其中,在对当前客户侧端口进行帧丢失告警检测之后,还包括:
    若当前客户侧端口具有帧丢失告警,则延时第二设定时长,返回执行对当 前客户侧端口进行信号丢失告警检测的操作;
    若当前客户侧端口连续具有帧丢失告警的次数超过第二设定次数,则退出对所述当前客户侧端口的轮询。
  5. 一种波分接入设备的交叉配置方法,包括:
    根据业务信号的业务类型确定光通路帧结构类型;
    根据所述光通路帧结构类型确定所述业务信号所需的时隙数量;
    根据所述业务信号所需的时隙数量从时隙资源池中获取可用时隙,并根据所述可用时隙创建客户侧端口和线路侧端口的交叉配置。
  6. 根据权利要求5所述的方法,其中,根据所述可用时隙创建客户侧端口和线路侧端口的交叉配置,包括:
    获取所述可用时隙的索引;
    根据所述可用时隙的索引创建客户侧端口和线路侧端口的交叉配置。
  7. 根据权利要求5所述的方法,其中,在根据所述可用时隙创建客户侧端口和线路侧端口的交叉配置之后,还包括:
    按照所述交叉配置对应的业务路径转发所述业务信号。
  8. 一种波分接入设备的配置方法,用于波分接入设备的线路侧发送端口,包括:
    轮询每个线路侧发送端口,若轮询到的当前线路侧发送端配置业务,则根据配置的业务确定所述当前线路侧发送端口对应的客户侧端口的配置信息及交叉配置信息;
    将所述配置信息和所述交叉配置信息按照设定协议转化为开销信息;所述开销信息包括客户侧端口号、业务类型、光通路帧结构类型及可用时隙的索引;
    将所述开销信息插入到业务管理芯片的开销寄存器中。
  9. 根据权利要求8所述的方法,其中,在将所述开销信息插入到业务管理芯片的开销寄存器中之后,还包括:
    将所述开销信息和业务信号进行映射封装,并发送至通信网络中。
  10. 一种波分接入设备的配置方法,用于波分接入设备的线路侧接收端口,包括:
    接收线路侧发送的业务信号及开销信息;所述开销信息包括业务信号的业 务类型、客户侧端口号、光通路帧结构类型及可用时隙的索引;
    轮询每个线路侧接收端口,若轮询到的当前线路侧接收端口的配置信息及交叉配置信息与所述开销信息不匹配,则根据所述开销信息更新当前线路侧接收端口的配置信息及交叉配置信息。
  11. 根据权利要求10所述的方法,其中,在根据所述开销信息更新当前线路侧接收端口的配置信息及交叉配置信息之后,还包括:
    按照更新后的交叉配置信息对应的业务路径转发所述业务信号。
  12. 一种波分接入设备的配置装置,设置于波分接入设备的客户侧端口,包括:
    业务信号接收模块,用于接收客户端发送的业务信号;
    告警识别模块,用于根据所述业务信号轮询每个客户侧端口,并对轮询到的当前客户侧端口进行告警识别;
    业务类型确定模块,用于根据告警识别结果确定所述业务信号的业务类型;
    配置信息生成模块,用于根据所述业务类型生成所述当前客户侧端口对应的配置信息,并将所述配置信息配置于业务管理芯片。
  13. 一种波分接入设备的交叉配置装置,包括:
    光通路帧结构类型确定模块,用于根据业务信号的业务类型确定光通路帧结构类型;
    时隙数量确定模块,用于根据所述光通路帧结构类型确定所述业务信号所需的时隙数量;
    交叉配置创建模块,用于根据所述业务信号所需的时隙数量从时隙资源池中获取可用时隙,并根据所述可用时隙创建客户侧端口和线路侧端口的交叉配置。
  14. 一种波分接入设备的配置装置,设置于波分接入设备的线路侧发送端口,包括:
    配置信息确定模块,用于轮询每个线路侧发送端口,若轮询到的当前线路侧发送端配置业务,则根据配置的业务确定所述当前线路侧发送端口对应的客户侧端口的配置信息及交叉配置信息;
    开销信息获取模块,用于将所述配置信息和所述交叉配置信息按照设定协 议转化为开销信息;所述开销信息包括客户侧端口号、业务类型、光通路帧结构类型及可用时隙的索引;
    开销信息插入模块,用于将所述开销信息插入到业务管理芯片的开销寄存器中。
  15. 一种波分接入设备的配置装置,设置于波分接入设备的线路侧接收端口,包括:
    开销信息接收模块,用于接收线路侧发送的业务信号及开销信息;所述开销信息包括业务信号的业务类型、客户侧端口号、光通路帧结构类型及可用时隙的索引;
    信息更新模块,用于轮询每个线路侧接收端口,若轮询到的当前线路侧接收端口的配置信息及交叉配置信息与所述开销信息不匹配,则根据所述开销信息更新当前线路侧接收端口的配置信息及交叉配置信息。
  16. 一种波分接入设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,其中,所述处理器执行所述程序时实现如权利要求1-11中任一所述的配置方法。
  17. 一种存储介质,其中,所述存储介质存储有计算机程序,所述计算机程序被处理器执行时实现权利要求1-11任一项所述的配置方法。
PCT/CN2020/135915 2019-12-12 2020-12-11 波分接入设备的配置方法、交叉配置方法、装置及设备 WO2021115451A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201911288690.4 2019-12-12
CN201911288690.4A CN112995801A (zh) 2019-12-12 2019-12-12 波分接入设备的配置方法、交叉配置方法、装置及设备

Publications (1)

Publication Number Publication Date
WO2021115451A1 true WO2021115451A1 (zh) 2021-06-17

Family

ID=76329118

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/135915 WO2021115451A1 (zh) 2019-12-12 2020-12-11 波分接入设备的配置方法、交叉配置方法、装置及设备

Country Status (2)

Country Link
CN (1) CN112995801A (zh)
WO (1) WO2021115451A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115250229A (zh) * 2022-07-22 2022-10-28 中国电信股份有限公司 连接控制方法、连接控制装置、存储介质与电子设备
CN115484519A (zh) * 2022-09-14 2022-12-16 广东九博科技股份有限公司 一种分组增强型otn设备

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103825751A (zh) * 2012-11-16 2014-05-28 华为技术有限公司 开通业务的方法、单板、网管设备和系统
WO2014139178A1 (zh) * 2013-03-15 2014-09-18 华为技术有限公司 一种光通道数据单元业务传送装置和方法
CN105099595A (zh) * 2015-08-04 2015-11-25 瑞斯康达科技发展股份有限公司 一种光传送网otn设备的业务映射方法及装置
CN106341246A (zh) * 2015-07-07 2017-01-18 西安中兴新软件有限责任公司 一种自动识别lan端口和wan端口的方法和装置
CN109327360A (zh) * 2017-08-01 2019-02-12 中兴通讯股份有限公司 一种端口复用的方法及装置
WO2019056912A1 (zh) * 2017-09-21 2019-03-28 烽火通信科技股份有限公司 一种otn支路板卡的时钟处理装置及方法
CN111698708A (zh) * 2019-03-16 2020-09-22 华为技术有限公司 一种在传送系统中业务类型适配的方法和装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103825751A (zh) * 2012-11-16 2014-05-28 华为技术有限公司 开通业务的方法、单板、网管设备和系统
WO2014139178A1 (zh) * 2013-03-15 2014-09-18 华为技术有限公司 一种光通道数据单元业务传送装置和方法
CN106341246A (zh) * 2015-07-07 2017-01-18 西安中兴新软件有限责任公司 一种自动识别lan端口和wan端口的方法和装置
CN105099595A (zh) * 2015-08-04 2015-11-25 瑞斯康达科技发展股份有限公司 一种光传送网otn设备的业务映射方法及装置
CN109327360A (zh) * 2017-08-01 2019-02-12 中兴通讯股份有限公司 一种端口复用的方法及装置
WO2019056912A1 (zh) * 2017-09-21 2019-03-28 烽火通信科技股份有限公司 一种otn支路板卡的时钟处理装置及方法
CN111698708A (zh) * 2019-03-16 2020-09-22 华为技术有限公司 一种在传送系统中业务类型适配的方法和装置

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115250229A (zh) * 2022-07-22 2022-10-28 中国电信股份有限公司 连接控制方法、连接控制装置、存储介质与电子设备
CN115484519A (zh) * 2022-09-14 2022-12-16 广东九博科技股份有限公司 一种分组增强型otn设备

Also Published As

Publication number Publication date
CN112995801A (zh) 2021-06-18

Similar Documents

Publication Publication Date Title
WO2021115451A1 (zh) 波分接入设备的配置方法、交叉配置方法、装置及设备
US11177976B2 (en) Method and device for automatically implementing IOAM encapsulation and storage medium
CN102100039B (zh) 在分组交换网络中建立伪线
CN107493185B (zh) 一种接口扩展设备的配置信息通告方法及其装置
US9641916B2 (en) Optical channel data unit service transmission apparatus and method
US10033521B2 (en) Method for training time slot synchronization of nodes in optical burst transport network, node device and network
US10063335B2 (en) Method, apparatus and system for remotely configuring PTP service of optical network unit
US20190014035A1 (en) Information transmission method and device
WO2019233404A1 (zh) 报文传输方法、装置、网络侧设备及存储介质
WO2017198003A1 (zh) 一种业务处理方法及系统
US11381335B2 (en) Method and apparatus for spectrum defragmentation, device, and system
US20200059310A1 (en) Precision time synchronization over standardized networking protocols
WO2017177751A1 (zh) 时间同步方法和装置
CN113938387A (zh) 一种通信方法、装置及可读存储介质
US10798472B2 (en) Data transmission method, data receiving method, optical line terminal and optical network unit
CN101540772A (zh) 一种深度报文检测设备及其通信方法
WO2016101600A1 (zh) 线卡的确定、确定处理方法及装置、线卡的确定系统
CN106941634B (zh) 一种gpon系统中olt环回检测的方法及系统
US20200328912A1 (en) Method and device for automatically discovering cross-node service topology on transoceanic multiple section shared protection ring
US10659251B2 (en) Ring protection network division
CN108616453B (zh) 一种用于网络设备的方法、装置和系统
TWI653863B (zh) 連接控制電路
US10491421B2 (en) Ring protection network module
WO2016184225A1 (zh) 一种时间同步消息发送方法和装置
WO2012083756A1 (zh) Tdm电路仿真业务远端告警信息的传递方法及系统

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20897736

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20897736

Country of ref document: EP

Kind code of ref document: A1