WO2016169406A1 - 一种实现注册的方法和装置 - Google Patents

一种实现注册的方法和装置 Download PDF

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Publication number
WO2016169406A1
WO2016169406A1 PCT/CN2016/078137 CN2016078137W WO2016169406A1 WO 2016169406 A1 WO2016169406 A1 WO 2016169406A1 CN 2016078137 W CN2016078137 W CN 2016078137W WO 2016169406 A1 WO2016169406 A1 WO 2016169406A1
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WIPO (PCT)
Prior art keywords
wavelength
registration
olt
current
downlink frame
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PCT/CN2016/078137
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English (en)
French (fr)
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李明生
耿丹
马壮
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中兴通讯股份有限公司
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Priority to US15/568,353 priority Critical patent/US20180159651A1/en
Priority to EP16782554.6A priority patent/EP3280093A4/en
Publication of WO2016169406A1 publication Critical patent/WO2016169406A1/zh

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    • 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
    • H04J14/0241Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths
    • H04J14/0242Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths in WDM-PON
    • H04J14/0245Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths in WDM-PON for downstream transmission, e.g. optical line terminal [OLT] to ONU
    • H04J14/0247Sharing one wavelength for at least a group of ONUs
    • 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
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/27Arrangements for networking
    • 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
    • H04J14/0241Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths
    • H04J14/0242Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths in WDM-PON
    • H04J14/0249Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths in WDM-PON for upstream transmission, e.g. ONU-to-OLT or ONU-to-ONU
    • H04J14/0252Sharing one wavelength for at least a group of ONUs, e.g. for transmissions from-ONU-to-OLT or from-ONU-to-ONU
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04JMULTIPLEX COMMUNICATION
    • H04J14/00Optical multiplex systems
    • H04J14/08Time-division multiplex systems
    • 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
    • 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
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q2011/0064Arbitration, scheduling or medium access control aspects

Definitions

  • the present application relates to, but is not limited to, a Passive Optical Network (PON).
  • PON Passive Optical Network
  • FIG. 1 shows the topology of a PON system.
  • the PON system is composed of an optical line terminal (OLT) on the central office side, an optical network unit (ONU), and an optical distribution network (ODN) on the user side.
  • ONT optical line terminal
  • ONU optical network unit
  • ODN optical distribution network
  • a point-to-multipoint network structure is usually used.
  • ODN consists of passive optical components such as single-mode fiber, splitter, and optical connector, providing an optical transmission medium for the physical connection between the OLT and the ONU.
  • FIG. 2 shows the topology of the TWDM PON system.
  • the TWDM PON system is composed of multiple OLTs, ODNs on the central office side, and multiple ONUs on the user side.
  • Each OLT and a group of ONUs work on one TWDM channel.
  • Each TWDM channel includes one downstream wavelength channel and one or more upstream wavelength channels.
  • An OLT on each TWDM channel manages a group of ONUs.
  • a group of ONUs use the same upstream wavelength to transmit uplink data, and receive downlink data with the same downlink wavelength.
  • Different ONUs in the same group of ONUs transmit uplink data in a time division multiplexing manner.
  • the downlink wavelengths corresponding to different TWDM channels are different, and the uplink wavelengths corresponding to each group of ONUs managed by different OLTs are also different.
  • Each ONU sends uplink data in a specific uplink time slot according to the command of the OLT.
  • each operator uses some TWDM channels in the TWDM PON system, and each carrier uses it in different ODNs.
  • the TWDM channels can be the same or different. This is called an Open Access network.
  • This Open Access network When there are multiple TWDM channels in the ODN of a cell, and there are multiple operators using different TWDM channels, when the ONU is newly online, the ONU needs to register to the TWDM channel managed by the correct carrier to perform services. transmission.
  • a method for implementing registration of the related art generally includes: storing a sequence number in an ONU in advance; the ONU tunes its own receiving wavelength to a downlink wavelength corresponding to any one of the TWDMs, and when receiving a downlink frame from the OLT that includes bandwidth allocation information, Searching for the uplink wavelength corresponding to the receiving wavelength of the uplink wavelength and the downlink wavelength of the received OLT, and transmitting the sequence number saved by itself to the OLT by using the found uplink wavelength; the OLT receives the sequence The number is verified. When the verification is successful, the message that the registration is successful is sent to the ONU; when the verification fails, the process ends.
  • the registration fails due to the fact that the ONU and the OLT do not belong to the same carrier, and the ONUs and the downlink frames that contain the bandwidth allocation information do not necessarily belong to the same carrier during the registration process. If the ONU does not receive the registration success message of the OLT within the preset time, the ONU will continue to perform the step of transmitting the serial number saved by the searched uplink wavelength to the OLT again in the same TWDM channel. Attempting to register, when the ONU is not successfully registered multiple times, it will tune its own receiving wavelength to the corresponding downstream wavelength of any other TWDM channel. Therefore, the success rate of ONU registration is lower.
  • This paper proposes a method and device for implementing registration, which can improve the success rate of registration.
  • a method for implementing registration includes: pre-configuring carrier information in an ONU of an optical network unit; and further comprising:
  • the ONU tunes its own receiving wavelength to the downlink wavelength corresponding to any one of the time division-wavelength division multiplexing TWDM channels;
  • the ONU receives the downlink frame containing the operator information from the optical line terminal OLT, and determines The carrier information in the received downlink frame is the same as the pre-configured carrier information, and the upstream wavelength corresponding to the current receiving wavelength is searched for in the correspondence between the received uplink wavelength and the downlink wavelength from the OLT, and the own The upstream wavelength is tuned to the found upstream wavelength for registration.
  • the method further includes: when the uplink wavelength corresponding to the current receiving wavelength is not found in the corresponding relationship, searching for the uplink wavelength corresponding to the current receiving wavelength in the re-received correspondence.
  • the ONU tuned its own upstream wavelength to the found upstream wavelength for registration, including:
  • the ONU receives a downlink frame from the OLT that includes bandwidth allocation information for transmitting a sequence number;
  • the ONU sends the sequence number saved by itself to the OLT by using the found upstream wavelength
  • the ONU receives a message that the registration from the OLT is successful.
  • the method further includes:
  • the determining that the current TWDM channel is available for registration comprises:
  • the method further includes: when it is determined that the current TWDM channel is not available for registration, or does not receive a downlink from the OLT that includes bandwidth allocation information for sending a sequence number within a preset time.
  • the self-receiving wavelength is tuned to a corresponding one of the other TWDM channels.
  • a device for implementing registration comprising:
  • Configure the module set to: pre-configure carrier information
  • the tuning module is configured to: tune its own receiving wavelength to a downlink wavelength corresponding to any one of the time division-wavelength division multiplexing TWDM channels;
  • the receiving module is configured to: receive a downlink frame from the optical line terminal OLT that includes the operator information;
  • the locating module is configured to: determine that the carrier information in the received downlink frame is the same as the pre-configured carrier information, and search for the current receiving wavelength corresponding to the received correspondence between the uplink wavelength and the downlink wavelength from the OLT.
  • Upstream wavelength corresponding to the received correspondence between the uplink wavelength and the downlink wavelength from the OLT.
  • the registration module is set to: tune its own upstream wavelength to the found upstream wavelength for registration.
  • the searching module is further configured to:
  • the uplink wavelength corresponding to the current receiving wavelength is not found in the corresponding relationship, and the uplink wavelength corresponding to the current receiving wavelength is searched for in the re-received correspondence.
  • the registration module is set to:
  • the lookup module is configured to:
  • the tuning module is further configured to:
  • the searching module determines that the current TWDM channel is not available for registration, or does not receive a downlink frame from the OLT that includes bandwidth allocation information within a preset time, the receiving wavelength of the self is received. Tuning to the corresponding downstream wavelength of any of the other TWDM channels.
  • the lookup module is configured to:
  • a computer readable storage medium storing computer executable instructions for performing the method of any of the above.
  • the embodiment of the present invention includes: the ONU tunes its own receiving wavelength to the downlink wavelength corresponding to any one TWDM channel; the ONU receives the downlink frame from the optical line terminal OLT that includes the operator information, and determines the receiving.
  • the carrier information in the downlink frame is the same as the pre-configured carrier information.
  • the upstream wavelength corresponding to the current receiving wavelength is searched for, and the uplink wavelength is used. Tune to the found upstream wavelength for registration.
  • the registration is performed without multiple attempts to register, thereby improving the success rate of the registration. And avoiding the attempt to register on the wrong TWDM channel, reducing the probability of collision of different ONUs registered on the same TWDM.
  • the ONU determines that the current TWDM channel is not available for registration, or does not receive a downlink frame from the OLT that includes bandwidth allocation information within a preset time, it tunes its own receiving wavelength to other TWDM channels. Any one of the corresponding downstream wavelengths is registered without requiring multiple attempts to register on the same TWDM channel, thereby increasing the success rate of registration and shortening the registration time.
  • FIG. 1 is a topological structural diagram of a related art PON system
  • FIG. 2 is a topological structural diagram of a related art TWDM PON system
  • FIG. 3 is a flowchart of a method for implementing registration according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of an apparatus for implementing registration according to an embodiment of the present invention.
  • an embodiment of the present invention provides a method for implementing registration, including: pre-configuring carrier information in an ONU.
  • the carrier information can be stored in the ONU in advance.
  • the carrier information may be any information indicating an operator, for example, an operator name, an operator identifier, and the like.
  • Step 300 The ONU tunes its own receiving wavelength to a downlink wavelength corresponding to any one of the TWDM channels.
  • Step 301 The ONU receives the downlink frame from the OLT that includes the operator information, and determines that the carrier information in the received downlink frame is the same as the pre-configured carrier information, and receives the uplink wavelength and downlink from the OLT. In the correspondence between the wavelengths, the upstream wavelength corresponding to the current receiving wavelength is searched, and the upstream wavelength of the current wavelength is tuned to the found upstream wavelength for registration.
  • the ONU when the ONU does not find the uplink wavelength corresponding to the current receiving wavelength in the corresponding relationship, it searches for the uplink wavelength corresponding to the current receiving wavelength in the re-received correspondence.
  • the OLT periodically broadcasts the corresponding relationship to the ONU, and the corresponding relationship includes the correspondence between one or more TWDM channels.
  • the ONU can monitor the correspondence sent by the OLT after determining that the carrier information in the received downlink frame is the same as the pre-configured carrier information.
  • registering its own upstream wavelength to the found upstream wavelength for registration includes:
  • Receiving a downlink frame from the OLT that includes bandwidth allocation information for transmitting a sequence number transmitting the sequence number saved by itself to the OLT by using the found uplink wavelength, and receiving a message of successful registration from the OLT.
  • the method further includes:
  • the determining that the current TWDM channel is available for registration includes: determining, by the received downlink frame that includes the operator information, whether the current TWDM channel is available for registration. To indicate that the current TWDM channel can be used for registration.
  • the own receiving wavelength is tuned to other TWDMs.
  • the corresponding downstream wavelength of any one of the channels and continue to perform the next steps.
  • the embodiment of the invention further provides a computer readable storage medium storing computer executable instructions for performing the above method for implementing registration.
  • TWDM PON system there are multiple TWDM channels. Each TWDM channel uses one downlink wavelength and one or more upstream wavelengths.
  • multiple operators can share the ODN network of a TWDM PON system.
  • One operator can use one or more TWDM channels.
  • the OLT uses the downlink wavelength to transmit downlink frames, it carries the carrier information to which the OLT belongs.
  • the ONU stores the carrier information to which it belongs.
  • the receiving wavelength of the ONU is tuned to the downlink wavelength corresponding to any one of the TWDM channels.
  • the downlink frame containing the operator information from the OLT it is determined that the receiving frame is received.
  • the carrier information in the downlink frame is the same as the pre-stored carrier information, and it is determined that the information indicating whether the current TWDM channel is available for registration in the received downlink frame indicates that the current TWDM channel can be used for registration, and is received.
  • the upstream wavelength corresponding to the current receiving wavelength is searched, and the uplink wavelength of the uplink is tuned to the found upstream wavelength for registration.
  • the receiving wavelength of itself is tuned to any one of the other TWDM channels. Downstream wavelength.
  • the receiving wavelength of the ONU is tuned to the downlink wavelength corresponding to any one of the TWDM channels.
  • the downlink frame containing the operator information from the OLT it is determined that the receiving frame is received.
  • the carrier information in the downlink frame is the same as the pre-stored carrier information, in the correspondence between the received uplink wavelength and the downlink wavelength from the OLT Find the upstream wavelength corresponding to the current receiving wavelength, and enable a timer. If the downlink frame containing the bandwidth allocation information for sending the sequence number is received from the OLT before the timer expires, the used upstream wavelength is used.
  • the saved serial number is sent to the OLT; a message is received that the registration is successful from the OLT.
  • the received wavelength of the OLT is tuned to the corresponding downlink wavelength of any one of the other TWDM channels.
  • an embodiment of the present invention further provides an apparatus for implementing registration, including:
  • the configuration module 41 is configured to: pre-configure carrier information
  • the tuning module 42 is configured to: tune its own receiving wavelength to a downlink wavelength corresponding to any one of the TWDM channels;
  • the receiving module 43 is configured to: receive a downlink frame from the optical line terminal OLT that includes the operator information;
  • the locating module 44 is configured to: determine that the carrier information in the received downlink frame is the same as the pre-configured carrier information, and search for the current receiving wavelength in the correspondence between the received uplink wavelength and the downlink wavelength from the OLT. Corresponding upstream wavelength;
  • the registration module 45 is configured to: tune its own upstream wavelength to the found upstream wavelength for registration.
  • the searching module 44 is further configured to:
  • the uplink wavelength corresponding to the current receiving wavelength is not found in the corresponding relationship, and the uplink wavelength corresponding to the current receiving wavelength is searched for in the re-received correspondence.
  • the registration module 45 is configured to:
  • the searching module 44 is configured to:
  • the carrier information in the received downlink frame is the same as the pre-configured carrier information, and it is determined that the current TWDM channel can be used for registration, and the uplink wavelength corresponding to the current receiving wavelength is searched for in the corresponding relationship.
  • the searching module 44 is configured to:
  • the carrier information in the received downlink frame is the same as the pre-configured carrier information, and the information indicating whether the current TWDM channel is available for registration in the received downlink frame containing the operator information is the current TWDM.
  • the channel can be used for registration, and finds the upstream wavelength corresponding to its own receiving wavelength in the corresponding relationship.
  • the tuning module 42 is further configured to:
  • the search module 44 determines that the current TWDM channel is not available for registration, or does not receive a downlink frame from the OLT that includes bandwidth allocation information within a preset time, it tunes its own receiving wavelength to other TWDM channels. Any one of the corresponding downstream wavelengths.
  • all or part of the steps of the above embodiments may also be implemented by using an integrated circuit. These steps may be separately fabricated into individual integrated circuit modules, or multiple modules or steps may be fabricated into a single integrated circuit module. achieve.
  • the devices/function modules/functional units in the above embodiments may be implemented by a general-purpose computing device, which may be centralized on a single computing device or distributed over a network of multiple computing devices.
  • the device/function module/functional unit in the above embodiment When the device/function module/functional unit in the above embodiment is implemented in the form of a software function module and sold or used as a stand-alone product, it can be stored in a computer readable storage medium.
  • the above mentioned computer readable storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
  • the registration is performed without multiple attempts to register, thereby improving the success rate of the registration, and Avoiding the attempt to register on the wrong TWDM channel reduces the probability of collisions between different ONUs registered on the same TWDM.
  • the ONU determines that the current TWDM channel is not available for registration, or does not receive a downlink frame containing bandwidth allocation information from the OLT within a preset time, it tunes its own receiving wavelength to any of the other TWDM channels. The corresponding downstream wavelength is registered without requiring multiple attempts to register on the same TWDM channel, thereby increasing the success rate of registration and shortening the registration time.

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Abstract

本文公布一种实现注册的方法和装置,所述方法包括:光网络单元ONU将自身的接收波长调谐到对应任意一个时分-波分复用TWDM通道对应的下行波长;ONU接收到来自光线路终端OLT的包含有运营商信息的下行帧,判断出接收到的下行帧中的运营商信息与ONU自身预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长,将自身的上行波长调谐到查找到的上行波长进行注册。

Description

一种实现注册的方法和装置 技术领域
本申请涉及但不限于无源光网络(PON,Passive Optical Network)。
背景技术
随着网络技术的发展,可以利用网络传输大量的语音、数据、视频等业务,因此对带宽的要求不断提高,PON就是在这种需求下产生的。
图1为PON系统的拓扑结构图。如图1所示,PON系统由局侧的光线路终端(OLT,Optical Line Terminal)、用户侧的多个光网络单元(ONU,Optical Network Unit)和光分配网络(ODN,Optical Distribution Network)组成,通常采用点到多点的网络结构。ODN由单模光纤、分光器、光连接器等无源光器件组成,为OLT和ONU之间的物理连接提供光传输媒介。
随着带宽需求的进一步增加,提出了时分-波分复用(TWDM,Time-Wavelength Division Multiplexing)PON系统。图2为TWDM PON系统的拓扑结构图。如图2所示,TWDM PON系统由局侧的多个OLT、ODN和用户侧的多个ONU组成。TWDM PON系统中有多个TWDM通道,每个OLT和一组ONU工作在一个TWDM通道上,每个TWDM通道上包括一个下行波长通道和一个或一个以上上行波长通道。每个TWDM通道上一个OLT管理一组ONU,一组ONU采用相同的上行波长发送上行数据,采用相同的下行波长接收下行数据,同一组ONU中的不同ONU通过时分复用的方式传输上行数据。不同的TWDM通道对应的下行波长不同,不同的OLT管理的每组ONU对应的上行波长也不同。每个ONU按照OLT的命令在特定的上行时隙内发送上行数据。
为了更好的利用已经铺设的ODN资源,多家运营商可以共用一个PON系统中的ODN设备,每家运营商使用TWDM PON系统中的部分TWDM通道,在不同的ODN中,每家运营商使用的TWDM通道可以相同也可以不同。这称为开放接入(Open Access)式网络。在这种Open Access式网络中, 当一个小区的ODN中有多个TWDM通道,并且存在多个运营商使用了不同的TWDM通道的情况下,当ONU新上线时,ONU需要注册到正确的运营商管理的TWDM通道上才能进行业务传输。
相关技术的实现注册的方法大致包括:预先在ONU中存储序列号;ONU将自身的接收波长调谐到任意一个TWDM对应的下行波长,当接收到来自OLT的包含有带宽分配信息的下行帧时,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找自身的接收波长对应的上行波长,采用查找到的上行波长将自身保存的序列号发送给OLT;OLT对接收到的序列号进行验证,当验证成功时,向ONU发送注册成功的消息;当验证失败时,结束本流程。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
相关技术的实现注册的方法中,由于当ONU和OLT不属于同一个运营商时会导致注册失败,而注册过程中ONU和发送包含有带宽分配信息的下行帧不一定属于同一个运营商,ONU需要尝试进行注册;并且,当ONU在预设时间内没有接收到OLT的注册成功的消息时,会继续执行采用查找到的上行波长将自身保存的序列号发送给OLT的步骤再次在同一TWDM通道上尝试进行注册,当ONU多次注册不成功时,才将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。因此,ONU注册的成功率较低。
本文提出了一种实现注册的方法和装置,能够提高注册的成功率。
一种实现注册的方法,包括:预先在光网络单元ONU中配置运营商信息;还包括:
ONU将自身的接收波长调谐到任意一个时分-波分复用TWDM通道对应的下行波长;
ONU接收到来自光线路终端OLT的包含有运营商信息的下行帧,判断 出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长,将自身的上行波长调谐到查找到的上行波长进行注册。
可选地,所述方法还包括:当在所述对应关系中查找不到所述当前接收波长对应的上行波长时,在重新接收到的对应关系中查找所述当前接收波长对应的上行波长。
可选地,所述ONU将自身的上行波长调谐到查找到的上行波长进行注册包括:
ONU接收到来自所述OLT的包含有用于发送序列号的带宽分配信息的下行帧;
ONU采用查找到的上行波长将自身保存的序列号发送给OLT;
ONU接收到来自OLT的注册成功的消息。
可选地,所述判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同之后,在接收到的来自OLT的对应关系中查找当前接收波长对应的上行波长之前还包括:
判断出当前TWDM通道可以用于注册。
可选地,所述判断出当前TWDM通道可以用于注册包括:
判断出接收到的包含有运营商信息的下行帧中表示所述当前TWDM通道是否可以用于注册的信息为表示所述当前TWDM通道可以用于注册。
可选地,所述方法还包括:当判断出所述当前TWDM通道不可以用于注册,或在预设时间内未接收到来自所述OLT的包含有用于发送序列号的带宽分配信息的下行帧时,将所述自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
一种实现注册的装置,包括:
配置模块,设置为:预先配置运营商信息;
调谐模块,设置为:将自身的接收波长调谐到任意一个时分-波分复用TWDM通道对应的下行波长;
接收模块,设置为:接收到来自光线路终端OLT的包含有运营商信息的下行帧;
查找模块,设置为:判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长;
注册模块,设置为:将自身的上行波长调谐到查找到的上行波长进行注册。
可选地,所述查找模块还设置为:
在所述对应关系中查找不到所述当前接收波长对应的上行波长,在重新接收到的对应关系中查找所述当前接收波长对应的上行波长。
可选地,所述注册模块是设置为:
接收到来自所述OLT的包含有用于发送序列号的带宽分配信息的下行帧;采用查找到的上行波长将自身保存的序列号发送给OLT;接收到来自OLT的注册成功的消息。
可选地,所述查找模块是设置为:
判断出所述接收到的下行帧中的运营商信息与所述预先配置的运营商信息相同,判断出当前TWDM通道可以用于注册,在所述对应关系中查找所述当前接收波长对应的上行波长。
可选地,所述调谐模块还设置为:
在所述查找模块判断出所述当前TWDM通道不可以用于注册时,或在预设时间内未接收到来自所述OLT的包含有带宽分配信息的下行帧时,将所述自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
可选地,所述查找模块是设置为:
判断出所述接收到的下行帧中的运营商信息与所述预先配置的运营商信息相同,判断出接收到的包含有运营商信息的下行帧中表示当前TWDM通道是否可以用于注册的信息为表示所述当前TWDM通道可以用于注册,在所述对应关系中查找所述自身的接收波长对应的上行波长。
一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述任一项的方法。
与相关技术相比,本发明实施例包括:ONU将自身的接收波长调谐到任意一个TWDM通道对应的下行波长;ONU接收到来自光线路终端OLT的包含有运营商信息的下行帧,判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长,将自身的上行波长调谐到查找到的上行波长进行注册。通过本发明实施例的方案,在判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同时才进行注册,而不需要多次尝试进行注册,从而提高了注册的成功率,且避免了在错误的TWDM通道尝试注册,减少了不同ONU在同一TWDM上注册的冲突概率。
进一步地,当ONU判断出当前TWDM通道不可以用于注册,或在预设时间内未接收到来自OLT的包含有带宽分配信息的下行帧时,将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长进行注册,而不需要在同一TWDM通道上多次尝试进行注册,从而提高了注册的成功率,且缩短了注册的时间。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为相关技术的PON系统的拓扑结构图;
图2为相关技术的TWDM PON系统的拓扑结构图;
图3为本发明实施例实现注册的方法的流程图;
图4为本发明实施例实现注册的装置的结构组成示意图。
本发明的实施方式
下面结合附图对本发明的实施方式进行描述。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组合。
参见图3,本发明实施例提出了一种实现注册的方法,包括:预先在ONU中配置运营商信息。
其中,可以预先在ONU中存储运营商信息。
其中,运营商信息可以是表示运营商的任何信息,例如,运营商名称、运营商标识等。
还包括:
步骤300、ONU将自身的接收波长调谐到任意一个TWDM通道对应的下行波长。
步骤301、ONU接收到来自OLT的包含有运营商信息的下行帧,判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长,将自身的上行波长调谐到查找到的上行波长进行注册。
本步骤中,当ONU在对应关系中查找不到当前接收波长对应的上行波长时,在重新接收到的对应关系中查找当前接收波长对应的上行波长。
本步骤中,OLT会周期性向ONU广播对应关系,对应关系中包含有一个或一个以上TWDM通道的对应关系。ONU可以在判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同后,监听OLT发送的对应关系。
本步骤中,将自身的上行波长调谐到查找到的上行波长进行注册包括:
接收到来自OLT的包含有用于发送序列号的带宽分配信息的下行帧,采用查找到的上行波长将自身保存的序列号发送给OLT;接收到来自OLT的注册成功的消息。
本步骤中,判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同之后,在接收到的来自OLT的对应关系中查找当前接收波长对应的上行波长之前还包括:
判断出当前TWDM通道可以用于注册。
其中,判断出当前TWDM通道可以用于注册包括:判断出接收到的包含有运营商信息的下行帧中表示当前TWDM通道是否可以用于注册的信息 为表示当前TWDM通道可以用于注册。
其中,当判断出当前TWDM通道不可以用于注册,或在预设时间内未接收到来自OLT的包含有用于发送序列号的带宽分配信息的下行帧时,将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长,并继续执行后续步骤。
本发明实施例还提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述实现注册的方法。
下面通过实例详细说明。
TWDM PON系统中,存在多个TWDM通道,每个TWDM通道使用了一个下行波长、一个或一个以上上行波长,在Open Access式网络中,多个运营商可以共用一个TWDM PON系统的ODN网络,每个运营商可以使用一个或者多个TWDM通道。TWDM PON系统中OLT使用下行波长发送下行帧时,携带OLT所属的运营商信息。ONU存储了自身所属的运营商信息。
第一实施例,ONU连接到无源光网络后,将自身的接收波长调谐到任意一个TWDM通道对应的下行波长,当接收到来自OLT的包含有运营商信息的下行帧时,判断出接收到的下行帧中的运营商信息与预先存储的运营商信息相同,且判断出接收到的下行帧中表示当前TWDM通道是否可以用于注册的信息为表示当前TWDM通道可以用于注册时,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长,将自身的上行波长调谐到查找到的上行波长进行注册。
其中,当判断出接收到的下行帧中表示当前TWDM通道是否可以用于注册的信息为表示当前TWDM通道不可以用于注册时,将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
第二实施例,ONU连接到无源光网络后,将自身的接收波长调谐到任意一个TWDM通道对应的下行波长,当接收到来自OLT的包含有运营商信息的下行帧时,判断出接收到的下行帧中的运营商信息与预先存储的运营商信息相同时,在接收到的来自OLT的上行波长和下行波长之间的对应关系中 查找当前接收波长对应的上行波长,同时开启一个定时器,在定时器超时前,如果接收到来自OLT的包含有用于发送序列号的带宽分配信息的下行帧,则采用查找到的上行波长将自身保存的序列号发送给OLT;接收到来自OLT的注册成功的消息。
其中,如果在定时器超时后,还未接收到来自OLT的包含有用于发送序列号的带宽分配信息的下行帧,则将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
参见图4,本发明实施例还提出了一种实现注册的装置,包括:
配置模块41,设置为:预先配置运营商信息;
调谐模块42,设置为:将自身的接收波长调谐到任意一个TWDM通道对应的下行波长;
接收模块43,设置为:接收到来自光线路终端OLT的包含有运营商信息的下行帧;
查找模块44,设置为:判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长;
注册模块45,设置为:将自身的上行波长调谐到查找到的上行波长进行注册。
本发明实施例的装置中,查找模块44还设置为:
在对应关系中查找不到当前接收波长对应的上行波长,在重新接收到的对应关系中查找当前接收波长对应的上行波长。
本发明实施例的装置中,注册模块45是设置为:
接收到来自OLT的包含有用于发送序列号的带宽分配信息的下行帧;采用查找到的上行波长将自身保存的序列号发送给OLT;接收到来自OLT的注册成功的消息。
本发明实施例的装置中,查找模块44是设置为:
判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,判断出当前TWDM通道可以用于注册,在对应关系中查找当前接收波长对应的上行波长。
本发明实施例的装置中,查找模块44是设置为:
判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,判断出接收到的包含有运营商信息的下行帧中表示当前TWDM通道是否可以用于注册的信息为表示当前TWDM通道可以用于注册,在对应关系中查找自身的接收波长对应的上行波长。
本发明实施例的装置中,调谐模块42还设置为:
在查找模块44判断出当前TWDM通道不可以用于注册时,或在预设时间内未接收到来自OLT的包含有带宽分配信息的下行帧时,将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
本领域普通技术人员可以理解上述实施例的全部或部分步骤可以使用计算机程序流程来实现,所述计算机程序可以存储于一计算机可读存储介质中,所述计算机程序在相应的硬件平台上(如系统、设备、装置、器件等)执行,在执行时,包括方法实施例的步骤之一或其组合。
可选地,上述实施例的全部或部分步骤也可以使用集成电路来实现,这些步骤可以被分别制作成一个个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。
上述实施例中的装置/功能模块/功能单元可以采用通用的计算装置来实现,它们可以集中在单个的计算装置上,也可以分布在多个计算装置所组成的网络上。
上述实施例中的装置/功能模块/功能单元以软件功能模块的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。上述提到的计算机可读取存储介质可以是只读存储器,磁盘或光盘等。
工业实用性
通过本发明实施例,在判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同时才进行注册,而不需要多次尝试进行注册,从而提高了注册的成功率,且避免了在错误的TWDM通道尝试注册,减少了不同ONU在同一TWDM上注册的冲突概率。而且当ONU判断出当前TWDM通道不可以用于注册,或在预设时间内未接收到来自OLT的包含有带宽分配信息的下行帧时,将自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长进行注册,而不需要在同一TWDM通道上多次尝试进行注册,从而提高了注册的成功率,且缩短了注册的时间。

Claims (13)

  1. 一种实现注册的方法,包括:预先在光网络单元ONU中配置运营商信息;还包括:
    ONU将自身的接收波长调谐到任意一个时分-波分复用TWDM通道对应的下行波长;
    ONU接收到来自光线路终端OLT的包含有运营商信息的下行帧,判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长,将自身的上行波长调谐到查找到的上行波长进行注册。
  2. 根据权利要求1所述的方法,还包括:当在所述对应关系中查找不到所述当前接收波长对应的上行波长时,在重新接收到的对应关系中查找所述当前接收波长对应的上行波长。
  3. 根据权利要求1或2所述的方法,其中,所述ONU将自身的上行波长调谐到查找到的上行波长进行注册包括:
    ONU接收到来自所述OLT的包含有用于发送序列号的带宽分配信息的下行帧;
    ONU采用查找到的上行波长将自身保存的序列号发送给OLT;
    ONU接收到来自OLT的注册成功的消息。
  4. 根据权利要求1或2所述的方法,其中,所述判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同之后,在接收到的来自OLT的对应关系中查找当前接收波长对应的上行波长之前还包括:
    判断出当前TWDM通道可以用于注册。
  5. 根据权利要求4所述的方法,其中,所述判断出当前TWDM通道可以用于注册包括:
    判断出接收到的包含有运营商信息的下行帧中表示所述当前TWDM通道是否可以用于注册的信息为表示所述当前TWDM通道可以用于注册。
  6. 根据权利要求4所述的方法,还包括:
    当判断出所述当前TWDM通道不可以用于注册,或在预设时间内未接收到来自所述OLT的包含有用于发送序列号的带宽分配信息的下行帧时,将所述自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
  7. 一种实现注册的装置,包括:
    配置模块,设置为:预先配置运营商信息;
    调谐模块,设置为:将自身的接收波长调谐到任意一个时分-波分复用TWDM通道对应的下行波长;
    接收模块,设置为:接收到来自光线路终端OLT的包含有运营商信息的下行帧;
    查找模块,设置为:判断出接收到的下行帧中的运营商信息与预先配置的运营商信息相同,在接收到的来自OLT的上行波长和下行波长之间的对应关系中查找当前接收波长对应的上行波长;
    注册模块,设置为:将自身的上行波长调谐到查找到的上行波长进行注册。
  8. 根据权利要求7所述的装置,其中,所述查找模块还设置为:
    在所述对应关系中查找不到所述当前接收波长对应的上行波长,在重新接收到的对应关系中查找所述当前接收波长对应的上行波长。
  9. 根据权利要求7或8所述的装置,其中,所述注册模块是设置为:
    接收到来自所述OLT的包含有用于发送序列号的带宽分配信息的下行帧;采用查找到的上行波长将自身保存的序列号发送给OLT;接收到来自OLT的注册成功的消息。
  10. 根据权利要求7所述的装置,其中,所述查找模块是设置为:
    判断出所述接收到的下行帧中的运营商信息与所述预先配置的运营商信息相同,判断出当前TWDM通道可以用于注册,在所述对应关系中查找所述当前接收波长对应的上行波长。
  11. 根据权利要求10所述的装置,其中,所述调谐模块还设置为:
    在所述查找模块判断出所述当前TWDM通道不可以用于注册时,或在预设时间内未接收到来自所述OLT的包含有带宽分配信息的下行帧时,将所述自身的接收波长调谐到其他TWDM通道中的任意一个对应的下行波长。
  12. 根据权利要求7所述的装置,其中,所述查找模块是设置为:
    判断出所述接收到的下行帧中的运营商信息与所述预先配置的运营商信息相同,判断出接收到的包含有运营商信息的下行帧中表示当前TWDM通道是否可以用于注册的信息为表示所述当前TWDM通道可以用于注册,在所述对应关系中查找所述自身的接收波长对应的上行波长。
  13. 一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1-6任一项的方法。
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