WO2014047844A1 - 逻辑链路标记llid注册方法、装置及系统 - Google Patents

逻辑链路标记llid注册方法、装置及系统 Download PDF

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Publication number
WO2014047844A1
WO2014047844A1 PCT/CN2012/082192 CN2012082192W WO2014047844A1 WO 2014047844 A1 WO2014047844 A1 WO 2014047844A1 CN 2012082192 W CN2012082192 W CN 2012082192W WO 2014047844 A1 WO2014047844 A1 WO 2014047844A1
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WIPO (PCT)
Prior art keywords
olt
cmc
cnu
registration
llid
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PCT/CN2012/082192
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English (en)
French (fr)
Inventor
张利
孙方林
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华为技术有限公司
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN201280001599.XA priority Critical patent/CN103875255B/zh
Priority to PCT/CN2012/082192 priority patent/WO2014047844A1/zh
Priority to US13/786,191 priority patent/US9210029B2/en
Publication of WO2014047844A1 publication Critical patent/WO2014047844A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/1066Session management
    • H04L65/1073Registration or de-registration
    • 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
    • H04Q11/0071Provisions for the electrical-optical layer interface
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L61/00Network arrangements, protocols or services for addressing or naming
    • H04L61/09Mapping addresses
    • H04L61/10Mapping addresses of different types
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/60Network streaming of media packets
    • H04L65/75Media network packet handling
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems
    • H04Q11/0001Selecting arrangements for multiplex systems using optical switching
    • H04Q11/0062Network aspects
    • H04Q2011/0086Network resource allocation, dimensioning or optimisation

Definitions

  • Embodiments of the present invention relate to communication technologies, and in particular, to a logical link label LLID registration method, apparatus, and system. Background technique
  • EOC Ethernet Over COAX
  • EOC Ethernet Over COAX
  • Another Ethernet Passive Optical Network (EPON) technology is a kind of end-to-end multi-end optical fiber transmission and access technology. It uses broadcast to transmit downlink data and uses time-division multiple access to transmit uplink data.
  • the ground forms a topological structure such as a tree, a star, or a bus.
  • FIG. 1 is a schematic diagram of a topology of an EPOC system.
  • the EPOC includes: an Optical Line Terminal (OLT) 101, an Optical Network Unit (ONU) 102, and a coaxial A Coax Media Converter (CMC) 103 and a plurality of Coaxial Network Units (CNU) 104 are provided.
  • the CMC is an ONU-like entity that connects multiple CNUs to form a second-level topology.
  • the OLT broadcasts a Discovery Window message to the CMC and the ONU in the network, and the CMC can discover the Logical Link Identifier (LLID) registration request sent by the connected CNU.
  • the CNU LLID registration request is forwarded to the OLT in the window.
  • the CMC and ONU can also issue their own LLID registration request to the OLT within the discovery window.
  • this causes the LLID registration of the ONU, CMC, and CNU to collide in the discovery window of the OLT.
  • Embodiments of the present invention provide a logical link label LLID registration method, apparatus, and system to reduce the probability of registration conflicts.
  • the method for registering a logical link tag LLID includes: a coaxial media converter CMC receiving a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where a registration request carries a media intervention control MAC address of the CNU; the CMC sends a second registration request to the OLT in a first data window allocated by the optical line terminal OLT for the CMC, the second registration The request carries a first-level LLID identifier allocated by the OLT for the CMC and a MAC address of the CNU, where the first data window is used by the CMC to exchange data with the OLT.
  • the CMC after the second registration request is sent to the OLT in the first data window that is allocated by the optical line terminal OLT for the CMC, further includes: The CMC receives the registration message sent by the OLT, where the registration message carries the MAC address of the CNU and the secondary LLID identifier allocated by the OLT to the CNU.
  • the CMC is in the first data window allocated by the optical line terminal OLT to the CMC
  • the method further includes: the CMC receiving the first window message sent by the OLT, where the first window message carries the MAC address of the CNU and the OLT is allocated to the CNU Second data window information, the second data window is used by the CNU to exchange data with the OLT.
  • the method further includes: In the second data window, the CMC sends a registration confirmation message to the OLT, where the registration confirmation message carries the secondary LLID identifier.
  • the method for registering a logical link tag LLID includes: the optical line terminal OLT sending a second window message to the coaxial media converter CMC, where the second window message carries the media of the CMC Intervening control MAC address and first data window information allocated by the OLT to the CMC, the first data window is used by the CMC to send data to the OLT; the OLT is in the first data window, Receiving a second registration request sent by the CMC, where the second registration request carries one of the OLTs allocated to the CMC Level LLID ID and CNU's MAC address.
  • the OLT further includes: the OLT according to the first-level LLID
  • the identifier is used to allocate a secondary LLID identifier to the CNU.
  • the OLT sends a registration message to the CMC, where the registration message carries the MAC address of the CNU and the secondary LLID identifier.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier, including: The OLT determines whether the first-level LLID identifier is an LLID identifier that the OLT has allocated for the CMC, and if yes, assigns a secondary LLID identifier to the CNU.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier Then, the method further includes: the OLT establishing a correspondence between the first-level LLID identifier and the second-level LLID identifier.
  • the OLT receives the CMC transmission in the first data window After the second registration request, the method further includes: the OLT sending a first window message to the CMC, where the first window message carries the MAC address of the CNU and the second data that the OLT allocates for the CNU Window information, the second data window is used by the CNU to interact with the OLT.
  • the OLT further includes: the OLT receiving, in the second data window, a registration confirmation message sent by the CMC, where the registration confirmation message carries the secondary LLID identifier.
  • the coaxial media converter CMC includes: a first receiving module, configured to receive a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where a registration request carrying the media intervention control MAC address of the CNU; a first sending module, configured to send a second registration request to the OLT in a first data window allocated by the optical line terminal OLT for the CMC In the second registration request Carrying a first-level LLID identifier allocated by the OLT for the CMC and a MAC address of the CNU, where the first data window is used by the CMC to exchange data with the OLT.
  • the first receiving module is further configured to receive a registration message sent by the OLT, where the registration message carries a MAC address of the CNU and the OLT is The secondary LLID identifier assigned by the CNU.
  • the first receiving module is further configured to receive a first window message that is sent by the OLT, where The first window message carries the MAC address of the CNU and the second data window information allocated by the OLT for the CNU, and the second data window is used by the CNU to exchange data with the OLT.
  • the first sending module is further configured to: in the second data window, The OLT sends a registration confirmation message, where the registration confirmation message carries the secondary LLID identifier.
  • the optical line terminal OLT includes: a second sending module, configured to send a second window message to the coaxial media converter CMC, where the second window message carries the media of the CMC Intersect control MAC address and first data window information allocated by the OLT to the CMC, the first data window is used by the CMC to send data to the OLT; and the second receiving module is configured to be in the first In the data window, the second registration request sent by the CMC is received, and the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU.
  • the method further includes: a processing module, configured to allocate a second-level LLID identifier to the CNU according to the first-level LLID identifier;
  • the CMC sends a registration message, where the registration message carries the MAC address of the CNU and the secondary LLID identifier.
  • the processing module is further configured to determine whether the first-level LLID identifier is the OLT is the CMC The assigned LLID identifier, if yes, assigns a secondary LLID identifier to the CNU.
  • the processing module is further configured to establish a correspondence between the first-level LLID identifier and the second-level LLID identifier.
  • the second sending module is further configured to send the first window to the CMC
  • the first window message carries the MAC address of the CNU and the second data window information allocated by the OLT to the CNU, and the second data window is used by the CNU to exchange data with the OLT.
  • the second receiving module is further configured to be in the second In the data window, the registration confirmation message sent by the CMC is received, and the registration confirmation message carries the secondary LLID identifier.
  • the coaxial network EPOC system based on the Ethernet passive optical network protocol includes: any one of the above coaxial media converter CMC and the coaxial network unit CNU, and any of the optical line terminals OLT.
  • the coaxial media converter CMC includes: a first receiver, configured to receive a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where the Transmitting, by a registration request, a media intervention control MAC address of the CNU; a first transmitter, configured to send a second registration request to the OLT in a first data window allocated by the optical line terminal OLT for the CMC, where The second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU, and the first data window is used by the CMC to exchange data with the OLT.
  • the first receiver is further configured to receive a registration message sent by the OLT, where the registration message carries a MAC address of the CNU and the OLT is The secondary LLID identifier assigned by the CNU.
  • the first receiver is further configured to receive a first window message that is sent by the OLT, where The first window message carries the MAC address of the CNU and the second data window information allocated by the OLT to the CNU, and the second data window is used by the CNU to exchange data with the OLT.
  • the first sender is further configured to send, in the second data window, a registration confirmation message to the OLT, where the registration confirmation message carries the secondary LLID identifier.
  • the optical line terminal OLT includes: a second transmitter, configured to send a second window message to the coaxial media converter CMC, where the second window message carries the media of the CMC Intervening control MAC address and first data window information allocated by the OLT to the CMC, the first data window is used by the CMC to send data to the OLT; and the second receiver is configured to be in the first In the data window, the second registration request sent by the CMC is received, and the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU.
  • the method further includes: a processor, configured to allocate, by using the first-level LLID identifier, a secondary LLID identifier to the CNU; the second transmitter is further configured to The CMC sends a registration message, where the registration message carries the MAC address of the CNU and the secondary LLID identifier.
  • the processor is further configured to determine whether the first-level LLID identifier is the OLT is the CMC The assigned LLID identifier, if yes, assigns a secondary LLID identifier to the CNU.
  • the processor is further configured to establish the first-level LLID identifier and the second-level LLID The corresponding relationship of the logo.
  • the second transmitter is further configured to send the first window to the CMC
  • the first window message carries the MAC address of the CNU and the second data window information allocated by the OLT to the CNU, and the second data window is used by the CNU to exchange data with the OLT.
  • the second receiver is further configured to be in the second data window And receiving the registration confirmation message sent by the CMC, where the registration confirmation message carries the secondary LLID identifier.
  • the CMC sends a LLID registration request of the CNU connected thereto through its first data window proxy, and then performs information interaction through the first data window to complete the CNU.
  • the registration of the LLID on the OLT avoids the occupation of the CNU LLID registration to the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE), and uses the discovery window resource for the LLID registration of the CMC or ONU, reducing the probability of registration conflict. . DRAWINGS
  • Figure 1 is a schematic diagram of a topology of an EPOC system
  • FIG. 2 is a flowchart of Embodiment 1 of a logical link label LLID registration method according to the present invention
  • FIG. 3 is a flowchart of Embodiment 2 of a logical link label LLID registration method according to the present invention
  • FIG. 4 is a logic chain of the present invention
  • FIG. 5 is a flowchart of Embodiment 4 of a logical link label LLID registration method according to the present invention
  • FIG. 6 is a flowchart of a method for registering a logical link label LLID according to the present invention
  • FIG. 7 is a flowchart of Embodiment 6 of a logical link mark LLID registration method according to the present invention
  • FIG. 8 is a flowchart of Embodiment 7 of a logical link mark LLID registration method according to the present invention.
  • FIG. 10A is a flowchart of Embodiment 9 of the logical link label LLID registration method of the present invention.
  • FIG. 10B is a flowchart of Embodiment 10 of a logical link label LLID registration method according to the present invention.
  • FIG. 1 is a schematic structural view of a first embodiment of a coaxial medium converter CMC according to the present invention
  • FIG. 12 is a schematic structural view of a first embodiment of an optical line terminal OLT according to the present invention
  • FIG. 14 is a schematic structural diagram of Embodiment 3 of an optical line terminal OLT according to the present invention
  • Figure 15 is a schematic structural view of Embodiment 1 of the EPOC system of the present invention
  • FIG. 16 is a schematic structural diagram of Embodiment 2 of a coaxial medium converter CMC according to the present invention
  • FIG. 17 is a schematic structural diagram of Embodiment 4 of an optical line terminal OLT according to the present invention
  • FIG. FIG. 19 is a schematic structural diagram of Embodiment 6 of an optical line terminal OLT according to the present invention.
  • FIG. 2 is a flowchart of a first embodiment of a method for registering a logical link tag LLID according to the present invention.
  • the embodiment uses a coaxial media converter CMC as an execution subject to describe a LLID registration method.
  • the LLID registration method includes:
  • Step S202 The coaxial media converter CMC receives a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where the media registration control MAC address of the CNU is carried in the first registration request.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request. Registered CNU's MAC address.
  • Step S204 The CMC sends a second registration request to the OLT in the first data window allocated by the optical line terminal OLT for the CMC, where the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU, first
  • the data window is used to exchange data between the CMC and the OLT.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the OLT for the CMC and the OLT to exchange data through the bandwidth grant frame (GATE) in the LLID registration process of the CMC;
  • the second registration request may be a registration request frame ( The form of REGISTER_REQ is sent to the OLT, and the second registration request carries the OLT in The first-level LLID identifier assigned to the CMC by the registration frame (REGISTER) during the LLID registration process of the CMC and the MAC address of the CNU having the registration requirement.
  • the CMC sends a LLID registration request of the CNU connected thereto through its first data window proxy, and then performs information interaction through the first data window to complete the CNU LLID on the OLT.
  • Registration avoiding the CNU LLID registration to occupy the discovery window of the OLT through the DISCOVERY GATE broadcast, and use the discovery window resource for the LLID registration of the CMC or ONU, reducing the probability of registration conflict.
  • FIG. 3 is a flowchart of a second embodiment of a method for registering a logical link tag LLID according to the present invention.
  • the embodiment uses a coaxial media converter CMC as an execution subject to describe a LLID registration method.
  • the LLID registration method includes:
  • Step S302 The coaxial media converter CMC receives a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where the first registration request carries a media access control MAC address of the CNU.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration.
  • CNU's MAC address when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration.
  • CNU's MAC address when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration.
  • CNU's MAC address when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry
  • Step S304 The CMC sends a second registration request to the OLT in the first data window allocated by the optical line terminal OLT for the CMC, where the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU, first The data window is used to exchange data between the CMC and the OLT.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the OLT for the CMC and the OLT to exchange data through the bandwidth grant frame (GATE) in the LLID registration process of the CMC;
  • the second registration request may be a registration request frame ( The form of REGISTER_REQ is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • Step S306 The CMC receives the registration message sent by the OLT, where the registration message carries the MAC address of the CNU and the secondary LLID identifier assigned by the OLT to the CNU.
  • the OLT may return the registration information to the CMC in the form of a registration frame (REGISTER), where the registration information may carry the MAC address of the CNU to be registered and the secondary LLID allocated by the OLT for the CNU to be registered.
  • logo The registration information is used to inform the CMC that the OLT has identified the second registration request and incorporated the CNU requesting registration into the upstream time slot of the communication.
  • the CMC sends the LLID registration request of the CNU connected thereto through the first data window proxy of the CMC, and receives the registration message returned by the OLT, and then performs information interaction through the first data window. Completing the registration of the CNU LLID on the OLT, avoiding the occupation of the CNU LLID registration for the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE), and using the discovery window resource for the LLID registration of the CMC or ONU, reducing registration conflicts The probability.
  • FIG. 4 is a flowchart of a third embodiment of a logical link label LLID registration method according to the present invention. As shown in FIG. 4, the embodiment uses a coaxial media converter CMC as an execution subject to describe an LLID registration method.
  • the LLID registration method includes:
  • Step S402 The coaxial media converter CMC receives a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where the first registration request carries a media access control MAC address of the CNU.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration.
  • CNU's MAC address when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration.
  • CNU's MAC address when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration.
  • CNU's MAC address when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry
  • Step S404 The CMC sends a second registration request to the OLT in the first data window allocated by the optical line terminal OLT for the CMC, where the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU, first The data window is used to exchange data between the CMC and the OLT.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the OLT for the CMC and the OLT to exchange data through the bandwidth grant frame (GATE) in the LLID registration process of the CMC;
  • the second registration request may be a registration request frame (
  • the form of REGISTER_REQ is sent to the OLT, and the second registration request carries the first level assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC.
  • Step S406 The CMC receives the registration message sent by the OLT, where the registration message carries the MAC address of the CNU and the secondary LLID identifier assigned by the OLT to the CNU.
  • the OLT may return the registration information to the CMC in the form of a registration frame (REGISTER), where the registration information may carry the MAC address of the CNU to be registered and the secondary LLID allocated by the OLT for the CNU to be registered.
  • Registration Information Used to notify the CMC that the OLT has identified the second registration request and included the CNU requesting registration in the upstream time slot of the communication.
  • Step S408 The CMC receives the first window message sent by the OLT.
  • the first window message carries the CNU MAC address and the second data window information allocated by the OLT for the CNU, and the second data window is used by the CNU to interact with the OLT.
  • the CMC receives the first window message sent by the OLT, and the first window message may be sent in the first data window in the form of a bandwidth grant frame (GATE), where the destination MAC address is the MAC address of the CNU, and the OLT is the CNU for registration.
  • GATE bandwidth grant frame
  • the second data window information is allocated, and the second data window includes an authorized bandwidth and a time slot for the CNU to interact with the OLT.
  • the CMC sends the LLID registration request of the CNU connected thereto through its own first data window proxy, and receives the registration message returned by the OLT and the first sent by the OLT through the first data window.
  • the window message and thus the registration of the LLID of the CNU on the OLT, avoids the occupation of the discovery window of the OLT broadcast by the signaling in the LLID registration process of the CNU, and the discovery of the window resource for the LLID registration of the CMC or the ONU, reducing the registration The probability of a signaling collision.
  • FIG. 5 is a flowchart of Embodiment 4 of a method for registering a logical link mark LLID according to the present invention.
  • the embodiment uses a coaxial media converter CMC as an execution subject to describe an LLID registration method.
  • the LLID registration method includes:
  • Step S502 The coaxial media converter CMC receives a first registration request sent by at least one coaxial network unit CNU connected to the CMC, where the media registration control MAC address of the CNU is carried in the first registration request.
  • Step S504 The CMC sends a second registration request to the OLT in the first data window allocated by the optical line terminal OLT for the CMC, where the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU, and the first The data window is used to exchange data between the CMC and the OLT.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the OLT for the CMC and the OLT to exchange data through the bandwidth grant frame (GATE) in the LLID registration process of the CMC;
  • the second registration request may be a registration request frame ( The form of REGISTER_REQ is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • Step S506 The CMC receives the registration message sent by the OLT, where the registration message carries the MAC address of the CNU and the secondary LLID identifier assigned by the OLT to the CNU.
  • the OLT may return the registration information to the CMC in the form of a registration frame (REGISTER), where the registration information may carry the MAC address of the CNU to be registered and the secondary LLID allocated by the OLT for the CNU to be registered.
  • Registration Information Used to notify the CMC that the OLT has identified the second registration request and included the CNU requesting registration in the upstream time slot of the communication.
  • Step S508 The CMC receives the first window message sent by the OLT.
  • the first window message carries the CNU MAC address and the second data window information allocated by the OLT for the CNU, and the second data window is used by the CNU to interact with the OLT.
  • the CMC receives the first window message sent by the OLT, and the first window message may be sent in the first data window in the form of a bandwidth grant frame (GATE), where the destination MAC address is the MAC address of the CNU, and the OLT is the CNU for registration.
  • GATE bandwidth grant frame
  • the second data window information is allocated, and the second data window includes an authorized bandwidth and a time slot for the CNU to interact with the OLT.
  • Step S510 The CMC sends a registration confirmation message to the OLT in the second data window, where the registration confirmation message carries the secondary LLID identifier.
  • the CMC After receiving the first window message sent by the OLT, the CMC sends a registration confirmation message to the OLT through the second data window allocated by the OLT for the CNU, and the registration confirmation message may be sent in the form of a registration acknowledgement frame (REGISTER ACK), where the OLT is carried CNU assigned Secondary LLID identification.
  • REGISTER ACK registration acknowledgement frame
  • the CMC sends the LLID registration request of the CNU connected thereto through the first data window proxy of the CMC, and receives the registration message returned by the OLT and the first window sent by the OLT through the first data window.
  • the message, and sending a registration confirmation message to the OLT through the second data window completes registration of the CNU LLID on the OLT.
  • the logical link tag LLID registration method in this embodiment avoids the occupation of the discovery window of the OLT broadcast by the signaling in the LLID registration process of the CNU, and uses the discovery window resource for the LLID registration of the CMC or the ONU, thereby reducing the registration signaling conflict. The probability.
  • FIG. 6 is a flowchart of Embodiment 5 of a method for registering a logical link tag LLID according to the present invention. As shown in FIG. 6, the LLID in this embodiment is described by using an optical line terminal OLT as an execution subject. Registration methods include:
  • Step S602 the optical line terminal OLT sends a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT to the CMC, and the first data window is used. Interact data with the OLT at the CMC.
  • the OLT sends a second window message to the CMC.
  • the second window message can be sent through the discovery window in the form of a bandwidth grant frame (GATE), where the destination MAC address is the MAC address of the CMC.
  • GATE bandwidth grant frame
  • the first data window information allocated by the OLT to the CMC the first data window includes an authorized bandwidth and a time slot for the CMC to interact with the OLT.
  • Step S604 The OLT receives a second registration request sent by the CMC in the first data window, where the second registration request carries the primary LLID identifier and the CNU MAC address allocated by the OLT for the CMC.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration. CNU's MAC address.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the OLT for the CMC and the OLT to exchange data through the bandwidth grant frame (GATE) in the LLID registration process of the CMC; the second registration request may be a registration request frame.
  • the form of (REGISTER_REQ) is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • the OLT receives the LLID registration request of the CNU connected to the CMC by the CMC through the first data window of the CMC, and then performs information interaction through the first data window to complete the LLID of the CNU.
  • the registration on the OLT avoids the occupation of the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE) of the CNU LLID registration, and uses the discovery window resource for the LLID registration of the CMC or the ONU, reducing the probability of registration conflict.
  • FIG. 7 is a flowchart of Embodiment 6 of a method for registering a logical link mark LLID according to the present invention. As shown in FIG. 7, the LLID in this embodiment is described by using an optical line terminal OLT as an execution subject. Registration methods include:
  • Step S702 the optical line terminal OLT sends a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT for the CMC, and the first data window is used. Interact data with the OLT at the CMC.
  • the OLT sends a second window message to the CMC.
  • the second window message can be sent through the discovery window in the form of a bandwidth grant frame (GATE), where the destination MAC address is the MAC address of the CMC.
  • GATE bandwidth grant frame
  • the first data window information allocated by the OLT to the CMC the first data window includes an authorized bandwidth and a time slot for the CMC to interact with the OLT.
  • Step S704 The OLT receives a second registration request sent by the CMC in the first data window, where the second registration request carries the primary LLID identifier and the CNU MAC address allocated by the OLT for the CMC.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration. CNU's MAC address.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes the OLT and the OLT allocated by the OLT for the CMC through the bandwidth grant frame (GATE) during the LLID registration process of the CMC.
  • Authorized bandwidth and time slot of the interaction data; the second registration request may be a registration request frame
  • the form of (REGISTER-REQ) is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • Step S706 The OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier.
  • the OLT sends a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier, and may include:
  • the OLT determines whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if so, assigns a secondary LLID identifier to the CNU.
  • the OLT may determine whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU, and may register the frame (REGISTER).
  • the form returns registration information to the CMC.
  • the registration information carries the MAC address of the CNU to be registered and the secondary LLID identifier assigned by the OLT to the CNU to be registered.
  • the registration information is used to inform the CMC that the OLT has identified the second registration request and incorporated the CNU requesting registration into the upstream time slot of the communication.
  • the OLT receives the CNU LLID registration request of the CMC agent connected to the CMC through the first data window of the CMC, and returns a registration message to the CMC, thereby completing the CNU LLID on the OLT.
  • the registration avoids the occupation of the CNU LLID registration to the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE), and uses the discovery window resource for the LLID registration of the CMC or the ONU, reducing the probability of registration conflict.
  • FIG. 8 is a flowchart of Embodiment 7 of a method for registering a logical link tag LLID according to the present invention. As shown in FIG. 8, the LLID in this embodiment is described by using an optical line terminal OLT as an execution subject. Registration methods include:
  • Step S802 the optical line terminal OLT sends a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT for the CMC, and the first data window is used. Interact data with the OLT at the CMC.
  • the OLT sends a second window message to the CMC, and the second window message can be sent through the discovery window in the form of a bandwidth grant frame (GATE).
  • the packet carries the MAC address of the CMC with the destination MAC address and the first data window information allocated by the OLT for the CMC.
  • the first data window includes the authorized bandwidth and time slot for the CMC to interact with the OLT.
  • Step S804 The OLT receives a second registration request sent by the CMC in the first data window, where the second registration request carries the primary LLID identifier and the CNU MAC address allocated by the OLT for the CMC.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration. CNU's MAC address.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the 0LT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the bandwidth for the CMC and the OLT for the CMC through the bandwidth grant frame (GATE) during the LLID registration process of the CMC;
  • the second registration request may be a registration request frame ( The form of REGISTER_REQ is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • Step S806 The OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier; the OLT sends a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier, and may include: The OLT determines whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if so, assigns a secondary LLID identifier to the CNU.
  • the OLT may determine whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU, and may register the frame (REGISTER).
  • the form returns registration information to the CMC.
  • the registration information carries the MAC address of the CNU to be registered and the secondary LLID identifier assigned by the OLT to the CNU to be registered.
  • the registration information is used to inform the CMC that the OLT has identified the second registration request and incorporated the CNU requesting registration into the upstream time slot of the communication.
  • Step S808 The OLT establishes a correspondence between the first-level LLID identifier and the second-level LLID identifier.
  • the OLT sends a first window message to the CMC, where the first window message carries the CNU MAC address and the second data window information that the OLT allocates for the CNU. Two data windows for CNU and The OLT interacts with the data.
  • the mapping between the primary LLID identifier of the CMC registered with the CNU proxy and the secondary LLID identifier can be established, thereby obtaining the topology structure of the CMC and the CNU node in the EPOC.
  • the OLT sends a first window message to the CMC, and the first window message can be a bandwidth bandwidth frame.
  • the form of (GATE) is sent through the first data window, where the MAC address carrying the destination MAC address is CNU, and the second data window information allocated by the OLT for the CNU to be registered, and the second data window includes an interaction between the CNU and the OLT.
  • the authorized bandwidth and time slot of the data is sent through the first data window, where the MAC address carrying the destination MAC address is CNU, and the second data window information allocated by the OLT for the CNU to be registered, and the second data window includes an interaction between the CNU and the OLT.
  • the OLT receives the CNU LLID registration request of the CMC agent connected to the CMC through the first data window of the CMC, and returns a registration message to the CMC, and the OLT also passes the first data window.
  • the CMC sends the first window message, thereby completing the registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided to occupy the OLT's discovery window, and the window resource is found to be used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC during the LLID registration process.
  • FIG. 9 is a flowchart of Embodiment 8 of the method for registering a logical link tag LLID according to the present invention.
  • an LLID registration method is described by using an optical line terminal OLT as an execution subject, and the LLID in this embodiment is used. Registration methods include:
  • Step S902 the optical line terminal OLT sends a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT to the CMC, and the first data window is used. Interact data with the OLT at the CMC.
  • the OLT sends a second window message to the CMC.
  • the second window message can be sent through the discovery window in the form of a bandwidth grant frame (GATE), where the destination MAC address is the MAC address of the CMC.
  • GATE bandwidth grant frame
  • the first data window information allocated by the OLT to the CMC the first data window includes an authorized bandwidth and a time slot for the CMC to interact with the OLT.
  • Step S904 The OLT receives a second registration request sent by the CMC in the first data window, where the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC and the MAC address of the CNU.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration. CNU's MAC address.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the bandwidth for the CMC and the OLT for the CMC through the bandwidth grant frame (GATE) during the LLID registration process of the CMC;
  • the second registration request may be a registration request frame ( The form of REGISTER_REQ is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • Step S906 The OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier.
  • the OLT sends a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier, and may include: The OLT determines whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if so, assigns a secondary LLID identifier to the CNU.
  • the OLT may determine whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU, and may register the frame (REGISTER).
  • the form returns registration information to the CMC.
  • the registration information carries the MAC address of the CNU to be registered and the secondary LLID identifier assigned by the OLT to the CNU to be registered.
  • the registration information is used to inform the CMC that the OLT has identified the second registration request and incorporated the CNU requesting registration into the upstream time slot of the communication.
  • Step S908 The OLT establishes a correspondence between the first-level LLID identifier and the second-level LLID identifier.
  • the OLT sends a first window message to the CMC, where the first window message carries the CNU MAC address and the 0LT is the CNU-allocated second data window information.
  • the two data windows are used by the CNU to interact with the OLT.
  • the mapping between the primary LLID identifier of the CMC registered with the CNU proxy and the secondary LLID identifier can be established, thereby obtaining the topology of the nodes such as CMC and CNU in the EPOC.
  • the OLT sends a first window message to the CMC, and the first window message may be sent in the first data window in the form of a bandwidth 4 (GATE), where the destination MAC address is carried.
  • GATE bandwidth 4
  • the second data window includes the authorized bandwidth and time slot for the CNU to interact with the OLT.
  • Step S910 The OLT receives the registration confirmation message sent by the CMC in the second data window, where the registration confirmation message carries the secondary LLID identifier.
  • the OLT After the OLT sends the first window message to the CMC, the OLT receives the registration confirmation message sent by the CMC through the second data window allocated for the CNU, and the registration confirmation message may be sent in the form of a registration confirmation frame (REGISTER_ACK), where the OLT is carried The secondary LLID identifier assigned by the CNU.
  • REGISTER_ACK Registration confirmation frame
  • the OLT receives the CNU LLID registration request of the CMC agent connected to the CMC through the first data window of the CMC, and returns a registration message to the CMC, and the OLT also passes the first data window.
  • the CMC sends the first window message, and receives the registration confirmation message sent by the CMC through the second data window, thereby completing registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided for the OLT's discovery window, and the discovery window resource is used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • FIG. 10A is a flowchart of a ninth embodiment of a method for registering a logical link tag LLID according to the present invention.
  • an LLID registration method is described by using an optical line terminal OLT as an execution subject, and the LLID in this embodiment is used. Registration methods include:
  • Step S 1000 The OLT sends a discovery window message in a broadcast form, and the discovery window message carries the discovery window information, and the discovery window is used to send a registration request to the device connected to the OLT.
  • the OLT broadcasts a discovery window message to each CMC and ONU connected thereto, and the discovery window message can be sent in the form of a registration authorization frame (DISCOVERY GATE), and the discovery window message carries information such as the opening time and the opening length of the discovery window.
  • the discovery window is used by devices such as CMCs and ONUs connected to the OLT to send registration requests to the OLT.
  • Step S1001A The OLT receives a registration request sent by the CMC or the ONU, where the registration request carries the MAC address of the CMC or the ONU.
  • the OLT broadcasts the discovery window message to each CMC and ONU connected to it. After receiving the discovery window message, the CMC and ONU that are not registered or have the registration update request can adjust the local clock according to the discovery window message to start the registration process when the discovery window is opened.
  • the registration request can be sent in the form of a registration request frame (REGISTER_REQ).
  • the registration request carries information such as the MAC address of the CMC or ONU that sent the registration request, and optical device parameters.
  • Step S1001 The OLT determines whether the LLID carried in the received registration request is a registered LLID, and if it is determined that the LLID carried in the registration request has not been registered, step S1001C is performed; if it is determined that the LLID carried in the registration request is obtained, If the registration has been completed, step S1004 is performed.
  • Step S1001C The OLT determines that the LLID carried in the registration request has not been completed, and then determines that the received registration request is a third registration request.
  • Step S1002A the OLT sends a registration message (REGISTER) and a second window message (GATE) to the CMC or OUN.
  • REGISTER registration message
  • GATE second window message
  • the OLT After receiving the third registration request sent by the CMC or the ONU, the OLT sends a registration message and a second window message to the CMC or the ONU.
  • the registration message carries the MAC address of the CMC or ONU and the primary LLID identifier assigned to the CMC or ONU.
  • the second window message carries the MAC address of the CMC or the ONU and the first data window information allocated by the OLT for the CMC or the ONU, the first data window is used for the CMC to interact with the OLT;
  • the second window message may be the bandwidth authorization frame (GATE)
  • GATE bandwidth authorization frame
  • Step S1002B The OLT receives a registration confirmation message (REGISTER_ACK) sent by the CMC or the OUN, and completes registration of the LLID of the CMC or the OUN.
  • REGISTER_ACK a registration confirmation message
  • Step S1004 The OLT determines that the LLID carried in the registration request has been registered, and then determines that the received registration request is the second registration request, that is, the CUN registration request by the CMC.
  • Step S1006 The OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier.
  • the OLT sends a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier, and may include: the OLT determines whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if yes, assigns a secondary LLID identifier to the CNU.
  • the OLT may determine whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU, and may register the frame (REGISTER).
  • the form returns registration information to the CMC.
  • the registration information carries the MAC address of the CNU to be registered and the secondary LLID identifier assigned by the OLT to the CNU to be registered.
  • the registration information is used to inform the CMC that the OLT has identified the second registration request and incorporated the CNU requesting registration into the upstream time slot of the communication.
  • Step S1008 The OLT establishes a correspondence between the first-level LLID identifier and the second-level LLID identifier.
  • the OLT sends a first window message to the CMC, where the first window message carries the CNU MAC address and the second data window information that the OLT allocates for the CNU.
  • the two data windows are used by the CNU to interact with the OLT.
  • the mapping between the primary LLID identifier of the CMC registered with the CNU proxy and the secondary LLID identifier can be established, thereby obtaining the topology structure of the CMC and the CNU node in the EPOC.
  • the OLT sends a first window message to the CMC, and the first window message may be sent in the first data window in the form of a bandwidth 4 ⁇ right frame (GATE), where the destination MAC address is the MAC address of the CNU, and the OLT is applied for registration.
  • the second data window information allocated by the CNU, the second data window including the authorized bandwidth and time slot for the CNU and 0LT interaction data.
  • Step S1010 The OLT receives the registration confirmation message sent by the CMC in the second data window, where the registration confirmation message carries the secondary LLID identifier.
  • the OLT After the OLT sends the first window message to the CMC, the OLT receives the registration confirmation message sent by the CMC through the second data window allocated for the CNU, and the registration confirmation message may be sent in the form of a registration confirmation frame (REGISTER_ACK), where the OLT is carried The secondary LLID identifier assigned by the CNU.
  • REGISTER_ACK Registration confirmation frame
  • the OLT receives the LLID registration request of the CNU connected to the CMC sent by the CMC agent through the first data window of the CMC, and returns a registration message to the CMC, and the OLT also passes the first data window.
  • the first window message is sent to the CMC, and the registration confirmation message sent by the CMC is received through the second data window, thereby completing registration of the LLID of the CNU on the OLT.
  • the CNU LLID registration is avoided to occupy the OLT's discovery window, and the window resource is found to be used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the EPOC during the LLID registration process.
  • the topology of the structure is mapped to the CMC to the CMC sent by the CMC agent through the first data window of the CMC, and returns a registration message to the CMC, and the OLT also passes the first data window.
  • the first window message is sent to the CMC
  • the method before the OLT sends the first window message to the CMC, the method further includes: the OLT determining the distance from the OLT to the CMC according to the window message broadcast time and the time of receiving the third registration request; and the distance of the OLT according to the OLT to the CMC. , determine the second data window.
  • the OLT can use the ranging result of the CMC in the process of registering for the CMC to determine the bandwidth or time slot of the second data window authorized by the CNU, thereby avoiding the re-measuring of the CNU and simplifying the registration process.
  • FIG. 10B is a flowchart of a tenth embodiment of a method for registering a logical link tag LLID according to the present invention. As shown in FIG. 10B, the interaction process between the OLT and the CMC in the LLID registration method is described in this embodiment.
  • the LLID registration method includes:
  • Step S 1000 The OLT broadcasts a discovery window message, and the discovery window message carries the discovery window information, and the discovery window is used to send a registration request to the device connected to the OLT.
  • the OLT broadcasts a discovery window message to each CMC and ONU connected thereto, and the discovery window message can be sent in the form of a registration authorization frame (DISCOVERY GATE), and the discovery window message carries information such as the opening time and the opening length of the discovery window.
  • the discovery window is used by devices such as CMCs and ONUs connected to the OLT to send registration requests to the OLT.
  • Step S1001 The third registration request sent by the CMC to the OLT, where the third registration request carries the MAC address of the CMC.
  • the OLT broadcasts a discovery window message to each CMC and ONU connected thereto.
  • the CMC and the ONU that have not registered or updated the registration request may adjust the local clock according to the discovery window message to start the registration process when the discovery window is opened.
  • the third registration request carries information such as a MAC address of the CMC or ONU that sends the third registration request, and optical device parameters.
  • Step S1002 The OLT sends a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT for the CMC, and the first data window is used for CMC and OLT interaction data;
  • the OLT sends a second window message to the CMC.
  • the second window message may be sent through the discovery window in the form of a bandwidth grant frame (GATE), where the MAC address carrying the destination MAC address is CMC and the first data window information allocated by the OLT for the CMC, and the first data window includes The authorized bandwidth and time slot of the data exchanged between the CMC and the OLT.
  • GATE bandwidth grant frame
  • Step S1004 The CMC sends a second registration request to the OLT in the first data window, where the second registration request carries the primary LLID identifier and the CNU MAC address assigned by the OLT to the CMC.
  • the CMC when the CMC is connected to the at least one CNU, the CMC receives the first registration request sent by the CNUs connected thereto to initiate the registration request by the CNU having the registration requirement, and the first registration request may carry the request registration. CNU's MAC address.
  • the CMC After receiving the first registration request, the CMC sends a second registration request to the OLT through the first data window allocated by the OLT for itself.
  • the first data window includes an authorized bandwidth and a time slot allocated by the OLT for the CMC and the OLT to exchange data through the bandwidth grant frame (GATE) in the LLID registration process of the CMC;
  • the second registration request may be a registration request frame ( The form of REGISTER_REQ is sent to the OLT.
  • the second registration request carries the first-level LLID identifier assigned by the OLT to the CMC through the registration frame (REGISTER) during the LLID registration process of the CMC, and the MAC address of the CNU having the registration requirement.
  • Step S1006 The OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier.
  • the OLT sends a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the OLT allocates a secondary LLID identifier to the CNU according to the first-level LLID identifier, and may include: The OLT determines whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if so, assigns a secondary LLID identifier to the CNU.
  • the OLT may determine whether the first-level LLID identifier is an LLID identifier that the OLT has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU, and may register the frame (REGISTER).
  • the form returns registration information to the CMC.
  • the registration information carries the MAC address of the CNU to be registered and the secondary LLID identifier assigned by the OLT to the CNU to be registered.
  • the registration information is used to inform the CMC that the OLT has identified the second registration request and incorporated the CNU requesting registration into the upstream time slot of the communication.
  • Step S1008 The OLT establishes a correspondence between the first-level LLID identifier and the second-level LLID identifier.
  • the OLT sends a first window message to the CMC, where the first window message carries the CNU MAC address.
  • the second data window information allocated by the OLT for the CNU, and the second data window is used for the CNU to interact with the OLT.
  • the mapping between the primary LLID identifier of the CMC registered with the CNU proxy and the secondary LLID identifier can be established, thereby obtaining the topology structure of the CMC and the CNU node in the EPOC.
  • the OLT sends a first window message to the CMC, and the first window message may be sent in the first data window in the form of a bandwidth 4 ⁇ right frame (GATE), where the destination MAC address is the MAC address of the CNU, and the OLT is applied for registration.
  • the CNU allocates the second data window information, and the second data window includes the authorized bandwidth and time slot for the CNU to interact with the OLT.
  • Step S1010 The CMC sends a registration confirmation message to the OLT in the second data window, where the registration confirmation message carries the secondary LLID identifier.
  • the OLT After the OLT sends the first window message to the CMC, the OLT receives the registration confirmation message sent by the CMC through the second data window allocated for the CNU, and the registration confirmation message may be sent in the form of a registration confirmation frame (REGISTER_ACK), where the OLT is carried The secondary LLID identifier assigned by the CNU.
  • REGISTER_ACK Registration confirmation frame
  • the OLT receives the LLID registration request of the CNU connected to the CMC sent by the CMC agent through the first data window of the CMC, and returns a registration message to the CMC, and the CMC receives the first data window.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the method before the OLT sends the first window message to the CMC, the method further includes: the OLT determining the distance from the OLT to the CMC according to the window message broadcast time and the time of receiving the third registration request; and the distance of the OLT according to the OLT to the CMC. , determine the second data window.
  • the OLT can use the measurement result of the CMC in the process of registering for the CMC to determine the bandwidth or time slot of the second data window authorized by the CNU, thereby avoiding the re-measuring of the CNU and simplifying the registration process.
  • FIG. 11 is a schematic structural diagram of Embodiment 1 of a coaxial media converter CMC according to the present invention, such as As shown in FIG. 11, the coaxial media converter CMC1 100 of this embodiment includes: a first receiving module 11 10, configured to receive a first registration request, a first registration, sent by at least one coaxial network unit CNU connected to the CMC1 100. The media carrying the CNU in the request intervenes to control the MAC address;
  • the first sending module 1120 is configured to send a second registration request to the OLT in the first data window allocated by the optical line terminal OLT for the CMC1 100, where the second registration request carries the first-level LLID identifier allocated by the OLT for the CMC1 100.
  • the CNU's MAC address, the first data window is used for CMC 1 100 to interact with the OLT.
  • the CMC1 100 of this embodiment may be used to perform the technical solution of the method embodiment shown in FIG. 2.
  • For the specific process of the method refer to the related description of the method embodiment shown in FIG. 2, and details are not described herein again.
  • the CMC provided in this embodiment can send the LLID registration request of the CNU connected thereto through the first data window proxy through the setting of the first receiving module and the first sending module, and then perform information interaction through the first data window to complete the CNU.
  • the registration of the LLID on the OLT avoids the occupation of the CNU LLID registration for the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE), and uses the discovery window resource for the LLID registration of the CMC or ONU, reducing the probability of registration conflict. .
  • the first receiving module 1110 in the foregoing CMC1 100 may be further configured to receive a registration message sent by the OLT, where the registration message carries the MAC address of the CNU and the secondary LLID identifier assigned by the OLT to the CNU.
  • the CMC1 100 of this embodiment may be used to perform the technical solution of the method embodiment shown in FIG. 3.
  • For the specific process of the method refer to the related description of the method embodiment shown in FIG. 3, and details are not described herein again.
  • the CMC provided in this embodiment can send the LLID registration request of the CNU connected thereto through the first data window proxy through the setting of the first receiving module and the first sending module, and receive the registration message returned by the OLT, and then pass the first
  • the data window performs information interaction to complete the registration of the CNU LLID on the OLT, avoiding the occupation of the CNU LLID registration to the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE), and the discovery window resource for the LLID of the CMC or ONU. Registration reduces the probability of registration conflicts.
  • the first receiving module 1 110 in the CMC1 100 described above may also be used for receiving The first window message sent by the OLT, the first window message carries the CNU's MAC address and the 0LT is the second data window information allocated by the CNU, and the second data window is used for the CNU and the 0LT to exchange data.
  • the CMC1 100 of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 4.
  • For the specific process of the method refer to the related description of the method embodiment shown in FIG. 4, and details are not described herein again.
  • the CMC provided in this embodiment can send the LLID registration request of the CNU connected thereto through the first data window proxy through the setting of the first receiving module and the first sending module, and receive the registration message returned by the OLT and the OLT passes the first The first window message sent by the data window, thereby completing the registration of the CNU LLID on the OLT, avoiding the signaling of the CNU LLID registration process to the OLT broadcast discovery window, and the discovery window resource for the CMC or ONU LLID registration reduces the probability of registration signaling collisions.
  • the first sending module 1120 in the CMC1 100 is further configured to send a registration confirmation message to the OLT in the second data window, where the registration confirmation message carries the secondary LLID identifier.
  • the CMC1 100 of this embodiment may be used to perform the technical solution of the method embodiment shown in FIG. 5.
  • For the specific process of the method refer to the related description of the method embodiment shown in FIG. 5, and details are not described herein again.
  • the CMC provided in this embodiment can send the LLID registration request of the CNU connected thereto through the first data window proxy through the setting of the first receiving module and the first sending module, and receive the registration message returned by the OLT and the first data received by the OLT.
  • the first window message sent by the window, and the registration confirmation message is sent to the OLT through the second data window, and the registration of the LLID of the CNU on the OLT is completed.
  • the logical link tag LLID registration method in this embodiment avoids the occupation of the discovery window of the OLT broadcast by the signaling in the LLID registration process of the CNU, and uses the discovery window resource for the LLID registration of the CMC or the ONU, thereby reducing the registration signaling conflict. The probability.
  • FIG. 12 is a schematic structural diagram of Embodiment 1 of an optical line terminal OLT according to the present invention. As shown in FIG. 12, the optical line terminal OLT1200 of this embodiment includes:
  • the second sending module 1210 is configured to send a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT 1200 for the CMC, the first data window Used for CMC to send to OLT1200 Send data
  • the second receiving module 1220 is configured to receive, in the first data window, a second registration request sent by the CMC, where the second registration request carries a primary LLID identifier and a CNU MAC address allocated by the OLT 1200 for the CMC.
  • the OLT 1200 of the present embodiment can be used to perform the technical solution of the method embodiment shown in FIG. 6.
  • the specific process of the method reference may be made to the related description of the method embodiment shown in FIG. 6, and details are not described herein again.
  • the OLT provided in this embodiment can receive the LLID registration request of the CNU connected to the CMC by the CMC through the first data window and the second receiving module, and then perform information interaction through the first data window. In order to complete the registration of the CNU LLID on the OLT, the CNU LLID registration is avoided.
  • the OLT uses the discovery window broadcast by the registration authority frame (DISCOVERY GATE), and the discovery window resource is used for the LLID registration of the CMC or the ONU, and the registration is reduced. The probability of a conflict.
  • FIG. 13 is a schematic structural diagram of Embodiment 2 of an optical line terminal OLT according to the present invention.
  • the optical line terminal OLT1300 of this embodiment includes the second sending module 1210 and the second receiving module 1220 in the foregoing embodiment. In addition, it also includes:
  • the processing module 1330 is configured to allocate a secondary LLID identifier to the CNU according to the primary LLID identifier.
  • the second sending module 1210 is further configured to send a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the processing module 1330 may be further configured to determine whether the primary LLID identifier is an LLID identifier that the OLT 1300 has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU.
  • the L L 1300 of the present embodiment can be used to perform the technical solution of the method embodiment shown in FIG. 7.
  • the OLT provided in this embodiment can receive the LLID registration request of the CNU connected to the CMC of the CMC agent through the first data window of the CMC through the setting of the second sending module, the second receiving module, and the processing module, and return the registration message to the CMC.
  • the CNU LLID registration is avoided to occupy the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE), and the discovery window resource is used.
  • the LLID registration of the CMC or ONU reduces the probability of registration conflicts.
  • processing module 1330 in the OLT 1300 may be used to establish a correspondence between the primary LLID identifier and the secondary LLID identifier.
  • the second sending module 1210 is further configured to send a first window message to the CMC, where the first window message carries the MAC address of the CNU and the second data window information allocated by the OLT 1300 to the CNU, and the second data window is used to exchange data between the CNU and the OLT 1300. .
  • the L L 1300 of the present embodiment can be used to perform the technical solution of the method embodiment shown in FIG. 8.
  • the OLT provided by this embodiment can receive the LLID registration request of the CNU connected to the CMC of the CMC agent through the first data window of the CMC through the setting of the second sending module, the second receiving module, and the processing module, and return the registration message to the CMC.
  • the OLT also sends a first window message to the CMC through the first data window, thereby completing registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided for the OLT's discovery window, and the window resource is found to be used for CMC or ONU LLID registration, which reduces the registration rate.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the second receiving module 1220 in the OLT 1300 is further configured to receive, in the second data window, a registration confirmation message sent by the CMC, where the registration confirmation message carries a secondary LLID identifier.
  • the OLT 1300 of this embodiment may be used to perform the technical solution of the method embodiment shown in FIG. 9.
  • reference may be made to the related description of the method embodiment shown in FIG. 9, and details are not described herein again.
  • the OLT provided by this embodiment can receive the LLID registration request of the CNU connected to the CMC of the CMC agent through the first data window of the CMC through the setting of the second sending module, the second receiving module, and the processing module, and return the registration message to the CMC.
  • the OLT also sends a first window message to the CMC through the first data window, and receives a registration confirmation message sent by the CMC through the second data window, thereby completing registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided to occupy the OLT's discovery window, and the window resource is found to be used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the second sending module 1210 in the OLT 1300 is further configured to broadcast a discovery window message, where the discovery window message carries the discovery window information, and the discovery window is used to send a registration request to the device connected to the OLT 1300;
  • the second receiving module 1220 is further configured to receive a third registration request sent by the CMC, where the third registration request carries a MAC address of the CMC.
  • the OLT 1300 of this embodiment may be used to perform the technical solution of the method embodiment shown in FIG. 10A.
  • For the specific process of the method refer to the related description of the method embodiment shown in FIG. 10A, and details are not described herein again.
  • the OLT provided by this embodiment can receive the LLID registration request of the CNU connected to the CMC of the CMC agent through the first data window of the CMC through the setting of the second sending module, the second receiving module, and the processing module, and return the registration message to the CMC.
  • the OLT also sends a first window message to the CMC through the first data window, and receives a registration confirmation message sent by the CMC through the second data window, thereby completing registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided to occupy the OLT's discovery window, and the discovery window resource is used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC during the LLID registration process.
  • FIG. 14 is a schematic structural diagram of Embodiment 3 of an optical line terminal OLT according to the present invention.
  • the optical line terminal OLT 1400 of the present embodiment includes a second sending module 1210, a second receiving module 1220, and a processing module 1330. In addition, it also includes:
  • the ranging module 1440 is configured to determine the distance between the OLT 1400 and the CMC according to the window message broadcast time and the time of receiving the third registration request.
  • the processing module 1330 is further configured to determine a second data window according to the distance between the OLT 1400 and the CMC.
  • the OLT 1400 of the present embodiment can also be used to perform the technical solution of the method embodiment shown in FIG. 10A.
  • For the specific process of the method refer to the related description of the method embodiment shown in FIG. 10A, and details are not described herein again.
  • the OLT provided in this embodiment can receive the CLL LLID registration request of the CMC agent connected to the CMC through the first data window of the CMC through the setting of the second sending module, the second receiving module, the processing module, and the ranging module, and The CMC returns a registration message, and the OLT also sends a first window message to the CMC through the first data window, and passes through the second data window.
  • the registration confirmation message sent by the CMC is received, and the registration of the LLID of the CNU on the OLT is completed.
  • the CNU LLID registration is avoided to occupy the OLT's discovery window, and the window resource is found to be used for CMC or ONU LLID registration, which reduces the registration rate.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the OLT can use the ranging result of the CMC in the process of registering for the CMC to determine the bandwidth or time slot of the second data window authorized by the CNU, avoiding the distance measurement of the CNU again, and simplifying the registration process.
  • the EPOC system provided by the embodiment of the present invention may include any of the CMC, CNU, and OLT in the foregoing embodiments.
  • FIG. 15 is a schematic structural diagram of Embodiment 1 of the EPOC system of the present invention. As shown in FIG. 15, this embodiment takes an embodiment as an example.
  • the EPOC system 1500 includes:
  • the OLT receives the LLID registration request of the CNU connected to the CMC sent by the CMC agent through the first data window of the CMC, and returns a registration message to the CMC, and the CMC receives the first OLT sent by the first data window.
  • the CNU LLID registration is avoided to occupy the OLT's discovery window, and the window resource is found to be used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the OLT can use the ranging result of the CMC in the process of registering for the CMC to determine the bandwidth or time slot of the second data window authorized by the CNU, avoiding the distance measurement of the CNU again, and simplifying the registration process.
  • the CMC 1600 of the embodiment includes at least one CPU 1601, at least one network interface 1604 or other user interface 1603, and a memory 1605. And at least one communication bus 1602. Communication bus 1602 is used to implement connection communication between devices.
  • the CMC1600 optionally includes a user interface 1603 that includes a display, keyboard or pointing device.
  • Memory 1605 may include high speed RAM memory and may also include non-volatile memory, such as at least one disk memory.
  • the memory 1605 can optionally include at least one storage device located remotely from the aforementioned CPU 1601. In some embodiments, the memory 1605 Stores the following elements, encodings, modules or data structures, or their subsets, or their extensions:
  • Operating system 1606 containing various programs for implementing various basic services and handling hardware-based tasks
  • a first receiver 1610 configured to receive a first registration request sent by at least one coaxial network unit CNU connected to the CMC 1600, where the first registration request carries a media intervention control MAC address of the CNU;
  • the first transmitter 1620 is configured to send a second registration request to the OLT in the first data window allocated by the optical line terminal OLT for the CMC 1600, where the second registration request carries the first-level LLID identifier and the CNU allocated by the OLT for the CMC 1600.
  • the first data window is used for CMC 1600 to exchange data with the OLT.
  • the first receiver 1610 may be further configured to receive a registration message sent by the OLT, where the registration message carries a MAC address of the CNU and a secondary LLID identifier allocated by the OLT to the CNU.
  • the first receiver 1610 may be further configured to receive a first window message sent by the OLT, where the first window message carries the MAC address of the CNU and the second data window information allocated by the OLT to the CNU, where the second data window is used. Interact data with COLT at CNU.
  • the first transmitter 1620 is further configured to send a registration confirmation message to the OLT in the second data window, where the registration confirmation message carries the secondary LLID identifier.
  • the CMC 1600 provided in this embodiment includes a core component for processing a service, and is not related to the specific purpose of the implementation manner, and details are not described herein.
  • the working processes of the first receiver 1610 and the first transmitter 1620 in the CMC 1600 are similar to those of the first receiving module 11 10 and the first transmitting module 1 120 in the CMC 1 100 of FIG. 1 and will not be described again.
  • the CMC provided in this embodiment can send a LLID registration request of the CNU connected thereto through the first data window proxy of the CMC provided by the first function, and receive the registration message returned by the OLT and the first sent by the OLT through the first data window.
  • the window message, and sending a registration confirmation message to the OLT through the second data window completes registration of the CNU LLID on the OLT.
  • the link mark LLID registration method avoids the occupation of the discovery window of the OLT broadcast by the signaling in the LLID registration process of the CNU, and the discovery window resource is used for the LLID registration of the CMC or the ONU, and the registration letter is reduced. The probability of making a conflict.
  • the OLT 1700 of this embodiment includes at least one CPU 1701, at least one network interface 1704 or other user interface 1703, a memory 1705, and At least one communication bus 1702. Communication bus 1702 is used to implement connection communication between devices.
  • the OLT 1700 optionally includes a user interface 1703 that includes a display, a keyboard or a pointing device.
  • Memory 1705 may include high speed RAM memory and may also include non-volatile memory, such as at least one disk memory.
  • the memory 1705 can optionally include at least one storage device located remotely from the aforementioned CPU 1701. In some embodiments, memory 1705 stores the following elements, encodings, modules or data structures, or a subset thereof, or their extension set:
  • Operating system 1706 containing various programs for implementing various basic services and handling hardware-based tasks
  • a second transmitter 1710 configured to send a second window message to the coaxial media converter CMC, where the second window message carries the media intervention control MAC address of the CMC and the first data window information allocated by the OLT 1700 to the CMC, the first data window Used by the CMC to send data to the OLT 1700;
  • the second receiver 1720 is configured to receive, in the first data window, a second registration request sent by the CMC, where the second registration request carries a primary LLID identifier allocated by the OLT 1700 for the CMC and a MAC address of the CNU.
  • the OLT 1700 provided in this embodiment includes core components for processing services, and is not related to the specific purpose of the implementation manner, and details are not described herein.
  • the working processes of the second transmitter 1710 and the second receiver 1720 in the OLT 1700 are similar to those of the second sending module 1210 and the second receiving module 1220 in the OLT 1200, respectively, and are not described again.
  • the OLT provided in this embodiment can receive the LLID registration request of the CNU connected to the CMC by the CMC through the setting of each functional device, and then perform information interaction through the first data window to complete the LLID of the CNU.
  • the registration on the OLT avoids the occupation of the discovery window broadcast by the OLT through the registration authorization frame (DISCOVERY GATE) of the CNU LLID registration, and uses the discovery window resource for the LLID registration of the CMC or the ONU, reducing the probability of registration conflict.
  • the OLT 1800 of the present embodiment includes at least one CPU 1701, at least one network interface 1704 or other user interface 1703, a memory 1705, and at least one communication bus 1702.
  • Communication bus 1702 is used to implement connection communication between devices.
  • the OLT 1700 optionally includes a user interface 1703, including a display, a keyboard or a pointing device.
  • Memory 1705 may include high speed RAM memory and may also include non-volatile memory, such as at least one disk memory.
  • the memory 1705 can optionally include at least one storage device located remotely from the aforementioned CPU 1701. In some embodiments, memory 1705 stores the following elements, encodings, modules or data structures, or a subset thereof, or their extension set:
  • Operating system 1706 which contains various programs for implementing various basic services and handling hardware-based tasks
  • the optical line terminal OLT 1800 of this embodiment includes, in addition to the second transmitter 1710 and the second receiver 1720 in the above embodiment, the following:
  • the processor 1830 is configured to allocate a secondary LLID identifier to the CNU according to the primary LLID identifier, and the second transmitter 1710 is further configured to send a registration message to the CMC, where the registration message carries the CNU MAC address and the secondary LLID identifier.
  • the processor 1830 may be further configured to determine whether the primary LLID identifier is an LLID identifier that the OLT 1800 has assigned to the CMC, and if yes, assign a secondary LLID identifier to the CNU.
  • the processor 1830 is further configured to establish a correspondence between the primary LLID identifier and the secondary LLID identifier.
  • the second transmitter 1710 is further configured to send a first window message to the CMC, where the first window message carries the CNU MAC address. And the second data window information allocated by the OLT 1800 to the CNU, and the second data window is used for the CNU to interact with the OLT 1800.
  • the second receiver 1720 is further configured to receive, in the second data window, a registration confirmation message sent by the CMC, where the registration confirmation message carries the secondary LLID identifier.
  • the second transmitter 1710 is further configured to broadcast a discovery window message, and the discovery window message carries the discovery window information, and the discovery window is used to send a registration request to the device connected to the OLT1800;
  • the second receiver 1720 is further configured to receive a third registration request sent by the CMC, where the third registration request carries the MAC address of the CMC.
  • the OLT 1800 provided in this embodiment includes a core component for processing services, The specific purpose of the method is not relevant and will not be described here.
  • the working processes of the second transmitter 1710, the second receiver 1720, and the processor 1830 in the OLT 1800 are similar to the working processes of the second sending module 1210, the second receiving module 1220, and the processing module 1330 in the OLT 1300 of FIG. 13, respectively. Let me repeat.
  • the OLT provided by the embodiment can receive the LLID registration request of the CNU connected to the CMC by the CMC through the first data window of the CMC, and return a registration message to the CMC, and the OLT also passes the first data window.
  • the CMC sends the first window message, and receives the registration confirmation message sent by the CMC through the second data window, thereby completing registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided for the OLT's discovery window, and the discovery window resource is used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • FIG. 19 is a schematic structural diagram of Embodiment 6 of an optical line terminal OLT according to the present invention.
  • the OLT 1900 of the present embodiment includes at least one CPU 1701, at least one network interface 1704 or other user interface 1703, a memory 1705, and At least one communication bus 1702.
  • Communication bus 1702 is used to implement connection communication between devices.
  • the OLT 1700 optionally includes a user interface 1703, including a display, keyboard or pointing device.
  • the memory 1705 may include a high speed RAM memory and may also include a non-volatile memory such as at least one disk memory.
  • the memory 1705 can optionally include at least one storage device located remotely from the aforementioned CPU 1701. In some embodiments, memory 1705 stores the following elements, encodings, modules or data structures, or a subset thereof, or their extension set:
  • Operating system 1706 which contains various programs for implementing various basic services and handling hardware-based tasks
  • the optical line terminal OLT 1900 of the present embodiment includes: in addition to the second transmitter 1710, the second receiver 1720, and the processor 1830 in the above embodiment, the method further includes:
  • the range finder 1940 is configured to determine a distance between the OLT 1900 and the CMC according to the window message broadcast time and the time of receiving the third registration request;
  • the processor 1830 is further configured to determine the second data window ⁇ according to the distance from the OLT 1900 to the CMC.
  • the OLT 1900 provided in this embodiment includes a core component for processing a service, The specific purpose of the method is not relevant and will not be described here.
  • the working processes of the second transmitter 1710, the second receiver 1720, the processor 1830, and the range finder 1940 in the OLT 1900 are respectively the second transmitting module 1210, the second receiving module 1220, and the processing module 1330 in the OLT 1400 in FIG.
  • the working process of the ranging module 1440 is approximated and will not be described again.
  • the OLT provided by the embodiment can receive the LLID registration request of the CNU connected to the CMC by the CMC through the first data window of the CMC, and return a registration message to the CMC, and the OLT also passes the first data window.
  • the CMC sends the first window message, and receives the registration confirmation message sent by the CMC through the second data window, thereby completing registration of the CNU LLID on the OLT.
  • the CNU LLID registration is avoided for the OLT's discovery window, and the discovery window resource is used for CMC or ONU LLID registration, which reduces the probability of registration conflict.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the OLT can use the ranging result of the CMC in the process of registering for the CMC to determine the bandwidth or time slot of the second data window authorized by the CNU, which avoids the RNC re-ranging and simplifies the registration process.
  • the OLT receives the CNU LLID registration request of the CMC agent connected to the CMC through the first data window of the CMC, and returns to the CMC.
  • the registration message the OLT also sends a first window message to the CMC through the first data window, and receives a registration confirmation message sent by the CMC through the second data window.
  • the CNU LLID registration request is avoided for the OLT's discovery window, and the discovery window resource is used for CMC or ONU LLID registration, which reduces the probability of registration request conflicts.
  • the OLT can also obtain the topology of the EPOC in the process of LLID registration.
  • the OLT can use the ranging result of the CMC in the process of registering for the CMC to determine the bandwidth or time slot of the second data window authorized by the CNU, thereby avoiding the re-measurement of the CNU and simplifying the registration process.
  • the foregoing storage system includes the following steps:
  • the foregoing storage medium includes: a ROM, a RAM, a magnetic disk, or an optical disk, and the like, which can store program codes.

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Abstract

本发明实施例提供一种逻辑链路标记LLID注册方法、装置及系统。方法包括:同轴媒介转换器CMC接收与CMC连接的至少一个同轴网络单元CNU发送的第一注册请求,第一注册请求中携带CNU的媒体介入控制MAC地址;CMC在光线路终端OLT为CMC分配的第一数据窗口中,向OLT发送第二注册请求,第二注册请求中携带OLT为CMC分配的一级LLID标识和CNU的MAC地址,第一数据窗口用于CMC与OLT交互数据。本发明实施例提供的逻辑链路标记LLID注册方法、装置及系统中CMC通过自身的第一数据窗口代理与其连接的CNU的LLID注册请求,避免了CNU的LLID注册请求对发现窗口的占用,减少了注册请求冲突的概率。

Description

逻辑链路标记 LLID注册方法、 装置及系统
技术领域
本发明实施例涉及通信技术, 尤其涉及一种逻辑链路标记 LLID注册 方法、 装置及系统。 背景技术
现有通信数据传输技术中, 在同轴电缆上传输以太网数据的技术可统 称为 EOC ( Ethernet Over COAX )技术, EOC 技术采用端到多端的网络 拓朴结构, 利用广电网络原有的同轴电缆实现多种数据的全业务接入。 另 一种以太无源光网络 ( Ethernet Passive Optical Network, 简称 EPON )技 术是一种端对多端的光纤传输和接入技术, 采用广播方式传送下行数据, 采用时分多址方式传送上行数据, 可以灵活地组成树型、 星型或总线型等 拓朴结构。
近期出现了基于以太网无源光网络协议的同轴网络( EPON Protocol Over Coax, 简称 EPOC ) 技术, 融合上述 EPON技术和 EOC技术, 具有 二级拓朴结构。 图 1为 EPOC系统的一种拓朴结构示意图, 如图 1所示, EPOC包括: 光线路终端 (Optical Line Terminal, 简称 OLT ) 101、 光网 络单元 (Optical Network Unit, 简称 ONU ) 102、 同轴媒介转换器 (Coax Media Converter,简称 CMC ) 103以及多个同轴网络单元( Coaxial Network Unit, 简称 CNU ) 104。 其中 CMC是类似 ONU的实体, 连接多个 CNU 形成第二级拓朴结构。
现有技术中, OLT向网络中的 CMC和 ONU广播发现窗口(Discovery Window )消息, CMC接收到所连接的 CNU发出的逻辑链路标记( Logical Link Identifier, 简称 LLID ) 注册请求后, 可以在发现窗口内向 OLT转发 CNU的 LLID注册请求。 CMC和 ONU也可以在发现窗口内向 OLT发出 自身的 LLID注册请求。 然而, 这会导致 ONU、 CMC和 CNU的 LLID注 册在 OLT的发现窗口中发生冲突。 发明内容
本发明实施例提供一种逻辑链路标记 LLID注册方法、 装置及系统, 以减少注册冲突的概率。
在第一方面,本发明实施例提供的逻辑链路标记 LLID注册方法包括: 同轴媒介转换器 CMC 接收与所述 CMC 连接的至少一个同轴网络单元 CNU发送的第一注册请求, 所述第一注册请求中携带所述 CNU的媒体介 入控制 MAC地址; 所述 CMC在光线路终端 OLT为所述 CMC分配的第 一数据窗口中, 向所述 OLT发送第二注册请求, 所述第二注册请求中携 带所述 OLT为所述 CMC分配的一级 LLID标识和所述 CNU的 MAC地址 , 所述第一数据窗口用于所述 CMC与所述 OLT交互数据。
在第一方面的第一种可能的实现方式中, 所述 CMC在光线路终端 OLT 为所述 CMC分配的第一数据窗口中,向所述 OLT发送第二注册请求之后, 还包括: 所述 CMC接收所述 OLT发送的注册消息, 所述注册消息中携带 所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的二级 LLID标识。
结合第一方面或者第一方面的第一种可能的实现方式, 在笫二种可能 的实现方式中, 所迷 CMC在光线路终端 OLT为所述 CMC分配的第一数 据窗口中, 向所述 OLT发送第二注册请求之后, 还包括: 所述 CMC接收 所述 OLT发送给的第一窗口消息, 所述第一窗口消息中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信息, 所述第 二数据窗口用于所述 CNU与所述 OLT交互数据。
结合第一方面或者第一方面的第一或第二种可能的实现方式, 在第三 种可能的实现方式中,所述 CMC接收所述 OLT发送给的第一窗口消息之 后, 还包括: 所述 CMC在所述第二数据窗口中, 向所述 OLT发送注册确 认消息 , 所述注册确认消息中携带所述二级 LLID标识。
在第二方面,本发明实施例提供的逻辑链路标记 LLID注册方法包括: 光线路终端 OLT向同轴媒介转换器 CMC发送第二窗口消息,所述第二窗 口消息中携带所述 CMC的媒体介入控制 MAC地址以及所述 OLT为所述 CMC分配的第一数据窗口信息,所述第一数据窗口用于所述 CMC向所述 OLT发送数据; 所述 OLT在所述第一数据窗口中,接收所述 CMC发送的 第二注册请求,所述第二注册请求中携带所述 OLT为所述 CMC分配的一 级 LLID标识和 CNU的 MAC地址。
在第二方面的第一种可能的实现方式中, 所述 OLT在所述第一数据窗 口中, 接收所述 CMC发送的第二注册请求之后, 还包括: 所述 OLT根据 所述一级 LLID标识, 为所述 CNU分配二级 LLID标识; 所迷 OLT向所 述 CMC发送注册消息, 所述注册消息中携带所述 CNU的 MAC地址以及 所述二级 LLID标识。
结合第二方面或者第二方面的第一种可能的实现方式, 在第二种可能 的实现方式中, 所述 OLT根据所述一级 LLID标识, 为所述 CNU分配二 级 LLID标识, 包括: 所述 OLT判断所迷一级 LLID标识是否为所述 OLT 为所述 CMC已分配的 LLID标识, 若是, 则为所述 CNU分配二级 LLID 标识。
结合第二方面或者第二方面的第一或第二种可能的实现方式, 在第三 种可能的实现方式中, 所述 OLT根据所述一级 LLID标识, 为所述 CNU 分配二级 LLID标识之后, 还包括: 所述 OLT建立所述一级 LLID标识与 所述二级 LLID标识的对应关系。
结合第二方面或者第二方面的第一、 第二或第三种可能的实现方式, 在第四种可能的实现方式中, 所述 OLT在所述第一数据窗口中, 接收所 述 CMC发送的第二注册请求之后, 还包括: 所述 OLT向所述 CMC发送 第一窗口消息,所述第一窗口消息中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信息, 所迷第二数据窗口用于所述 CNU与所述 OLT交互数据。
结合第二方面或者第二方面的第一、 第二、 第三或第四种可能的实现 方式, 在第五种可能的实现方式中, 所述 OLT向所述 CMC发送第一窗口 消息之后, 还包括: 所述 OLT在所述第二数据窗口中,接收所述 CMC发 送的注册确认消息, 所述注册确认消息中携带所述二级 LLID标识。
在第三方面, 本发明实施例提供的同轴媒介转换器 CMC包括: 第一 接收模块,用于接收与所述 CMC连接的至少一个同轴网络单元 CNU发送 的第一注册请求, 所述第一注册请求中携带所述 CNU 的媒体介入控制 MAC地址; 第一发送模块, 用于在光线路终端 OLT为所述 CMC分配的 第一数据窗口中, 向所述 OLT发送第二注册请求, 所述第二注册请求中 携带所述 OLT为所述 CMC分配的一级 LLID标识和所述 CNU的 MAC地 址, 所述第一数据窗口用于所述 CMC与所述 OLT交互数据。
在第三方面的第一种可能的实现方式中,所述第一接收模块还用于接收 所述 OLT发送的注册消息, 所述注册消息中携带所述 CNU的 MAC地址 以及所述 OLT为所述 CNU分配的二级 LLID标识。
结合第三方面或者第三方面的第一种可能的实现方式, 在第二种可能 的实现方式中, 所述第一接收模块还用于接收所述 OLT发送给的第一窗 口消息, 所述第一窗口消息中携带所述 CNU的 MAC地址以及所述 OLT 为所述 CNU分配的第二数据窗口信息, 所述第二数据窗口用于所述 CNU 与所述 OLT交互数据。
结合第三方面或者第三方面的第一或第二种可能的实现方式, 在第三 种可能的实现方式中, 所述第一发送模块还用于在所述第二数据窗口中, 向所述 OLT发送注册确认消息, 所述注册确认消息中携带所述二级 LLID 标识。
在第四方面, 本发明实施例提供的光线路终端 OLT 包括: 第二发送 模块, 用于向同轴媒介转换器 CMC发送第二窗口消息, 所述第二窗口消 息中携带所述 CMC的媒体介入控制 MAC地址以及所述 OLT为所述 CMC 分配的第一数据窗口信息, 所述第一数据窗口用于所述 CMC向所述 OLT 发送数据; 第二接收模块, 用于在所述第一数据窗口中, 接收所述 CMC 发送的第二注册请求,所述第二注册请求中携带所述 OLT为所述 CMC分 配的一级 LLID标识和 CNU的 MAC地址。
在第四方面的第一种可能的实现方式中, 还包括: 处理模块, 用于根据 所述一级 LLID标识, 为所述 CNU分配二级 LLID标识; 所述第二发送模 块还用于向所述 CMC发送注册消息, 所述注册消息中携带所述 CNU的 MAC地址以及所述二级 LLID标识。
结合第四方面或者第四方面的第一种可能的实现方式, 在第二种可能 的实现方式中, 所述处理模块还用于判断所述一级 LLID标识是否为所述 OLT为所述 CMC 已分配的 LLID标识, 若是, 则为所述 CNU分配二级 LLID标识。
结合第四方面或者第四方面的第一或第二种可能的实现方式, 在第三 种可能的实现方式中, 所述处理模块还用于建立所述一级 LLID标识与所 述二级 LLID标识的对应关系。
结合第四方面或者第四方面的第一、 第二或第三种可能的实现方式, 在第四种可能的实现方式中, 所迷第二发送模块还用于向所述 CMC发送 第一窗口消息 ,所述第一窗口消息中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
结合第四方面或者第四方面的第一、 第二、 第三或第四种可能的实现 方式, 在第五种可能的实现方式中, 所述第二接收模块还用于在所述第二 数据窗口中 , 接收所述 CMC发送的注册确认消息 , 所述注册确认消息中 携带所述二级 LLID标识。
在第五方面, 本发明实施例提供的基于以太网无源光网络协议的同轴 网络 EPOC 系统包括: 上述任一同轴媒介转换器 CMC 和同轴网络单元 CNU, 以及上述任一光线路终端 OLT。
在第六方面, 本发明实施例提供的同轴媒介转换器 CMC包括: 第一 接收器,用于接收与所述 CMC连接的至少一个同轴网络单元 CNU发送的 第一注册请求,所述第一注册请求中携带所述 CNU的媒体介入控制 MAC 地址; 第一发送器, 用于在光线路终端 OLT为所述 CMC分配的第一数据 窗口中, 向所述 OLT发送第二注册请求, 所述第二注册请求中携带所述 OLT为所述 CMC分配的一级 LLID标识和所述 CNU的 MAC地址, 所述 第一数据窗口用于所述 CMC与所述 OLT交互数据。
在第六方面的第一种可能的实现方式中,所述第一接收器还用于接收所 述 OLT发送的注册消息, 所述注册消息中携带所述 CNU的 MAC地址以 及所述 OLT为所述 CNU分配的二级 LLID标识。
结合第六方面或者第六方面的第一种可能的实现方式, 在第二种可能 的实现方式中, 所述第一接收器还用于接收所述 OLT发送给的第一窗口 消息, 所述第一窗口消息中携带所述 CNU的 MAC地址以及所述 OLT为 所述 CNU分配的第二数据窗口信息,所述第二数据窗口用于所述 CNU与 所述 OLT交互数据。
结合第六方面或者第六方面的第一或第二种可能的实现方式, 在第三 种可能的实现方式中, 所述第一发送器还用于在所述第二数据窗口中, 向 所述 OLT发送注册确认消息,所述注册确认消息中携带所述二级 LLID标 识。
在第七方面, 本发明实施例提供的光线路终端 OLT 包括: 第二发送 器, 用于向同轴媒介转换器 CMC发送第二窗口消息, 所述第二窗口消息 中携带所述 CMC的媒体介入控制 MAC地址以及所述 OLT为所述 CMC 分配的第一数据窗口信息, 所述第一数据窗口用于所述 CMC向所述 OLT 发送数据; 第二接收器, 用于在所述第一数据窗口中, 接收所述 CMC发 送的第二注册请求,所述第二注册请求中携带所述 OLT为所述 CMC分配 的一级 LLID标识和 CNU的 MAC地址。
在第七方面的第一种可能的实现方式中, 还包括: 处理器, 用于根据所 述一级 LLID标识, 为所述 CNU分配二级 LLID标识; 所述第二发送器还 用于向所述 CMC发送注册消息, 所述注册消息中携带所述 CNU的 MAC 地址以及所述二级 LLID标识。
结合第七方面或者第七方面的第一种可能的实现方式, 在第二种可能 的实现方式中, 所述处理器还用于判断所述一级 LLID 标识是否为所述 OLT为所述 CMC 已分配的 LLID标识, 若是, 则为所述 CNU分配二级 LLID标识。
结合第七方面或者第七方面的第一或第二种可能的实现方式, 在第三 种可能的实现方式中, 所述处理器还用于建立所述一级 LLID标识与所述 二级 LLID标识的对应关系。
结合第七方面或者第七方面的第一、 第二或第三种可能的实现方式, 在第四种可能的实现方式中, 所述第二发送器还用于向所述 CMC发送第 一窗口消息, 所述第一窗口消息中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
结合第七方面或者第七方面的第一、 第二或第三种可能的实现方式, 在第四种可能的实现方式中, 所述第二接收器还用于在所述第二数据窗口 中, 接收所述 CMC发送的注册确认消息, 所述注册确认消息中携带所述 二级 LLID标识。 本发明实施例提供的逻辑链路标记 LLID注册方法、 装置及系统中, CMC通过自身的第一数据窗口代理发送与其连接的 CNU的 LLID注册请 求, 进而通过第一数据窗口进行信息交互以完成 CNU的 LLID在 OLT上 的注册,避免了 CNU的 LLID注册对 OLT通过注册授权帧( DISCOVERY GATE ) 广播的发现窗口的占用, 将发现窗口资源用于 CMC 或 ONU 的 LLID注册, 减少了注册冲突的概率。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对 实施例或现有技术描述中所需要使用的附图作一简单地介绍, 显而易见 地, 下面描述中的附图是本发明的一些实施例, 对于本领域普通技术人员 来讲, 在不付出创造性劳动性的前提下, 还可以根据这些附图获得其他的 附图。
图 1为 EPOC系统的一种拓朴结构示意图;
图 2为本发明的逻辑链路标记 LLID注册方法的实施例一的流程图; 图 3为本发明的逻辑链路标记 LLID注册方法的实施例二的流程图; 图 4为本发明的逻辑链路标记 LLID注册方法的实施例三的流程图; 图 5为本发明的逻辑链路标记 LLID注册方法的实施例四的流程图; 图 6为本发明的逻辑链路标记 LLID注册方法的实施例五的流程图; 图 7为本发明的逻辑链路标记 LLID注册方法的实施例六的流程图; 图 8为本发明的逻辑链路标记 LLID注册方法的实施例七的流程图; 图 9为本发明的逻辑链路标记 LLID注册方法的实施例八的流程图; 图 10A 为本发明的逻辑链路标记 LLID 注册方法的实施例九的流程 图;
图 10B 为本发明的逻辑链路标记 LLID 注册方法的实施例十的流程 图;
图 1 1为本发明的同轴媒介转换器 CMC的实施例一的结构示意图; 图 12为本发明的光线路终端 OLT的实施例一的结构示意图; 图 13为本发明的光线路终端 OLT的实施例二的结构示意图; 图 14为本发明的光线路终端 OLT的实施例三的结构示意图; 图 15为本发明的 EPOC系统的实施例一的结构示意图;
图 16为本发明的同轴媒介转换器 CMC的实施例二的结构示意图; 图 17为本发明的光线路终端 OLT的实施例四的结构示意图; 图 18为本发明的光线路终端 OLT的实施例五的结构示意图; 图 19为本发明的光线路终端 OLT的实施例六的结构示意图。 具体实施方式
为使本发明实施例的目的、 技术方案和优点更加清楚, 下面将结合本 发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描 述, 显然, 所描述的实施例是本发明一部分实施例, 而不是全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有作出创造性劳动前提 下所获得的所有其他实施例, 都属于本发明保护的范围。
图 2为本发明的逻辑链路标记 LLID注册方法的实施例一的流程图, 如图 2所示, 本实施例以同轴媒介转换器 CMC为执行主体对 LLID注册 方法加以说明, 本实施例的 LLID注册方法包括:
步骤 S202、 同轴媒介转换器 CMC接收与 CMC连接的至少一个同轴 网络单元 CNU发送的第一注册请求,第一注册请求中携带 CNU的媒体介 入控制 MAC地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带清求注册的 CNU的 MAC地址。
步骤 S204、CMC在光线路终端 OLT为 CMC分配的第一数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一 级 LLID标识和 CNU的 MAC地址,第一数据窗口用于 CMC与 OLT交互 数据。
CMC接收到第一注册请求后, 通过 OLT为自身分配的第一数据窗口 向 OLT发送第二注册请求。其中,第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
本实施例的逻辑链路标记 LLID注册方法中, CMC通过自身的第一数 据窗口代理发送与其连接的 CNU的 LLID注册请求, 进而通过第一数据 窗口进行信息交互以完成 CNU的 LLID在 OLT上的注册, 避免了 CNU 的 LLID注册对 OLT通过注册授权帧 ( DISCOVERY GATE) 广播的发现 窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注 册冲突的概率。
图 3为本发明的逻辑链路标记 LLID注册方法的实施例二的流程图, 如图 3所示, 本实施例以同轴媒介转换器 CMC为执行主体对 LLID注册 方法加以说明, 本实施例的 LLID注册方法包括:
步骤 S302、 同轴媒介转换器 CMC接收与 CMC连接的至少一个同轴 网络单元 CNU发送的第一注册请求,第一注册请求中携带 CNU的媒体介 入控制 MAC地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。
步骤 S304、CMC在光线路终端 OLT为 CMC分配的第一数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一 级 LLID标识和 CNU的 MAC地址,第一数据窗口用于 CMC与 OLT交互 数据。
CMC接收到第一注册请求后, 通过 OLT为自身分配的第一数据窗口 向 OLT发送第二注册请求。其中,第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S306、 CMC接收 OLT发送的注册消息, 注册消息中携带 CNU 的 MAC地址以及 OLT为 CNU分配的二级 LLID标识。 CMC向 OLT发送第二注册请求后, OLT可以以注册帧( REGISTER ) 的形式向 CMC返回注册信息, 注册信息中可以携带申请注册的 CNU的 MAC地址以及 OLT为申请注册的 CNU分配的二级 LLID标识。注册信息 用于通知 CMC , OLT已识别了第二注册请求并将申请注册的 CNU纳入通 信的上行时隙中。
本实施例的逻辑链路标记 LLID注册方法中, CMC通过自身的第一数 据窗口代理发送与其连接的 CNU的 LLID注册请求, 并接收 OLT返回的 注册消息, 进而通过第一数据窗口进行信息交互以完成 CNU的 LLID在 OLT 上的注册, 避免了 CNU 的 LLID 注册对 OLT 通过注册授权帧 ( DISCOVERY GATE ) 广播的发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的概率。
图 4为本发明的逻辑链路标记 LLID注册方法的实施例三的流程图, 如图 4所示, 本实施例以同轴媒介转换器 CMC为执行主体对 LLID注册 方法加以说明, 本实施例的 LLID注册方法包括:
步骤 S402、 同轴媒介转换器 CMC接收与 CMC连接的至少一个同轴 网络单元 CNU发送的第一注册请求,第一注册请求中携带 CNU的媒体介 入控制 MAC地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。
步骤 S404、CMC在光线路终端 OLT为 CMC分配的第一数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一 级 LLID标识和 CNU的 MAC地址,第一数据窗口用于 CMC与 OLT交互 数据。
CMC接收到第一注册请求后, 通过 OLT为自身分配的第一数据窗口 向 OLT发送第二注册请求。其中,第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以 以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S406、 CMC接收 OLT发送的注册消息, 注册消息中携带 CNU 的 MAC地址以及 OLT为 CNU分配的二级 LLID标识。
CMC向 OLT发送第二注册请求后, OLT可以以注册帧( REGISTER ) 的形式向 CMC返回注册信息, 注册信息中可以携带申请注册的 CNU的 MAC地址以及 OLT为申请注册的 CNU分配的二级 LLID标识。注册信息 用于通知 CMC , OLT已识别了第二注册请求并将申请注册的 CNU纳入通 信的上行时隙中。
步骤 S408、 CMC接收 OLT发送给的第一窗口消息, 第一窗口消息中 携带 CNU的 MAC地址以及 OLT为 CNU分配的第二数据窗口信息,第二 数据窗口用于 CNU与 OLT交互数据。
CMC接收 OLT发送的第一窗口消息, 第一窗口消息可以以带宽授权 帧 (GATE ) 的形式通过第一数据窗口进行发送, 其中携带目的 MAC 地 址为 CNU的 MAC地址,以及 OLT为申请注册的 CNU分配的第二数据窗 口信息,第二数据窗口包括用于 CNU与 OLT交互数据的授权带宽和时隙。
本实施例的逻辑链路标记 LLID注册方法中, CMC通过自身的第一数 据窗口代理发送与其连接的 CNU的 LLID注册请求, 并接收 OLT返回的 注册消息和 OLT通过第一数据窗口发送的第一窗口消息, 进而完成 CNU 的 LLID在 OLT上的注册,避免了 CNU的 LLID注册过程中的信令对 OLT 广播的发现窗口的占用,将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册信令冲突的概率。
图 5为本发明的逻辑链路标记 LLID注册方法的实施例四的流程图, 如图 5所示, 本实施例以同轴媒介转换器 CMC为执行主体对 LLID注册 方法加以说明, 本实施例的 LLID注册方法包括:
步骤 S502、 同轴媒介转换器 CMC接收与 CMC连接的至少一个同轴 网络单元 CNU发送的第一注册请求,第一注册请求中携带 CNU的媒体介 入控制 MAC地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。 步骤 S504、CMC在光线路终端 OLT为 CMC分配的第一数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一 级 LLID标识和 CNU的 MAC地址,第一数据窗口用于 CMC与 OLT交互 数据。
CMC接收到第一注册请求后, 通过 OLT为自身分配的第一数据窗口 向 OLT发送第二注册请求。其中,第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S506、 CMC接收 OLT发送的注册消息, 注册消息中携带 CNU 的 MAC地址以及 OLT为 CNU分配的二级 LLID标识。
CMC向 OLT发送第二注册请求后, OLT可以以注册帧 ( REGISTER ) 的形式向 CMC返回注册信息, 注册信息中可以携带申请注册的 CNU的 MAC地址以及 OLT为申请注册的 CNU分配的二级 LLID标识。注册信息 用于通知 CMC , OLT已识別了第二注册请求并将申请注册的 CNU纳入通 信的上行时隙中。
步骤 S508、 CMC接收 OLT发送给的第一窗口消息, 第一窗口消息中 携带 CNU的 MAC地址以及 OLT为 CNU分配的第二数据窗口信息,第二 数据窗口用于 CNU与 OLT交互数据。
CMC接收 OLT发送的第一窗口消息, 第一窗口消息可以以带宽授权 帧 (GATE ) 的形式通过第一数据窗口进行发送, 其中携带目的 MAC 地 址为 CNU的 MAC地址,以及 OLT为申请注册的 CNU分配的第二数据窗 口信息,第二数据窗口包括用于 CNU与 OLT交互数据的授权带宽和时隙。
步骤 S510、 CMC在第二数据窗口中, 向 OLT发送注册确认消息, 注 册确认消息中携带二级 LLID标识。
CMC接收到 OLT发送的第一窗口消息后, 通过 OLT为 CNU分配的 第二数据窗口向 OLT发送注册确认消息, 注册确认消息可以以注册确认 帧 (REGISTER ACK ) 的形式进行发送, 其中携带 OLT为 CNU分配的 二级 LLID标识。
本实施例的逻辑链路标记 LLID注册方法中, CMC通过自身的第一数 据窗口代理发送与其连接的 CNU的 LLID注册请求, 接收 OLT返回的注 册消息和 OLT通过第一数据窗口发送的第一窗口消息, 并且通过第二数 据窗口向 OLT发送注册确认消息, 完成 CNU的 LLID在 OLT上的注册。 本实施例的逻辑链路标记 LLID注册方法避免了 CNU的 LLID注册过程中 的信令对 OLT广播的发现窗口的占用,将发现窗口资源用于 CMC或 ONU 的 LLID注册, 减少了注册信令冲突的概率。
图 6为本发明的逻辑链路标记 LLID注册方法的实施例五的流程图, 如图 6所示 ,本实施例以光线路终端 OLT为执行主体对 LLID注册方法加 以说明, 本实施例的 LLID注册方法包括:
步骤 S602、 光线路终端 OLT向同轴媒介转换器 CMC发送第二窗口 消息, 第二窗口消息中携带 CMC的媒体介入控制 MAC地址以及 OLT为 CMC分配的第一数据窗口信息, 第一数据窗口用于 CMC与 OLT交互数 据。
在 CMC的 LLID注册的过程中, OLT会向 CMC发送第二窗口消息, 第二窗口消息可以以以带宽授权帧 (GATE ) 的形式通过发现窗口进行发 送, 其中携带目的 MAC地址为 CMC的 MAC地址, 以及 OLT为 CMC 分配的第一数据窗口信息,第一数据窗口包括用于 CMC与 OLT交互数据 的授权带宽和时隙。
步骤 S604、 OLT在第一数据窗口中,接收 CMC发送的第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一级 LLID标识和 CNU的 MAC 地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。 CMC 接收到第一注册请求后, 通过 OLT 为自身分配的第一数据窗口向 OLT发送第二注册请求。 其中, 第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以 以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
本实施例的逻辑链路标记 LLID注册方法中, OLT通过 CMC的第一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求 , 进而 通过第一数据窗口进行信息交互以完成 CNU的 LLID在 OLT上的注册, 避免了 CNU的 LLID注册对 OLT通过注册授权帧 ( DISCOVERY GATE ) 广播的发现窗口的占用,将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册沖突的概率。
图 7为本发明的逻辑链路标记 LLID注册方法的实施例六的流程图, 如图 7所示,本实施例以光线路终端 OLT为执行主体对 LLID注册方法加 以说明, 本实施例的 LLID注册方法包括:
步骤 S702、 光线路终端 OLT向同轴媒介转换器 CMC发送第二窗口 消息, 第二窗口消息中携带 CMC的媒体介入控制 MAC地址以及 OLT为 CMC分配的第一数据窗口信息, 第一数据窗口用于 CMC与 OLT交互数 据。
在 CMC的 LLID注册的过程中, OLT会向 CMC发送第二窗口消息, 第二窗口消息可以以以带宽授权帧 (GATE ) 的形式通过发现窗口进行发 送, 其中携带目的 MAC地址为 CMC的 MAC地址, 以及 OLT为 CMC 分配的第一数据窗口信息,第一数据窗口包括用于 CMC与 OLT交互数据 的授权带宽和时隙。
步骤 S704、 OLT在第一数据窗口中,接收 CMC发送的第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一级 LLID标识和 CNU的 MAC 地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。 CMC 接收到第一注册请求后, 通过 OLT 为自身分配的第一数据窗口向 OLT发送第二注册请求。 其中, 第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以以注册请求帧
( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S706、 OLT根据一级 LLID标识, 为 CNU分配二级 LLID标识;
OLT向 CMC发送注册消息,注册消息中携带 CNU的 MAC地址以及二级 LLID标识。其中 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识, 可以包括: OLT判断一级 LLID标识是否为 OLT为 CMC已分配的 LLID 标识, 若是, 则为 CNU分配二级 LLID标识。
OLT接收到 CMC发送的第二注册请求后, OLT可以判断一级 LLID 标识是否为 OLT为 CMC已分配的 LLID标识, 若是, 则为 CNU分配二 级 LLID标识, 并且可以以注册帧( REGISTER )的形式向 CMC返回注册 信息, 注册信息中携带申请注册的 CNU的 MAC地址以及 OLT为申请注 册的 CNU分配的二级 LLID标识。 注册信息用于通知 CMC , OLT已识別 了第二注册请求并将申请注册的 CNU纳入通信的上行时隙中。
本实施例的逻辑链路标记 LLID注册方法中, OLT通过 CMC的第一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, 进而完成 CNU的 LLID在 OLT上的注册, 避免了 CNU的 LLID注册对 OLT通过注册授权帧( DISCOVERY GATE )广播的 发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少 了注册冲突的概率。
图 8为本发明的逻辑链路标记 LLID注册方法的实施例七的流程图, 如图 8所示,本实施例以光线路终端 OLT为执行主体对 LLID注册方法加 以说明, 本实施例的 LLID注册方法包括:
步骤 S802、 光线路终端 OLT向同轴媒介转换器 CMC发送第二窗口 消息, 第二窗口消息中携带 CMC的媒体介入控制 MAC地址以及 OLT为 CMC分配的第一数据窗口信息, 第一数据窗口用于 CMC与 OLT交互数 据。
在 CMC的 LLID注册的过程中, OLT会向 CMC发送第二窗口消息, 第二窗口消息可以以以带宽授权帧 (GATE ) 的形式通过发现窗口进行发 送, 其中携带目的 MAC地址为 CMC的 MAC地址, 以及 OLT为 CMC 分配的第一数据窗口信息,第一数据窗口包括用于 CMC与 OLT交互数据 的授权带宽和时隙。
步骤 S804、 OLT在第一数据窗口中,接收 CMC发送的第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一级 LLID标识和 CNU的 MAC 地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。 CMC 接收到第一注册请求后, 通过 OLT 为自身分配的第一数据窗口向 0LT发送第二注册请求。 其中, 第一数据窗口包括 0LT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以 以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S806、 OLT根据一级 LLID标识, 为 CNU分配二级 LLID标识; OLT向 CMC发送注册消息,注册消息中携带 CNU的 MAC地址以及二级 LLID标识。其中 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识, 可以包括: OLT判断一级 LLID标识是否为 OLT为 CMC已分配的 LLID 标识, 若是, 则为 CNU分配二级 LLID标识。
OLT接收到 CMC发送的第二注册请求后, OLT可以判断一级 LLID 标识是否为 OLT为 CMC已分配的 LLID标识, 若是, 则为 CNU分配二 级 LLID标识, 并且可以以注册帧( REGISTER )的形式向 CMC返回注册 信息, 注册信息中携带申请注册的 CNU的 MAC地址以及 OLT为申请注 册的 CNU分配的二级 LLID标识。 注册信息用于通知 CMC , OLT已识别 了第二注册请求并将申请注册的 CNU纳入通信的上行时隙中。
步骤 S808、 OLT建立一级 LLID标识与二级 LLID标识的对应关系; OLT向 CMC发送第一窗口消息,第一窗口消息中携带 CNU的 MAC地址 以及 OLT为 CNU分配的第二数据窗口信息, 第二数据窗口用于 CNU与 OLT交互数据。
OLT为 CNU分配二级 LLID标识之后,可以建立为 CNU代理注册的 CMC的一级 LLID标识与二级 LLID标识的对应关系, 从而获知了 EPOC 中的 CMC与 CNU等节点的拓朴结构。
OLT 向 CMC 发送第一窗口消息, 第一窗口消息可以以带宽 4吏权帧
( GATE ) 的形式通过第一数据窗口进行发送, 其中携带目的 MAC 地址 为 CNU的 MAC地址,以及 OLT为申请注册的 CNU分配的第二数据窗口 信息, 第二数据窗口包括用于 CNU与 OLT交互数据的授权带宽和时隙。
本实施例的逻辑链路标记 LLID注册方法中, OLT通过 CMC的第一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息,OLT还通过第一数据窗口向 CMC发送第一窗口消息, 进而完成 CNU的 LLID在 OLT上的注册。 避免了 CNU的 LLID注册对 OLT的发现窗口的占用,将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册沖突的概率。 同时, OLT还可以在 LLID 注册的过程中获得 EPOC的拓朴结构。
图 9为本发明的逻辑链路标记 LLID注册方法的实施例八的流程图, 如图 9所示,本实施例以光线路终端 OLT为执行主体对 LLID注册方法加 以说明, 本实施例的 LLID注册方法包括:
步骤 S902、 光线路终端 OLT向同轴媒介转换器 CMC发送第二窗口 消息, 第二窗口消息中携带 CMC的媒体介入控制 MAC地址以及 OLT为 CMC分配的第一数据窗口信息, 第一数据窗口用于 CMC与 OLT交互数 据。
在 CMC的 LLID注册的过程中, OLT会向 CMC发送第二窗口消息, 第二窗口消息可以以以带宽授权帧 (GATE ) 的形式通过发现窗口进行发 送, 其中携带目的 MAC地址为 CMC的 MAC地址, 以及 OLT为 CMC 分配的第一数据窗口信息,第一数据窗口包括用于 CMC与 OLT交互数据 的授权带宽和时隙。
步骤 S904、 OLT在第一数据窗口中,接收 CMC发送的第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一级 LLID标识和 CNU的 MAC 地址。 在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。 CMC 接收到第一注册请求后, 通过 OLT 为自身分配的第一数据窗口向 OLT发送第二注册请求。 其中, 第一数据窗口包括 0LT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以 以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S906、 OLT根据一级 LLID标识, 为 CNU分配二级 LLID标识; OLT向 CMC发送注册消息,注册消息中携带 CNU的 MAC地址以及二级 LLID标识。其中 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识, 可以包括: OLT判断一级 LLID标识是否为 OLT为 CMC已分配的 LLID 标识, 若是, 则为 CNU分配二级 LLID标识。
OLT接收到 CMC发送的第二注册请求后, OLT可以判断一级 LLID 标识是否为 OLT为 CMC已分配的 LLID标识, 若是, 则为 CNU分配二 级 LLID标识, 并且可以以注册帧( REGISTER )的形式向 CMC返回注册 信息, 注册信息中携带申请注册的 CNU的 MAC地址以及 OLT为申请注 册的 CNU分配的二级 LLID标识。 注册信息用于通知 CMC, OLT已识別 了第二注册请求并将申请注册的 CNU纳入通信的上行时隙中。
步骤 S908、 OLT建立一级 LLID标识与二级 LLID标识的对应关系; OLT向 CMC发送第一窗口消息,第一窗口消息中携带 CNU的 MAC地址 以及 0LT为 CNU分配的笫二数据窗口信息, 第二数据窗口用于 CNU与 OLT交互数据。
0LT为 CNU分配二级 LLID标识之后,可以建立为 CNU代理注册的 CMC的一级 LLID标识与二级 LLID标识的对应关系, 从而获知了 EPOC 中的 CMC与 CNU等节点的拓朴结构。
OLT 向 CMC 发送第一窗口消息, 第一窗口消息可以以带宽 4吏权帧 ( GATE ) 的形式通过第一数据窗口进行发送, 其中携带目的 MAC 地址 为 CNU的 MAC地址,以及 OLT为申请注册的 CNU分配的第二数据窗口 信息, 第二数据窗口包括用于 CNU与 OLT交互数据的授权带宽和时隙。
步骤 S910、 OLT在第二数据窗口中,接收 CMC发送的注册确认消息, 注册确认消息中携带二级 LLID标识。
OLT向 CMC发送第一窗口消息之后, OLT通过为 CNU分配的第二 数据窗口接收 CMC发送的注册确认消息, 注册确认消息可以以注册确认 帧 ( REGISTER— ACK ) 的形式进行发送, 其中携带 OLT为 CNU分配的 二级 LLID标识。
本实施例的逻辑链路标记 LLID注册方法中, OLT通过 CMC的第一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息,OLT还通过第一数据窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口接收 CMC发送的注册确认消息,进而完成 CNU的 LLID在 OLT上的注册。 避免了 CNU的 LLID注册对 OLT的发现窗口的 占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突 的概率。 同时, OLT还可以在 LLID注册的过程中获得 EPOC的拓朴结构。
图 10A 为本发明的逻辑链路标记 LLID 注册方法的实施例九的流程 图, 如图 10A所示, 本实施例以光线路终端 OLT为执行主体对 LLID注 册方法加以说明, 本实施例的 LLID注册方法包括:
步骤 S 1000、 OLT以广播形式发送发现窗口消息, 发现窗口消息中携 带发现窗口信息, 发现窗口用于与 OLT连接的设备发送注册请求。
OLT向与其连接的各 CMC和 ONU广播发现窗口消息, 发现窗口消 息可以以注册授权帧 (DISCOVERY GATE ) 的形式进行发送, 发现窗口 消息中携带发现窗口的开启时刻和开启长度等信息。发现窗口用于与 OLT 连接的各 CMC和 ONU等设备向 OLT发送注册请求。
步驟 S1001A、 OLT接收 CMC或 ONU发送的注册请求, 注册请求中 携带 CMC或 ONU的 MAC地址。 OLT向与其连接的各 CMC和 ONU广 播发现窗口消息,未注册或者有注册更新需求的 CMC和 ONU接收发现窗 口消息后, 可以根据发现窗口消息调整本地时钟, 以在发现窗口开启时启 动注册过程。
发现窗口开启后, 有注册需求的 CMC 或 ONU 随机延时 (Random Delay ) 一段时间, 以避免在发现窗口中的注册冲突, 然后向 OLT发送注 册请求, 注册请求可以以注册请求帧 ( REGISTER— REQ )的形式发送。 注 册请求中携带发送该注册请求的 CMC或 ONU的 MAC地址以及光器件参 数等信息。
步骤 S 1001 B、 OLT判断接收到的注册请求中携带的 LLID是否为已 注册过的 LLID,如果判断获知注册请求中携带的 LLID尚未完成注册则执 行步骤 S1001C;如果判断获知注册请求中携带的 LLID已完成注册则执行 步骤 S1004。
步骤 S1001C、 OLT判断获知注册请求中携带的 LLID尚未完成注册, 那么确定接收到的注册请求为第三注册请求。
步骤 S1002A, OLT向 CMC或 OUN发送注册消息 (REGISTER)和第 二窗口消息 (GATE ) 。
OLT接收到 CMC或 ONU发送的第三注册请求后,会向 CMC或 ONU 发送注册消息和第二窗口消息。注册消息中携带 CMC或 ONU的 MAC地 址以及为 CMC或 ONU分配的一级 LLID标识。第二窗口消息中携带 CMC 或 ONU的 MAC地址以及 OLT为 CMC或 ONU分配的第一数据窗口信息, 第一数据窗口用于 CMC与 OLT交互数据; 第二窗口消息可以以以带宽授 权帧 (GATE ) 的形式通过发现窗口进行发送, 其中携带目的 MAC 地址 为 CMC的 MAC地址, 以及 OLT为 CMC分配的第一数据窗口信息, 第 一数据窗口包括用于 CMC与 OLT交互数据的授权带宽和时隙。
步骤 S1002B、 OLT 接收 CMC 或 OUN 发送的注册确认消息 ( REGISTER— ACK ) , 完成 CMC或 OUN的 LLID的注册。
步驟 S1004、 OLT判断获知注册请求中携带的 LLID 已完成注册, 那 么确定接收到的注册请求为第二注册请求,即由 CMC代理的 CUN的注册 请求。
步骤 S1006、 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识; OLT向 CMC发送注册消息,注册消息中携带 CNU的 MAC地址以及二级 LLID标识。其中 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识, 可以包括: OLT判断一级 LLID标识是否为 OLT为 CMC已分配的 LLID 标识, 若是, 则为 CNU分配二级 LLID标识。 OLT接收到 CMC发送的第二注册请求后, OLT可以判断一级 LLID 标识是否为 OLT为 CMC已分配的 LLID标识, 若是, 则为 CNU分配二 级 LLID标识 , 并且可以以注册帧( REGISTER )的形式向 CMC返回注册 信息, 注册信息中携带申请注册的 CNU的 MAC地址以及 OLT为申请注 册的 CNU分配的二级 LLID标识。 注册信息用于通知 CMC , OLT已识別 了第二注册请求并将申请注册的 CNU纳入通信的上行时隙中。
步骤 S1008、 OLT建立一级 LLID标识与二级 LLID标识的对应关系; OLT向 CMC发送第一窗口消息,第一窗口消息中携带 CNU的 MAC地址 以及 OLT为 CNU分配的第二数据窗口信息, 第二数据窗口用于 CNU与 OLT交互数据。
OLT为 CNU分配二级 LLID标识之后,可以建立为 CNU代理注册的 CMC的一级 LLID标识与二级 LLID标识的对应关系, 从而获知了 EPOC 中的 CMC与 CNU等节点的拓朴结构。
OLT 向 CMC 发送第一窗口消息, 第一窗口消息可以以带宽 4吏权帧 ( GATE ) 的形式通过第一数据窗口进行发送, 其中携带目的 MAC 地址 为 CNU的 MAC地址,以及 OLT为申请注册的 CNU分配的第二数据窗口 信息, 第二数据窗口包括用于 CNU与 0LT交互数据的授权带宽和时隙。
步骤 S1010、 OLT在第二数据窗口中, 接收 CMC发送的注册确认消 息, 注册确认消息中携带二级 LLID标识。
OLT向 CMC发送第一窗口消息之后, OLT通过为 CNU分配的第二 数据窗口接收 CMC发送的注册确认消息, 注册确认消息可以以注册确认 帧 ( REGISTER— ACK ) 的形式进行发送, 其中携带 OLT为 CNU分配的 二级 LLID标识。
本实施例的逻辑链路标记 LLID注册方法中, OLT通过 CMC的第一 数据窗口接收 CMC代理发送的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, OLT还通过第一数据窗口向 CMC发送第一窗 口消息, 并且通过第二数据窗口接收 CMC发送的注册确认消息, 进而完 成 CNU的 LLID在 OLT上的注册。 避免了 CNU的 LLID注册对 OLT的 发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少 了注册冲突的概率。 同时, OLT还可以在 LLID注册的过程中获得 EPOC 的拓朴结构。
在上述实施例的基础上, OLT向 CMC发送第一窗口消息之前, 还包 括: OLT 根据窗口消息广播时间和接收第三注册请求的时间, 确定 OLT 至 CMC的距离; OLT根据 OLT至 CMC的距离, 确定第二数据窗口。
换言之, OLT可以将在为 CMC注册的过程中对 CMC的测距结果用 于确定为 CNU授权的第二数据窗口的带宽或时隙,避免了对 CNU再次进 行测距, 简化了注册过程。
图 10B 为本发明的逻辑链路标记 LLID 注册方法的实施例十的流程 图, 如图 10B所示, 本实施例对 LLID注册方法中 OLT与 CMC之间的交 互过程加以说明, 本实施例的 LLID注册方法包括:
步骤 S 1000、 OLT广播发现窗口消息, 发现窗口消息中携带发现窗口 信息, 发现窗口用于与 OLT连接的设备发送注册请求。
OLT向与其连接的各 CMC和 ONU广播发现窗口消息, 发现窗口消 息可以以注册授权帧 (DISCOVERY GATE ) 的形式进行发送, 发现窗口 消息中携带发现窗口的开启时刻和开启长度等信息。发现窗口用于与 OLT 连接的各 CMC和 ONU等设备向 OLT发送注册请求。
步骤 S1001、 CMC向 OLT发送的第三注册请求, 第三注册请求中携 带 CMC的 MAC地址。
OLT向与其连接的各 CMC和 ONU广播发现窗口消息, 未注册或者 有注册更新需求的 CMC和 ONU接收发现窗口消息后,可以根据发现窗口 消息调整本地时钟, 以在发现窗口开启时启动注册过程。
发现窗口开启后, 有注册需求的 CMC 或 ONU 随机延时 (Random Delay ) 一段时间, 以避免在发现窗口中的注册冲突, 然后向 OLT发送第 三注册请求, 第三注册请求可以以注册请求帧( REGISTER— REQ )的形式 发送。 第三注册请求中携带发送该第三注册请求的 CMC或 ONU的 MAC 地址以及光器件参数等信息。
步骤 S1002、 OLT向同轴媒介转换器 CMC发送第二窗口消息, 第二 窗口消息中携带 CMC的媒体介入控制 MAC地址以及 OLT为 CMC分配 的第一数据窗口信息, 第一数据窗口用于 CMC与 OLT交互数据;
在 CMC的 LLID注册的过程中, OLT会向 CMC发送第二窗口消息, 第二窗口消息可以以以带宽授权帧 (GATE ) 的形式通过发现窗口进行发 送, 其中携带目的 MAC地址为 CMC的 MAC地址, 以及 OLT为 CMC 分配的第一数据窗口信息,第一数据窗口包括用于 CMC与 OLT交互数据 的授权带宽和时隙。
步骤 S1004、 CMC在第一数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC分配的一级 LLID标识和 CNU的 MAC 地址。
在 EPOC系统中, CMC与至少一个 CNU连接的情况下, CMC接收 与其连接的该些 CNU发送的第一注册请求以代理该些有注册需求的 CNU 发起注册请求, 第一注册请求可以携带请求注册的 CNU的 MAC地址。 CMC 接收到第一注册请求后, 通过 OLT 为自身分配的第一数据窗口向 OLT发送第二注册请求。 其中, 第一数据窗口包括 OLT在 CMC的 LLID 注册过程中通过带宽授权帧 (GATE ) 为 CMC分配的用于 CMC与 OLT 交互数据的授权带宽和时隙; 第二注册请求可以 以注册请求帧 ( REGISTER— REQ )的形式向 OLT发送, 第二注册请求中携带有 OLT在 CMC的 LLID注册过程中通过注册帧 (REGISTER ) 为 CMC分配的一级 LLID标识以及有注册需求的 CNU的 MAC地址。
步骤 S1006、 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识; OLT向 CMC发送注册消息,注册消息中携带 CNU的 MAC地址以及二级 LLID标识。其中 OLT根据一级 LLID标识,为 CNU分配二级 LLID标识, 可以包括: OLT判断一级 LLID标识是否为 OLT为 CMC已分配的 LLID 标识, 若是, 则为 CNU分配二级 LLID标识。
OLT接收到 CMC发送的第二注册请求后, OLT可以判断一级 LLID 标识是否为 OLT为 CMC已分配的 LLID标识, 若是, 则为 CNU分配二 级 LLID标识, 并且可以以注册帧( REGISTER )的形式向 CMC返回注册 信息, 注册信息中携带申请注册的 CNU的 MAC地址以及 OLT为申请注 册的 CNU分配的二级 LLID标识。 注册信息用于通知 CMC , OLT已识别 了第二注册请求并将申请注册的 CNU纳入通信的上行时隙中。
步驟 S1008、 OLT建立一级 LLID标识与二级 LLID标识的对应关系; OLT向 CMC发送第一窗口消息,第一窗口消息中携带 CNU的 MAC地址 以及 OLT为 CNU分配的第二数据窗口信息, 第二数据窗口用于 CNU与 OLT交互数据。
OLT为 CNU分配二级 LLID标识之后,可以建立为 CNU代理注册的 CMC的一级 LLID标识与二级 LLID标识的对应关系, 从而获知了 EPOC 中的 CMC与 CNU等节点的拓朴结构。
OLT 向 CMC 发送第一窗口消息, 第一窗口消息可以以带宽 4吏权帧 ( GATE ) 的形式通过第一数据窗口进行发送, 其中携带目的 MAC 地址 为 CNU的 MAC地址,以及 OLT为申请注册的 CNU分配的笫二数据窗口 信息, 第二数据窗口包括用于 CNU与 OLT交互数据的授权带宽和时隙。
步骤 S1010、 CMC在第二数据窗口中 , 向 OLT发送注册确认消息, 注册确认消息中携带二级 LLID标识。
OLT向 CMC发送第一窗口消息之后, OLT通过为 CNU分配的第二 数据窗口接收 CMC发送的注册确认消息, 注册确认消息可以以注册确认 帧 ( REGISTER— ACK ) 的形式进行发送, 其中携带 OLT为 CNU分配的 二级 LLID标识。
本实施例的逻辑链路标记 LLID注册方法中, OLT通过 CMC的第一 数据窗口接收 CMC代理发送的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, CMC通过第一数据窗口接收 OLT发送的第一 窗口消息, 并且通过第二数据窗口向 OLT发送注册确认消息, 进而完成 CNU的 LLID在 OLT上的注册。避免了 CNU的 LLID注册对 OLT的发现 窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注 册冲突的概率。 同时, OLT还可以在 LLID注册的过程中获得 EPOC的拓 朴结构。
在上述实施例的基础上, OLT向 CMC发送第一窗口消息之前, 还包 括: OLT 根据窗口消息广播时间和接收第三注册请求的时间, 确定 OLT 至 CMC的距离; OLT根据 OLT至 CMC的距离, 确定第二数据窗口。
换言之, OLT可以将在为 CMC注册的过程中对 CMC的测 3巨结果用 于确定为 CNU授权的第二数据窗口的带宽或时隙,避免了对 CNU再次进 行测距, 简化了注册过程。
图 1 1为本发明的同轴媒介转换器 CMC的实施例一的结构示意图,如 图 11所示, 本实施例的同轴媒介转换器 CMC1 100包括: 第一接收模块 11 10 , 用于接收与 CMC1 100连接的至少一个同轴网络 单元 CNU发送的第一注册请求,第一注册请求中携带 CNU的媒体介入控 制 MAC地址;
第一发送模块 1 120 , 用于在光线路终端 OLT为 CMC1 100分配的第 一数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC1 100分配的一级 LLID标识和 CNU的 MAC地址, 第一数据窗口用 于 CMC 1 100与 OLT交互数据。
本实施例的 CMC1 100, 可以用于执行图 2所示方法实施例的技术方 案, 执行该方法的具体过程可参见图 2所示方法实施例的相关描述, 此处 不再赘述。
本实施例提供的 CMC通过第一接收模块和第一发送模块的设置, 可 以通过自身的第一数据窗口代理发送与其连接的 CNU的 LLID注册请求, 进而通过第一数据窗口进行信息交互以完成 CNU的 LLID在 OLT上的注 册, 避免了 CNU 的 LLID 注册对 OLT 通过注册授权帧 (DISCOVERY GATE ) 广播的发现窗口的占用, 将发现窗口资源用于 CMC 或 ONU 的 LLID注册, 减少了注册冲突的概率。
进一步地,上述的 CMC1 100中的第一接收模块 1 110还可以用于接收 OLT发送的注册消息,注册消息中携带 CNU的 MAC地址以及 OLT为 CNU 分配的二级 LLID标识。
本实施例的 CMC1 100, 可以用于执行图 3所示方法实施例的技术方 案, 执行该方法的具体过程可参见图 3所示方法实施例的相关描述, 此处 不再赘述。
本实施例提供的 CMC通过第一接收模块和第一发送模块的设置, 可 以通过自身的第一数据窗口代理发送与其连接的 CNU的 LLID注册请求, 并接收 OLT返回的注册消息, 进而通过第一数据窗口进行信息交互以完 成 CNU的 LLID在 OLT上的注册, 避免了 CNU的 LLID注册对 OLT通 过注册授权帧 (DISCOVERY GATE ) 广播的发现窗口的占用, 将发现窗 口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的概率。
进一步地,上述的 CMC1 100中的第一接收模块 1 110还可以用于接收 OLT发送给的第一窗口消息, 第一窗口消息中携带 CNU的 MAC地址以 及 0LT为 CNU分配的第二数据窗口信息,第二数据窗口用于 CNU与 0LT 交互数据。
本实施例的 CMC1 100, 可以用于执行图 4所示方法实施例的技术方 案, 执行该方法的具体过程可参见图 4所示方法实施例的相关描述, 此处 不再赘述。
本实施例提供的 CMC通过第一接收模块和第一发送模块的设置, 可 以通过自身的第一数据窗口代理发送与其连接的 CNU的 LLID注册请求, 并接收 OLT返回的注册消息和 OLT通过第一数据窗口发送的第一窗口消 息, 进而完成 CNU的 LLID在 OLT上的注册, 避免了 CNU的 LLID注册 过程中的信令对 OLT广播的发现窗口的占用, 将发现窗口资源用于 CMC 或 ONU的 LLID注册, 减少了注册信令冲突的概率。
进一步地,上述的 CMC1 100中的第一发送模块 1 120还用于在第二数 据窗口中, 向 OLT发送注册确认消息, 注册确认消息中携带二级 LLID标 识。
本实施例的 CMC1 100, 可以用于执行图 5所示方法实施例的技术方 案, 执行该方法的具体过程可参见图 5所示方法实施例的相关描述, 此处 不再赘述。
本实施例提供的 CMC通过第一接收模块和第一发送模块的设置, 可 以通过自身的第一数据窗口代理发送与其连接的 CNU的 LLID注册请求, 接收 OLT 返回的注册消息和 OLT 通过第一数据窗口发送的第一窗口消 息,并且通过第二数据窗口向 OLT发送注册确认消息,完成 CNU的 LLID 在 OLT上的注册。 本实施例的逻辑链路标记 LLID注册方法避免了 CNU 的 LLID注册过程中的信令对 OLT广播的发现窗口的占用,将发现窗口资 源用于 CMC或 ONU的 LLID注册, 减少了注册信令冲突的概率。
图 12为本发明的光线路终端 OLT的实施例一的结构示意图,如图 12 所示, 本实施例的光线路终端 OLT1200包括:
第二发送模块 1210 ,用于向同轴媒介转换器 CMC发送第二窗口消息 , 第二窗口消息中携带 CMC 的媒体介入控制 MAC地址以及 OLT1200为 CMC分配的第一数据窗口信息, 第一数据窗口用于 CMC向 OLT1200发 送数据;
第二接收模块 1220 , 用于在第一数据窗口中, 接收 CMC发送的第二 注册请求, 第二注册请求中携带 OLT1200为 CMC分配的一级 LLID标识 和 CNU的 MAC地址。
本实施例的 OLT1200,可以用于执行图 6所示方法实施例的技术方案, 执行该方法的具体过程可参见图 6所示方法实施例的相关描述, 此处不再 赘述。
本实施例提供的 OLT通过第二发送模块和第二接收模块的设置, 可 以通过 CMC 的第一数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求,进而通过第一数据窗口进行信息交互以完成 CNU的 LLID 在 OLT上的注册, 避免了 CNU 的 LLID 注册对 OLT通过注册授权帧 ( DISCOVERY GATE ) 广播的发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的概率。
图 13为本发明的光线路终端 OLT的实施例二的结构示意图,如图 13 所示, 本实施例的光线路终端 OLT1300 除了包括上述实施例中的第二发 送模块 1210和第二接收模块 1220之外, 还包括:
处理模块 1330, 用于根据一级 LLID标识, 为 CNU分配二级 LLID 标识;
第二发送模块 1210还用于向 CMC发送注册消息, 注册消息中携带 CNU的 MAC地址以及二级 LLID标识。
处理模块 1330还可以用于判断一级 LLID标识是否为 OLT1300为 CMC已分配的 LLID标识, 若是, 则为 CNU分配二级 LLID标识。
本实施例的 0 L T 1300,可以用于执行图 7所示方法实施例的技术方案, 执行该方法的具体过程可参见图 7所示方法实施例的相关描述, 此处不再 赘述。
本实施例提供的 OLT通过第二发送模块、 第二接收模块和处理模块 的设置, 可以通过 CMC的第一数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求,并向 CMC返回注册消息,进而完成 CNU的 LLID 在 OLT上的注册, 避免了 CNU 的 LLID 注册对 OLT通过注册授权帧 ( DISCOVERY GATE ) 广播的发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册沖突的概率。
进一步地, 上述的 OLT1300中的处理模块 1330还可以用于建立一级 LLID标识与二级 LLID标识的对应关系。
第二发送模块 1210还用于向 CMC发送第一窗口消息,第一窗口消息 中携带 CNU的 MAC地址以及 OLT 1300为 CNU分配的第二数据窗口信息, 第二数据窗口用于 CNU与 OLT1300交互数据。
本实施例的 0 L T 1300,可以用于执行图 8所示方法实施例的技术方案, 执行该方法的具体过程可参见图 8所示方法实施例的相关描述, 此处不再 赘述。
本实施例提供的 OLT通过第二发送模块、 第二接收模块和处理模块 的设置, 可以通过 CMC的第一数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, OLT还通过第一数据 窗口向 CMC发送第一窗口消息 , 进而完成 CNU的 LLID在 OLT上的注 册。 避免了 CNU的 LLID注册对 OLT的发现窗口的占用, 将发现窗口资 源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的 4既率。 同时, OLT 还可以在 LLID注册的过程中获得 EPOC的拓朴结构。
进一步地, 上述的 OLT1300中的第二接收模块 1220还用于在第二数 据窗口中,接收 CMC发送的注册确认消息,注册确认消息中携带二级 LLID 标识。
本实施例的 OLT1300,可以用于执行图 9所示方法实施例的技术方案, 执行该方法的具体过程可参见图 9所示方法实施例的相关描述, 此处不再 赘述。
本实施例提供的 OLT通过第二发送模块、 第二接收模块和处理模块 的设置, 可以通过 CMC的第一数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, OLT还通过第一数据 窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口接收 CMC发送 的注册确认消息, 进而完成 CNU的 LLID在 OLT上的注册。 避免了 CNU 的 LLID注册对 OLT的发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的概率。 同时, OLT还可以在 LLID 注册的过程中获得 EPOC的拓朴结构。 进一步地, 上述的 OLT1300中的第二发送模块 1210还用于广播发现 窗口消息, 发现窗口消息中携带发现窗口信息, 发现窗口用于与 OLT1300 连接的设备发送注册请求;
第二接收模块 1220还用于接收 CMC发送的第三注册请求,第三注册 请求中携带 CMC的 MAC地址。
本实施例的 OLT1300, 可以用于执行图 10A所示方法实施例的技术 方案, 执行该方法的具体过程可参见图 10A所示方法实施例的相关描述, 此处不再赘述。
本实施例提供的 OLT通过第二发送模块、 第二接收模块和处理模块 的设置, 可以通过 CMC的第一数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, OLT还通过第一数据 窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口接收 CMC发送 的注册确认消息, 进而完成 CNU的 LLID在 OLT上的注册。 避免了 CNU 的 LLID注册对 OLT的发现窗口的占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的概率。 同时, OLT还可以在 LLID 注册的过程中获得 EPOC的拓朴结构。
图 14为本发明的光线路终端 OLT的实施例三的结构示意图,如图 14 所示, 本实施例的光线路终端 OLT1400除了包括第二发送模块 1210、 第 二接收模块 1220和处理模块 1330之外, 还包括:
测距模块 1440,用于根据窗口消息广播时间和接收第三注册请求的时 间, 确定 OLT1400至 CMC的距离;
处理模块 1330还用于根据 OLT1400至 CMC的距离, 确定第二数据 窗口。
本实施例的 OLT1400, 也可以用于执行图 10A所示方法实施例的技 术方案, 执行该方法的具体过程可参见图 10A所示方法实施例的相关描 述, 此处不再赘述。
本实施例提供的 OLT通过第二发送模块、 第二接收模块、 处理模块 以及测距模块的设置, 可以通过 CMC的第一数据窗口接收 CMC代理的 与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息, OLT 还通过第一数据窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口 接收 CMC发送的注册确认消息, 进而完成 CNU的 LLID在 OLT上的注 册。 避免了 CNU的 LLID注册对 OLT的发现窗口的占用, 将发现窗口资 源用于 CMC或 ONU的 LLID注册, 减少了注册冲突的 ^既率。 同时, OLT 还可以在 LLID注册的过程中获得 EPOC的拓朴结构。 OLT可以将在为 CMC注册的过程中对 CMC的测距结果用于确定为 CNU授权的第二数据 窗口的带宽或时隙, 避免了对 CNU再次进行测距, 简化了注册过程。
本发明实施例提供的 EPOC系统可以包括上述实施例中的任一 CMC、 CNU和 OLT。
图 15为本发明的 EPOC系统的实施例一的结构示意图,如图 15所示, 本实施例以一种实施方式为例, EPOC系统 1500包括:
多个 CNU1510、 图 1 1所示实施例中的 CMC1 100和图 14所示实施例 中提供的 OLT1400 ,执行该方法的具体过程可参见图 10B所示方法实施例 的相关描述, 此处不再赘述。
本实施例的 EPOC系统中, OLT通过 CMC的第一数据窗口接收 CMC 代理发送的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册 消息, CMC通过第一数据窗口接收 OLT发送的第一窗口消息, 并且通过 第二数据窗口向 OLT发送注册确认消息, 进而完成 CNU的 LLID在 OLT 上的注册。 避免了 CNU的 LLID注册对 OLT的发现窗口的占用, 将发现 窗口资源用于 CMC或 ONU的 LLID注册,减少了注册沖突的概率。同时, OLT还可以在 LLID注册的过程中获得 EPOC的拓朴结构。 OLT可以将在 为 CMC注册的过程中对 CMC的测距结果用于确定为 CNU授权的第二数 据窗口的带宽或时隙, 避免了对 CNU再次进行测距, 简化了注册过程。
图 16为本发明的同轴媒介转换器 CMC的实施例二的结构示意图,如 图 16所示, 本实施例的 CMC1600包括包括至少一个 CPU1601 , 至少一 个网络接口 1604或者其他用户接口 1603 , 存储器 1605, 和至少一通信总 线 1602。 通信总线 1602用于实现各装置之间的连接通信。 该 CMC1600 可选的包含用户接口 1603 , 包括显示器,键盘或者点击设备。存储器 1605 可能包含高速 RAM存储器,也可能还包括非不稳定的存储器( non-volatile memory ) , 例如至少一个磁盘存储器。 存储器 1605可选的可以包含至少 一个位于远离前述 CPU1601的存储装置。在一些实施方式中,存储器 1605 存储了如下的元素, 编码, 模块或者数据结构, 或者他们的子集, 或者他 们的扩展集:
操作系统 1606 , 包含各种程序, 用于实现各种基础业务以及处理基于 硬件的任务;
第一接收器 1610 , 用于接收与 CMC1600连接的至少一个同轴网络单 元 CNU发送的第一注册请求,第一注册请求中携带 CNU的媒体介入控制 MAC地址;
第一发送器 1620 , 用于在光线路终端 OLT为 CMC1600分配的第一 数据窗口中, 向 OLT发送第二注册请求, 第二注册请求中携带 OLT为 CMC 1600分配的一级 LLID标识和 CNU的 MAC地址, 第一数据窗口用 于 CMC 1600与 OLT交互数据。
进一步地, 上述第一接收器 1610还可以用于接收 OLT发送的注册消 息,注册消息中携带 CNU的 MAC地址以及 OLT为 CNU分配的二级 LLID 标识。
进一步地, 上述第一接收器 1610还可以用于接收 OLT发送给的第一 窗口消息,第一窗口消息中携带 CNU的 MAC地址以及 OLT为 CNU分配 的第二数据窗口信息, 第二数据窗口用于 CNU与 OLT交互数据。
进一步地, 上述第一发送器 1620还用于在第二数据窗口中, 向 OLT 发送注册确认消息, 注册确认消息中携带二级 LLID标识。
本实施例提供的 CMC1600包括用于处理业务的核心部件, 由于和实 施方式具体目的不相关, 在此不赘述。 CMC1600中的第一接收器 1610和 第一发送器 1620的工作过程分别与图 1 1 中 CMC 1 100中的第一接收模块 11 10和第一发送模块 1 120的工作过程近似, 不再赘述。
本实施例提供的 CMC, 通过各功能器件的设置, 可以通过自身的第 一数据窗口代理发送与其连接的 CNU的 LLID注册请求, 接收 OLT返回 的注册消息和 OLT通过第一数据窗口发送的第一窗口消息, 并且通过第 二数据窗口向 OLT发送注册确认消息,完成 CNU的 LLID在 OLT上的注 册。本实施例的; ¾辑链路标记 LLID注册方法避免了 CNU的 LLID注册过 程中的信令对 OLT广播的发现窗口的占用,将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册信令冲突的概率。 图 17为本发明的光线路终端 OLT的实施例四的结构示意图,如图 17 所示, 本实施例的 OLT1700包括包括至少一个 CPU1701 , 至少一个网络 接口 1704或者其他用户接口 1703 ,存储器 1705,和至少一通信总线 1702。 通信总线 1702用于实现各装置之间的连接通信。 该 OLT1700可选的包含 用户接口 1703 , 包括显示器, 键盘或者点击设备。 存储器 1705可能包含 高速 RAM存储器, 也可能还包括非不稳定的存储器 (non-volatile memory ) , 例如至少一个磁盘存储器。 存储器 1705可选的可以包含至少 一个位于远离前述 CPU1701的存储装置。在一些实施方式中,存储器 1705 存储了如下的元素, 编码, 模块或者数据结构, 或者他们的子集, 或者他 们的扩展集:
操作系统 1706, 包含各种程序, 用于实现各种基础业务以及处理基于 硬件的任务;
第二发送器 1710 , 用于向同轴媒介转换器 CMC发送第二窗口消息, 第二窗口消息中携带 CMC的媒体介入控制 MAC地址以及 OLT1700为 CMC分配的第一数据窗口信息, 第一数据窗口用于 CMC向 OLT1700发 送数据;
第二接收器 1720 , 用于在第一数据窗口中, 接收 CMC发送的第二注 册请求, 第二注册请求中携带 OLT1700为 CMC分配的一级 LLID标识和 CNU的 MAC地址。
本实施例提供的 OLT1700 包括用于处理业务的核心部件, 由于和实 施方式具体目的不相关, 在此不赘述。 OLT1700中的第二发送器 1710和 第二接收器 1720的工作过程分别与图 12中 OLT1200中的第二发送模块 1210和第二接收模块 1220的工作过程近似, 不再赘述。
本实施例提供的 OLT通过各功能器件的设置,可以通过 CMC的笫一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 进而 通过第一数据窗口进行信息交互以完成 CNU的 LLID在 OLT上的注册, 避免了 CNU的 LLID注册对 OLT通过注册授权帧 ( DISCOVERY GATE ) 广播的发现窗口的占用,将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册沖突的概率。
图 18为本发明的光线路终端 OLT的实施例五的结构示意图,如图 18 所示, 本实施例的 OLT1800包括包括至少一个 CPU1701 , 至少一个网络 接口 1704或者其他用户接口 1703 ,存储器 1705 ,和至少一通信总线 1702。 通信总线 1702用于实现各装置之间的连接通信。 该 OLT1700可选的包含 用户接口 1703, 包括显示器, 键盘或者点击设备。 存储器 1705可能包含 高速 RAM存储器, 也可能还包括非不稳定的存储器 (non-volatile memory ) , 例如至少一个磁盘存储器。 存储器 1705可选的可以包含至少 一个位于远离前述 CPU1701的存储装置。在一些实施方式中,存储器 1705 存储了如下的元素, 编码, 模块或者数据结构, 或者他们的子集, 或者他 们的扩展集:
操作系统 1706 , 包含各种程序, 用于实现各种基础业务以及处理基于 硬件的任务;
本实施例的光线路终端 OLT1800 除了包括上述实施例中的第二发送 器 1710和第二接收器 1720之外, 还包括:
处理器 1830, 用于才艮据一级 LLID标识, 为 CNU分配二级 LLID标 识;第二发送器 1710还用于向 CMC发送注册消息,注册消息中携带 CNU 的 MAC地址以及二级 LLID标识。
处理器 1830还可以用于判断一级 LLID标识是否为 OLT1800为 CMC 已分配的 LLID标识, 若是, 则为 CNU分配二级 LLID标识。
进一步地, 处理器 1830还可以用于建立一级 LLID标识与二级 LLID 标识的对应关系; 第二发送器 1710还用于向 CMC发送第一窗口消息, 第 一窗口消息中携带 CNU的 MAC地址以及 OLT1800为 CNU分配的第二数 据窗口信息, 第二数据窗口用于 CNU与 OLT1800交互数据。
进一步地, 第二接收器 1720还用于在第二数据窗口中, 接收 CMC发 送的注册确认消息, 注册确认消息中携带二级 LLID标识。
进一步地, 第二发送器 1710还用于广播发现窗口消息, 发现窗口消 息中携带发现窗口信息, 发现窗口用于与 OLT1800 连接的设备发送注册 请求;
进一步地, 第二接收器 1720还用于接收 CMC发送的第三注册请求, 第三注册请求中携带 CMC的 MAC地址。
本实施例提供的 OLT1800 包括用于处理业务的核心部件, 由于和实 施方式具体目的不相关, 在此不赘述。 OLT1800 中的第二发送器 1710、 第二接收器 1720和处理器 1830的工作过程分别与图 13中 OLT1300中的 第二发送模块 1210、第二接收模块 1220和处理模块 1330的工作过程近似, 不再赘述。
本实施例提供的 OLT通过各功能器件的设置,可以通过 CMC的第一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息,OLT还通过第一数据窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口接收 CMC发送的注册确认消息,进而完成 CNU的 LLID在 OLT上的注册。 避免了 CNU的 LLID注册对 OLT的发现窗口的 占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突 的概率。 同时, OLT还可以在 LLID注册的过程中获得 EPOC的拓朴结构。
图 19为本发明的光线路终端 OLT的实施例六的结构示意图,如图 19 所示, 本实施例的 OLT1900包括包括至少一个 CPU1701 , 至少一个网络 接口 1704或者其他用户接口 1703 ,存储器 1705,和至少一通信总线 1702。 通信总线 1702用于实现各装置之间的连接通信。 该 OLT1700可选的包含 用户接口 1703, 包括显示器, 键盘或者点击设备。 存储器 1705可能包含 高速 RAM存储器, 也可能还包括非不稳定的存储器 (non-volatile memory ) , 例如至少一个磁盘存储器。 存储器 1705可选的可以包含至少 一个位于远离前述 CPU1701的存储装置。在一些实施方式中,存储器 1705 存储了如下的元素, 编码, 模块或者数据结构, 或者他们的子集, 或者他 们的扩展集:
操作系统 1706 , 包含各种程序, 用于实现各种基础业务以及处理基于 硬件的任务;
本实施例的光线路终端 OLT1900 除了包括上迷实施例中的第二发送 器 1710、 第二接收器 1720和处理器 1830之外, 还包括:
测距器 1940 , 用于根据窗口消息广播时间和接收第三注册请求的时 间, 确定 OLT 1900至 CMC的距离;
处理器 1830还用于根据 OLT1900至 CMC的距离, 确定第二数据窗 ρ。
本实施例提供的 OLT1900 包括用于处理业务的核心部件, 由于和实 施方式具体目的不相关, 在此不赘述。 OLT1900 中的第二发送器 1710、 第二接收器 1720、 处理器 1830和测距器 1940的工作过程分别与图 14中 OLT1400中的第二发送模块 1210、 第二接收模块 1220、 处理模块 1330和 测距模块 1440的工作过程近似, 不再赘述。
本实施例提供的 OLT通过各功能器件的设置,可以通过 CMC的第一 数据窗口接收 CMC代理的与 CMC连接的 CNU的 LLID注册请求, 并向 CMC返回注册消息,OLT还通过第一数据窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口接收 CMC发送的注册确认消息,进而完成 CNU的 LLID在 OLT上的注册。 避免了 CNU的 LLID注册对 OLT的发现窗口的 占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册冲突 的概率。 同时, OLT还可以在 LLID注册的过程中获得 EPOC的拓朴结构。 OLT可以将在为 CMC注册的过程中对 CMC的测距结果用于确定为 CNU 授权的第二数据窗口的带宽或时隙, 避免了对 CNU再次进行测距, 简化 了注册过程。
综上所述, 本发明实施例提供的逻辑链路标记 LLID注册方法、 装置 及系统中, OLT通过 CMC的第一数据窗口接收 CMC代理的与 CMC连接 的 CNU的 LLID注册请求, 并向 CMC返回注册消息, OLT还通过第一数 据窗口向 CMC发送第一窗口消息, 并且通过第二数据窗口接收 CMC发 送的注册确认消息。 避免了 CNU的 LLID注册请求对 OLT的发现窗口的 占用, 将发现窗口资源用于 CMC或 ONU的 LLID注册, 减少了注册请求 冲突的概率。 同时, OLT还可以在 LLID注册的过程中获得 EPOC的拓朴 结构。 进一步地, OLT可以将在为 CMC注册的过程中对 CMC的测距结 果用于确定为 CNU授权的第二数据窗口的带宽或时隙,避免了对 CNU再 次进行测距, 简化了注册过程。
本领域普通技术人员可以理解: 实现上述方法实施例的全部或部分步 骤可以通过程序指令相关的硬件来完成, 前述的程序可以存储于一计算机 可读取存储介质中, 该程序在执行时, 执行包括上述方法实施例的步骤; 而前述的存储介质包括: ROM , RAM. 磁碟或者光盘等各种可以存储程 序代码的介质。
最后应说明的是: 以上实施例仅用以说明本发明的技术方案, 而非对 其限制; 尽管参照前述实施例对本发明进行了详细的说明, 本领域的普通 技术人员应当理解: 其依然可以对前述各实施例所记载的技术方案进行修 改, 或者对其中部分技术特征进行等同替换; 而这些修改或者替换, 并不 使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims

权 利 要 求 书
1、 一种逻辑链路标记 LLID注册方法, 其特征在于, 包括: 同轴媒介转换器 CMC接收与所述 CMC连接的至少一个同轴网络单 元 CNU发送的第一注册请求,所述第一注册请求中携带所述 CNU的媒体 介入控制 MAC地址;
所述 CMC在光线路终端 OLT为所述 CMC分配的第一数据窗口中, 向所述 OLT发送第二注册请求, 所述第二注册请求中携带所述 OLT为所 述 CMC分配的一级 LLID标识和所述 CNU的 MAC地址, 所述第一数据 窗口用于所述 CMC与所述 OLT交互数据。
2、 根据权利要求 1所述的方法, 其特征在于, 所述 CMC在光线路终 端 OLT为所述 CMC分配的第一数据窗口中, 向所述 OLT发送第二注册 请求之后, 还包括:
所述 CMC接收所述 OLT发送的注册消息,所述注册消息中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的二级 LLID标识。
3、 根据权利要求 2所述的方法, 其特征在于, 所述 CMC在光线路终 端 OLT为所述 CMC分配的第一数据窗口中, 向所述 OLT发送第二注册 请求之后, 还包括:
所述 CMC接收所述 OLT发送给的第一窗口消息,所述第一窗口消息 中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据 窗口信息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
4、 根据权利要求 3 所述的方法, 其特征在于, 所述 CMC接收所述 OLT发送给的第一窗口消息之后, 还包括:
所述 CMC在所迷第二数据窗口中, 向所述 OLT发送注册确认消息, 所述注册确认消息中携带所述二级 LLID标识。
5、 一种逻辑链路标记 LLID注册方法, 其特征在于, 包括: 光线路终端 OLT向同轴媒介转换器 CMC发送第二窗口消息 ,所述第 二窗口消息中携带所迷 CMC的媒体介入控制 MAC地址以及所迷 OLT为 所述 CMC 分配的第一数据窗口信息, 所述第一数据窗口用于所述 CMC 向所述 OLT发送数据;
所述 OLT在所述第一数据窗口中,接收所述 CMC发送的笫二注册请 求, 所述第二注册请求中携带所述 OLT为所述 CMC分配的一级 LLID标 识和 CNU的 MAC地址。
6、 根据权利要求 5所述的方法, 其特征在于, 所述 OLT在所述第一 数据窗口中, 接收所迷 CMC发送的第二注册请求之后, 还包括:
所述 OLT根据所述一级 LLID标识, 为所述 CNU分配二级 LLID标 识;
所述 OLT向所述 CMC发送注册消息,所述注册消息中携带所述 CNU 的 MAC地址以及所述二级 LLID标识。
7、 根据权利要求 6所述的方法, 其特征在于, 所述 OLT根据所述一 级 LLID标识, 为所述 CNU分配二级 LLID标识, 包括:
所述 OLT判断所述一级 LLID标识是否为所述 OLT为所述 CMC已分 配的 LLID标识, 若是, 则为所述 CNU分配二级 LLID标识, 并建立所述 一级 LLID标识与所述二级 LLID标识的对应关系。
8、 根据权利要求 5-7任一项所述的方法, 其特征在于, 所述 OLT在 所述第一数据窗口中, 接收所述 CMC发送的第二注册请求之后, 还包括: 所述 OLT向所述 CMC发送第一窗口消息,所述第一窗口消息中携带 所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信 息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
9、根据权利要求 8所述的方法, 其特征在于, 所述 OLT向所述 CMC 发送第一窗口消息之后, 还包括:
所述 OLT在所述第二数据窗口中,接收所述 CMC发送的注册确认消 息, 所述注册确认消息中携带所述二级 LLID标识。
10、 一种同轴媒介转换器 CMC , 其特征在于, 包括:
第一接收模块, 用于接收与所述 CMC连接的至少一个同轴网络单元 CNU发送的第一注册请求, 所述第一注册请求中携带所述 CNU的媒体介 入控制 MAC地址;
第一发送模块,用于在光线路终端 OLT为所述 CMC分配的第一数据 窗口中, 向所述 OLT发送第二注册请求, 所述第二注册请求中携带所述 OLT为所述 CMC分配的一级 LLID标识和所述 CNU的 MAC地址, 所述 第一数据窗口用于所述 CMC与所述 OLT交互数据。
11、 根据权利要求 10所述的 CMC , 其特征在于, 所述第一接收模块 还用于接收所述 OLT发送的注册消息, 所述注册消息中携带所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的二级 LLID标识。
12、 根据权利要求 1 1所述的 CMC , 其特征在于, 所述第一接收模块 还用于接收所述 OLT发送给的第一窗口消息, 所述第一窗口消息中携带 所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信 息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
13、 根据权利要求 12所述的 CMC , 其特征在于, 所述笫一发送模块 还用于在所述第二数据窗口中, 向所述 OLT发送注册确认消息, 所述注 册确认消息中携带所述二级 LLID标识。
14、 一种光线路终端 OLT, 其特征在于, 包括:
第二发送模块, 用于向同轴媒介转换器 CMC发送第二窗口消息, 所 述第二窗口消息中携带所述 CMC 的媒体介入控制 MAC 地址以及所述 OLT为所述 CMC分配的第一数据窗口信息, 所述第一数据窗口用于所述 CMC向所述 OLT发送数据;
第二接收模块, 用于在所述第一数据窗口中, 接收所述 CMC发送的 第二注册请求,所述第二注册请求中携带所述 OLT为所述 CMC分配的一 级 LLID标识和 CNU的 MAC地址。
15、 根据权利要求 14所述的 OLT, 其特征在于, 还包括:
处理模块,用于根据所述一级 LLID标识,为所述 CNU分配二级 LLID 标识;
所述第二发送模块还用于向所述 CMC发送注册消息, 所述注册消息 中携带所述 CNU的 MAC地址以及所述二级 LLID标识。
16、 根据权利要求 15所述的 OLT, 其特征在于, 所述处理模块还用 于判断所述一级 LLID标识是否为所述 OLT为所述 CMC 已分配的 LLID 标识, 若是, 则为所述 CNU分配二级 LLID标识, 并建立所述一级 LLID 标识与所述二级 LLID标识的对应关系。
17、 根据权利要求 14-16任一所述的 OLT, 其特征在于, 所述第二发 送模块还用于向所迷 CMC发送第一窗口消息, 所迷第一窗口消息中携带 所述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信 息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
18、 根据权利要求 17所述的 OLT, 其特征在于, 所述第二接收模块 还用于在所述第二数据窗口中, 接收所述 CMC发送的注册确认消息, 所 述注册确认消息中携带所述二级 LLID标识。
19、 一种基于以太网无源光网络协议的同轴网络 EPOC系统, 其特征 在于, 包括: 如权利要求 10-13任一所述的同轴媒介转换器 CMC , 以及如 权利要求 14-18任一所述的光线路终端 OLT。
20、 一种同轴媒介转换器 CMC , 其特征在于, 包括:
第一接收器, 用于接收与所迷 CMC 连接的至少一个同轴网络单元 CNU发送的第一注册请求, 所述第一注册请求中携带所述 CNU的媒体介 入控制 MAC地址;
第一发送器,用于在光线路终端 OLT为所述 CMC分配的第一数据窗 口中,向所述 OLT发送第二注册请求,所述第二注册请求中携带所述 OLT 为所述 CMC分配的一级 LLID标识和所述 CNU的 MAC地址, 所述第一 数据窗口用于所述 CMC与所述 OLT交互数据。
21、 根据权利要求 20所述的 CMC , 其特征在于, 所述第一接收器还 用于接收所述 OLT发送的注册消息, 所述注册消息中携带所述 CNU 的 MAC地址以及所述 OLT为所述 CNU分配的二级 LLID标识。
22、 根据权利要求 21所述的 CMC , 其特征在于, 所述第一接收器还 用于接收所述 OLT发送给的第一窗口消息, 所迷第一窗口消息中携带所 述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
23、 根据权利要求 22所述的 CMC , 其特征在于, 所述第一发送器还 用于在所述第二数据窗口中, 向所述 OLT发送注册确认消息, 所述注册 确认消息中携带所迷二级 LLID标识。
24、 一种光线路终端 OLT, 其特征在于, 包括:
第二发送器, 用于向同轴媒介转换器 CMC发送第二窗口消息, 所述 第二窗口消息中携带所述 CMC的媒体介入控制 MAC地址以及所述 OLT 为所述 CMC分配的第一数据窗口信息,所述第一数据窗口用于所迷 CMC 向所述 OLT发送数据; 第二接收器, 用于在所述第一数据窗口中, 接收所述 CMC发送的第 二注册请求,所述第二注册请求中携带所述 OLT为所述 CMC分配的一级 LLID标识和 CNU的 MAC地址。
25、 根据权利要求 24所述的 OLT, 其特征在于, 还包括:
处理器, 用于根据所述一级 LLID标识, 为所述 CNU分配二级 LLID 标识;
所述第二发送器还用于向所述 CMC发送注册消息, 所述注册消息中 携带所述 CNU的 MAC地址以及所述二级 LLID标识。
26、 根据权利要求 25所述的 OLT, 其特征在于, 所述处理器还用于 判断所述一级 LLID标识是否为所述 OLT为所述 CMC已分配的 LLID标 识, 若是, 则为所述 CNU分配二级 LLID标识, 并建立所述一级 LLID标 识与所述二级 LLID标识的对应关系。
27、 根据权利要求 24-26任一所述的 OLT, 其特征在于, 所述第二发 送器还用于向所述 CMC发送第一窗口消息, 所述第一窗口消息中携带所 述 CNU的 MAC地址以及所述 OLT为所述 CNU分配的第二数据窗口信息, 所述第二数据窗口用于所述 CNU与所述 OLT交互数据。
28、 根据权利要求 27所述的 OLT, 其特征在于, 所述第二接收器还 用于在所述第二数据窗口中, 接收所述 CMC发送的注册确认消息, 所述 注册确认消息中携带所述二级 LLID标识。
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