A passive optical network system and its implementation method
A technology of passive optical network and implementation method, which is applied in the field of passive optical network system and its implementation, and can solve the problems of PON bearing low-latency service delay and so on
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Embodiment 1
[0269] In this embodiment, ONU registration activation processes such as ONU discovery and ONU ranging are transplanted to additional management channels, including the following steps:
[0270] Step 1. The OLT periodically opens a quiet window on the additional management channel, and sends an SN request;
[0271] Step 2, when a new ONU needs to go online, the ONU waits for the quiet window opened by the OLT on the additional management channel and captures the SN request, and then competes to send the SN in the quiet window;
[0272] Step 3, OLT obtains the SN of the new ONU on the additional management channel;
[0273] Step 4, the OLT distributes the ONU-ID to the new ONU on the additional management channel, and continues to open the ranging window, and sends a ranging request to the ONU;
[0274] Step five, the ONU sends a ranging response on the additional management channel;
[0275] Step 6. The OLT obtains the ranging response, calculates the ranging result of the a...
Embodiment 2
[0286] Based on Embodiment 1, the composition of the management channel is modified. The downlink wavelength of the management channel is still the same as the downlink wavelength of the original data channel. The uplink wavelength used by the management channel is different from the uplink wavelength of the original data channel. The standard is the same as that of the original data channel, such as Figure 12 shown. Compared with the first embodiment, the second embodiment can save one downlink wavelength resource. Including the following:
[0287] Step 1. The OLT periodically opens a quiet window on the additional management channel, and sends an SN request from the original data channel;
[0288] Step 2. When a new ONU needs to go online, the ONU waits for the quiet window opened by the OLT on the extra management channel and captures the SN request sent on the original data channel, and then competes to send it in the quiet window on the extra management channel SN;
...
Embodiment 3
[0298] On the basis of Embodiment 1, in addition to transplanting the ONU registration processes such as ONU discovery and ONU ranging to the additional management channel, this embodiment also transfers DBA allocation (BWmap / grant), bandwidth request DBRu / REPORT, and physical layer management information. The interaction of management information such as PLOAM / MPCP and application layer management information OMCI / OAM is also transplanted to additional management channels. Among them, bandwidth mapping (BWmap), DBRu, PLOAM, OMCI, etc. are applied to ITU-T PON series standards such as GPON and 10GGPON; grant, REPORT, MPCP, OAM, etc. are applied to IEEE PON series standards.
[0299] The ONU registration activation process is as follows, consistent with Embodiment 1:
[0300] Step 1. The OLT periodically opens a quiet window on the additional management channel, and sends an SN request;
[0301] Step 2, when a new ONU needs to go online, the ONU waits for the quiet window open...
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