OPTICAL ACCESS NETWORK AND OPTICAL SWITCHING SYSTEMS
An optical access network and optical switching systems requiring no frame delay process on an optical switchboard are disclosed. Plural ONUs are connected to user terminals. An OLT communicates with an IP network through an access gateway. An optical switching unit (OSW) connects the ONUs and the OLT by switching the optical line. A control line connects the OLT and the OSW to control the optical switch change-over operation in the OSW. The optical switch port information required to generate the optical switch activation signal are concentrated in the OLT, which transmits the optical switch change-over control signal to the OSW through the control line before the transmission frame.
1 . An optical access network system comprising:
a plurality of ONUs (optical network units) connected to user terminals;
an OLT (optical line terminal) communicating with an IP network through an access gateway; and
an OSW (optical switching unit) having a plurality of optical switches for connecting the plurality of the ONUs and the OLT by switching an optical line;
wherein the OLT transmits an optical switch change-over control signal to the OSW; and
wherein the OSW switches the optical line based on the optical switch change-over control signal.
2 . The optical access network system according to claim 1 , further comprising:
a control line for connecting the OLT and the OSW to each other,
wherein the OLT transmits the optical switch change-over control signal to the OSW through the control line.
3 . The optical access network system according to claim 1 ,
wherein the optical switch change-over control signal is a MPCP (multi-point control protocol) frame.
4 . The optical access network system according to claim 1 ,
wherein the OLT includes a storage unit; and
wherein the information on the correspondence between the port number of each optical switch and a LLID (logical link identifier) is stored in the storage unit.
5 . The optical access network system according to claim 1 ,
wherein the ONU transmits a plurality of registration request frames to the OLT;
wherein the OLT stores in the storage unit, as the RTT (round-trip time) between the OSW and the ONU, the difference between the time point t 1 at which the first one of the plurality of the registration request frames arrives at the OLT by the change-over operation of the optical switches in the OSW and the time point t 2 at which the one of the plurality of the registration request frames transmitted by the ONU at time point t 1 from the ONU has arrived at the OLT; and
wherein the OLT controls, based on the RTT, the timing at which the optical switch change-over control signal is transmitted to the OSW.