Claims
- 1. A system for transporting a secondary communication signal from a synchronous secondary carrier network on a synchronous primary carrier network which has a primary communication signal, wherein the secondary communication signal has secondary overhead and the primary communication signal has primary overhead, the system comprising:
a first adapter assembly adapted to receive the secondary communication signal from the secondary carrier network and the primary communication signal from the primary carrier network, to combine the secondary overhead with the primary overhead to form a transport overhead, to combine the secondary payload with the primary payload to form a transport payload and to combine the transport overhead with the transport payload to form the transport communication signal for transport across a communications path of the primary carrier network; and a second adapter assembly adapted to receive the transport communication signal from the primary carrier network, to remove the secondary overhead from the transport overhead, to remove the secondary payload from the transport payload, and to combine the secondary overhead with the secondary payload to create the second secondary communication signal for transport to the secondary carrier network.
- 2. The system of claim 1 wherein:
the second adapter assembly is further adapted to remove the primary overhead from the transport overhead and the primary payload from the transport payload, to combine the primary overhead with the primary payload to form a primary communication signal for transport in the primary carrier network.
- 3. The system of claim 1, wherein the first adapter assembly comprises:
a first multiplexer adapted to separate the primary overhead from the primary payload; a second multiplexer adapted to separate the secondary overhead from the secondary payload; a converter adapted to receive the secondary overhead from the second multiplexer and the primary overhead from the first multiplexer and to load the secondary overhead into available overhead space of the primary overhead, thereby creating the transport overhead; a cross connect adapted to receive the secondary payload from the second multiplexer and the primary payload from the first multiplexer and to combine the secondary payload with the primary payload to form a transport payload; and a third multiplexer adapted to receive the transport overhead from the converter and the transport payload from the cross connect and to combine the transport overhead with the transport payload to form the transport communication signal.
- 4. The system of claim 3, further comprising:
a processor communicably connected to the first multiplexer, the second multiplexer, the converter, the cross connect, and the third multiplexer, the processor adapted to control the reception of the primary communication signal and the secondary communication signal, the loading of the secondary overhead into the unused overhead space of the primary overhead, and the formation of the transport communication signal.
- 5. The system of claim 1 wherein the second adapter assembly comprises:
a first multiplexer adapted to separate the transport overhead from the transport payload; a converter adapted to receive the transport overhead from the first multiplexer and to remove the secondary overhead from the transport overhead to isolate primary overhead; a cross connect adapted to receive the transport payload from the first multiplexer and to separate the secondary payload from the transport payload to isolate the primary payload; a second multiplexer adapted to receive the primary overhead from the converter and the primary payload from the cross connect and to combine the primary overhead with the primary payload to form a primary communication signal; and a third multiplexer adapted to receive the secondary overhead from the converter and the secondary payload from the cross connect and to combine the secondary overhead with the secondary payload to form a secondary transport communication signal.
- 6. The system of claim 5, further comprising:
a processor communicably connected to the first multiplexer, the converter, the cross connect, the second multiplexer, and the third multiplexer, the processor adapted to control the reception of the transport communication signal, the removal of the secondary overhead, and the formation of the primary communication signal and the secondary communication signal.
- 7. An apparatus for transporting a transport communication signal from a synchronous primary carrier network to a secondary carrier network, the transport communication signal having a transport overhead containing a secondary overhead and a transport payload containing a secondary payload, the apparatus comprising:
an adapter assembly adapted to receive the transport communication signal from the primary carrier network, to remove the secondary overhead from the transport overhead, to remove the secondary payload from the transport payload, to combine the secondary overhead with the secondary payload to create a secondary communication signal and to transmit secondary communication signal to the secondary carrier network.
- 8. The apparatus of claim 7, wherein:
the transport overhead contains primary overhead and the transport payload contains primary payload, wherein the adapter assembly is further adapted to remove the primary overhead from the transport overhead, to remove the primary payload from the transport payload, and to combine the primary overhead with the primary payload to form a primary communication signal.
- 9. The apparatus of claim 7 wherein the adapter assembly comprises:
a first multplexer adapted to receive the transport communication signal and to separate the transport overhead from the transport payload; a converter adapted to receive the transport overhead from the first multiplexer and to remove the secondary overhead from the transport overhead to isolate the primary overhead; a cross connect adapted to receive the transport payload from the first multiplexer and to separate the secondary payload from the transport payload to isolate the primary payload; a second multiplexer adapted to receive the primary overhead from the converter and the primary payload from the cross connect and to combine the primary overhead with the primary payload to form the primary communication signal; and a third multiplexer adapted to receive the secondary overhead from the converter and the secondary payload from the cross connect and to combine the secondary overhead with the secondary payload to form the secondary communication signal.
- 10. The apparatus of claim 9, further comprising:
a processor communicably connected to the first multiplexer, the converter, the cross connect, the second multiplexer, and the third multiplexer, the processor adapted to control the reception of the transport communication signal, the removal of the secondary overhead, and the formation of the primary communication signal and the secondary communication signal.
- 11. The apparatus of claim 9, further comprising:
an interface adapted to receive the transport communication signal from the primary carrier network and to transmit the transport communication signal to the first multiplexer.
- 12. The apparatus of claim 9, further comprising:
an interface adapted to receive the primary communication signal from the second multiplexer and to transmit the primary communication signal to the primary carrier network.
- 13. The apparatus of claim 9, further comprising:
an interface adapted to receive the secondary communication signal from the third multiplexer and to transmit secondary communication signal to the secondary carrier network.
- 14. A method of preparing a communication signal in a synchronous primary carrier network for transport to a synchronous secondary carrier network, the communication signal having a transport overhead including a secondary overhead and a transport payload including a secondary payload, the method comprising:
removing the secondary overhead from the transport overhead; removing the secondary payload from the transport payload; and combining the secondary overhead with the secondary payload to create a secondary communication signal.
- 15. The method of claim 14, further comprising the step of:
transmitting the secondary communication signal to the secondary network.
- 16. The method of claim 14 wherein the transport overhead contains primary overhead and the transport payload contains primary payload, and wherein the method further comprises:
combining the primary overhead with the primary payload to create a primary communication signal.
- 17. A method of transporting a secondary communication signal from a synchronous secondary carrier network across a communications path of a synchronous primary carrier network, the secondary communication signal including a secondary overhead and a secondary payload, comprising the steps of:
receiving a secondary communications signal into an first adapter assembly communicably connected to the primary carrier network and the secondary network, and, in the first adapter assembly, combining the secondary overhead with a primary communications signal overhead to form a transport overhead and combining the secondary payload with a primary communications signal payload to form a transport payload, and combining the transport payload and the transport overhead to form a transport communication signal;
transporting the transport communication signal across a communications path through the primary network to a second adapter assembly communicably connected with the secondary carrier network and the primary carrier network; and in the second adapter assembly, removing the secondary overhead from the transport overhead, removing the secondary payload form the transport payload and combining the secondary overhead with the secondary payload to recreate the secondary communication signal.
- 18. The method of claim 17, further comprising the step of:
transporting the secondary communication signal to secondary carrier network.
RELATED APPLICATIONS
[0001] This patent application is a continuation of pending U.S. patent application Ser. No. 08/731,818, entitled “Method And System For Transporting A Scondary Communication Signal With A Primary Communication Signal,” filed on Oct. 22, 1996, is assigned to the same entity as this Application, and is hereby incorporated by reference into this Application.
Continuations (1)
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Number |
Date |
Country |
Parent |
08731818 |
Oct 1996 |
US |
Child |
09085539 |
May 1998 |
US |