EP0845875A2

Frame relay protocol-based multiplex switching scheme for satellite mesh network

Abstract

A frame relay protocol-based earth station interface architecture provides full mesh connectivity for a relatively small number of network stations. The fundamental component of the architecture is a frame relay protocol-based switch (110), which employs a network interface "frame relay" standard to define the muliplexing of multiple virtual ports across single physical communications port. Through address and control fields of its connectivity control software, the frame relay protocol-based switch (110) can be dynamically configured to provide multilayer addressing and device selectivity, thereby enabling point-to-point connectivity of multiple terminal devices, such as a plurality of audio circuits (170-1...170-N), to be effected via a single port. Dial codes on the station side of an audio signal muliplexer link (135) are translated into frame relay addresses (data link connection identifiers) that are added to each frame of data for routing though the network. <IMAGE>

EP0845875A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 16 June 2014, 12.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

22 claims: 16 independent, 6 dependent

  1. 1
    A satellite communication network comprising:a first earth station (11) for use in a system having at least two other earth stations (12-13) interconnected via a satellite (30) wherein data from each earth station is broadcast to the other earth stations (20), the first earth station comprising: a satellite antenna (124) for communicating with the satellite,a transceiver (122) coupled to the antenna (124) for sending and receiving signals to and from the satellite antenna (124),a modem (120) coupled to the transceiver for modulating and demodulating signals sent to or received from the transceiver,a plurality of terminal devices (10), and    characterized in that the earth station further includes a frame relay protocol based switch(110), coupling the plurality of terminal devices (10) with the modem, and configured for inputting data from the plurality of terminal devices (10), assembling the data into substantially frame relay like data packets having a frame boundary flag, an address field, a data field, and a frame check sequence, the frame relay protocol based switch (110) for discarding down link directed data packets destined for terminal devices associated with other earth stations and for routing down link directed data packets destined for a terminal devices associated with the first earth station based on the contents of the down-link directed data packets.
  2. 3
    The system of any of claims 1 and 2 wherein the frame boundary flag, the address field, the data field, and the frame check sequence are configured according to CCITT frame relay standards.
  3. 4
    The system of any of claims 1 to 3 including a voice multiplexer unit (135) disposed between at least two voice circuits (170) and the frame relay protocol based switch (110).
  4. 6
    The system of any of claims 4 and 5 wherein the voice multiplexer unit (135) outputs data packets assembled substantially in accordance with frame relay standards.
  5. 7
    The system of any of claims 1 to 6 wherein the frame relay protocol based switch (110) includes connectivity control software for dynamically configuring the frame relay protocol based switch to provide multilayer addressing and filtering.
  6. 8
    The system of any of claims 1 to 7 wherein the modem (120) includes a single modulator and a plurality of demodulators.
  7. 9
    The system of any of claims 1 to 8 wherein the transceiver (122) uses a single carrier per channel protocol.
  8. 11
    The system of any of claims 1 to 10 wherein the frame relay protocol based switch (110) is configured to assemble data packets from data received on one or more data circuits and from data received on one or more voice circuits and wherein the data packets assembled from the voice circuits have priority over data packets packets assembled from the data circuits.
  9. 13
    The system of claims 1 to 12 wherein voice packets are given priority over data packets.
  10. 14
    A method of communicating across a satellite communication network having a first earth station (11) for use in a system having at least two other earth stations (12-13) interconnected via a satellite (30) characterized by, at the first earth station, inputting data from the plurality of terminal devices (10) into a frame relay protocol based switch, assembling the data into substantially frame relay like data packets having a frame boundary flag, an address field, a data field, and a frame check sequence, the frame relay protocol based switch (110), broadcasting to at least two other earth stations the substantially frame relay like data packets, and discarding down-link directed data packets destined for terminal devices associated with earth stations other than the first earth station (12-13) and for routing down-link directed data packets destined for a terminal devices associated with the first earth station (11) based on the contents of the down-link directed data packets.
  11. 17
    The method of any of claims 14 to 16 wherein packetizing data includes using a voice multiplexer (135) to packetize data from a plurality of the voice circuits.
  12. 18
    The method of any of claims 14 to 17 including using the voice multiplexer (135) to decode a data packet such that the address field is used to direct associated data to a particular voice circuit dependent upon the address to thereby form virtual ports in the frame relay protocol based switch (110).
  13. 19
    The method of any of claims 14 to 18 including using connectivity control software in the switch to dynamically configure the switch to provide multilayer addressing and filtering.
  14. 20
    The method of any of claims 14 to 19 including communicating between the earth stations using a single carrier per channel protocol.
  15. 21
    The method of any of claims 14 to 19 including communicating between the earth stations using a time division multiple access protocol.
  16. 22
    The method of any of claims 14 to 21 including providing priority within the switch for data packets associated with the voice circuits over data packets associated with the data circuit.