CA2461320C

Systems and methods for multi-pair atm over dsl

Abstract

At a transmitter (100), an ATM cell is received from the ATM layer and is distributed on a cell-by-cell bases across multiple DSL PHY's (160, 170). At the receiver (200), the cells from each DSL PHY are re-combined in the appropriate order to recreate the original ATM cell stream, which is then passed to the ATM layer.

CA2461320C, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Expired 4 October 2022, 4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

42 claims: 8 independent, 34 dependent

  1. 1
    CA 02461320 2008-12-10 1. A method comprising:utilizing at least one transmission parameter value, for each transceiver in a plurality of bonded transceivers, to reduce a difference in latency between the bonded transceivers, wherein a data rate for a first of the plurality of bonded transceivers is different than a data rate for a second of the plurality of bonded transceivers.
  2. 9
    A method comprising:selecting at least one transmission parameter value, for each transceiver in a plurality of bonded transceivers, to reduce a difference in latency between the bonded transceivers, wherein a data rate of a first of the plurality of bonded transceivers is different than a data rate of a second of the plurality of bonded transceivers.
  3. 17
    A plurality of bonded transceivers, each bonded transceiver utilizing at least one transmission parameter value to reduce a difference in latency between the bonded transceivers, wherein a data rate for a first of the bonded transceivers is different than a data rate for a second of the bonded transceivers.
  4. 25
    A plurality of bonded transceivers, each bonded transceiver selecting at least one transmission parameter value to reduce a difference in latency between the bonded transceivers, wherein a data rate for a first of the bonded transceivers is different than a data rate for a second of the bonded transceivers. CA 02461320 2008-12-10
  5. 33
    A storage media having computer executable instructions stored thereon that:utilize at least one transmission parameter value, for each transceiver in a plurality of bonded transceivers, to reduce a difference in latency between the bonded transceivers, wherein a data rate for a first of the plurality of bonded transceivers is different than a data rate for a second of the plurality of bonded transceivers.
  6. 37
    A storage media having computer executable instructions stored thereon that:select at least one transmission parameter value, for each transceiver in a plurality of bonded transceivers, to reduce a difference in latency between the bonded transceivers, wherein a data rate of a first of the plurality of bonded transceivers is different than a data rate of a second of the plurality of bonded transceivers.
  7. 41
    A communications system comprising:a plurality of bonded communication means, each bonded communication means utilizing at least one transmission parameter value to reduce a difference in latency between the bonded communication means, wherein a data rate for a first of the plurality of bonded communication means is different than a data rate for a second of the plurality of bonded communication means.
  8. 42
    A communications system comprising:a plurality of bonded communication means, each bonded communication means selecting at least one transmission parameter value to reduce a difference in latency between the bonded communication means, wherein a data rate of a first of the plurality of bonded communication means is different than a data rate of a second of the plurality of bonded transmission means.