CA2178917C

Atm networks for narrow band communications

Abstract

Pulse Code Modulations (PCM) signal streams are converted into Asynchronous Transfer Mode (ATM) cells for switching andtransmissions across a telecommunications network. Each cell carries one PCM sample of up to 48 different voice connections, the voiceconnections being selected from the PCM data streams because they have a common destination. The cells are transmitted over ATMvirtual paths, each path transmitting one cell every 125 µs. The ATM signals are switched by units for switching cells (cell switching),while keeping their payload contents intact, and by units for switching the signals for individual voice connections between cells of an ATMsignal (cell remapping). Advantageously, ATM transmission systems interface with PCM systems without adding appreciable delay andwithout requiring additional buffering. Advantageously, new voice paths can be established most of the time by using available slots in thecells of existing virtuals paths. Advantageously, large telecommunication networks can be implemented using a small number of switchingunits. Advantageously, a central communications network comprising stages of cell remapping interconnected by one or more stages of cellswitching provides flexibility for interconnecting large access switched; the cell remapping stage may be made part of the access switch.Advantageously, an access switch comprising a cell mapping or distribution stage for assembling cells comprising PCM samples headedfor a common output of the access switch are switched in a cell switch to a cell remap unit for collecting PCM samples headed for acommon destination into individual cells of an ATM output stream, provides output signals that can be readily and efficiently switchedby a transit network for distribution to other access switches of a large network. Advantageously, such a cell remap unit provides a keyelement to the implementation of an efficient large ATM voice network. For use with PCM switches, it is desirable to provide supervisorysignals accompanying the PCM data. Advantageously, this arrangement permits supervisory signals to be passed within an access switchthus simplifying compatibility with existing switching systems.

CA2178917C, drawing sheet 1
Sheet 1 of 54

Term

Term ended

Expired 1 March 2014, 12.6 years ago.

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

55 claims: 4 independent, 51 dependent

  1. 1
    CA 02178917 2001-05-28 -85Claims:1. A telecommunications network comprising: a composite packet remap (CPR) unit;and a packet switching fabric unit connected to said CPR unit;wherein said CPR unit comprises means for receiving composite packets, destined for a plurality of destinations connected to said packet switching fabric unit, means for assembling from said received composite packets, different composite packets destined for a single destination of said packet switching fabric unit, and means for transmitting said different composite packets to said packet switching fabric unit;wherein said composite packets and said different composite packets each comprise periodically transmitted composite packets for transmitting signals for a plurality of communication channels;characterized in that said network comprises a plurality of access switches, each access switch comprising at least one CPR unit and a packet switching fabric unit;and said network comprises a packet switching means for interconnecting said access switches;wherein each access switch comprises means for converting multiplexed periodic communication input signals, each input signal for transmitting a plurality of channels, into packetized signals each packet of said packetized signals destined for one CPR unit of said at least one CPR unit of said access switch, wherein each channel of said input signals is switched into an arbitrary position of an arbitrary packet of one of said packet signals;wherein each CPR unit of said each access switch uses communication signals, received in one of said packetized signals, of said each access switch to generate CPR packetized output signals each of whose packets contains communication signals destined for a single CPR circuit of another one of said plurality of access switches;wherein said packet switching means comprises at least one packet crossconnect for interconnecting a plurality of CPR units of a plurality of access switches, said packet crossconnect for switching packets of a plurality of incoming CA 02178917 2001-05-28 -86packetized signals from said plurality of CPR units to a plurality of output packetized signals to said plurality of CPR units.
  2. 11
    13. The network of claim 11 wherein said packetized signals are ATM (asynchronous transfer mode) signals and said composite packets are composite cells, and said CPR unit units are CCR (composite cell remap) units.
  3. 29
    35. A method of transmitting multiplexed periodic communication signals across a telecommunications network comprising the steps of:generating composite packets, periodically transmitted, each composite packet for transmitting signals for a plurality of communication channels;switching said composite packets via a packet switching fabric unit to a composite packet remap (CPR) unit;in said CPR unit, receiving composite packets destined for a plurality of intermediate destinations, rearranging the received packets into packets destined for a single intermediate destination and transmitting the rearranged packets to a packet switching fabric unit for switching to said single intermediate destination;characterized in that the method further comprises the steps of: converting said multiplexed periodic communication signals into a plurality of packetized signals each comprising first composite packets, each first composite packet including a plurality of communication signals for a plurality of communications, each of said composite packets to be routed through a common source CPR unit;switching first composite packets of said plurality of packetized signals each to one of a plurality of source CPR units;in said source CPR units, switching the communication signals in received first CA 02178917 2001-05-28 -92composite packets to form packetized output signals comprising second composite packets each second composite packet including only communication signals destined for one of a plurality of destination CPR units;switching said second composite packets of said packetized output signals of said source CPR units to packetized signals each destined for one of said destination CPR units.
  4. 38
    45. An access switch for generating packetized signals for distribution by a packet signal transmission/crossconnect network, said network comprising means for interconnecting a plurality of said packetized signal streams without disturbing the payload contents of cells of said packetized signal streams, the access switch comprising:a composite packet remap (CPR) unit;and a packet switching fabric unit connected to said CPR unit;wherein said CPR unit comprises means for receiving composite packets, destined for a plurality of destinations connected to said packet switching fabric unit, means for assembling from said received composite packets, different composite packets destined for a single destination of said packet switching fabric unit and means for transmitting said different composite packets to said packet switching fabric unit;wherein said composite packets and said different composite packets each comprise periodically transmitted composite packets, each for transmitting signals for a plurality of communication channels;characterized in that CA 02178917 2001-05-28 -94said access switch comprising a plurality of CPR units;said access switch comprising means for converting multiplexed periodic communication input signals, comprising periodic communication input channels, different ones of which are for transmission to different ones of a plurality of switches accessed via said plurality of CPR (composite packet remap) units, into packetized signals, said packetized signals each comprising first packets each for transmitting data for a plurality of separate communications, each first packet for transmission to a single CPR unit of said plurality of CPR units;said access switch comprising packet switching means comprising a packet switch fabric unit for switching each of said first packets to one of said plurality of CPR units without changing the payload of the switched first packets;and said plurality of CPR units each adapted for receiving said first packets and rearranging payload data of said first packets to generate an output stream comprising second composite packets each second packet containing payload data destined for a single CPR unit of one other access switch for switching in said one other access switch to one of a plurality of multiplexed periodic communication output signals comprising periodic communication output channels.
  5. 52
    60. A CPR (composite packet remap) circuit comprising:means for receiving composite packets from a packet switching fabric unit, destined for a plurality of destinations connected to said packet switching fabric unit, means for assembling from said received composite packets, different composite packets destined for a single destination of said packet switching fabric unit and means for transmitting said different composite packets to said packet switching fabric unit;wherein said composite packets and said different composite packets each comprise periodically transmitted composite packets, each for transmitting signals for a plurality of communication channels;characterized in that said means for assembling comprises a signal memory for storing received PCM (pulse code modulation) samples and a control memory for controlling the addressing of the signal memory for at least one of the operations of loading the signal memory from said packetized input signal and unloading the memory to transmit said packetized output signal.