EP2109239A2

Method of communicating data in communication systems

Abstract

The invention pertains to a communication system (300) including one or more communication channels (10), each channel comprising a transmitter unit (20) and a receiver unit (40). Each transmitter unit (20) is connected through an optical fibre link (30) to its associated receiver unit (40). In operation, each receiver unit (20) receives payload data from its associated sending client and adds overhead data to the payload data to generate corresponding aggregate data (600). The aggregate data of each transmitter unit (20) is conveyed through the fibre link (30) to its associated receiver unit (40) which receives the aggregate data, decodes it to separate the payload data from the overhead data and then outputs the payload data to its associated receiving client. The \receiver unit (40) interprets the overhead data and uses it for controlling and managing the payload data in the system (300). The one or more channels of the system (300) are capable of adapting to the bit data rate of their associate payload data; thus, the channels are capable of operating mutually asynchronously, thereby circumventing a need for justification in the aggregate data. Moreover, each transmitter unit (20) is operable to add the overhead data to the payload data when generating the aggregate data so that the number of payload bits relative to the number of overhead bits is in a fixed ratio of 31:1. Such a fixed ratio renders the aggregate data simpler to decode and bit error rate easier to determine therefrom.

EP2109239A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 7 December 2020, 5.8 years ago.

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

14 claims: 7 independent, 7 dependent

  1. 1
    An optical transmitter for use in an optical communications system; the transmitter comprising:an adaptor unit arranged to adapt to the rate of payload data received by the transmitter;the adaptor unit further arranged to combine the payload data with overhead data to form aggregate data for transmission to an optical receiver, the aggregate data being partitioned into frame-like structures devoid of justification;wherein the overhead data is for controlling and managing the payload data within the system;the transmitter arranged to transmit the aggregate data to the receiver through an optical fibre link, the aggregate data being modulated onto optical radiation.
  2. 4
    A transmitter as claimed in any one of claims 1 to 3, further comprising a plurality of adaptor units each capable of adapting to the rate of respective payload data, the respective transmitted aggregate data thereby capable of being transmitted mutually asynchronously.
  3. 6
    A transmitter according to any one preceding claim, wherein the frame-like structures comprise a plurality of frames organized into multiframes, the frames and multiframes identifiable at the receiving means by interpreting the position of overhead data within the aggregate data.
  4. 7
    A method of transmitting data in an optical communications system having an optical transmitter coupled to an optical receiver by an optical fibre link, the method comprising:receiving payload data and adapting to the rate of the payload data;combining the payload data with overhead data to form aggregate data for transmission to the optical receiver, the aggregate data being partitioned into frame-like structures devoid of justification;wherein the overhead data is for controlling and managing the payload data within the system;transmitting the aggregate data to the optical receiver through the optical fibre link, the aggregate data being modulated onto optical radiation.
  5. 8
    An optical receiver for use in an optical communications system;the receiver arranged to receive aggregate data from an optical transmitter through an optical fibre link;the aggregate data being modulated on optical radiation;the receiver comprising an adaptor unit arranged to extract overhead data from payload data in the received aggregate data, wherein the payload data and overhead data are partitioned into frame-like structures devoid of justification;the receiver arranged to interpret the overhead data for controlling and managing the payload data within the system, wherein the adaptor unit is arranged to adapt to the rate of the aggregate data.
  6. 11
    An optical receiver as claimed in any one of claims 8 to 10, further comprising a plurality of adaptor units each capable of adapting to the rate of respective aggregate data, the respective transmitted aggregate data thereby capable of being transmitted mutually asynchronously.
  7. 13
    An optical receiver according to any one of claims 8 to 12, wherein the frame-like structures comprise a plurality of frames organized into multiframes, the frames and multiframes identifiable by interpreting the position of overhead data within the aggregate data.
  8. 14
    A method of receiving data in an optical communications system having an optical transmitter coupled to an optical receiver by an optical fibre link, the method comprising:receiving aggregate data from the optical transmitter through the optical fibre link;the aggregate data being modulated on optical radiation;adapting to the rate of the aggregate data;extracting overhead data from payload data in the received aggregate data, wherein the payload data and overhead data are partitioned into frame-like structures devoid of justification;interpreting the overhead data for controlling and managing the payload data within the system.