EP0585087A1

Ranging method for use in TDMA systems on tree-and-branch optical networks.

Abstract

In a passive optical tree-and-branch network, which utilizes the Asynchronous Transfer Mode (ATM) transmission format, a superimposed low-level, single frequency, ranging signal is used to determine the distance between an Optical Line Termination (OLT) node and any Optical Network Termination Node (ONT) of the network. In one embodiment of the invention, this ranging frequency is a low frequency signal that is superimposed on top of the transmitted data signal from the OLT. This ranging signal is returned to the OLT from a particular ONT upon the issuance of a ranging command from the OLT. The phase difference between the transmitted ranging signal and the received ranging signal is proportional to the distance between the OLT and that particular ONT. In a second embodiment of the invention, the ranging signal is a high frequency signal that is superimposed on top of the transmitted data signal from the OLT. This ranging signal is returned to the OLT from a particular ONT upon the issuance of a ranging command from the OLT. The time between issuance of the ranging command and reception from that particular ONT of the ranging signal is proportional to the distance between the OLT and the ONT.

EP0585087A1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 20 August 2013, 13.1 years ago.

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19 claims: 4 independent, 15 dependent

  1. 1
    Apparatus for use in an communications network, comprising:means for receiving a composite data signal that includes a ranging signal and a data signal, the ranging signal comprising a signal that is outside of the normal frequency spectrum of the data signal, the data signal representing a stream of data from a plurality of sources;and    means for determining the range to one of the plurality of the sources as a function of the ranging signal.
  2. 10
    A method for use in an communications network, the method comprising the steps of:receiving a composite data signal that includes a ranging signal and a data signal, the ranging signal comprising a signal that is outside of the frequency spectrum of the data signal, the data signal representing a stream of data from a plurality of sources in a time division multiple access format;and    determining the range to one of the plurality of sources as a function of the ranging signal.
  3. 16
    A ranging method for use in an optical communications network, comprising the steps of:receiving a composite data signal that includes a ranging signal and a data signal, the ranging signal comprising a single frequency signal, the data signal being generated by a plurality of sources in a time division multiple access format;separating the ranging signal from the composite data signal;and    providing a phase difference between the separated ranging signal and a reference signal at the at least single frequency, the phase difference being proportional to the range to one of the plurality of sources.
  4. 18
    A ranging method for use in an optical communications network, comprising the steps of:receiving a composite data signal that includes a ranging signal and a data signal, the ranging signal comprising a single frequency signal, the data signal being generated by a plurality of sources in a time division multiple access format;separating the ranging signal from the composite data signal;and    providing a detection signal responsive to the presence of the separated ranging signal;and    processing the detection signal to provide an estimate of the range to one of the plurality of sources, the estimate of the range being a function of a time difference between receiving the detection signal and transmission of a range command to the one of the plurality of sources.