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Detecting CPD in HFC network with OFDM signals

  • US 9,826,263 B2
  • Filed: 10/21/2015
  • Issued: 11/21/2017
  • Est. Priority Date: 10/22/2014
  • Status: Active Grant
First Claim
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1. An apparatus for detecting a common path distortion (CPD) source in a hybrid fiber coax (HFC) network of a network system that includes a cable modem termination system (CMTS) platform in communication with a plurality of cable modems (CMs) via the HFC network, the CMTS platform generating a multiplicity of downstream signals that are transmitted through the HFC network and the plurality of CMs generating upstream signals that are transmitted through the HFC network to the CMTS platform, the multiplicity of downstream signals being transmitted during a multiplicity of downstream periods, respectively, and the upstream signals not being transmitted during a multiplicity of quiet periods, the CPD source generating from the multiplicity of downstream signals a multiplicity of CPD echo signals, respectively, the multiplicity of CPD echo signals being received by the CMTS platform, said apparatus comprising:

  • (a) downstream signal processing means, associated with the CMTS platform, for acquiring the multiplicity of downstream signals in synchronism with the multiplicity of downstream periods, respectively, and for producing a set of downstream samples of each downstream signal;

    (b) CPD emulation means, associated with said downstream signal processing means, for generating a set of even order intermodulation (IM) product samples and a set of odd order 1M product samples from each set of downstream samples, to produce a multiplicity of sets of even order HVI product samples and a multiplicity of sets of odd order HVI product samples;

    (c) upstream signal processing means, associated with the CMTS platform, for acquiring the multiplicity of CPD echo signals in synchronism with the multiplicity of quiet periods, respectively, and for producing a set of CPD echo signal samples of each CPD echo signal, such that a multiplicity of sets of CPD echo signal samples are provided;

    (d) cross-correlation means, associated with said CPD emulation means and said upstream signal processing means, for cross-correlating—

    (i) the multiplicity of sets of even order HVI product samples with the multiplicity of sets of CPD echo signal samples, respectively, to produce a multiplicity of even order cross-correlation functions, and(ii) the multiplicity of sets of odd order 1M product samples with the multiplicity of sets of CPD echo signal samples, respectively, to produce a multiplicity of odd order cross-correlation functions;

    (e) accumulation means, associated with said cross-correlation means, for coherently accumulating—

    (i) the multiplicity of even order cross-correlation functions, to produce an accumulated even order cross-correlation function, and(ii) the multiplicity of odd order cross-correlation functions, to produce an accumulated odd order cross-correlation function; and

    (f) detection means, associated with said accumulation means, for detecting the CPD source from either or both of the accumulated even and odd order cross-correlation functions by the presence of a peak in either or both of the accumulated functions.

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