CA2841301C

System and method for delivery of video, content on demand and ip packets

Abstract

The present application also describes a method and apparatus for modulating an input signal comprised of an ordered series of samples separated by a substantially constant period T comprising the steps of providing a carrier signal, the carrier signal comprised of a series of samples separated by a substantially constant period T, wherein one of the carrier samples corresponds to each of the input signal samples, selecting a plurality of N successive samples from the series of input signal samples, the series of samples having an input order, for each of the N selected samples in parallel, multiplying the selected sample by the corresponding carrier sample and recombining the N multiplied samples while maintaining the input order.

CA2841301C, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Expired 5 September 2026, 0.1 years ago.

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

17 claims: 3 independent, 14 dependent

  1. 1
    CA 02841301 2014-01-28 WHAT IS CLAIMED IS:1. A method for modulating a first input signal and a second input signal, each of said first and second input signals comprised of an ordered series of samples separated by a substantially constant period T, the method comprising: providing a first carrier signal, said first carrier signal comprised of a first ordered series of first carrier samples separated by the substantially constant period T, wherein one of said first series of carrier samples corresponds to each of the first input signal samples;providing a second carrier signal, said second carrier signal comprised of a second ordered series of carrier samples separated by the substantially constant period T, wherein one of said second series of carrier samples corresponds to each of the second input signal samples;providing a Digital to Analog Converter (DAC);selecting a plurality of groups of N successive first samples from said first series of input signal samples, said first series of samples having an input order;for each group of first samples in parallel, multiplying each of said N first samples by said corresponding first carrier sample;recombining said groups of N multiplied first samples while maintaining said input order to form a first series of output samples;selecting a plurality of groups of N successive second samples from said second series of input signal samples, said second series of samples having an input order;for each group of N second samples in parallel, multiplying each of said N second samples by said corresponding second carrier sample;recombining said groups of N multiplied second samples while maintaining said input order to form a second series of output samples;adding each of said first series of output samples to a respective one of said second series of output samples to form a combined series of output samples;and CA 02841301 2014-01-28 converting said combined series of output samples to an analog signal using said DAC.
  2. 9
    An apparatus for modulating first input signal comprised of first ordered series of samples separated by a substantially constant period T and a second input signal comprised of a second ordered series of samples separated by the substantially constant period T, the apparatus comprising:a first numerically controlled oscillator comprising a first carrier signal stored in memory as a series of first carrier samples separated by the CA 02841301 2014-01-28 substantially constant period T, wherein one of said first carrier samples corresponds to each of the first input signal samples;a second numerically controlled oscillator comprising a second carrier signal stored in memory as a series of second carrier samples separated by the substantially constant period T, wherein one of said second carrier samples corresponds to each of the second input signal samples;a first demultiplexer for selecting a plurality of N successive first samples from said first series of input signal samples, said first series of samples having an input order;a first multiplier for multiplying each of said N selected first samples by said corresponding first carrier sample in parallel;a first multiplexer for recombining said N multiplied first samples while maintaining said input order;a second demultiplexer for selecting a plurality of N successive second samples from said second series of input signal samples, said second series of samples having an input order;a second multiplier for multiplying each of said N selected second samples by said corresponding second carrier sample in parallel;and a second multiplexer for recombining said N multiplied second samples while maintaining said input order.
  3. 16
    A QAM modulation method for modulating a first input signal at a first frequency and a second input signal at a second frequency different from the first frequency, the method comprising:for the first input signal: converting the first input signal into a first I input signal and a first Q input signal, each of said first I input signal and said first Q input signal comprising an ordered series of samples separated by a substantially constant period T;providing a first pair of sinusoidal carrier signals at the first frequency, said first pair of sinusoidal carrier signals mutually 90 degrees out of phase, each of said first pair of carrier signals comprised of an ordered series of carrier samples separated by said substantially constant period T, wherein one of said carrier samples of a first of said first pair of sinusoidal carrier signals corresponds to each of said first I input signal samples and one of said carrier CA 02841301 2014-01-28 samples of a second of said first pair of sinusoidal carrier signals corresponds to each of said first Q input signal samples;multiplying each of said first I input signal samples and each of said first Q input signal samples by said corresponding first carrier sample;adding each of said first multiplied I input signal samples to a respective one of said first multiplied Q input signal samples to form a first series of output samples;for the second input signal: converting the second input signal into a second I input signal and a second Q input signal, each of said second I input signal and said second Q input signal comprising an ordered series of samples separated by said substantially constant period T;providing a second pair of sinusoidal carrier signals at the second frequency, said second pair of sinusoidal carrier signals 90 degrees out of phase, each of said second pair of carrier signals comprised of an ordered series of carrier samples separated by said substantially constant period T, wherein one of said carrier samples of a first of said second pair of sinusoidal carrier signals corresponds to each of said second I input signal samples and one of said carrier samples of a second of said second pair of sinusoidal carrier signals corresponds to each of said second Q input signal samples;multiplying each of said second I input signal samples and each of said second Q input signal samples by said corresponding second carrier sample;adding each of said multiplied second I input signal samples to a respective one of said multiplied second Q input signal samples to form a second series of output samples;combining each of said first series of output samples with each a respective one of said second series of output samples to form a combined series of output samples;and CA 02841301 2014-01-28 * converting said combined series of output samples to an analog signal using a DAC.