CA2860152C

Power line communication transmitter with amplifier circuit

Abstract

In one embodiment, a transmitter circuit is provided for data transmission from endpoint devices to collector devices over power distribution lines. The transmitter includes an amplifier circuit configured to receive and convert a first data signal to a pulse density modulation (PDM) encoded signal using high frequency pulses that introduce high frequency components. A low-pass filter of the transmitter is configured to filter the high frequency components of the PDM encoded signal to produce a second data signal, which is an amplification of the first data signal. A coupling circuit of the transmitter is configured to communicatively couple the second data signal from the low-pass filter to the power distribution lines. The coupling circuit filters the frequency of the AC and prevents high voltage of the power distribution lines from damaging the transmitter.

CA2860152C, drawing sheet 1
Sheet 1 of 5

Term

6.2 yearsleft in the term

Expires 14 December 2032.

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

22 claims: 8 independent, 14 dependent

  1. 1
    The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows:1. A transmitter circuit configured and arranged to communicate over power distribution lines that carry power using alternating current (AC) that operates at a power-line frequency, the transmitter circuit comprising: a switching amplifier circuit configured and arranged to: receive a first data signal in the form of a carrier wave that is modulated to represent data bits;and convert the first data signal to a pulse density modulation (PDM) encoded signal using high frequency pulses that introduce high frequency components;a low-pass filter configured and arranged to filter the high frequency components of the PDM encoded signal to produce a second data signal, such that the second data signal is an amplification of the first data signal;and a coupling circuit configured and arranged to communicatively couple the second data signal from the low-pass filter to the power distribution lines and to filter the power-line frequency.
  2. 7
    The transmitter circuit of any one of claims 1 to 6, wherein the amplifier circuit is a Class D amplifier.
  3. 8
    The transmitter circuit of any one of claims 1 to 7, wherein the coupling circuit includes:a transformer;a first series capacitor coupled to a primary winding of the transformer;and a second series capacitor coupled to a secondary winding of the transformer.
  4. 9
    The transmitter circuit of any one of claims 1 to 8, wherein the first data signal is a phase-shift encoded data signal.
  5. 10
    The transmitter circuit of any one of claims 1 to 9, wherein the PDM encoded signal is encoded using pulse width modulation.
  6. 11
    The transmitter circuit of any one of claims 1 to 10, further including:a data signal generation circuit configured and adapted to: select one of a plurality of carrier frequencies;and modulate a carrier signal, having the selected one of the plurality of carrier frequencies, to encode data bits to produce the first data signal;a current sensing circuit configured and arranged to sense current provided to the power distribution lines by the coupling circuit;and a feedback circuit configured and arranged to: adjust a gain of the amplifier circuit as a function of the sensed current and the selected one of the plurality of carrier frequencies.
  7. 14
    A method for communicating data over power distribution lines that carry power using alternating current (AC) that operates at a power-line frequency, the method comprising:using a switch-amplification circuit configured and arranged to amplify a first data signal by performing operations including: converting the first data signal to a pulse density modulation (PDM) encoded signal;and filtering high frequency components of the PDM encoded signal to produce a second data signal, the second data signal being an amplification of the first data signal;communicating the second data signal from the processing circuit to the power distribution lines;filtering the power-line frequency between the power distribution lines and the processing circuit;selecting one of a plurality of carrier frequencies;modulating a carrier signal, having the selected one of the plurality of carrier frequencies, to encode data bits to produce the first data signal;sensing current provided to the power distribution lines by the second data signal;and adjusting a gain of the amplification of the first data signal as a function of the sensed current and the selected one of the plurality of carrier frequencies.
  8. 15
    A method for communicating data over power distribution lines that carry power using alternating current (AC) that operates at a power-line frequency, the method comprising:using a switch-amplification circuit configured and arranged to amplify a first data signal by performing operations including: converting the first data signal to a pulse density modulation (PDM) encoded signal;and filtering high frequency components of the PDM encoded signal to produce a second data signal, the second data signal being an amplification of the first data signal;CA 2860152 2017-09-08 communicating the second data signal from the processing circuit to the power distribution lines;and filtering the power-line frequency between the power distribution lines and the processing circuit, wherein: the second data signal is a differential signal having a first differential component and a second differential component;and the processing circuit is configured to: convert the first signal into a first PDM encoded signal and a second PDM encoded signal;and filter high frequency components of the first and second PDM encoded signals to produce the respective first and second differential components of the second data signal.
  9. 20
    An apparatus including:a transmitter circuit of claim 1, and a collector circuit connected to a command center of a power line communication network, and configured and arranged to receive the second data signal from the transmitter circuit over the power distribution lines.