CA2201352C

Multi-channel transceiver having an adaptive antenna array and method

Abstract

A receiver (100), transmitter (200) and transceiver (400) in accordance with the present invention overcome the disadvantages of applying adaptive antenna array technology to multi-channel communication systems. Multi-channel radio frequency (RF) signals received via an adaptive antenna array (102) are converted from an analog form to a digital form prior to splitting and processing to recover communication channels contained therein. A number of digital communication signals are digitally combined into a multi-channel digital signal and converted from the digital form to an analog radio frequency form prior to transmission from the adaptive antenna array.

CA2201352C, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 12 June 2016, 10.3 years ago.

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

12 claims: 4 independent, 8 dependent

  1. 1
    CA 02201352 2000-08-15 -9The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows:1. A multi-channel receiver comprising: a plurality of radio frequency processing elements, each radio frequency processing element comprising: a radio frequency down converter having an input coupled to radio 5 frequency signals received at one of a plurality of antenna elements of an antenna array and having an intermediate frequency signal output;an analog-to-digital converter having an input coupled to the intermediate frequency signal output and a digital intermediate io frequency signal output;a digital splitter having an input coupled to the digital intermediate frequency output and a plurality of outputs;a plurality of digital down-converters, each digital down-converter having an input coupled to one of the digital splitter outputs 15 and a digital baseband frequency signal output;and a channel processing element comprising: a plurality of phase selectors, each phase selector having an input coupled to one of the digital baseband frequency signal outputs and a phase selected output;
  2. 2
    2 0 a summer having a plurality of inputs each coupled to the phase selected output of the phase selectors and a summed signal output;and a channel processor, the channel processor having an input coupled to the summed signal output and a communication signal output. CA 02201352 2000-08-15 -102. The multi-channel receiver of claim 1 wherein the antenna array comprises a plurality of faces and a plurality of antenna elements associated with each face. 5
  3. 6
    An apparatus for receiving radio frequency communications comprising:2 0 an antenna array having a plurality of antenna elements each for receiving radio frequency signals;radio frequency processor means associated with each antenna element: for converting each of the radio frequency signals to a digital 25 intermediate frequency signal;for digitally down converting the digital intermediate frequency signal to a baseband intermediate frequency signal;and CA 02201352 2000-08-15 -11for splitting the baseband intermediate frequency signal into a plurality of substantially identical baseband intermediate frequency signals;and channel processing means, coupled to receive for each antenna 5 element one of the substantially identical baseband intermediate frequency signals: for phase selecting each of the baseband intermediate frequency signals;for summing the phase selected baseband intermediate frequency io signals;and for processing the summed signal to recover a communication signal contained therein.
  4. 9
    A method of receiving radio frequency communications comprising:receiving radio frequency signals at a plurality of elements of an antenna array;for each element of the antenna array: 2 5 converting each of the radio frequency signals to a digital intermediate frequency signal;CA 02201352 2000-08-15 -12digitally down converting the digital intermediate frequency signal to a baseband intermediate frequency signal;and splitting the baseband intermediate frequency signal into a plurality of substantially identical baseband intermediate frequency signals;and one of the substantially identical baseband intermediate frequency signals of each of the antenna elements: phase selecting the baseband intermediate frequency signals;summing the phase selected baseband intermediate frequency signals;and processing the summed signal to recover a communication signal contained therein. CA 02201352 2000-08-15 - 12 10. A multi-channel transmitter comprising: a channel processing element comprising: a channel processor having an input coupled to receive a communication signal from a communication network and a processed digital communication signal output;a splitter having an input coupled to the processed digital communication signal output and a plurality of substantially identical processed digital communication signal outputs;a plurality of phase adjusters each having an input coupled to one of the substantially identical processed digital communication signal outputs and a phase adjusted signal output;and a plurality of digital up-converters, each digital upconverter having an input coupled to one of the phase adjusted signal outputs and each having a digital intermediate frequency output;and a plurality of radio frequency processing elements, each radio frequency processing element being coupled to one of the plurality digital intermediate frequency outputs and each radio frequency processing element comprising: a digital summer having a plurality of inputs one of which being coupled to the digital intermediate frequency output and having a summed signal output;a digital-to-analog converter having an input coupled the summed signal output and an analog intermediate frequency signal output;and a radio frequency processor having an input coupled to the intermediate frequency signal output and an amplified radio frequency signal output;and CA 02201352 2000-08-15 - 13 an antenna array having a plurality of antenna elements respectively coupled to the plurality of radio frequency processing elements. 5 11. The multi-channel transmitter of claim 10 wherein the antenna array comprises a plurality of faces and a plurality of antenna elements associated with each face. 12. The multi-channel transmitter of claim 11 wherein one
  5. 10
    10 each of the plurality of antenna elements associated with each face is coupled to one of the plurality of radio frequency processing elements.
  6. 12
    15 comprising first and second radio frequency processing shelves the first radio frequency processing shelve comprising a first portion of the plurality of radio frequency processing elements and the second radio frequency processing shelve comprising a second portion of the plurality of radio frequency processing elements.