IP Library Granted Patent US 7,062,001
Granted Patent B2
US 7,062,001 · App. 10/232,831 · Granted Jun 13, 2006

Adaptive multi-channel, multi-function

Assignee: Her Majesty the Queen in right of Canada, as represented by the Minister of National Defence of Her Majesty's Canadian Government
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Quick Facts
Patent No.
US 7,062,001
App. No.
10/232,831
Granted
Jun 13, 2006
Kind
B2
Abstract

An adaptive receiver for determining parameters of an incoming signal is provided. The adaptive receiver includes: a) a plurality of antenna channels; each of the antenna channels including a respective antenna element for receiving the incoming signal and for outputting a respective antenna channel signal; b) a switching matrix operatively coupled to receive antenna channel signals from the antenna channels; the switching matrix for distributing the antenna channel signals to a plurality of receiver channels according to a predetermined mapping; c) a multi-channel down-converter operatively coupled to receive the antenna channel signals from the receiver channels; the multi-channel down-converter for processing the antenna channel signals to output respective intermediate frequency signals; d) a plurality of analog-to-digital converters (ADCs) operatively coupled to receive the intermediate frequency signals from the multi-channel down-converter; the ADCs for converting the intermediate frequency signals to digital signals; the digital signals being indicative of at least the phase and amplitude of the incoming signal; and, e) a digital processor operatively coupled to receive the digital signals from the ADCs for determining the parameters.

Claims (18)

1. An adaptive receiver for determining parameters of an incoming signal, said receiver comprising:

a) a plurality of antenna channels; each of said antenna channels including a respective antenna element for receiving said incoming signal and for outputting a respective antenna channel signal;

b) a switching matrix operatively coupled to receive antenna channel signals from said antenna channels; said switching matrix for distributing said antenna channel signals to a plurality of receiver channels according to a predetermined mapping;

c) a multi-channel down-converter operatively coupled to receive said antenna channel signals from said receiver channels; said multi-channel down-converter for processing said antenna channel signals to output respective intermediate frequency signals;

d) a plurality of analog-to-digital converters (ADCs) operatively coupled to receive said intermediate frequency signals from said multi-channel down-converter; said ADCs for converting said intermediate frequency signals to digital signals; said digital signals being indicative of at least the phase and amplitude of said incoming signal; and,

e) a digital processor operatively coupled to receive said digital signals from said ADCs for determining said parameters.

2. The adaptive receiver of claim 1 wherein said multi-channel down-converter includes an intermediate frequency amplifier and a gain control circuit for each of said receiver channels for amplifying said intermediate frequency signals according to predetermined gains.

3. The adaptive receiver of claim 2 wherein said predetermined gains are selected to adjust the dynamic range coverage of said receiver channels to extend overall instantaneous dynamic range coverage.

4. The adaptive receiver of claim 1 wherein said intermediate frequency signals include predetermined offsets.

5. The adaptive receiver of claim 4 wherein said predetermined offsets are selected to adjust the instantaneous frequency range coverage of said receiver channels to extend overall instantaneous frequency range coverage.

6. The adaptive receiver of claim 1 wherein said plurality of receiver channels numbers four.

7. The adaptive receiver of claim 1 wherein said antenna element is included in an antenna face; said antenna face including a plurality of antenna elements.

8. The adaptive receiver of claim 7 wherein said antenna face is included in an antenna array block; said antenna array block including a plurality of antenna faces; each of said plurality of antenna faces pointing in a different direction.

9. The adaptive receiver of claim 8 wherein said plurality of antenna faces numbers four.

10. The adaptive receiver of claim 1 wherein said parameters include an angle-of-arrival (AOA) of said incoming signal.

11. The adaptive receiver of claim 1 wherein said incoming signal includes signals emitted from conventional and low probability of intercept (LPI) radar systems.

12. The adaptive receiver of claim 1 wherein said parameters include an average amplitude and a phase of an unwanted or interfering signal for digitally nullifying said unwanted or interfering signal by said digital processor.

13. The adaptive receiver of claim 1 wherein said multi-channel down-converter includes at least one local oscillator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2006
From: LEE, JIM P.Y.
To: HER MAJESTY THE QUEEN AS REPRESENTED BY THE ...
Reel/Frame 017698/0827 →
Continuity (2)
Provisional Application 6031594800 · Aug 31, 2001
Related Publication 20030063695A1 · Apr 3, 2003