IP Library Granted Patent US 8,892,125
Granted Patent B2
US 8,892,125 · App. 14/038,010 · Granted Nov 18, 2014

Receiver utilizing multiple radiation patterns to determine angular position

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Quick Facts
Patent No.
US 8,892,125
App. No.
14/038,010
Granted
Nov 18, 2014
Kind
B2
Abstract

A receiver includes an antenna array, an angular positioning module, a low noise amplifier module, and a down conversion module. The antenna array is operable to receive an inbound wireless signal. The angular positioning module is operable to: receive a plurality of received inbound wireless signals from the antenna array. An angular position of a source of the inbound wireless signal is determined from at least some of the plurality of received inbound wireless signals based on a first radiation pattern and a second radiation pattern of the plurality of received inbound wireless signals; and output a representation of the inbound wireless signal. The low noise amplifier module is operably coupled to amplify the representation of the inbound wireless signal to produce an amplified inbound wireless signal. The down conversion module is operably coupled to convert the amplified inbound wireless signal into a baseband or near baseband signal.

Claims (83)

1. A receiver comprising:

an angular positioning module configured to couple with an antenna array, the angular positioning module configured to:

receive a plurality of inbound wireless signals;

determine angular position of a source of an inbound wireless signal from at least some of the plurality of inbound wireless signals based on a first radiation pattern and a second radiation pattern of the plurality of inbound wireless signals;

adjust the first and the second radiation pattern to affect reception strength of the inbound wireless signal; and

output a representation of the inbound wireless signal.

2. The receiver of claim 1 , wherein the angular positioning module comprising:

a plurality of phase shifters operably coupled to phase shift the at least some of the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sum-difference beamforming network operably coupled to generate a sum signal and a difference signal from the plurality of phase shifted inbound wireless signals, wherein the sum signal is provided as the representation of the inbound wireless signal; and

a control module operably coupled to determine the angular position of the source of the inbound wireless signal based on the sum signal and the difference signal.

3. The receiver of claim 1 , wherein the angular positioning module comprising:

a plurality of phase shifters operably coupled to phase shift the at least some of the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sum-difference patterns network operably coupled to generate a sum signal and a difference signal from at least some of the plurality of phase shifted inbound wireless signals;

a control module operably coupled to determine the angular position of the source of the inbound wireless signal based on the sum signal and the difference signal;

an output module operably coupled to generate the representation of the inbound wireless signal based on the at least some of the plurality of phase shifted inbound wireless signals.

4. The receiver of claim 3 , wherein the sum-difference patterns network comprising:

a 180 hybrid circuit.

5. The receiver of claim 1 , wherein the angular positioning module comprising:

a plurality of phase shifters operably coupled to phase shift the at least some of the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sequential sum-difference beamforming network operably coupled to sequentially generate a sum signal and a difference signal from the plurality of phase shifted inbound wireless signals, wherein the sum signal is provided as the representation of the inbound wireless signal; and

a control module operably coupled to determine angular position of the source of the inbound wireless signal based on the sum signal and the difference signal.

6. The receiver of claim 5 , wherein the sequential sum-difference beamforming network comprising:

a summing module operably coupled to sum the plurality of phase shifted inbound wireless signals to produce a sum component;

a difference module operably coupled to generate a difference component from the plurality of phase shifted inbound wireless signals;

a least one 1-bit phase shifter operably coupled to invert or not invert the difference component to produce a phase shifted difference component; and

a combining module operably coupled to combine the sum component and the phase shifted difference component to produce the sum signal and the difference signal.

7. The receiver of claim 1 , wherein the antenna array comprising:

a linear antenna array.

8. The receiver of claim 1 further comprising:

at least one integrated circuit that contains the angular positioning module, a low noise amplifier module, and a down conversion module.

9. A receiver with angular positioning, the receiver comprising:

an angular positioning module configured to couple with an antenna array, wherein the angular positioning module is operable to:

receive a plurality of inbound wireless signals from the antenna array;

determine angular position of a source of at least one inbound wireless signal from a plurality of inbound wireless signals based on a first radiation pattern and a second radiation pattern;

adjust the first and the second radiation pattern to affect reception strength of the at least one inbound wireless signal; and

output a representation of the at least one inbound wireless signal.

10. The receiver of claim 9 , wherein the angular positioning module comprises:

a plurality of phase shifters operably coupled to phase shift the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sum-difference beamforming network operably coupled to generate a sum signal and a difference signal from the plurality of phase shifted inbound wireless signals; and

a control module operably coupled to determine angular position of the source of the at least one inbound wireless signal based on the sum signal and the difference signal.

11. The receiver of claim 9 , wherein the angular positioning module comprises:

a plurality of phase shifters operably coupled to phase shift the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sum-difference patterns network operably coupled to generate a sum signal and a difference signal from at least some of the plurality of phase shifted inbound wireless signals; and

a control module operably coupled to determine the angular position of the source of the at least one inbound wireless signal based on the sum signal and the difference signal.

12. The receiver of claim 9 , wherein the angular positioning module comprises:

a plurality of phase shifters operably coupled to phase shift the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sequential sum-difference beamforming network operably coupled to sequentially generate a sum signal and a difference signal from the plurality of phase shifted inbound wireless signals; and

a control module operably coupled to determine angular position of the source of the at least one inbound wireless signal based on the sum signal and the difference signal.

13. The receiver of claim 12 , wherein the sequential sum-difference beamforming network comprises:

a summing module operably coupled to sum the plurality of phase shifted inbound wireless signals to produce a sum component;

a difference module operably coupled to generate a difference component from the plurality of phase shifted inbound wireless signals;

a least one 1-bit phase shifter operably coupled to invert or not invert the difference component to produce a phase shifted difference component; and

a combining module operably coupled to combine the sum component and the phase shifted difference component to produce the sum signal and the difference signal.

14. The receiver of claim 9 wherein the antenna array is configured in an end-fire manner.

15. A video gaming receiver comprising:

an antenna array operable to receive an inbound wireless signal from a video gaming object; and

an angular positioning module coupled to the antenna array, wherein the angular positioning module is configured to:

receive a plurality of inbound wireless signals from the antenna array;

determine angular position of the video gaming object from the inbound wireless signal of the plurality of inbound wireless signals based on a first radiation pattern and a second radiation pattern of the plurality of inbound wireless signals;

adjust the first and the second radiation pattern to affect reception strength of the inbound wireless signal; and

output a representation of the inbound wireless signal.

16. The video gaming receiver of claim 15 , wherein the angular positioning module comprising:

a plurality of phase shifters operably coupled to phase shift the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sum-difference beamforming network operably coupled to generate a sum signal and a difference signal from the plurality of phase shifted inbound wireless signals, wherein the sum signal is provided as the representation of the inbound wireless signal; and

a control module operably coupled to determine the angular position of the inbound wireless signal based on the sum signal and the difference signal.

17. The video gaming receiver of claim 15 , wherein the angular positioning module comprising:

a plurality of phase shifters operably coupled to phase shift the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sum-difference patterns network operably coupled to generate a sum signal and a difference signal from at least some of the plurality of phase shifted inbound wireless signals;

a control module operably coupled to determine angular position of the source of the inbound wireless signal based on the sum signal and the difference signal; and

an output module operably coupled to generate the representation of the inbound wireless signal based on the some of the plurality of phase shifted inbound wireless signals.

18. The video gaming receiver of claim 15 , wherein the angular positioning module comprising:

a plurality of phase shifters operably coupled to phase shift the plurality of inbound wireless signals to produce a plurality of phase shifted inbound wireless signals;

a sequential sum-difference beamforming network operably coupled to sequentially generate a sum signal and a difference signal from the plurality of phase shifted inbound wireless signals, wherein the sum signal is provided as the representation of the inbound wireless signal; and

a control module operably coupled to determine angular position of the source of the inbound wireless signal based on the sum signal and the difference signal.

19. The video gaming receiver of claim 15 , wherein the sequential sum-difference beamforming network comprising:

a summing module operably coupled to sum the plurality of phase shifted inbound wireless signals to produce a sum component;

a difference module operably coupled to generate a difference component from the plurality of phase shifted inbound wireless signals;

a least one 1-bit phase shifter operably coupled to invert or not invert the difference component to produce a phase shifted difference component; and

a combining module operably coupled to combine the sum component and the phase shifted difference component to produce the sum signal and the difference signal.

20. The video gaming receiver of claim 15 further comprising:

a low noise amplifier module operably coupled to amplify the representation of the inbound wireless signal to produce an amplified inbound wireless signal;

a down conversion module operably coupled to convert the amplified inbound wireless signal into a baseband or near baseband signal; and

a baseband processing module operably coupled to convert the baseband or near baseband signal into video gaming data.

Assignments (7)
CORRECTIVE ASSIGNMENT TO CORRECT THE PATENT NUMBER 9,385,856 TO 9,385,756 PREVIOUSLY RECORDED AT REEL: 47349 FRAME: 001. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Mar 22, 2019
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 051144/0648 →
CORRECTIVE ASSIGNMENT TO CORRECT THE EFFECTIVE DATE PREVIOUSLY RECORDED ON REEL 047229 FRAME 0408. ASSIGNOR(S) HEREBY CONFIRMS THE THE EFFECTIVE DATE IS 09/05/2018. Recorded Oct 29, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047349/0001 →
MERGER Recorded Oct 4, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047229/0408 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: BROADCOM CORPORATION
Reel/Frame 041712/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2017
From: BROADCOM CORPORATION
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041706/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: BROADCOM CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037806/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2013
From: GRAU BESOLI, ALFRED; ALEXOPOULOS, NICOLAOS; CASTANEDA, JESUS
To: BROADCOM CORPORATION
Reel/Frame 031290/0522 →