IP Library Granted Patent US 7,072,669
Granted Patent B1
US 7,072,669 · App. 10/444,336 · Granted Jul 4, 2006

Method for localizing the position of a wireless device

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Quick Facts
Patent No.
US 7,072,669
App. No.
10/444,336
Granted
Jul 4, 2006
Kind
B1
Abstract

Systems and methods for localizing the position of a wireless device using a plurality of coordinated highly directional or adaptive antennas to detect signals from the wireless device. Because of the directional nature and/or adaptive processing of the antennas, off-angle multipath signals resulting from reflection and scattering as the wireless signal propagates through a cluttered environment are rejected by the antennas and processing. As a result, the antennas pass primarily direct path signals from the wireless device to the location estimator. The time of arrival of the signal and the angle of arrival at each antenna are used to in the location estimator to calculate the position of the wireless device. Various robust inversion techniques may also be applied to the data to minimize the effect of residual multipath-corrupted detections. Furthermore, the systems and methods include specialized wireless devices that provide locating signals and signals related to the biological condition of their owner.

Claims (36)

1. A method for localizing the position of a wireless device comprising:

providing a plurality of directional antennas capable of receiving signals from the wireless device, wherein each directional antenna produces a scan beam using an adaptive beamformer;

scanning a volume for a signal from the wireless device using the scan beams of the antennas;

using a controller to electronically steer the scan beams to converge at a specified location in the volume;

receiving a signal from the wireless device at a minimum number of antennas;

determining a time of arrival of the signal for each antenna that received the signal;

determining the position of the wireless device based on the determined time of arrival data;

applying robust inversion techniques to the position determination to minimize error in the position determination; and

controlling the adaptive beamformer of each antenna to ignore or substantially attenuate off-angle delayed multipath signals that fall outside of the scan beams.

2. The method for localizing the position of a wireless device of claim 1 , wherein determining the position of the wireless device is further based on the angle of arrival of the signal at each antenna.

3. The method for localizing the position of a wireless device of claim 1 , wherein applying robust inversion techniques to the position determination comprises applying a non-linear iteratively re-weighted least squares method.

4. The method for localizing the position of a wireless device of claim 1 , further comprising receiving from the wireless device, status information about a person associated with the wireless device.

5. The method for localizing the position of a wireless device of claim 4 , wherein the status information is information from sensors monitoring a biological condition of the person.

6. A system for localizing the position of a wireless device comprising:

a plurality of directional antennas capable of receiving signals from the wireless device, wherein each antenna produces a scan beam using an adaptive beamformer; and

a control system electronically linked to each of the antennas, wherein the control system is adapted to:

control the scan beam of each of the antennas to scan a volume;

electronically steer the scan beams to converge at a specified location in the volume;

determine a time of arrival at each antenna of a signal from the wireless device;

determine the position of the wireless device based on the time of arrival at each antenna; and

apply robust inversion techniques to the position determination to minimize error in the position determination, wherein the control system is further adapted to control the adaptive beamformer of each antenna to ignore or substantially attenuate off-angle delayed multipath signals that fall outside of the scan beams.

7. The system for localizing the position of a wireless device of claim 6 , wherein the determination of the position of the wireless device is further based on the angle of arrival of the signal at each antenna.

8. The system for localizing the position of a wireless device of claim 6 , wherein applying robust inversion techniques to the position determination comprises applying a non-linear iteratively re-weighted least squares method.

9. The system for localizing the position of a wireless device of claim 6 , wherein the antennas are capable of receiving status information about a person associated with the wireless device from the wireless device.

10. The system for localizing the position of a wireless device of claim 9 , wherein the status information is information from sensors monitoring a biological condition of the person.

11. A method of localizing the position of a wireless device within a volume comprising:

providing a control system;

providing a plurality of directional antennas, wherein each antenna is capable of creating a scan beam and is linked electronically to the control system, wherein the scan beam of each antenna is produced using an adaptive beamformer;

arranging the plurality of directional antennas near the volume in which the wireless device is located;

determining the position and orientation of each of the directional antennas;

using the control system to electronically steer the scan beams to converge at a specified location in the volume;

scanning the volume with the coordinated beams;

receiving a signal from the wireless device;

determining a time of arrival of the signal at each directional antenna; and

controlling the adaptive beamformer of each antenna to ignore or substantially attenuate off-angle delayed multipath signals that fall outside of the scan beams.

12. The method of localizing the position of a wireless device of claim 11 , wherein determining the position of the wireless device is further based on the angle of arrival of the signal at each antenna.

Assignments (8)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2014
From: VERIZON CORPORATE SERVICES GROUP INC.
To: VERIZON PATENT AND LICENSING INC.
Reel/Frame 033421/0403 →
CHANGE OF NAME Recorded Jun 11, 2010
From: BBN TECHNOLOGIES CORP.
To: RAYTHEON BBN TECHNOLOGIES CORP.
Reel/Frame 024523/0625 →
RELEASE OF SECURITY INTEREST Recorded Oct 27, 2009
From: BANK OF AMERICA, N.A. (SUCCESSOR BY MERGER TO FLEET NATIONAL BANK)
To: BBN TECHNOLOGIES CORP. (AS SUCCESSOR BY MERGER TO BBNT SOLUTIONS LLC)
Reel/Frame 023427/0436 →
MERGER Recorded Jun 7, 2006
From: BBNT SOLUTIONS LLC
To: BBN TECHNOLOGIES CORP.
Reel/Frame 017751/0049 →
PATENT AND TRADEMARK SECURITY AGREEMENT Recorded Jun 9, 2004
From: BBNT SOULTIONS LLC
To: FLEET NATIONAL BANK, AS AGENT
Reel/Frame 014718/0294 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2004
From: BBNT SOLUTIONS LLC
To: BBNT SOLUTIONS LLC; VERIZON CORPORATE SERVICES GROUP INC.
Reel/Frame 014634/0525 →
JOINT ASSIGNMENT Recorded May 4, 2004
From: BBNT SOLUTIONS LLC
To: VERIZON CORPORATE SERVICES GROUP INC.; BBNT SOLUTIONS LLC
Reel/Frame 014601/0448 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2003
From: DUCKWORTH, GREGORY L.
To: BBNT SOLUTIONS LLC
Reel/Frame 014113/0518 →