IP Library Granted Patent US 7,420,366
Granted Patent B1
US 7,420,366 · App. 10/874,009 · Granted Sep 2, 2008

Coupled nonlinear sensor system

Assignee: The United States of America as represented by the Secretary of the Navy
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Quick Facts
Patent No.
US 7,420,366
App. No.
10/874,009
Granted
Sep 2, 2008
Kind
B1
Abstract

A sensor system employing a plurality of nonlinear sensors utilizes a coupling network to interconnect the sensors wherein the coupling network inherently induces oscillations in the sensor system. This approach removes the need to provide bias signal generation either onboard the sensors or via a source external to the sensor.

Claims (19)

1. An apparatus comprising:

an odd number of at least three nonlinear sensors each having an input and an output; and

a coupling network configured to inherently induce oscillation in said nonlinear sensors in the absence of an external bias signal, said coupling network including a coupling circuit individual to each of said nonlinear sensors, said coupling network unidirectionally coupling said nonlinear sensors so that each said nonlinear sensor has its said output coupled via its coupling circuit to said input of only one other said nonlinear sensor wherein said coupling circuits are configured to allow only one-way signal flow between said sensors that are nearest-neighbor sensors.

2. The apparatus of claim 1 further including a summer connected to each said coupling circuit individual to each of said nonlinear sensors to sum a coupling circuit output from each of said nonlinear sensors.

3. The apparatus of claim 2 wherein each of said nonlinear sensors is one-dimensional.

4. The apparatus of claim 1 wherein each of said nonlinear sensors is a magnetic fluxgate.

5. The apparatus of claim 4 wherein said one-way signal flow between said sensors follows a circuitous path in said coupling network.

6. The apparatus of claim 1 wherein said nonlinear sensors are chosen from the group of magnetic sensors, ferro-electric sensors, and piezo-electric sensors.

7. An apparatus comprising:

an odd number of at least three nonlinear sensors each having an input and an output;

a coupling network configured to inherently induce oscillation in said nonlinear sensors in the absence of an external bias signal, said coupling network including a coupling circuit individual to each of said nonlinear sensors, said coupling network unidirectionally coupling said nonlinear sensors so that each said nonlinear sensor has its said output coupled via its said coupling circuit to said input of only one other said nonlinear sensor, said coupling network providing one-way signal flow between said sensors that are nearest-neighbor sensors; and

a summer connected to each said coupling circuit individual to each of said nonlinear sensors to sum a coupling circuit output from each of said nonlinear sensors.

8. The apparatus of claim 7 wherein each of said nonlinear sensors is a magnetic fluxgate.

9. The apparatus of claim 7 wherein said one-way signal flow between said sensors follows a circuitous path in said coupling network.

10. The apparatus of claim 7 wherein said nonlinear sensors are chosen from the group of magnetic sensors, ferro-electric sensors, and piezo-electric sensors.

11. An apparatus comprising:

three magnetic fluxgate sensors each having an input and an output;

a coupling network configured to inherently induce oscillation in said magnetic fluxgate sensors in the absence of an external bias signal, said coupling network including a coupling circuit individual to each of said magnetic fluxgate sensors, said coupling network unidirectionally coupling said magnetic fluxgate sensors so that each said magnetic fluxgate sensor has its said output coupled via its said coupling circuit individual to each of said magnetic fluxgate sensors to said input of only one other said magnetic fluxgate sensor, said coupling network providing one-way signal flow between said magnetic fluxgate sensors that are nearest-neighbor magnetic fluxgate sensors, wherein said one-way signal flow between said magnetic fluxgate sensors follows a circuitous path in said coupling network; and

a summer connected to each of said coupling circuits individual to each of said magnetic fluxgate sensors to sum a coupling circuit output from each of said magnetic fluxgate sensors.

Assignments (3)
CONFIRMATORY LICENSE Recorded Aug 15, 2011
From: SAN DIEGO STATE UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 026746/0978 →
GOVERNMENT INTEREST AGREEMENT Recorded Mar 3, 2010
From: PALACIOS, ANTONIO
To: UNITED STATES OF AMERICA AS REPRESENTED BY THE SECRETARY OF THE NAVY
Reel/Frame 024023/0054 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2006
From: BULSARA, ADI R.; IN, VISARATH; KHO, YONG (ANDY)
To: UNITED STATES OF AMERICA AS REPRESENTED BY THE SECRETARY OF THE NAVY
Reel/Frame 018701/0518 →