IP Library Granted Patent US 9,658,254
Granted Patent B2
US 9,658,254 · App. 13/931,354 · Granted May 23, 2017

Magnetic tampering detection in a utility meter

Inventor: Anibal Diego Ramirez (Indianapolis, IN)
Assignee: Landis+Gyr, Inc.
G01R11/24G01R22/066G01D4/00
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Quick Facts
Patent No.
US 9,658,254
App. No.
13/931,354
Granted
May 23, 2017
Kind
B2
Abstract

A method of detecting a magnetic coupling in a meter includes obtaining in an electricity meter information representative of power consumption as measured within the meter of a plurality of lines of an electrical service. The method also includes obtaining from a magnetic sensor information representative of a magnetic field within an electricity meter. A processing circuit then determines whether a first condition exists wherein the magnetic field exceeds a first threshold and the information representative of the power consumption indicates a load imbalance on the plurality of lines such that the load imbalance exceeds an imbalance threshold. The method further includes performing a processing step responsive to a determination that the first condition exists.

Claims (37)

1. A method of detecting a magnetic coupling in a meter, comprising:

a) obtaining in an electricity meter information representative of power consumption as measured within the meter of a plurality of lines of an electrical service;

b) obtaining from a magnetic sensor information representative of a magnetic field within an electricity meter at a first time;

c) determining in a processing circuit whether a first condition exists wherein the magnetic field exceeds a first threshold and the information representative of the power consumption indicates a load imbalance on the plurality of lines such that the load imbalance exceeds an imbalance threshold, wherein the information representative of the power consumption is representative of the power consumption within a predetermined amount of time from the first time; and

d) performing a processing step responsive to a determination that the first condition exists, the first condition indicating that the magnetic field exceeding the first threshold and the load imbalance exceeding the imbalance threshold are caused by a same event.

2. The method of claim 1 , wherein step a) further comprises obtaining a current magnitude measurement on each of the plurality of lines of the electrical service, and wherein the information representative of the power consumption comprises the current magnitude measurement on each of the plurality of lines; and step c) further comprises determining the load imbalance at least in part by comparing a value representative of the current measurement of one line of the electrical service with a value representative of the current measurement of another line of the electrical service.

3. The method of claim 1 , wherein step a) further comprises obtaining the information representative of the power consumption on a plurality of phases of the electrical service.

4. The method of claim 1 , wherein step b) further comprises obtaining the information representative of a magnetic field from a Hall-effect sensor.

5. The method of claim 1 , wherein the first threshold is approximately 10 Gauss.

6. The method of claim 1 , wherein the load imbalance comprises a percentage difference between power consumption on a first line of the electrical service and power consumption on a second line of the electrical service, and wherein the imbalance threshold is approximately 20%.

7. The method of claim 1 , further comprising:

e) determining in a processing circuit whether the magnetic field exceeds a second threshold; and

f) performing a processing step responsive to a determination that the second condition exists independent of whether the information representative of the power consumption indicates a load imbalance on the plurality of lines.

8. The method of claim 1 , wherein step c) further comprises determining whether the magnetic field exceeds the first threshold by:

obtaining a plurality of magnetic field measurements within a first time period;

determining that the magnetic field exceeds the first threshold if a predetermined number of the plurality of magnetic field measurements exceed the first threshold.

9. The method of claim 8 wherein the first time period is less than one second.

10. The method of claim 1 , wherein the processing step comprises storing an indication of a tamper condition in a memory.

11. A circuit for use in an electricity meter, comprising:

a metrology circuit configured to obtain information representative of a load on a plurality of lines of an electrical service;

a magnetic sensor configured to provide information representative of a magnetic field within an electricity meter;

a processing circuit operably coupled to the magnetic sensor, the processing circuit configured to:

determine whether a first condition exists wherein the magnetic field exceeds a first threshold at a first time, and the information representative of the load indicates a load imbalance on the plurality of lines such that the load imbalance exceeds an imbalance threshold within a predetermined time from the first time; and

perform a processing step responsive to a determination that the first condition exists the first condition indicating the magnetic field exceeding the first threshold and the load imbalance exceeding the imbalance threshold are caused by a single event.

12. The circuit of claim 11 , wherein the metrology circuit includes a current sensor operably coupled to obtain a current measurement from each of the plurality of lines of the electrical service.

13. The circuit of claim 11 , wherein the processing circuit forms a part of the metrology circuit.

14. The circuit of claim 13 , wherein the metrology circuit is further configured to generate metering information representative of energy consumed by a load.

15. The circuit of claim 11 , wherein the magnetic sensor comprises a Hall-effect sensor.

16. The circuit of claim 11 , wherein the processing circuit further comprises an analog-to-digital converter operably coupled to receive a signal indicative of the magnetic field from the magnetic sensor.

17. The circuit of claim 11 , wherein the processing circuit is further configured to:

determine whether a second condition exists wherein the magnetic field exceeds a second threshold; and

performing a processing step responsive to a determination that the second condition exists, independent of whether the information representative of the load indicates a load imbalance on the plurality of lines.

18. The circuit of claim 11 , wherein the processing circuit is further configured to determine whether the magnetic field exceeds the first threshold by:

obtaining a plurality of magnetic field measurements within a first time period;

determining that the magnetic field exceeds the first threshold if a predetermined number of the plurality of magnetic field measurements exceed the first threshold.

19. The circuit of claim 18 , further comprising an RF filter disposed between the magnetic sensor and the processing circuit.

20. The circuit of claim 11 , wherein the processing circuit is further configured to store an indication of the tamper condition in a memory.

Assignments (2)
CHANGE OF NAME Recorded Oct 24, 2017
From: LANDIS+GYR INC.
To: LANDIS+GYR LLC
Reel/Frame 044582/0015 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2017
From: RAMIREZ, ANIBAL DIEGO
To: LANDIS+GYR INC.
Reel/Frame 043664/0458 →
Continuity (1)
Related Publication 20150002134A1 · Jan 1, 2015