IP Library › Granted Patent US 11,953,529
Granted Patent B2
US 11,953,529 · App. 16/809,827 · Granted Apr 9, 2024

Position sensing modules and related devices and methods

Inventors: Matthew James Savarda (Wake Forest, NC); Michael Ray Brown (Mandeville, LA); Andrew James Bryce Dudding (Cary, NC)
Assignee: Sensus Spectrum, LLC
G01R21/133G01R11/24G01R11/25G01R22/066G01R22/068G01R31/3277G01R31/3278H02J13/00002H02J13/00036G01D3/08G01D2204/24H01H9/0066H01H9/167H01H2239/026Y02E60/00
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,953,529
App. No.
16/809,827
Granted
Apr 9, 2024
Kind
B2
Abstract

Position sensing modules associated with a device are provided. The position sensing modules are configured to receive electrical characteristics associated with one or more switches of a device over a predetermined period of time, the one or more switches being configured to connect service to or disconnect service from a customer; calculate a match indicator for each phase of the device including the one or more switches, the match indicator indicating whether an electrical characteristic on a load-side of the device matches a same electrical characteristic on a line-side of the device for each phase of the device; and determine a position of the one or more switches based on the received electrical characteristics and the calculated match indicator for each phase of the device.

Claims (24)

1. A position sensing module associated with a device, the position sensing module configured to:

receive electrical characteristics associated with one or more phases of the device over a predetermined period of time, the one or more phases each having one or more switches, respectively, the one or more switches being configured to connect service to or disconnect service from a customer, the one or more switches defining, for each phase, a line-side of the device and a load-side of the device, wherein receiving electrical characteristics comprises receiving root mean square (RMS) currents measured over the predetermined period of time for each phase of the device;

calculate a match indicator for each phase of the device, the match indicator indicating whether an electrical characteristic on the load-side of the device matches a same electrical characteristic on the line-side of the device for each phase of the device; and

determine a position of the one or more switches based on the received RMS currents for each phase of the device and the calculated match indicator for each phase of the device;

the match indicator comprising a true value or a false value for each phase of the device, a true value indicating that a measured load-side voltage of the device matches a measured line-side voltage of the device for each phase of the device and a false value indicating that the measured load-side voltage of the device does not match the measured line-side voltage of the device for each phase of the device;

sum a difference between the line-side voltage and the load-side voltage for each phase;

provide the true value if the sum is less than a predetermined threshold match value; and

provide the false value if the sum exceeds the predetermined threshold match value.

2. A meter for measuring an amount of service provided to a customer, the meter comprising a position sensing module configured to:

receive electrical characteristics associated with one or more phases of the meter over a predetermined period of time, the one or more phases each having one or more switches, respectively, the one or more switches being configured to connect service to or disconnect service from the customer, the one or more switches defining, for each phase, a line-side of the meter and a load-side of the meter, wherein the electrical characteristics comprises root mean square (RMS) currents measured over the predetermined period of time for each phase of the meter;

calculate a match indicator for each phase of the meter, the match indicator indicating whether an electrical characteristic on the load-side of the meter matches a same electrical characteristic on the line-side of the meter for each phase of the meter; and

determine a position of the one or more switches based on the received RMS currents for each phase of the meter and the calculated match indicator for each phase of the meter;

the match indicator comprising a true value or a false value for each phase of the meter, a true value indicating that a measured load-side voltage of the meter matches a measured line-side voltage of the meter for each phase of the meter and a false value indicating that the measured load-side voltage of the meter does not match the measured line-side voltage of the meter for each phase of the meter;

sum a difference between the line-side voltage and the load-side voltage for each phase;

provide the true value if the sum is less than a predetermined threshold match value; and

provide the false value if the sum exceeds the predetermined threshold match value.

3. A method for sensing a position of a relay in a device, the method comprising:

receiving electrical characteristics associated with one or more phases of the device over a predetermined period of time, the one or more phases each having one or more switches, respectively, the one or more switches being configured to connect service to or disconnect service from a customer, the one or more switches defining, for each phase, a line-side of the device and a load-side of the device, wherein receiving electrical characteristics comprises receiving root mean square (RMS) currents measured over the predetermined period of time for each phase of the device;

calculating a match indicator for each phase of the device, the match indicator indicating whether an electrical characteristic on the load-side of the device matches a same electrical characteristic on the line-side of the device for each phase of the device; and

determining a position of the one or more switches based on the received RMS currents for each phase of the device and the calculated match indicator for each phase of the device;

calculating the match indicator comprising calculating a true value or a false value for each phase of the device, a true value indicating that a measured load-side voltage of the device matches a measured line-side voltage of the device for each phase of the device and a false value indicating that the measured load-side voltage of the device does not match the measured line-side voltage of the device for each phase of the device;

summing a difference between the line-side voltage and the load-side voltage for each phase;

providing the true value if the sum is less than a predetermined threshold match value; and

providing the false value if the sum exceeds the predetermined threshold match value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2020
From: SAVARDA, MATTHEW JAMES; BROWN, MICHAEL RAY; DUDDING, ANDREW JAMES BRYCE
To: SENSUS SPECTRUM, LLC
Reel/Frame 052024/0913 →
Continuity (2)
Provisional Application 62813884 · Mar 5, 2019
Related Publication 20200284826A1 · Sep 10, 2020