IP Library › Granted Patent US 10,564,193
Granted Patent B2
US 10,564,193 · App. 14/700,852 · Granted Feb 18, 2020

Energy monitoring and analysis system

Inventors: Jason Kania (Ottawa, CA); Andrew Rust (North Gower, CA); Patrick Cavanaugh (Almonte, CA); Thomas Heaven (Manotick, CA)
Assignee: OnBalance Technologies Inc.
G01R21/133
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Quick Facts
Patent No.
US 10,564,193
App. No.
14/700,852
Filed
Apr 30, 2015
Granted
Feb 18, 2020
Kind
B2
Examiner
HUANG, MIN
Art Unit
2827
USPC
702/62
Abstract

An energy monitoring and analysis system is provided. Sensors are attached to circuit breakers to collect energy consumption data. The energy consumption data is analyzed to determine events associated with the circuit. An energy monitoring system comprising a paddle having one or more sensors can be affixed to existing circuit breakers and provide communication with the energy analysis system. From the events notifications and alerts can be generated to inform consumers such as a utility, monitoring company or end user.

Claims (39)

1. An energy monitoring system for monitoring premise-wide power consumption and power usage events of a plurality of circuit breakers in a circuit breaker panel, the system comprising:

a paddle module;

a plurality of interchangeable sensor modules extending from the paddle module, each of the plurality of sensor modules physically interfacing and affixing to an external portion of a respective circuit breaker in the circuit breaker panel, the plurality of interchangeable sensor modules each having a shape corresponding to the shape of the external side of the respective type of circuit breaker wherein the plurality of protrusions defined on an exterior of the respective sensor module defines a shape of the plurality of interchangeable sensor modules ensuring that the exterior of the respective sensor module engages an external portion of the respective circuit breaker thereby providing by a friction fit direct contact with the surface of the respective circuit breaker ensuring consistent and repeatable registration of the sensor module with the respective circuit breaker, each sensor module for sensing current and voltage from the respective circuit breaker and pre-processing the current and voltage to determine starting, alteration or ending events for devices that are coupled to the respective circuit breaker and determining for the respective devices energy consumption to determine events of interest and consumption data; and

a communication module coupled to the paddle module, located at or in the circuit breaker panel, the communication module for relaying the events of interest and consumption data from each of the plurality of circuit breakers sensor modules via the paddle module to a remote management system through a wireless network interface.

2. The energy monitoring system of claim 1 wherein each of the sensor modules has registration, alignment, adhesion, and retention protrusions for engaging a body of the respective circuit breaker.

3. The energy monitoring system of claim 1 wherein the sensor module has sensor selected from the group consisting of a Hall effect sensor, a voltage sensor and an induction sensor.

4. The energy monitoring system of claim 1 wherein the communication module fits in a circuit breaker position of the breaker panel.

5. The energy monitoring system of claim 1 wherein the communication module further comprises an antenna for wireless communication with a networked server.

6. The energy monitoring system of claim 1 wherein the communication module further comprises a network connection interface.

7. The energy monitoring system of claim 1 wherein directed force and friction is used to align the retention and registration protrusions of the sensor module to attach the sensors and paddles to the respective bank of breakers.

8. The energy monitoring system of claim 1 wherein the sensor module is affixed within a screw well or an indentation of the circuit breaker by the respective protrusions of the sensor module such that each sensor module sits at a correct position within the screw well or on the side of the breaker to ensure consistent positioning and measurements.

9. The energy monitoring system of claim 1 further comprising a processor for collecting energy consumption data and events from the one or more sensors and determining an event from the consumption data associated with the circuit.

10. The energy monitoring system of claim 9 wherein the energy consumption data and usage pattern data is provided for each circuit breaker to an energy analysis system.

11. The energy monitoring system of claim 10 wherein the energy consumption data is filtered by the processor to determine events prior to sending the data to the energy analysis system.

12. The energy monitor system of claim 10 wherein the energy analysis system generates a notification or alert in response to receiving an event in the energy consumption data and events.

13. The energy monitoring system of claim 12 wherein an energy analysis system utilizes external network data in conjunction with the energy consumption data and events to determine if the notification or alert should be generated.

14. The energy monitoring system of claim 10 wherein the energy analysis system generates a recommendation based upon the energy consumption, wherein the recommendation is provided to a consumer of the consumption data.

15. An energy monitoring and analysis system for premise-wide power consumption and power usage events of a plurality of circuit breakers, the system comprising:

a plurality of paddle modules;

a plurality of interchangeable sensor modules extending from each of the plurality of paddle modules, each of the plurality of sensor modules physically interfacing and affixing to an external portion of a respective circuit breaker, the plurality of interchangeable sensor modules each having a shape corresponding to the shape of the external side of the respective type of circuit breaker wherein a plurality of protrusions defined on the exterior of the respective sensor module defines a shape of each of the plurality of interchangeable sensor modules ensuring that the exterior of the respective sensor module engages the external portion of the respective circuit breaker thereby providing by a friction fit onto the circuit breaker thereby providing direct contact with the surface of the respective circuit breaker ensuring consistent and repeatable registration of the sensor module with the respective circuit breaker in the circuit breaker panel, each sensor module for sensing current and voltage from the respective circuit breaker and pre-processing the current and voltage to determine starting, alteration of ending events for devices that are couples to the respective circuit breaker and determining for the respective devices energy consumption to determine events of interest and consumption data; and

a plurality of communication modules coupled to respective plurality of the paddle modules, located at or in a respective circuit breaker panel, the communication modules for relaying events of interest and consumption data from each of the plurality of circuit breakers sensor modules via the paddle module to a remote energy monitoring system through a wireless network interface,

the energy monitoring system comprising:

a processor; and

a memory containing instruction which when executed by the processor for performing:

receiving energy consumption data from the plurality of sensor modules extending from a paddle module, each sensor module for determining energy consumption associated with the respective circuit breaker;

determining an event from the received energy consumption data for the respective circuit breaker of the plurality of circuit breakers; and

sending the energy consumption data associated with the event for the respective circuit breaker of the plurality of circuit breakers to a network;

an energy analysis system comprising:

a processor; and

a memory containing instructions which when executed by the processor for performing:

receiving energy consumption data from the energy monitoring system through the network from the energy monitoring system;

determining a profile of one or more loads connected to the respective circuit breaker of the plurality of circuit breakers associated with the energy consumption data;

determining a notification or alert from the received energy consumption data based upon the profile; and

sending the notification or alert to a consumer associated with the energy monitoring system.

16. The system of claim 15 wherein the energy analysis system utilizes external network data in conjunction with the energy consumption data to determine if the notification or alert should be generated.

17. The system of claim 15 wherein the energy analysis system generates a recommendation based upon the energy consumption, wherein the recommendation is provided to a consumer of the consumption data.

18. The system of claim 15 wherein directed force and friction is used to attach the sensor covers from the paddles to the respective bank of breakers.

19. The system of claim 15 wherein the sensor module has sensor selected from the group consisting of a Hall effect sensor, a voltage sensor and an induction sensor.

20. The monitoring system of claim 15 wherein the sensor module is affixed within a screw well or an indentation of the circuit breaker by the respective protrusions of the sensor module such that each sensor module sits at a correct position within the screw well or on the side of the breaker to ensure consistent positioning and measurements.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2026
From: KANIA, JASON; RUST, ANDREW; CAVANAUGH, PATRICK; HEAVEN, THOMAS
To: 13135934 CANADA INC.
Reel/Frame 075370/0963 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2021
From: ONBALANCE TECHNOLOGIES INC.
To: KANIA, JASON; RUST, ANDREW; CAVANAUGH, PATRICK; HEAVEN, THOMAS
Reel/Frame 057720/0326 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2016
From: KANIA, JASON; RUST, ANDREW; CAVANAUGH, PATRICK; HEAVEN, THOMAN
To: ONBALANCE TECHNOLOGIES INC.
Reel/Frame 040147/0445 →
Continuity (2)
Provisional Application 61986531 · Apr 30, 2014
Related Publication 20150316594A1 · Nov 5, 2015
Cited By (6)
US 12,322,963 US 12,425,262 US 12,431,702 US 12,580,414 US 12,592,558 US 12,712,356